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China factory Speed Reducer K, Ka, Kh, Kv, Kt, Kvz, Kaf, Khf, Kvf, F, Fa, Fh, Fv, FT, Fvz, Fhz, Faz, Fvf Series Gearbox for Mixer Machine, Construction Machinery Spare Parts with Great quality

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LOYSEW F27
LOYSEW F37
LOYSEW F47
LOYSEW F57
LOYSEW F57R37
LOYSEW F67
LOYSEW F67R37
LOYSEW F77
LOYSEW F77R37
LOYSEW F87
LOYSEW F87R57
LOYSEW F97
LOYSEW F97R57
LOYSEW F107
LOYSEW F107R77
LOYSEW F127
LOYSEW F127R77
LOYSEW F127R87
LOYSEW F157
LOYSEW F157R97
LOYSEW F27 AD..
LOYSEW F37 AD..
LOYSEW F47 AD..
LOYSEW F57 AD..
LOYSEW F57R37 AD..
LOYSEW F67 AD..
LOYSEW F67R37 AD..
LOYSEW F77 AD..
LOYSEW F77R37 AD..
LOYSEW F87 AD..
LOYSEW F87R57 AD..
LOYSEW F97 AD..
LOYSEW F97R57 AD..
LOYSEW F107 AD..
LOYSEW F107R57 AD..
LOYSEW F127 AD..
LOYSEW F127R77 AD..
LOYSEW F127R87 AD..
LOYSEW F157 AD..
LOYSEW F157R97 AD..
LOYSEW F27AM56
LOYSEW F27AM143
LOYSEW F27AM145
LOYSEW F27BAM56
LOYSEW F27BAM143
LOYSEW F27BAM145
LOYSEW FV27BAM56
LOYSEW FV27BAM143
LOYSEW FV27BAM145
LOYSEW FF27AM56
LOYSEW FF27AM143
LOYSEW FF27AM145
LOYSEW FAF27AM56
LOYSEW FAF27AM143
LOYSEW FAF27AM145
LOYSEW FVF27AM56
LOYSEW FVF27AM143
LOYSEW FVF27AM145
LOYSEW FHF27AM56
LOYSEW FHF27AM143
LOYSEW FHF27AM145
LOYSEW FA27AM56
LOYSEW FA27AM143
LOYSEW FA27AM145
LOYSEW FV27AM56
LOYSEW FV27AM143
LOYSEW FV27AM145
LOYSEW FH27AM56
LOYSEW FH27AM143
LOYSEW FH27AM145
LOYSEW FAZ27AM56
LOYSEW FAZ27AM143
LOYSEW FAZ27AM145
LOYSEW FVZ27AM56
LOYSEW FVZ27AM143
LOYSEW FVZ27AM145
LOYSEW FHZ27AM56
LOYSEW FHZ27AM143
LOYSEW FHZ27AM145
LOYSEW F37AM56
LOYSEW F37AM143
LOYSEW F37AM145
LOYSEW FA37BAM56
LOYSEW FA37BAM143
LOYSEW FA37BAM145
LOYSEW FV37BAM56
LOYSEW FV37BAM143
LOYSEW FV37BAM145
LOYSEW FH37BAM56
LOYSEW FH37BAM143
LOYSEW FH37BAM145
LOYSEW FF37AM56
LOYSEW FF37AM143
LOYSEW FF37AM145
LOYSEW FAF37AM56
LOYSEW FAF37AM143
LOYSEW FAF37AM145
LOYSEW FVF37AM56
LOYSEW FVF37AM143
LOYSEW FVF37AM145
LOYSEW FA37AM56
LOYSEW FA37AM143
LOYSEW FA37AM145
LOYSEW FV37AM56
LOYSEW FV37AM143
LOYSEW FV37AM145
LOYSEW FH37AM56
LOYSEW FH37AM143
LOYSEW FH37AM145
LOYSEW FAZ37AM56
LOYSEW FAZ37AM143
LOYSEW FAZ37AM145
LOYSEW FHZ37AM56
LOYSEW FHZ37AM143
LOYSEW FHZ37AM145
LOYSEW FVZ37AM56
LOYSEW FVZ37AM143
LOYSEW FVZ37AM145
LOYSEW FT37AM56
LOYSEW FT37AM143
LOYSEW FT37AM145
LOYSEW F47AM56
LOYSEW F47AM143
LOYSEW F47AM145
LOYSEW FA47BAM56
LOYSEW FA47BAM143
LOYSEW FA47BAM145
LOYSEW FV47BAM56
LOYSEW FV47BAM143
LOYSEW FV47BAM145
LOYSEW FH47BAM56
LOYSEW FH47BAM143
LOYSEW FH47BAM145
LOYSEW FF47AM56
LOYSEW FF47AM143
LOYSEW FF47AM145
LOYSEW FAF47AM56
LOYSEW FAF47AM143
LOYSEW FAF47AM145
LOYSEW FVF47AM56
LOYSEW FVF47AM143
LOYSEW FVF47AM145
LOYSEW FHF47AM56
LOYSEW FHF47AM143
LOYSEW FHF47AM145
LOYSEW FA47AM56
LOYSEW FA47AM143
LOYSEW FA47AM145
LOYSEW FV47AM56
LOYSEW FV47AM143
LOYSEW FV47AM145
LOYSEW FH47AM56
LOYSEW FH47AM143
LOYSEW FH47AM145
LOYSEW FAZ47AM56
LOYSEW FAZ47AM143
LOYSEW FAZ47AM145
LOYSEW FHZ47AM56
LOYSEW FHZ47AM143
LOYSEW FHZ47AM145
LOYSEW FVZ47AM56
LOYSEW FVZ47AM143
LOYSEW FVZ47AM145
LOYSEW FT47AM56
LOYSEW FT47AM143
LOYSEW FT47AM145
LOYSEW F57AM56
LOYSEW F57AM143
LOYSEW F57AM145
LOYSEW F57AM182
LOYSEW F57AM184
LOYSEW F57AM213/215
LOYSEW FA57BAM56
LOYSEW FA57BAM143
LOYSEW FA57BAM145
LOYSEW FA57BAM182
LOYSEW FA57BAM184
LOYSEW FA57BAM213/215
LOYSEW FV57BAM56
LOYSEW FV57BAM143
LOYSEW FV57BAM145
LOYSEW FV57BAM182
LOYSEW FV57BAM184
LOYSEW FV57BAM213/215
LOYSEW FH57BAM56
LOYSEW FH57BAM143
LOYSEW FH57BAM145
LOYSEW FH57BAM182
LOYSEW FH57BAM184
LOYSEW FH57BAM213/215
LOYSEW FF57AM56
LOYSEW FF57AM143
LOYSEW FF57AM145
LOYSEW FF57AM182
LOYSEW FF57AM184
LOYSEW FF57AM213/215
LOYSEW FAF57AM56
LOYSEW FAF57AM143
LOYSEW FAF57AM145
LOYSEW FAF57AM182
LOYSEW FAF57AM184
LOYSEW FAF57AM213/215
LOYSEW FVF57AM56
LOYSEW FVF57AM143
LOYSEW FVF57AM145
LOYSEW FVF57AM182
LOYSEW FVF57AM184
LOYSEW FVF57AM213/215
LOYSEW FHF57AM56
LOYSEW FHF57AM143
LOYSEW FHF57AM145
LOYSEW FHF57AM182
LOYSEW FHF57AM184
LOYSEW FHF57AM213/215
LOYSEW FA57AM56
LOYSEW FA57AM143
LOYSEW FA57AM145
LOYSEW FA57AM182
LOYSEW FA57AM184
LOYSEW FA57AM213/215
LOYSEW FV57AM56
LOYSEW FV57AM143
LOYSEW FV57AM145
LOYSEW FV57AM182
LOYSEW FV57AM184
LOYSEW FV57AM213/215
LOYSEW FH57AM56
LOYSEW FH57AM143
LOYSEW FH57AM145
LOYSEW FH57AM182
LOYSEW FH57AM184
LOYSEW FH57AM213/215
LOYSEW FAZ57AM56
LOYSEW FAZ57AM143
LOYSEW FAZ57AM145
LOYSEW FAZ57AM182
LOYSEW FAZ57AM184
LOYSEW FAZ57AM213/215
LOYSEW FHZ57AM56
LOYSEW FHZ57AM143
LOYSEW FHZ57AM145
LOYSEW FHZ57AM182
LOYSEW FHZ57AM184
LOYSEW FHZ57AM213/215
LOYSEW FVZ57AM56
LOYSEW FVZ57AM143
LOYSEW FVZ57AM145
LOYSEW FVZ57AM182
LOYSEW FVZ57AM184
LOYSEW FVZ57AM213/215
LOYSEW FT57AM56
LOYSEW FT57AM143
LOYSEW FT57AM145
LOYSEW FT57AM182
LOYSEW FT57AM184
LOYSEW FT57AM213/215
LOYSEW F67AM56
LOYSEW F67AM143
LOYSEW F67AM145
LOYSEW F67AM182
LOYSEW F67AM184
LOYSEW F67AM213/215
LOYSEW FA67BAM56
LOYSEW FA67BAM143
LOYSEW FA67BAM145
LOYSEW FA67BAM182
LOYSEW FA67BAM184
LOYSEW FA67BAM213/215
LOYSEW FV67BAM56
LOYSEW FV67BAM143
LOYSEW FV67BAM145
LOYSEW FV67BAM182
LOYSEW FV67BAM184
LOYSEW FV67BAM213/215
LOYSEW FH67BAM56
LOYSEW FH67BAM143
LOYSEW FH67BAM145
LOYSEW FH67BAM182
LOYSEW FH67BAM184
LOYSEW FH67BAM213/215
LOYSEW FF67AM56
LOYSEW FF67AM143
LOYSEW FF67AM145
LOYSEW FF67AM182
LOYSEW FF67AM184
LOYSEW FF67AM213/215
LOYSEW FAF67AM56
LOYSEW FAF67AM143
LOYSEW FAF67AM145
LOYSEW FAF67AM182
LOYSEW FAF67AM184
LOYSEW FAF67AM213/215
LOYSEW FVF67AM56
LOYSEW FVF67AM143
LOYSEW FVF67AM145
LOYSEW FVF67AM182
LOYSEW FVF67AM184
LOYSEW FVF67AM213/215
LOYSEW FHF67AM56
LOYSEW FHF67AM143
LOYSEW FHF67AM145
LOYSEW FHF67AM182
LOYSEW FHF67AM184
LOYSEW FHF67AM213/215
LOYSEW FA67AM56
LOYSEW FA67AM143
LOYSEW FA67AM145
LOYSEW FA67AM182
LOYSEW FA67AM184
LOYSEW FA67AM213/215
LOYSEW FV67AM56
LOYSEW FV67AM143
LOYSEW FV67AM145
LOYSEW FV67AM182
LOYSEW FV67AM184
LOYSEW FV67AM213/215
LOYSEW FH67AM56
LOYSEW FH67AM143
LOYSEW FH67AM145
LOYSEW FH67AM182
LOYSEW FH67AM184
LOYSEW FH67AM213/215
LOYSEW FAZ67AM56
LOYSEW FAZ67AM143
LOYSEW FAZ67AM145
LOYSEW FAZ67AM182
LOYSEW FAZ67AM184
LOYSEW FAZ67AM213/215
LOYSEW FHZ67AM56
LOYSEW FHZ67AM143
LOYSEW FHZ67AM145
LOYSEW FHZ67AM182
LOYSEW FHZ67AM184
LOYSEW FHZ67AM213/215
LOYSEW FVZ67AM56
LOYSEW FVZ67AM143
LOYSEW FVZ67AM145
LOYSEW FVZ67AM182
LOYSEW FVZ67AM184
LOYSEW FVZ67AM213/215
LOYSEW FT67AM56
LOYSEW FT67AM143
LOYSEW FT67AM145
LOYSEW FT67AM182
LOYSEW FT67AM184
LOYSEW FT67AM213/215
LOYSEW F77AM56
LOYSEW F77AM143
LOYSEW F77AM145
LOYSEW F77AM182
LOYSEW F77AM184
LOYSEW F77AM213/215
LOYSEW FA77BAM56
LOYSEW FA77BAM143
LOYSEW FA77BAM145
LOYSEW FA77BAM182
LOYSEW FA77BAM184
LOYSEW FA77BAM213/215
LOYSEW FV77BAM56
LOYSEW FV77BAM143
LOYSEW FV77BAM145
LOYSEW FV77BAM182
LOYSEW FV77BAM184
LOYSEW FV77BAM213/215
LOYSEW FF77AM56
LOYSEW FF77AM143
LOYSEW FF77AM145
LOYSEW FF77AM182
LOYSEW FF77AM184
LOYSEW FF77AM213/215
LOYSEW FAF77AM56
LOYSEW FAF77AM143
LOYSEW FAF77AM145
LOYSEW FAF77AM182
LOYSEW FAF77AM184
LOYSEW FAF77AM213/215
LOYSEW FVF77AM56
LOYSEW FVF77AM143
LOYSEW FVF77AM145
LOYSEW FVF77AM182
LOYSEW FVF77AM184
LOYSEW FVF77AM213/215
LOYSEW FHF77AM56
LOYSEW FHF77AM143
LOYSEW FHF77AM145
LOYSEW FHF77AM182
LOYSEW FHF77AM184
LOYSEW FHF77AM213/215
LOYSEW FA77AM56
LOYSEW FA77AM143
LOYSEW FA77AM145
LOYSEW FA77AM182
LOYSEW FA77AM184
LOYSEW FA77AM213/215
LOYSEW FV77AM56
LOYSEW FV77AM143
LOYSEW FV77AM145
LOYSEW FV77AM182
LOYSEW FV77AM184
LOYSEW FV77AM213/215
LOYSEW FH77AM56
LOYSEW FH77AM143
LOYSEW FH77AM145
LOYSEW FH77AM182
LOYSEW FH77AM184
LOYSEW FH77AM213/215
LOYSEW FAZ77AM56
LOYSEW FAZ77AM143
LOYSEW FAZ77AM145
LOYSEW FAZ77AM182
LOYSEW FAZ77AM184
LOYSEW FAZ77AM213/215
LOYSEW FT77AM56
LOYSEW FT77AM143
LOYSEW FT77AM145
LOYSEW FT77AM182
LOYSEW FT77AM184
LOYSEW FT77AM213/215
LOYSEW F87AM143
LOYSEW F87AM145
LOYSEW F87AM182
LOYSEW F87AM184
LOYSEW F87AM213/215
LOYSEW F87AM254/256
LOYSEW F87AM284/286
LOYSEW FA87BAM143
LOYSEW FA87BAM145
LOYSEW FA87BAM182
LOYSEW FA87BAM184
LOYSEW FA87BAM213/215
LOYSEW FA87BAM254/256
LOYSEW FA87BAM284/286
LOYSEW FV87BAM143
LOYSEW FV87BAM145
LOYSEW FV87BAM182
LOYSEW FV87BAM184
LOYSEW FV87BAM213/215
LOYSEW FV87BAM254/256
LOYSEW FV87BAM284/286
LOYSEW FH87BAM143
LOYSEW FH87BAM145
LOYSEW FH87BAM182
LOYSEW FH87BAM184
LOYSEW FH87BAM213/215
LOYSEW FH87BAM254/256
LOYSEW FH87BAM284/286
LOYSEW FF87AM143
LOYSEW FF87AM145
LOYSEW FF87AM182
LOYSEW FF87AM184
LOYSEW FF87AM213/215
LOYSEW FF87AM254/256
LOYSEW FF87AM284/286
LOYSEW FAF87AM143
LOYSEW FAF87AM145
LOYSEW FAF87AM182
LOYSEW FAF87AM184
LOYSEW FAF87AM213/215
LOYSEW FAF87AM254/256
LOYSEW FAF87AM284/286
LOYSEW FVF87AM143
LOYSEW FVF87AM145
LOYSEW FVF87AM182
LOYSEW FVF87AM184
LOYSEW FVF87AM213/215
LOYSEW FVF87AM254/256
LOYSEW FVF87AM284/286
LOYSEW FHF87AM143
LOYSEW FHF87AM145
LOYSEW FHF87AM182
LOYSEW FHF87AM184
LOYSEW FHF87AM213/215
LOYSEW FHF87AM254/256
LOYSEW FHF87AM284/286
LOYSEW FA87AM143
LOYSEW FA87AM145
LOYSEW FA87AM182
LOYSEW FA87AM184
LOYSEW FA87AM213/215
LOYSEW FA87AM254/256
LOYSEW FA87AM284/286
LOYSEW FH87AM143
LOYSEW FH87AM145
LOYSEW FH87AM182
LOYSEW FH87AM184
LOYSEW FH87AM213/215
LOYSEW FH87AM254/256
LOYSEW FH87AM284/286
LOYSEW FV87AM143
LOYSEW FV87AM145
LOYSEW FV87AM182
LOYSEW FV87AM184
LOYSEW FV87AM213/215
LOYSEW FV87AM254/256
LOYSEW FV87AM284/286
LOYSEW FAZ87AM143
LOYSEW FAZ87AM145
LOYSEW FAZ87AM182
LOYSEW FAZ87AM184
LOYSEW FAZ87AM213/215
LOYSEW FAZ87AM254/256
LOYSEW FAZ87AM284/286
LOYSEW FHZ87AM143
LOYSEW FHZ87AM145
LOYSEW FHZ87AM182
LOYSEW FHZ87AM184
LOYSEW FHZ87AM213/215
LOYSEW FHZ87AM254/256
LOYSEW FHZ87AM284/286
LOYSEW FVZ87AM143
LOYSEW FVZ87AM145
LOYSEW FVZ87AM182
LOYSEW FVZ87AM184
LOYSEW FVZ87AM213/215
LOYSEW FVZ87AM254/256
LOYSEW FT87AM143
LOYSEW FT87AM145
LOYSEW FT87AM182
LOYSEW FT87AM184
LOYSEW FT87AM213/215
LOYSEW FT87AM254/256
LOYSEW FT87AM284/286
LOYSEW F97AM182
LOYSEW F97AM184
LOYSEW F97AM213/215
LOYSEW F97AM254/256
LOYSEW F97AM284/286
LOYSEW F97AM324/326
LOYSEW F97AM364/365
LOYSEW FA97BAM182
LOYSEW FA97BAM184
LOYSEW FA97BAM213/215
LOYSEW FA97BAM254/256
LOYSEW FA97BAM284/286
LOYSEW FA97BAM324/326
LOYSEW FA97BAM364/365
LOYSEW FV97BAM182
LOYSEW FV97BAM184
LOYSEW FV97BAM213/215
LOYSEW FV97BAM254/256
LOYSEW FV97BAM284/286
LOYSEW FV97BAM324/326
LOYSEW FV97BAM364/365
LOYSEW FH97BAM182
LOYSEW FH97BAM184
LOYSEW FH97BAM213/215
LOYSEW FH97BAM254/256
LOYSEW FH97BAM284/286
LOYSEW FH97BAM324/326
LOYSEW FH97BAM364/365
LOYSEW FF97AM182
LOYSEW FF97AM184
LOYSEW FF97AM213/215
LOYSEW FF97AM254/256
LOYSEW FF97AM284/286
LOYSEW FF97AM324/326
LOYSEW FF97AM364/365
LOYSEW FAF97AM182
LOYSEW FAF97AM184
LOYSEW FAF97AM213/215
LOYSEW FAF97AM254/256
LOYSEW FAF97AM284/286
LOYSEW FAF97AM324/326
LOYSEW FAF97AM364/365
LOYSEW FVF97AM182
LOYSEW FVF97AM184
LOYSEW FVF97AM213/215
LOYSEW FVF97AM254/256
LOYSEW FVF97AM284/286
LOYSEW FVF97AM324/326
LOYSEW FVF97AM364/365
LOYSEW FHF97AM182
LOYSEW FHF97AM184
LOYSEW FHF97AM213/215
LOYSEW FHF97AM254/256
LOYSEW FHF97AM284/286
LOYSEW FHF97AM324/326
LOYSEW FHF97AM364/365
LOYSEW FA97AM182
LOYSEW FA97AM184
LOYSEW FA97AM213/215
LOYSEW FA97AM254/256
LOYSEW FA97AM284/286
LOYSEW FA97AM324/326
LOYSEW FA97AM364/365
LOYSEW FV97AM182
LOYSEW FV97AM184
LOYSEW FV97AM213/215
LOYSEW FV97AM254/256
LOYSEW FV97AM284/286
LOYSEW FV97AM324/326
LOYSEW FV97AM364/365
LOYSEW FH97AM182
LOYSEW FH97AM184
LOYSEW FH97AM213/215
LOYSEW FH97AM254/256
LOYSEW FH97AM284/286
LOYSEW FH97AM324/326
LOYSEW FH97AM364/365
LOYSEW FAZ97AM182
LOYSEW FAZ97AM184
LOYSEW FAZ97AM213/215
LOYSEW FAZ97AM254/256
LOYSEW FAZ97AM284/286
LOYSEW FAZ97AM324/326
LOYSEW FAZ97AM364/365
LOYSEW FVZ97AM182
LOYSEW FVZ97AM184
LOYSEW FVZ97AM213/215
LOYSEW FVZ97AM254/256
LOYSEW FVZ97AM284/286
LOYSEW FVZ97AM324/326
LOYSEW FVZ97AM364/365
LOYSEW FHZ97AM182
LOYSEW FHZ97AM184
LOYSEW FHZ97AM213/215
LOYSEW FHZ97AM254/256
LOYSEW FHZ97AM284/286
LOYSEW FHZ97AM324/326
LOYSEW FHZ97AM364/365
LOYSEW FT97AM182
LOYSEW FT97AM184
LOYSEW FT97AM213/215
LOYSEW FT97AM254/256
LOYSEW FT97AM284/286
LOYSEW FT97AM324/326
LOYSEW FT97AM364/365
LOYSEW F107AM182
LOYSEW F107AM182
LOYSEW F107AM184
LOYSEW F107AM213/215
LOYSEW F107AM254/256
LOYSEW F107AM284/286
LOYSEW F107AM324/326
LOYSEW F107AM364/365
LOYSEW FA107BAM182
LOYSEW FA107BAM182
LOYSEW FA107BAM184
LOYSEW FA107BAM213/215
LOYSEW FA107BAM254/256
LOYSEW FA107BAM284/286
LOYSEW FA107BAM324/326
LOYSEW FA107BAM364/365
LOYSEW FV107BAM182
LOYSEW FV107BAM182
LOYSEW FV107BAM184
LOYSEW FV107BAM213/215
LOYSEW FV107BAM254/256
LOYSEW FV107BAM284/286
LOYSEW FV107BAM324/326
LOYSEW FV107BAM364/365
LOYSEW FH107BAM182
LOYSEW FH107BAM182
LOYSEW FH107BAM184
LOYSEW FH107BAM213/215
LOYSEW FH107BAM254/256
LOYSEW FH107BAM284/286
LOYSEW FH107BAM324/326
LOYSEW FH107BAM364/365
LOYSEW FF107AM182
LOYSEW FF107AM182
LOYSEW FF107AM184
LOYSEW FF107AM213/215
LOYSEW FF107AM254/256
LOYSEW FF107AM284/286
LOYSEW FF107AM324/326
LOYSEW FF107AM364/365
LOYSEW FAF107AM182
LOYSEW FAF107AM182
LOYSEW FAF107AM184
LOYSEW FAF107AM213/215
LOYSEW FAF107AM254/256
LOYSEW FAF107AM284/286
LOYSEW FAF107AM324/326
LOYSEW FAF107AM364/365
LOYSEW FHF107AM182
LOYSEW FHF107AM182
LOYSEW FHF107AM184
LOYSEW FHF107AM213/215
LOYSEW FHF107AM254/256
LOYSEW FHF107AM284/286
LOYSEW FHF107AM324/326
LOYSEW FHF107AM364/365
LOYSEW FVF107AM182
LOYSEW FVF107AM182
LOYSEW FVF107AM184
LOYSEW FVF107AM213/215
LOYSEW FVF107AM254/256
LOYSEW FVF107AM284/286
LOYSEW FVF107AM324/326
LOYSEW FVF107AM364/365
LOYSEW FA107AM182
LOYSEW FA107AM182
LOYSEW FA107AM184
LOYSEW FA107AM213/215
LOYSEW FA107AM254/256
LOYSEW FA107AM284/286
LOYSEW FA107AM324/326
LOYSEW FA107AM364/365
LOYSEW FH107AM182
LOYSEW FH107AM182
LOYSEW FH107AM184
LOYSEW FH107AM213/215
LOYSEW FH107AM254/256
LOYSEW FH107AM284/286
LOYSEW FH107AM324/326
LOYSEW FH107AM364/365
LOYSEW FV107AM182
LOYSEW FV107AM182
LOYSEW FV107AM184
LOYSEW FV107AM213/215
LOYSEW FV107AM254/256
LOYSEW FV107AM284/286
LOYSEW FV107AM324/326
LOYSEW FV107AM364/365
LOYSEW FAZ107AM182
LOYSEW FAZ107AM182
LOYSEW FAZ107AM184
LOYSEW FAZ107AM213/215
LOYSEW FAZ107AM254/256
LOYSEW FAZ107AM284/286
LOYSEW FAZ107AM324/326
LOYSEW FAZ107AM364/365
LOYSEW FHZ107AM182
LOYSEW FHZ107AM182
LOYSEW FHZ107AM184
LOYSEW FHZ107AM213/215
LOYSEW FHZ107AM254/256
LOYSEW FHZ107AM284/286
LOYSEW FHZ107AM324/326
LOYSEW FHZ107AM364/365
LOYSEW FVZ107AM182
LOYSEW FVZ107AM182
LOYSEW FVZ107AM184
LOYSEW FVZ107AM213/215
LOYSEW FVZ107AM254/256
LOYSEW FVZ107AM284/286
LOYSEW FVZ107AM324/326
LOYSEW FVZ107AM364/365
LOYSEW FT107AM182
LOYSEW FT107AM182
LOYSEW FT107AM184
LOYSEW FT107AM213/215
LOYSEW FT107AM254/256
LOYSEW FT107AM284/286
LOYSEW FT107AM324/326
LOYSEW FT107AM364/365
LOYSEW F127AM213/215
LOYSEW F127AM254/256
LOYSEW F127AM284/286
LOYSEW F127AM324/326
LOYSEW F127AM364/365
LOYSEW FA127BAM213/215
LOYSEW FA127BAM254/256
LOYSEW FA127BAM284/286
LOYSEW FA127BAM324/326
LOYSEW FA127BAM364/365
LOYSEW FH127BAM213/215
LOYSEW FH127BAM254/256
LOYSEW FH127BAM284/286
LOYSEW FH127BAM324/326
LOYSEW FH127BAM364/365
LOYSEW FF127AM213/215
LOYSEW FF127AM254/256
LOYSEW FF127AM284/286
LOYSEW FF127AM324/326
LOYSEW FF127AM364/365
LOYSEW FAF127AM213/215
LOYSEW FAF127AM254/256
LOYSEW FAF127AM284/286
LOYSEW FAF127AM324/326
LOYSEW FAF127AM364/365
LOYSEW FHF127AM213/215
LOYSEW FHF127AM254/256
LOYSEW FHF127AM284/286
LOYSEW FHF127AM324/326
LOYSEW FHF127AM364/365
LOYSEW FA127AM213/215
LOYSEW FA127AM254/256
LOYSEW FA127AM284/286
LOYSEW FA127AM324/326
LOYSEW FA127AM364/365
LOYSEW FH127AM213/215
LOYSEW FH127AM254/256
LOYSEW FH127AM284/286
LOYSEW FH127AM324/326
LOYSEW FH127AM364/365
LOYSEW FAZ127AM213/215
LOYSEW FAZ127AM254/256
LOYSEW FAZ127AM284/286
LOYSEW FAZ127AM324/326
LOYSEW FAZ127AM364/365
LOYSEW FHZ127AM213/215
LOYSEW FHZ127AM254/256
LOYSEW FHZ127AM284/286
LOYSEW FHZ127AM324/326
LOYSEW FHZ127AM364/365
LOYSEW FT127AM213/215
LOYSEW FT127AM254/256
LOYSEW FT127AM284/286
LOYSEW FT127AM324/326
LOYSEW FT127AM364/365
LOYSEW FT127BAM213/215
LOYSEW FT127BAM254/256
LOYSEW FT127BAM284/286
LOYSEW FT127BAM324/326
LOYSEW FT127BAM364/365
LOYSEW F157AM254/256
LOYSEW F157AM284/286
LOYSEW F157AM324/326
LOYSEW F157AM364/365
LOYSEW FA157BAM254/256
LOYSEW FA157BAM284/286
LOYSEW FA157BAM324/326
LOYSEW FA157BAM364/365
LOYSEW FH157BAM254/256
LOYSEW FH157BAM284/286
LOYSEW FH157BAM324/326
LOYSEW FH157BAM364/365
LOYSEW FF157AM254/256
LOYSEW FF157AM284/286
LOYSEW FF157AM324/326
LOYSEW FF157AM364/365
LOYSEW FAF157AM254/256
LOYSEW FAF157AM284/286
LOYSEW FAF157AM324/326
LOYSEW FAF157AM364/365
LOYSEW FHF157AM254/256
LOYSEW FHF157AM284/286
LOYSEW FHF157AM324/326
LOYSEW FHF157AM364/365
LOYSEW FA157AM254/256
LOYSEW FA157AM284/286
LOYSEW FA157AM324/326
LOYSEW FA157AM364/365
LOYSEW FH157AM254/256
LOYSEW FH157AM284/286
LOYSEW FH157AM324/326
LOYSEW FH157AM364/365
LOYSEW FAZ157AM254/256
LOYSEW FAZ157AM284/286
LOYSEW FAZ157AM324/326
LOYSEW FAZ157AM364/365
LOYSEW FHZ157AM254/256
LOYSEW FHZ157AM284/286
LOYSEW FHZ157AM324/326
LOYSEW FHZ157AM364/365
LOYSEW FT157AM254/256
LOYSEW FT157AM284/286
LOYSEW FT157AM324/326
LOYSEW FT157AM364/365
LOYSEW FT157BAM254/256
LOYSEW FT157BAM284/286
LOYSEW FT157BAM324/326
LOYSEW FT157BAM364/365
LOYSEW KA..B AM..
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LOYSEW K19
LOYSEW K29
LOYSEW K37
LOYSEW K39
LOYSEW K47
LOYSEW K47R37
LOYSEW K49
LOYSEW K49R37
LOYSEW K57
LOYSEW K57R37
LOYSEW K67
LOYSEW K67R37
LOYSEW K77
LOYSEW K77R37
LOYSEW K87
LOYSEW K87R57
LOYSEW K97
LOYSEW K97R57
LOYSEW K107
LOYSEW K107R57
LOYSEW K127
LOYSEW K127R77
LOYSEW K127R87
LOYSEW K157
LOYSEW K157R97
LOYSEW K157R107
LOYSEW K167
LOYSEW K167R97
LOYSEW K167R107
LOYSEW K187
LOYSEW K187R97
LOYSEW K187R107
LOYSEW K.. AD..
LOYSEW KA..B AD..
LOYSEW KV..B AD..
LOYSEW KH ..B AD..
LOYSEW KF .. AD..
LOYSEW KAF .. AD..
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LOYSEW KA ../T AD..
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LOYSEW K107R77 AD..
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LOYSEW K127R77 AD..
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LOYSEW K157R97 AD..
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LOYSEW K167R97 AD..
LOYSEW K167R107 AD..
LOYSEW K187 AD..
LOYSEW K187R97 AD..
LOYSEW K187R107 AD..
LOYSEW K19AM56
LOYSEW K19AM143
LOYSEW K19AM145
LOYSEW KA19BAM56
LOYSEW KA19BAM143
LOYSEW KA19BAM145
LOYSEW KH19BAM56
LOYSEW KH19BAM143
LOYSEW KH19BAM145
LOYSEW KF19AM56
LOYSEW KF19AM143
LOYSEW KF19AM145
LOYSEW KAF19AM56
LOYSEW KAF19AM143
LOYSEW KAF19AM145
LOYSEW KHF19AM56
LOYSEW KHF19AM143
LOYSEW KHF19AM145
LOYSEW KA19AM56
LOYSEW KA19AM143
LOYSEW KA19AM145
LOYSEW KH19AM56
LOYSEW KH19AM143
LOYSEW KH19AM145
LOYSEW K29AM56
LOYSEW K29AM143
LOYSEW K29AM145
LOYSEW KA29BAM56
LOYSEW KA29BAM143
LOYSEW KA29BAM145
LOYSEW KH29BAM56
LOYSEW KH29BAM143
LOYSEW KH29BAM145
LOYSEW KF29AM56
LOYSEW KF29AM143
LOYSEW KF29AM145
LOYSEW KAF29AM56
LOYSEW KAF29AM143
LOYSEW KAF29AM145
LOYSEW KHF29AM56
LOYSEW KHF29AM143
LOYSEW KHF29AM145
LOYSEW KA29AM56
LOYSEW KA29AM143
LOYSEW KA29AM145
LOYSEW KH29AM56
LOYSEW KH29AM143
LOYSEW KH29AM145
LOYSEW K37AM56
LOYSEW K37AM143
LOYSEW K37AM145
LOYSEW KF37AM56
LOYSEW KF37AM143
LOYSEW KF37AM145
LOYSEW KAF37AM56
LOYSEW KAF37AM143
LOYSEW KAF37AM145
LOYSEW KVF37AM56
LOYSEW KVF37AM143
LOYSEW KVF37AM145
LOYSEW KA37AM56
LOYSEW KA37AM143
LOYSEW KA37AM145
LOYSEW KV37AM56
LOYSEW KV37AM143
LOYSEW KV37AM145
LOYSEW KH37AM56
LOYSEW KH37AM143
LOYSEW KH37AM145
LOYSEW KAZ37AM56
LOYSEW KAZ37AM143
LOYSEW KAZ37AM145
LOYSEW KVZ37AM56
LOYSEW KVZ37AM143
LOYSEW KVZ37AM145
LOYSEW KHZ37AM56
LOYSEW KHZ37AM143
LOYSEW KHZ37AM145
LOYSEW KT37AM56
LOYSEW KT37AM143
LOYSEW KT37AM145
LOYSEW K39AM56
LOYSEW K39AM143
LOYSEW K39AM145
LOYSEW K39AM182
LOYSEW K39AM184
LOYSEW KF39AM56
LOYSEW KF39AM143
LOYSEW KF39AM145
LOYSEW KF39AM182
LOYSEW KF39AM184
LOYSEW KAF39AM56
LOYSEW KAF39AM143
LOYSEW KAF39AM145
LOYSEW KAF39AM182
LOYSEW KAF39AM184
LOYSEW KA39AM56
LOYSEW KA39AM143
LOYSEW KA39AM145
LOYSEW KA39AM182
LOYSEW KA39AM184
LOYSEW KT39AM56
LOYSEW KT39AM143
LOYSEW KT39AM145
LOYSEW KT39AM182
LOYSEW KT39AM184
LOYSEW K47AM56
LOYSEW K47AM143
LOYSEW K47AM145
LOYSEW K47AM182
LOYSEW K47AM184
LOYSEW KA47BAM56
LOYSEW KA47BAM143
LOYSEW KA47BAM145
LOYSEW KA47BAM182
LOYSEW KA47BAM184
LOYSEW KV47BAM56
LOYSEW KV47BAM143
LOYSEW KV47BAM145
LOYSEW KV47BAM182
LOYSEW KV47BAM184
LOYSEW KH47BAM56
LOYSEW KH47BAM143
LOYSEW KH47BAM145
LOYSEW KH47BAM182
LOYSEW KH47BAM184
LOYSEW KF47AM56
LOYSEW KF47AM143
LOYSEW KF47AM145
LOYSEW KF47AM182
LOYSEW KF47AM184
LOYSEW KAF47AM56
LOYSEW KAF47AM143
LOYSEW KAF47AM145
LOYSEW KAF47AM182
LOYSEW KAF47AM184
LOYSEW KVF47AM56
LOYSEW KVF47AM143
LOYSEW KVF47AM145
LOYSEW KVF47AM182
LOYSEW KVF47AM184
LOYSEW KHF47AM56
LOYSEW KHF47AM143
LOYSEW KHF47AM145
LOYSEW KHF47AM182
LOYSEW KHF47AM184
LOYSEW KA47AM56
LOYSEW KA47AM143
LOYSEW KA47AM145
LOYSEW KA47AM182
LOYSEW KA47AM184
LOYSEW KV47AM56
LOYSEW KV47AM143
LOYSEW KV47AM145
LOYSEW KV47AM182
LOYSEW KV47AM184
LOYSEW KH47AM56
LOYSEW KH47AM143
LOYSEW KH47AM145
LOYSEW KH47AM182
LOYSEW KH47AM184
LOYSEW KAZ47AM56
LOYSEW KAZ47AM143
LOYSEW KAZ47AM145
LOYSEW KAZ47AM182
LOYSEW KAZ47AM184
LOYSEW KVZ47AM56
LOYSEW KVZ47AM143
LOYSEW KVZ47AM145
LOYSEW KVZ47AM182
LOYSEW KVZ47AM184
LOYSEW KHZ47AM56
LOYSEW KHZ47AM143
LOYSEW KHZ47AM145
LOYSEW KHZ47AM182
LOYSEW KHZ47AM184
LOYSEW KT47AM56
LOYSEW KT47AM143
LOYSEW KT47AM145
LOYSEW KT47AM182
LOYSEW KT47AM184
LOYSEW K49AM56
LOYSEW K49AM143
LOYSEW K49AM145
LOYSEW K49AM182
LOYSEW K49AM184
LOYSEW K49AM213/215
LOYSEW KF49AM56
LOYSEW KF49AM143
LOYSEW KF49AM145
LOYSEW KF49AM182
LOYSEW KF49AM184
LOYSEW KF49AM213/215
LOYSEW KAF49AM56
LOYSEW KAF49AM143
LOYSEW KAF49AM145
LOYSEW KAF49AM182
LOYSEW KAF49AM184
LOYSEW KAF49AM213/215
LOYSEW KA49AM56
LOYSEW KA49AM143
LOYSEW KA49AM145
LOYSEW KA49AM182
LOYSEW KA49AM184
LOYSEW KA49AM213/215
LOYSEW KT49AM56
LOYSEW KT49AM143
LOYSEW KT49AM145
LOYSEW KT49AM182
LOYSEW KT49AM184
LOYSEW KT49AM213/215
LOYSEW K57AM56
LOYSEW K57AM143
LOYSEW K57AM145
LOYSEW K57AM182
LOYSEW K57AM184
LOYSEW K57AM213/215
LOYSEW KA57BAM56
LOYSEW KA57BAM143
LOYSEW KA57BAM145
LOYSEW KA57BAM182
LOYSEW KA57BAM184
LOYSEW KA57BAM213/215
LOYSEW KV57BAM56
LOYSEW KV57BAM143
LOYSEW KV57BAM145
LOYSEW KV57BAM182
LOYSEW KV57BAM184
LOYSEW KV57BAM213/215
LOYSEW KH57BAM56
LOYSEW KH57BAM143
LOYSEW KH57BAM145
LOYSEW KH57BAM182
LOYSEW KH57BAM184
LOYSEW KH57BAM213/215
LOYSEW KF57AM56
LOYSEW KF57AM143
LOYSEW KF57AM145
LOYSEW KF57AM182
LOYSEW KF57AM184
LOYSEW KF57AM213/215
LOYSEW KAF57AM56
LOYSEW KAF57AM143
LOYSEW KAF57AM145
LOYSEW KAF57AM182
LOYSEW KAF57AM184
LOYSEW KAF57AM213/215
LOYSEW KVF57AM56
LOYSEW KVF57AM143
LOYSEW KVF57AM145
LOYSEW KVF57AM182
LOYSEW KVF57AM184
LOYSEW KA57AM56
LOYSEW KA57AM143
LOYSEW KA57AM145
LOYSEW KA57AM182
LOYSEW KA57AM184
LOYSEW KA57AM213/215
LOYSEW KV57AM56
LOYSEW KV57AM143
LOYSEW KV57AM145
LOYSEW KV57AM182
LOYSEW KV57AM184
LOYSEW KV57AM213/215
LOYSEW KH57AM56
LOYSEW KH57AM143
LOYSEW KH57AM145
LOYSEW KH57AM182
LOYSEW KH57AM184
LOYSEW KH57AM213/215
LOYSEW KAZ57AM56
LOYSEW KAZ57AM143
LOYSEW KAZ57AM145
LOYSEW KAZ57AM182
LOYSEW KA57AM184
LOYSEW KAZ57AM213/215
LOYSEW KVZ57AM56
LOYSEW KVZ57AM143
LOYSEW KVZ57AM145
LOYSEW KVZ57AM182
LOYSEW KVZ57AM184
LOYSEW KVZ57AM213/215
LOYSEW KT57AM56
LOYSEW KT57AM143
LOYSEW KT57AM145
LOYSEW KT57AM182
LOYSEW KT57AM184
LOYSEW KT57AM213/215
LOYSEW K67AM56
LOYSEW K67AM143
LOYSEW K67AM145
LOYSEW K67AM182
LOYSEW K67AM184
LOYSEW K67AM213/215
LOYSEW KA67BAM56
LOYSEW KA67BAM143
LOYSEW KA67BAM145
LOYSEW KA67BAM182
LOYSEW KA67BAM184
LOYSEW KA67BAM213/215
LOYSEW KV67BAM56
LOYSEW KV67BAM143
LOYSEW KV67BAM145
LOYSEW KV67BAM182
LOYSEW KV67BAM184
LOYSEW KV67BAM213/215
LOYSEW KH67BAM56
LOYSEW KH67BAM143
LOYSEW KH67BAM145
LOYSEW KH67BAM182
LOYSEW KH67BAM184
LOYSEW KH67BAM213/215
LOYSEW KF67AM56
LOYSEW KF67AM143
LOYSEW KF67AM145
LOYSEW KF67AM182
LOYSEW KF67AM184
LOYSEW KF67AM213/215
LOYSEW KAF67AM56
LOYSEW KAF67AM143
LOYSEW KAF67AM145
LOYSEW KAF67AM182
LOYSEW KAF67AM184
LOYSEW KAF67AM213/215
LOYSEW KVF67AM56
LOYSEW KVF67AM143
LOYSEW KVF67AM145
LOYSEW KVF67AM182
LOYSEW KVF67AM184
LOYSEW KVF67AM213/215
LOYSEW KHF67AM56
LOYSEW KHF67AM143
LOYSEW KHF67AM145
LOYSEW KHF67AM182
LOYSEW KHF67AM184
LOYSEW KHF67AM213/215
LOYSEW KA67AM56
LOYSEW KA67AM143
LOYSEW KA67AM145
LOYSEW KA67AM182
LOYSEW KA67AM184
LOYSEW KA67AM213/215
LOYSEW KV67AM56
LOYSEW KV67AM143
LOYSEW KV67AM145
LOYSEW KV67AM182
LOYSEW KV67AM184
LOYSEW KV67AM213/215
LOYSEW KH67AM56
LOYSEW KH67AM143
LOYSEW KH67AM145
LOYSEW KH67AM182
LOYSEW KH67AM184
LOYSEW KH67AM213/215
LOYSEW KAZ67AM56
LOYSEW KAZ67AM143
LOYSEW KAZ67AM145
LOYSEW KAZ67AM182
LOYSEW KAZ67AM184
LOYSEW KAZ67AM213/215
LOYSEW KVZ67AM56
LOYSEW KVZ67AM143
LOYSEW KVZ67AM145
LOYSEW KVZ67AM182
LOYSEW KVZ67AM184
LOYSEW KVZ67AM213/215
LOYSEW KHZ67AM56
LOYSEW KHZ67AM143
LOYSEW KHZ67AM145
LOYSEW KHZ67AM182
LOYSEW KHZ67AM184
LOYSEW KHZ67AM213/215
LOYSEW KT67AM56
LOYSEW KT67AM143
LOYSEW KT67AM145
LOYSEW KT67AM182
LOYSEW KT67AM184
LOYSEW KT67AM213/215
LOYSEW K77AM56
LOYSEW K77AM143
LOYSEW K77AM145
LOYSEW K77AM182
LOYSEW K77AM184
LOYSEW K77AM213/215
LOYSEW KA77BAM56
LOYSEW KA77BAM143
LOYSEW KA77BAM145
LOYSEW KA77BAM182
LOYSEW KA77BAM184
LOYSEW KA77BAM213/215
LOYSEW KF77AM56
LOYSEW KF77AM143
LOYSEW KF77AM145
LOYSEW KF77AM182
LOYSEW KF77AM184
LOYSEW KF77AM213/215
LOYSEW KAF77AM56
LOYSEW KAF77AM143
LOYSEW KAF77AM145
LOYSEW KAF77AM182
LOYSEW KAF77AM184
LOYSEW KAF77AM213/215
LOYSEW KVF77AM56
LOYSEW KVF77AM143
LOYSEW KVF77AM145
LOYSEW KVF77AM182
LOYSEW KVF77AM184
LOYSEW KVF77AM213/215
LOYSEW KHF77AM56
LOYSEW KHF77AM143
LOYSEW KHF77AM145
LOYSEW KHF77AM182
LOYSEW KHF77AM184
LOYSEW KHF77AM213/215
LOYSEW KA77AM56
LOYSEW KA77AM143
LOYSEW KA77AM145
LOYSEW KA77AM182
LOYSEW KA77AM184
LOYSEW KA77AM213/215
LOYSEW KV77AM56
LOYSEW KV77AM143
LOYSEW KV77AM145
LOYSEW KV77AM182
LOYSEW KV77AM184
LOYSEW KV77AM213/215
LOYSEW KH77AM56
LOYSEW KH77AM143
LOYSEW KH77AM145
LOYSEW KH77AM182
LOYSEW KH77AM184
LOYSEW KH77AM213/215
LOYSEW KAZ77AM56
LOYSEW KAZ77AM143
LOYSEW KAZ77AM145
LOYSEW KAZ77AM182
LOYSEW KAZ77AM184
LOYSEW KAZ77AM213/215
LOYSEW KVZ77AM56
LOYSEW KVZ77AM143
LOYSEW KVZ77AM145
LOYSEW KVZ77AM182
LOYSEW KVZ77AM184
LOYSEW KVZ77AM213/215
LOYSEW KHZ77AM56
LOYSEW KHZ77AM143
LOYSEW KHZ77AM145
LOYSEW KHZ77AM182
LOYSEW KHZ77AM184
LOYSEW KHZ77AM213/215
LOYSEW KT77AM56
LOYSEW KT77AM143
LOYSEW KT77AM145
LOYSEW KT77AM182
LOYSEW KT77AM184
LOYSEW KT77AM213/215
LOYSEW K87AM143
LOYSEW K87AM145
LOYSEW K87AM182
LOYSEW K87AM184
LOYSEW K87AM213/215
LOYSEW K87AM254/256
LOYSEW K87AM284/286
LOYSEW KA87BAM143
LOYSEW KA87BAM145
LOYSEW KA87BAM182
LOYSEW KA87BAM184
LOYSEW KA87BAM213/215
LOYSEW KA87BAM254/256
LOYSEW KA87BAM284/286
LOYSEW KV87BAM143
LOYSEW KV87BAM145
LOYSEW KV87BAM182
LOYSEW KV87BAM184
LOYSEW KV87BAM213/215
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LOYSEW SF97AM364/365
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LOYSEW SAF97AM184
LOYSEW SAF97AM213/215
LOYSEW SAF97AM254/256
LOYSEW SAF97AM284/286
LOYSEW SAF97AM324/326
LOYSEW SAF97AM364/365
LOYSEW SHF97AM182
LOYSEW SHF97AM184
LOYSEW SHF97AM213/215
LOYSEW SHF97AM254/256
LOYSEW SHF97AM284/286
LOYSEW SHF97AM324/326
LOYSEW SHF97AM364/365
LOYSEW SA97AM182
LOYSEW SA97AM184
LOYSEW SA97AM213/215
LOYSEW SA97AM254/256
LOYSEW SA97AM284/286
LOYSEW SA97AM324/326
LOYSEW SA97AM364/365
LOYSEW SH97AM182
LOYSEW SH97AM184
LOYSEW SH97AM213/215
LOYSEW SH97AM254/256
LOYSEW SH97AM284/286
LOYSEW SH97AM324/326
LOYSEW SH97AM364/365
LOYSEW SAZ97AM182
LOYSEW SAZ97AM184
LOYSEW SAZ97AM213/215
LOYSEW SAZ97AM254/256
LOYSEW SAZ97AM284/286
LOYSEW SAZ97AM324/326
LOYSEW SAZ97AM364/365
LOYSEW SHZ97AM182
LOYSEW SHZ97AM184
LOYSEW SHZ97AM213/215
LOYSEW SHZ97AM254/256
LOYSEW SHZ97AM284/286
LOYSEW SHZ97AM324/326
LOYSEW SHZ97AM364/365
LOYSEW ST97AM182
LOYSEW ST97AM184
LOYSEW ST97AM213/215
LOYSEW ST97AM254/256
LOYSEW ST97AM284/286
LOYSEW ST97AM324/326
LOYSEW ST97AM364/365
LOYSEW W37 AD..
LOYSEW W47 AD..
LOYSEW W37AM56
LOYSEW W37AM143
LOYSEW W37AM145
LOYSEW WA37BAM56
LOYSEW WA37BAM143
LOYSEW WA37BAM145
LOYSEW WH37BAM56
LOYSEW WH37BAM143
LOYSEW WH37BAM145
LOYSEW WF37AM56
LOYSEW WF37AM143
LOYSEW WF37AM145
LOYSEW WAF37AM56
LOYSEW WAF37AM143
LOYSEW WAF37AM145
LOYSEW WHF37AM56
LOYSEW WHF37AM143
LOYSEW WHF37AM145
LOYSEW WA37AM56
LOYSEW WA37AM143
LOYSEW WA37AM145
LOYSEW WH37AM56
LOYSEW WH37AM143
LOYSEW WH37AM145
LOYSEW WT37AM56
LOYSEW WT37AM143
LOYSEW WT37AM145
LOYSEW W47AM56
LOYSEW W47AM143
LOYSEW W47AM145
LOYSEW W47AM182
LOYSEW W47AM184
LOYSEW WA47BAM56
LOYSEW WA47BAM143
LOYSEW WA47BAM145
LOYSEW WA47BAM182
LOYSEW WA47BAM184
LOYSEW WH47BAM56
LOYSEW WH47BAM143
LOYSEW WH47BAM145
LOYSEW WH47BAM182
LOYSEW WH47BAM184
LOYSEW WF47AM56
LOYSEW WF47AM143
LOYSEW WF47AM145
LOYSEW WF47AM182
LOYSEW WF47AM184
LOYSEW WAF47AM56
LOYSEW WAF47AM143
LOYSEW WAF47AM145
LOYSEW WAF47AM182
LOYSEW WAF47AM184
LOYSEW WHF47AM56
LOYSEW WHF47AM143
LOYSEW WHF47AM145
LOYSEW WHF47AM182
LOYSEW WHF47AM184
LOYSEW WA47AM56
LOYSEW WA47AM143
LOYSEW WA47AM145
LOYSEW WA47AM182
LOYSEW WA47AM184
LOYSEW WH47AM56
LOYSEW WH47AM143
LOYSEW WH47AM145
LOYSEW WH47AM182
LOYSEW WH47AM184
LOYSEW WT47AM56
LOYSEW WT47AM143
LOYSEW WT47AM145
LOYSEW WT47AM182
LOYSEW WT47AM184

FAQ

---Why do you choose LOYAL?
LOYAL is a very professional supplier of replacement parts for piston pumps, motors, concrete pump spare parts, gearbox, cylinders, gear pumps and so on
 LOYALmajor technicians have 20 years experience. We are not only supplying products to you, but also providing you 
benefits and useful suggestion about goods maintenance.

---How about quality of products from LOYAL?
We always pay more attention about quality of our goods from raw material to machining, especially heat treatment to control our quality and precision parts, 100% interchangeable with origins.  Stable temperature and enough time heat treatment are strictly controlled by our suppliers to make parts  durable.
Warranty: 1 year

---What about delivery and service from LOYAL?
We offer all customers quick response about all inquiries every time. We stock plenty of spare parts, hydraulic pumps and hydraulic motors.  If products you demanded in stock, we can delivery in 3 working days after your payment. 
In case the products you needed are not in current stock, we can prepare in 2-4 weeks after your payment for hydraulic cylinders, gearbox and gear pumps, in 3-7 days for new hydraulic pumps,hydraulic motors, in 15-20 days for rebuilt hydraulic pumps,hydraulic motors.

Application: Machinery, Marine, Agricultural Machinery
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Expansion
Gear Shape: Conical - Cylindrical Gear
Step: Three-Step
Samples:
US$ 1800/Piece
1 Piece(Min.Order)

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Customization:
Available

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Customized Request

agriculturalparts

Choosing the Right Agricultural Gearbox

When buying an agricultural gearbox, there are a few things to consider. The quality of materials, functionality, and mechanism are crucial factors to durability. A durable device will ensure that you won't have to keep replacing it. Here are some tips to help you select the right one. Let's begin. Read on to learn more about the different features available in agricultural gearboxes. Listed below are a few of the most important factors to consider.

Bevel gearboxes

Agricultural gearboxes are essential to the entire food cycle. If your gears are not in good shape, you will be unable to meet the demand and you will suffer from heightened downtime. Fortunately, there are numerous quality bevel gearboxes available on the market today. In fact, the CZPT Gearbox Company supplies bevel gearboxes for agricultural applications. Here are some of the reasons you should choose the right one.
A bevel gearbox is a single-stage unit that interlocks bevelled edges on two gears to transfer torque and rotation. These gears can be either straight or helical. This type of gearbox is inexpensive to produce and operates quietly. It also has lower transmittable torque. Bevel gearboxes are often used as a low-cost alternative to hypoid gearboxes.
Agricultural bevel gearboxes are used in various applications, including hay balers, combine harvesters, seeders, and plows. These gears are well-suited for use with offset rotary fillers. They offer reduction ratios of up to 2.44 and cast iron cases. They are commonly known as "right-angle gearboxes" or "Parallel SHAFT gearboxes."
Agricultural bevel gearboxes come in many sizes and ratios. In general, higher sizes are made of closed-grain cast-iron. Other materials, such as SG 500/7, are used for larger sizes. The main gear and each drive gear are mesh-mounted, and the shafts are designed to rotate in either direction. They have oil seals on the joints. The Spiral Bevel Gearbox is best suited for FG60 or FG75 motors.
The RINV-OP65 right-angle angular gearbox comes with an optional electronic or mechanical position indicator. Its angular design allows for changes in axis rotation, and provides smooth power transmission with minimal backlash. Premium gearmotors include hardened spiral bevel gears and stainless steel shafts for quiet operation. They are available in various ratios and shaft styles. If you want to choose one, make sure it is made to fit the needs of the machine.

Closed-loop seals

There are a number of reasons to install closed-loop seals in an agricultural gearbox. The first is the need to isolate the gearbox from the atmosphere, an important safety concern. Closed-loop seals are CZPT alternatives to desiccant breathers because they prevent the entry of water. While these seals can't keep the gearbox underwater, they isolate the gearbox from the atmosphere and are therefore vital for the safety of your equipment.
The most common material used for these seals is polymer rubber. Most are made from HBR, which stands for High-cis polybutadiene rubber. Other materials include Butadiene and FKM, which are known for their high-temperature performance. However, the disadvantage of these seals is that they are susceptible to shaft damage and degrade quickly in high temperatures. Therefore, you should always consider the type of seal before purchasing one.
If you plan to use agricultural gearboxes on a regular basis, you should consider getting a good quality one. You should look for a closed-loop seal on your gearbox to protect it against dirt and debris. A quality agricultural gearbox also has an easy-access design, which will make it easy to access and maintain. This will ensure its long-lasting performance and low-maintenance costs.
Agricultural equipment is frequently used to perform various tasks, such as sowing seeds, spreading fertilizer, digging holes, and more. This requires durable and effective sealing solutions to keep dirt out of the system and lubricants in. A close-loop seal helps to ensure that all these operations are performed at maximum efficiency. If you're a farmer, closed-loop seals are the ideal solution for you.
agriculturalparts

Surface finish

The surface finish of an agricultural gearbox should be free from defects in the casting process and mechanical damage. The bearing hole in the shaft must be a minimum of 100 mm long and the distance between the bearing holes should be equal to the shaft length. The shaft should be free of any cracks or burrs. The ellipticity and centerline irregularity of the shaft must be less than 0.015 mm. Likewise, the diameter of the shaft, hole spacing and bearing hole relationship should be at least 20 mm.
In recent studies, researchers have investigated the efficiency of different surfaces on the same materials. They found that surface roughness affects gearbox efficiency. Kahraman et al. reported that superfinishing the gears and reducing surface roughness improved efficiency. In addition, Andersson et al. investigated the impact of different assembly processes on the gearbox' surface roughness. The results of their studies are presented in Table I.
The quality of the surface finish of an agricultural gearbox depends on the materials used. A typical example is wrought steel gear. The die inserts for a forged gear were made of H11 or H13 tool steel. This material softens over time and has a limited life span. An improved alternative was Alloy 718. This alloy has a high temperature range and is suitable for high rotational speeds.
A good surface finish is vital for the health and safety of an agricultural gearbox. It protects the entire food chain and is necessary for agricultural production. The heightened demand for food will cause increased wear and tear on farm machinery. Moreover, a damaged gear will cost the farmer a lot of money. Therefore, it is crucial for farmers to invest in a high-quality agricultural gearbox to avoid such costly downtimes.

Shaft arrangement

An agricultural gearbox has two main stages, the first of which is the reduction stage. The reduction stage contains the pinion, a series of gears, and the first reduction stage. A second stage is connected to the first reduction stage via a mechanical clutch. This gearbox typically consists of three stages. The first reduction stage is also known as the low gear "L". The first reduction stage provides four forward gearing ratios, while the second stage has three forward gearing ratios. A conventional agricultural gearbox also incorporates a mechanical clutch.
The second stage is a speed change gearbox. It has an input and output shaft. The input shaft is rotatably mounted in the casing and extends through the tractor's interior. The shaft extends to the rear of the tractor, where the driven part of the joint 26 is keyed onto. The rear end portion of the shaft projects into the back axle casing 15, where it is connected to the first transmission shaft 34. The gearbox then serves to drive the power take-off shaft 36.
Newer types of tractors have larger shafts to support higher power applications. Type 3 tractors have a larger shaft with 20 splines while Type 2 tractors have a smaller shaft. The Type 2 is often referred to as the small 1000. When viewed from inside the tractor cab, Type 3 and Type 2 are rotated counterclockwise. If you are unfamiliar with agricultural gearboxes, here are some basic terms.
Shaft arrangement is important in choosing the right gearing system for agricultural machinery. There are a few differences between these arrangements. The first type has a higher gear ratio, while the second has lower. In terms of speed, the shaft arrangement of an agricultural gearbox reflects the speed of the machinery. The higher the speed of the gear, the higher the output speed. So, when choosing a gearbox, keep this in mind.
agriculturalparts

Cost

Purchasing an agricultural gearbox may be a costly process, but the benefits outweigh the price. Agricultural gearboxes are vital to the food cycle. When a gear breaks down, farmers will face significant losses. Additionally, agricultural applications use a high-quality gearbox to minimize equipment wear and tear. Ultimately, a high-quality gearbox will reduce the cost of production while extending the lifespan of the agricultural machinery.
Many countries trade in Agriculture Gearbox with India, and many of these suppliers are located in India. Using a marketplace to buy from Indian suppliers offers several advantages. Among the many factors to consider when choosing an Agriculture Gearbox supplier are quality, price, reliability, and past trade history. Through a marketplace like CZPT, you can obtain 360-degree information on Indian Agriculture Gearbox suppliers. In this way, you can choose a vendor with whom you do business.
CZPT Gearbox Company is a leading manufacturer of high-quality agricultural gearboxes. Their experienced engineers can reverse-engineer an existing design for a custom-made gearbox for your needs. Whether you need a smaller or larger gearbox for an agricultural application, CZPT Gearbox Company is your partner. A line of high-quality agricultural gearboxes from CZPT Gearbox Company will help you maximize the performance of your farm machinery. They will transfer rotational power from the input shaft to the output shafts, allowing for a change in speed, direction, and rotation.
China factory Speed Reducer K, Ka, Kh, Kv, Kt, Kvz, Kaf, Khf, Kvf, F, Fa, Fh, Fv, FT, Fvz, Fhz, Faz, Fvf Series Gearbox for Mixer Machine, Construction Machinery Spare Parts   with Great quality China factory Speed Reducer K, Ka, Kh, Kv, Kt, Kvz, Kaf, Khf, Kvf, F, Fa, Fh, Fv, FT, Fvz, Fhz, Faz, Fvf Series Gearbox for Mixer Machine, Construction Machinery Spare Parts   with Great quality
editor by CX 2023-11-14

China factory General Motors Belt Maker - Jiebao High Quality Neoprene Transmission Parts Fan Auto motorcycle Textile Garment Packaging Agricultural Machinery Timing Beltt with Hot selling

Product Description

NEED TO KNOW BEFORE BUYING

Thank you for browsing our product, we provide you good quality and after-sale-service with competitive factory prices.

All our product can be customized as per your request or as per your drawings, please feel freel to contact us any time by e-Mail or WhatsApp / Wechat me for instant respond to your inquiry.

 

Standard or Nonstandard: Standard
Application: Textile Machinery, Garment Machinery, Conveyer Equipment, Packaging Machinery, Electric Cars, Motorcycle, Food Machinery, Marine, Mining Equipment, Agricultural Machinery, Car
Feature: Flame-Retardant, Anti-Static, Oil-Resistant, Cold-Resistant, Corrosion-Resistant, Heat-Resistant, Alkali-Resistant, Skid-Resistance, Wear-Resistant, Acid-Resistant, High Temperature-Resistance
Tensile Strength: Strong
Material: Rubber
Type: Toothed Belt
Samples:
US$ 0.1/Piece
1 Piece(Min.Order)

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Customization:
Available

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Customized Request

agriculturalparts

Agricultural Parts and Implements Are Manufactured Using Steel

Agricultural parts and implements are manufactured using various metals, such as Steel. These metals are used for the purposes of agricultural machinery, as they are the strongest and the most durable metals. Steel is also a good material for agricultural implements as it does not rust, even in the toughest conditions.

Steel is the best metal for agricultural implements

Whether it's a tractor, plow or any other agricultural implement, the best metal to use is steel. It is tough, durable, and affordable. Plus, it's also eco-friendly. Steel is available in various grades and sizes, so it can be customized to meet specific performance characteristics.
Agricultural equipment is exposed to a lot of environmental factors, such as dirt, moisture, and harsh chemicals. It's also frequently exposed to high temperatures. It needs to be made from materials that can withstand harsh weather.
Steel is a durable and malleable alloy that can be manufactured in different grades and sizes. It's also available in different thicknesses, so it can be used for various applications.
Steel can be used for agricultural equipment because it's highly resistant to corrosion. It's also easy to clean and maintain. Plus, it's 100% recyclable. Steel can be used for animal pens, trailers, fencing, and even tools.
Galvanized steel is a metal commonly used in agricultural tools. It has a zinc coating that prevents corrosion. It's also self-healing and has a lower maintenance cost than other coated metals. It can also be used for irrigation systems, tractor parts, and animal pens.
Agricultural machinery is continuously being improved to ensure efficiency and comfort for its users. This includes the development of innovative technologies. For example, manufacturers develop structural steel shells and solid steel frames for tractors. These components are designed to work together, enabling farmers to harvest more crops per acre without having to refuel.
Modern farming operations require larger and more automated equipment. They need to be built with materials that can withstand the rigors of a farming environment. Agricultural equipment is made from a variety of steels that are tough and durable. Steel also provides corrosion protection and durability.
Whether you are looking for a metal building, an irrigation system, or a tractor part, you'll find the best metal for agricultural implements at CZPT Company. The company can provide you with all the steel you need, including metal processing and fabrication services.
In addition to being a versatile metal, steel is also a cost-effective and environmentally-friendly option. Using steel in your agricultural machinery allows you to produce higher crops per acre without compromising durability. It's also lighter than conventional steel, meaning your equipment will need less fuel.
agriculturalparts

Changes in agricultural plots

Getting a good look at the latest data is a must to fully grasp the state of the union. Thankfully, our partners at PwC can help you uncover the secrets of the world's most productive agricultural region. In a nutshell, we can help you map out a comprehensive and robust plan for the future of the agricultural industry. By leveraging our expertise in land characterization, land management and planning, we can ensure your property is in tip-top shape for generations to come. Lastly, we can help you secure financing for your agricultural projects, while ensuring your investment is rewarded with the highest possible rates of return. No matter what your needs are, PwC will help you achieve your goals. Our experts are armed with the latest technology and the expertise to ensure your next land acquisition will be a smooth and stress-free experience. We will also be on hand to provide ongoing guidance as you engage in a land-related decision making endeavor. Your PwC experts can assist you on a personal level, or through an organization. For more information, contact your local PwC office today. Besides, we would be happy to help you in any way we can. If you are a landowner or landholder in need of advice or assistance, please do not hesitate to contact your PwC expert for a free, no obligation consultation.
agriculturalparts

High demand for OEM parts

Agricultural machinery OEM parts are rapidly growing at a rate of 3.6% per year. This growth is mainly driven by increased global food demand and rapid crop production. However, the volatility in commodity prices and deteriorating raw material prices are stymieing market growth.
The high demand for OEM agricultural parts is mainly due to advancements in technology. These technologies are improving the economic situation of the farmers. They are also driving interest in agricultural machinery.
Agricultural equipment is a significant investment. It is important that parts for the equipment don't cost more than they need to. This means that manufacturers and dealers need to focus on providing quality replacement parts. OEM parts are a great way to ensure that you are getting the performance that you need from your equipment.
The agricultural machinery OEM market is a highly competitive market. The major OEM firms will dominate the market in the future. Manufacturers are working to provide new solutions to the agricultural industry. These new solutions include heavy equipment OEMs that are providing innovative solutions for agriculture.
The OEM parts are not only good quality, but they come with a warranty as well. This warranty ensures that the parts will last longer. They also come with a variety of parts that you may not be able to find elsewhere.
OEMs provide a great return on investment to their business partners. They have years of experience building specialty products. They are also able to quickly turn around requests. However, they have limited availability. OEM parts are expensive.
Aftermarket parts have been around for many years, but they have become popular in recent years. The low price makes them a good choice for many customers. However, there is still debate over whether OEM parts or aftermarket parts are the best option.
Aftermarket parts are a good alternative, but they may not perform at the same level as OEM parts. They may also use more expensive materials. The downside to aftermarket parts is that they may not carry the brand name that you are looking for.
When you need agricultural equipment parts, make sure that they provide the performance you are looking for. OEM parts provide a higher level of performance than aftermarket parts, but they are also much more expensive.
China factory General Motors Belt Maker - Jiebao High Quality Neoprene Transmission Parts Fan Auto motorcycle Textile Garment Packaging Agricultural Machinery Timing Beltt   with Hot sellingChina factory General Motors Belt Maker - Jiebao High Quality Neoprene Transmission Parts Fan Auto motorcycle Textile Garment Packaging Agricultural Machinery Timing Beltt   with Hot selling
editor by CX 2023-11-07

China best Hydraulic Oil Cylinders for Agricultural Machinery Auto Parts vacuum pump design

Product Description

Product Description

A: Product Description

 

Commodity Name double acting hydraulic cylinder,  hydraulic cylinder
Suitable Model construction machinery
Original ZheJiang , China
Warranty One year
Min of quantity 1 piece
Packing standard export wooden box or as your require
Time of Shipment Usual 30-60days. Different according the quantity of order.
Port of Delivery HangZhou, China

Product Parameters

 

CATALOGUE OF HYDRAULIC CYLINDERS
 

NO. MACHINERY NAME CYLINDER MODEL TUBE(mm) ROD(mm) STROKE LENGTH(mm) LOCATING DISTANCE(mm) WORKING PRESSURE(Mpa)
1 CANE HARVESTER 40-22-108 40 22 108 352 16
2 CANE HARVESTER 40-43-180 40 43 180 295 16.5
3 CANE HARVESTER 50-25-165 50 25 165 440 16
4 CANE HARVESTER 63-40-733 63 40 733 1120 16
5 CANE HARVESTER 75-40-250 75 40 250 521 16.5
6 CANE HARVESTER 83-60-140 83 60 140 525 16
7 COMBINE HARVESTER 32-18-123 32 18 123 313 16
8 COMBINE HARVESTER 50-25-87 50 25 87 265 16
9 COMBINE HARVESTER 50-25-126 50 25 126 816 16
10 COMBINE HARVESTER 83-60-150 83 60 150 625 16
11 CORN HARVESTER 40-22-200 40 22 200 367 16
12 CORN HARVESTER 40-35-270 40 35 270 640 16
13 CORN HARVESTER 45-25-200 45 25 200 430 16
14 CORN HARVESTER 50-25-220 50 25 220 439 16
15 CORN HARVESTER 50-28-210 50 28 210 490 16
16 CORN HARVESTER 52-35-190 52 35 190 350 16
17 CORN HARVESTER 55-35-270 55 35 270 739 16
18 CORN HARVESTER 55-35-780 55 35 780 1030 16
19 CORN HARVESTER 55-45-160 55 45 160 279 16
20 CORN HARVESTER 63-35-621 63 35 621.5 1066 16
21 CORN HARVESTER 63-45-950 63 45 950 1310 16
22 CORN HARVESTER 68-50-255 68 50 255 764 16
23 CORN HARVESTER 75-45-916 75 45 916 1320 16

24 CORN HARVESTER 25-180 / 25 180 340 16
25 CORN HARVESTER 45-185 / 45 185 300 16
26 CORN HARVESTER 45-280 / 45 280 795 16
27 CORN HARVESTER 45-360 / 45 360 520 16
28 CORN HARVESTER 50-155 / 50 155 405 16
29 CORN HARVESTER 50-215   50 215 467 16
30 CORN HARVESTER 60-210   60 210 1130 16

Supply Ability Supply Ability 3000 Pieces per Month
*We can customize and design according to your needs
*We can also produce according to your drawings
*If you need any hydraulic cylinder, please feel free to contact us

Detailed Photos

Application:

 

Our Advantages

 

Our service/certifications

---CE Certificate of Quality Checked
---Adopt ISO Certificate of Quality Management System
---BV Certificate of Main Products Line verification
---Fast Delivery
---After-sales Service
---24 Hours, 7 Days on-line Service

Company Profile

 

KENDE is a leading global designer, manufacturer and marketer of hydraulic cylinder,cab, oil tank, counterweight, boom, arm, bucket, chassis, outrigger, pipe, hose, fitting, valve block, tyre, wheel,and other parts. Products are widely used in construction, mining, crane, material handing, automobile, truck, transportation, oil and gas, farm and garden equipment and so on .
We supply a wide range of parts for excavators, loaders, drills, dumpers, forklifts, tractors, trailers, harvestors, cars, buses, trucks and so on. Our products are focused on improved efficiency and life of the machineries and equipments.
Founded in January of 2015, we have become a big group till now which has 3 factories in asia to supply a wide range of products and service for the global customers.
We have the most advanced production equipments and specialized R &D center to assure the highest quality products to customers.
Our vision statement is "Science and technology first, Always with a grateful heart, Walk the world by virtue, Struggle for a better future"

EXHIBITIOM

FAQ

1)>. How about your delivery time?
: Generally, it will take 30 to 60 days after receiving your advance payment. The specific delivery time depends on the items and the quantity of your order.

2)>. What is your terms of price?
: EXW, FOB, CFR, CIF, DDU.

3)> . What is your terms of payment?
: T/T 50% as deposit, and 50% before delivery. We'll show you the photos of the products and packages before you pay the balance.

4)> . Can you supply a sample freely?
: Sorry, we only can produce the sample with the cost price for you.

5)> Can you produce according to the samples?
: Yes, we can produce by your samples or technical drawings. We can build the molds and fixtures.

6)>. What is your sample policy?
: We can supply the sample if we have ready parts in stock, but the customers have to pay the sample cost and the courier cost.

7)>. Do you test all your goods before delivery?
: Yes, we have 100% test before delivery

8)>: How do you make our business long-term and good relationship?
:1. We keep good quality and competitive price to ensure our customers benefit ;
2. We respect every customer as our friend and we sincerely do business and make friends with them, no matter where they come from.

 

Material: Stainless Steel
Usage: Construction Machinery
Structure: Piston Cylinder
Power: Hydraulic
Standard: Nonstandard
Pressure Direction: Double-acting Cylinder
Customization:
Available

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hydraulic cylinder

How do hydraulic cylinders handle the challenges of minimizing friction and wear?

Hydraulic cylinders employ several mechanisms and techniques to effectively minimize friction and wear, ensuring optimal performance and longevity. Minimizing friction and wear is crucial for hydraulic cylinders as it helps to maintain efficiency, reduce energy consumption, and prevent premature failure. Here's a detailed explanation of how hydraulic cylinders handle the challenges of minimizing friction and wear:

1. Lubrication:

- Proper lubrication is essential for minimizing friction and wear in hydraulic cylinders. Lubricating fluids, such as hydraulic oils, are used to create a thin film between moving surfaces, reducing direct metal-to-metal contact. This lubricating film acts as a protective barrier, reducing friction and preventing wear. Regular maintenance practices include monitoring and maintaining the appropriate lubricant levels to ensure optimal lubrication and minimize frictional losses.

2. Surface Finishes:

- The surface finishes of components in hydraulic cylinders play a crucial role in minimizing friction and wear. Smoother surface finishes, achieved through precision machining, grinding, or the application of specialized coatings, reduce surface roughness and frictional resistance. By minimizing surface irregularities, the risk of wear and friction-induced damage is significantly reduced, resulting in improved efficiency and extended component life.

3. High-Quality Sealing Systems:

- Well-designed and high-quality sealing systems are crucial for minimizing friction and wear in hydraulic cylinders. Seals prevent fluid leakage and contamination while maintaining proper lubrication. Advanced sealing materials, such as polyurethane or composite materials, offer excellent wear resistance and low friction characteristics. Optimal seal design and proper installation ensure effective sealing, minimizing friction and wear between the piston and cylinder bore.

4. Proper Alignment and Clearances:

- Hydraulic cylinders must be properly aligned and have appropriate clearances to minimize friction and wear. Misalignment or excessive clearances can result in increased friction and uneven wear, leading to premature failure. Proper installation, alignment, and maintenance practices, including regular inspection and adjustment of clearances, help ensure smooth and even movement of the piston within the cylinder, reducing friction and wear.

5. Filtration and Contamination Control:

- Effective filtration and contamination control are essential for minimizing friction and wear in hydraulic cylinders. Contaminants, such as particles or moisture, can act as abrasive agents, accelerating wear and increasing friction. By implementing robust filtration systems and proper maintenance practices, hydraulic systems can prevent the ingress of contaminants, ensuring clean and properly lubricated components. Clean hydraulic fluids help minimize wear and friction, contributing to improved performance and longevity.

6. Material Selection:

- The selection of appropriate materials for hydraulic cylinder components is crucial in minimizing friction and wear. Components subject to high frictional forces, such as pistons and cylinder bores, can be made from materials with excellent wear resistance, such as hardened steel or composite materials. Additionally, selecting materials with low coefficients of friction helps reduce frictional losses. Proper material selection ensures durability and minimized wear in critical components of hydraulic cylinders.

7. Maintenance and Regular Inspection:

- Regular maintenance and inspection practices are vital for identifying and addressing potential issues that could lead to increased friction and wear in hydraulic cylinders. Scheduled maintenance includes lubrication checks, seal inspections, and monitoring of clearances. By promptly detecting and rectifying any signs of wear or misalignment, hydraulic cylinders can be kept in optimal condition, minimizing friction and wear throughout their operational lifespan.

In summary, hydraulic cylinders employ various strategies to handle the challenges of minimizing friction and wear. These include proper lubrication, employing suitable surface finishes, utilizing high-quality sealing systems, ensuring proper alignment and clearances, implementing effective filtration and contamination control measures, selecting appropriate materials, and conducting regular maintenance and inspections. By implementing these practices, hydraulic cylinders can minimize friction and wear, ensuring smooth and efficient operation while extending the overall lifespan of the system.

hydraulic cylinder

Handling Challenges of Different Fluid Viscosities in Hydraulic Cylinders

Hydraulic cylinders are designed to handle the challenges associated with different fluid viscosities. The viscosity of hydraulic fluid can vary based on temperature, type of fluid used, and other factors. Hydraulic systems need to accommodate these variations to ensure optimal performance and efficiency. Let's explore how hydraulic cylinders handle the challenges of different fluid viscosities:

  1. Fluid Selection: Hydraulic cylinders are designed to work with a range of hydraulic fluids, each with its specific viscosity characteristics. The selection of an appropriate fluid with the desired viscosity is crucial to ensure optimal performance. Manufacturers provide guidelines regarding the recommended viscosity range for specific hydraulic systems and cylinders. By choosing the right fluid, hydraulic cylinders can effectively handle the challenges posed by different fluid viscosities.
  2. Viscosity Compensation: Hydraulic systems often incorporate features to compensate for variations in fluid viscosity. For example, some hydraulic systems utilize pressure compensating valves that adjust the flow rate based on the viscosity of the fluid. This compensation ensures consistent performance across different operating conditions and fluid viscosities. Hydraulic cylinders work in conjunction with these compensation mechanisms to maintain precision and control, regardless of the fluid viscosity.
  3. Temperature Control: Fluid viscosity is highly dependent on temperature. Hydraulic cylinders employ various temperature control mechanisms to address the challenges posed by temperature-induced viscosity changes. Heat exchangers, coolers, and thermostatic valves are commonly used to regulate the temperature of the hydraulic fluid within the system. By controlling the fluid temperature, hydraulic cylinders can maintain the desired viscosity range, ensuring reliable and efficient operation.
  4. Efficient Filtration: Contaminants in hydraulic fluid can affect its viscosity and overall performance. Hydraulic systems incorporate efficient filtration systems to remove particles and impurities from the fluid. Clean fluid with the appropriate viscosity ensures optimal functioning of hydraulic cylinders. Regular maintenance and filter replacements are essential to uphold the desired fluid viscosity and prevent issues related to fluid contamination.
  5. Proper Lubrication: Different fluid viscosities can impact the lubrication properties within hydraulic cylinders. Lubrication is essential for minimizing friction and wear between moving parts. Hydraulic systems employ lubricants specifically formulated for the anticipated fluid viscosity range. Adequate lubrication ensures smooth operation and extends the lifespan of hydraulic cylinders, even in the presence of varying fluid viscosities.

In summary, hydraulic cylinders employ various strategies to handle the challenges associated with different fluid viscosities. By selecting appropriate fluids, incorporating viscosity compensation mechanisms, controlling temperature, implementing efficient filtration, and ensuring proper lubrication, hydraulic cylinders can accommodate variations in fluid viscosity. These measures enable hydraulic systems to deliver consistent performance, precise control, and efficient operation across different fluid viscosity ranges.

hydraulic cylinder

How do hydraulic cylinders contribute to the efficiency of heavy machinery like excavators?

Hydraulic cylinders play a crucial role in enhancing the efficiency and performance of heavy machinery, such as excavators. These powerful hydraulic actuators enable excavators to perform various tasks efficiently and effectively. Here's a detailed explanation of how hydraulic cylinders contribute to the efficiency of heavy machinery like excavators:

1. Force and Power:

- Hydraulic cylinders provide the necessary force and power required for the excavation process. They convert hydraulic energy from the hydraulic fluid into linear mechanical force, allowing the excavator to exert significant pushing and pulling forces. The force generated by hydraulic cylinders enables the digging arm or boom of the excavator to penetrate and break through tough materials, such as soil, rocks, or concrete, with ease and efficiency.

2. Precise Control:

- Hydraulic cylinders offer precise control over the movement of excavator components. By regulating the flow of hydraulic fluid to the cylinders, operators can control the speed, direction, and positioning of the excavator's arm, boom, bucket, and other attachments. This precise control allows operators to perform delicate operations, such as fine grading or precise material placement, with accuracy and efficiency.

3. Versatility and Adaptability:

- Hydraulic cylinders enable excavators to perform a wide range of tasks by facilitating the quick and easy interchangeability of attachments. Excavators can be equipped with various specialized attachments, including buckets, breakers, grapples, and augers, which can be efficiently connected and disconnected using hydraulic cylinders. This versatility and adaptability enhance the efficiency of excavators by enabling them to tackle different tasks without the need for extensive manual adjustments or downtime.

4. Increased Productivity:

- The power and control provided by hydraulic cylinders significantly increase the productivity of excavators. Excavators equipped with hydraulic cylinders can complete tasks more quickly and efficiently compared to manual or mechanically-driven machinery. The precise control over movements allows for faster cycle times, reduced idle time, and improved overall productivity on the worksite.

5. Enhanced Digging and Lifting Capabilities:

- Hydraulic cylinders enable excavators to perform digging and lifting operations with enhanced capabilities. The force generated by hydraulic cylinders allows excavators to dig deeper and lift heavier loads compared to other types of machinery. This increased digging and lifting capacity contributes to the efficiency of excavators by reducing the number of passes required to complete a task and improving overall productivity.

6. Durability and Reliability:

- Hydraulic cylinders are designed to withstand heavy loads, challenging operating conditions, and frequent use. They are built with robust materials, such as high-strength steel, and undergo stringent quality control measures during manufacturing. The durability and reliability of hydraulic cylinders ensure that excavators can operate efficiently even in demanding environments, minimizing downtime and maximizing productivity.

7. Energy Efficiency:

- Hydraulic systems, including hydraulic cylinders, are known for their energy efficiency. Hydraulic cylinders can deliver high force outputs while consuming relatively low amounts of hydraulic fluid. This energy efficiency translates to lower fuel consumption and reduced operating costs for excavators. The efficient use of hydraulic power contributes to the overall efficiency and sustainability of heavy machinery operations.

8. Safety:

- Hydraulic cylinders play a vital role in ensuring the safety of excavator operations. They provide controlled and predictable movements, reducing the risk of sudden or uncontrolled motions. The precise control offered by hydraulic cylinders allows operators to perform tasks safely and accurately, minimizing the chances of accidents or damage to the machinery or surrounding environment.

Overall, hydraulic cylinders are essential components that significantly contribute to the efficiency of heavy machinery like excavators. By providing force, precise control, versatility, increased productivity, enhanced capabilities, durability, energy efficiency, and safety, hydraulic cylinders enable excavators to perform a wide range of tasks efficiently and effectively in various industries, including construction, mining, and landscaping.

China best Hydraulic Oil Cylinders for Agricultural Machinery Auto Parts   vacuum pump design		China best Hydraulic Oil Cylinders for Agricultural Machinery Auto Parts   vacuum pump design
editor by CX 2023-11-06

China OEM Factory Supply Construction Machinery Excavator Spare Parts Hydraulic Cylinder Made in China vacuum pump for ac

Product Description

Factory Supply Construction Machinery Excavator Spare Parts Hydraulic Cylinder Made in China

Product Specifications:

Item Specifications
Bore diameter 60mm-250mm,customizable
Bod diameter 40mm-230mm,customizable
Stroke 100mm-400mm,customizable
Working Pressure 7-40Mpa,customizable
Surface treatment of piston rod HaHard Chrome Plating,Electroplated Milky White Chromium+Hard Chromium,Nickel Plating+Hard Chromium Plating,High-Velocity Oxygen-Fuel CrC NiC,Ceramic Coating,Nitriding,Laser Cladding
Work Pressure Maximum 38MPa,Customizable
Material High tensile cold drawn tube, precision honed for extended seal life
Mounting Earring,Flange,Clevis.Foot,Trunnion,Customizable
Seal Type Parker,NOK, Hallite or as customer's requirement
Warrenty 18 months
MOQ 1 pcs
Production Time Based on order quantity.normally 30-40 days.
Certification ISO9001,CE, SGS
Packaging metal case,plywood case,carton or as requirement 
Service OEM & ODM
Warranty arranwarranty ty  18 months,customizable
Color customizable
Price Advantage Competitive factory price with guaranteed quality
Business Type Manufacturer 

Product Display:

 

Appliactions:Walking machinery,excavator.

Mounting Method:
Other Products:

Our Factory:

Inspection Process:
 

  Inspection Type  Inspection Standard
Raw Material Inspection Before storage, QC takes the measurement of the raw materials.
Process Material Inspection During the production, QCs conduct a random inspection.
Before the hydraulic cylinder parts transferred to the next process, QCs takes inspection.
Final Function Testing All the hydraulic cylinders take hydraulic function test

Inspection of Mechanical Properties of Raw Materials
 

 


Process Inspection


Final Testing


Packing & Delivery:

About US:

Our Certificate

Our Main Customers

ZheJiang Tianjian Hydraulic Technology Co.,Ltd is specializing in the production of various types of hydraulic cylinders as well as cylinder barrel, piston cylinder and other cylinder accessories.

As a highly specialized manufacturer of hydraulic cylinders, tianjian provides design optimization solutions and reliable products to many customers at home and abroad. No matter in construction machinery, railway bridge machinery, port ship machinery, metallurgy and mining machinery, oil and light industry machinery, special vehicles and other industries, tianjian can provide various standard and non-standard hydraulic cylinder design optimization schemes and products according to users' requirements, and provide integrated services for perfection and quality.

If possible, when contact with us, please apply information as below 

Bore

Rod

Stroke

Work Pressure

Mounting

Work environment

 

 

 

 

 

 

Or you can offer us your sketch diagram or photos so that we could understand you exactly meaning, help us avoid mistakes.

And if you have samples, we can manufacture according to your samples after sending to us.

Welcome to our factory if you have any time.

Your satisfaction is our biggest motivation.

Now, you can contact with us for any question or inquiry.

FAQ:

1, What does your company do?
A: we are a supplier of high quality hydraulic products including Hydraulic Cylinder, Hydraulic Motor, Hydraulic Power Pack, Hydraulic station and other Hydraulic components.
 
2, Are you a manufacture or a trading company?
A: We are a  manufacturer.
 
3, What certificate do you have?
A: All our factories are ISO certificated. And our main suppliers of materials and parts are with CE, RoHS, CSA and UL certificates.
 
4, How long is your delivery time?
A: The delivery time depends on different products and quantity. The cylinder usually need about 45-60 days and the Motor need about 30-50 days.
 
5, Can you make parts as customer's requirement or drawing?
A: Yes, we can OEM for you as your drawings. Our engineer also can give you professional support for technical suggestions.
 
6, What kind of payment terms do you accept?
A: We prefer T/T through bank. 30% when order is confirmed and 70% before shipment. L/C is also acceptable for amount over 20,000USD.
 
7, What is your warranty policy?
A: All our products are warranted for 1 full year from date of delivery against defects in materials and workmanship. This warranty does not cover parts that are worn out through the course of normal operation or are damaged through negligence. We serious remind that unclean hydraulic oil will definitely cause damage to your Hydraulic components. And this damage is not included in the warranty range. So we strongly suggest you to use new clean oil or make sure the system oil are clean when using our parts

Certification: GS, RoHS, CE, ISO9001
Pressure: Medium Pressure
Work Temperature: High Temperature
Acting Way: Double Acting
Working Method: Straight Trip
Adjusted Form: Regulated Type
Samples:
US$ 300/Set
1 Set(Min.Order)

|

Customization:
Available

|

hydraulic cylinder

How do hydraulic cylinders handle variations in temperature and harsh operating environments?

Hydraulic cylinders are designed to handle variations in temperature and harsh operating environments by incorporating specific features and materials that ensure their durability, reliability, and performance. The ability of hydraulic cylinders to withstand extreme temperatures, corrosive environments, and other harsh conditions is crucial for their successful operation in a wide range of applications. Here's a detailed explanation of how hydraulic cylinders handle variations in temperature and harsh operating environments:

1. Temperature Range:

- Hydraulic cylinders are designed to operate within a specified temperature range. The materials used in their construction, such as cylinder barrels, pistons, seals, and lubricants, are selected to withstand the anticipated temperature variations. Specialized seals and O-rings made from materials like nitrile, Viton, or polyurethane are used to maintain their sealing properties over a wide temperature range. Heat-resistant coatings or thermal insulation may be applied to certain components to protect them from high temperatures.

2. Thermal Expansion:

- Hydraulic cylinders are designed to accommodate thermal expansion and contraction that occurs with temperature changes. The materials used in their construction have different coefficients of thermal expansion, allowing the cylinder components to expand or contract at a similar rate. This design consideration prevents excessive stress, binding, or leakage that could result from thermal expansion or contraction.

3. Heat Dissipation:

- In applications where hydraulic cylinders are subjected to high temperatures, heat dissipation mechanisms are employed to prevent overheating. Cooling fins or heat sinks may be incorporated into the cylinder design to increase the surface area for heat transfer. In some cases, external cooling methods such as air or liquid cooling systems can be used to maintain optimal operating temperatures.

4. Corrosion Resistance:

- Hydraulic cylinders used in harsh operating environments are constructed from materials that exhibit excellent corrosion resistance. Stainless steel, chrome-plated steel, or other corrosion-resistant alloys are commonly used for cylinder components exposed to corrosive substances or environments. Additionally, surface treatments such as coatings, plating, or specialized paints can provide an extra layer of protection against corrosion.

5. Sealing Systems:

- Hydraulic cylinders employ sealing systems that are specifically designed to withstand harsh operating environments. The seals used in hydraulic cylinders are selected based on their resistance to temperature extremes, chemicals, abrasion, and other environmental factors. Specialized seal designs, such as wiper seals, rod seals, or high-temperature seals, are utilized to maintain effective sealing and prevent contamination of the hydraulic fluid.

6. Lubrication:

- Proper lubrication is essential for the smooth operation and longevity of hydraulic cylinders, particularly in harsh operating environments. Lubricants are selected based on their ability to withstand high temperatures, resist oxidation, and provide effective lubrication under extreme conditions. Regular maintenance and lubrication practices ensure that the cylinder components continue to operate smoothly and reduce the effects of wear and friction.

7. Robust Construction:

- Hydraulic cylinders designed for harsh operating environments are built with robust construction techniques to withstand the rigors of such conditions. The cylinder barrels, rods, and other components are manufactured to meet strict quality and durability standards. Welded or bolted construction methods are employed to ensure the structural integrity of the cylinders. Reinforcements, such as flanges or tie rods, may be added to enhance the cylinder's strength and resistance to external forces.

8. Environmental Protection:

- Hydraulic cylinders can be equipped with additional protective features to shield them from harsh operating environments. Protective covers, boots, or bellows can be used to prevent contaminants, debris, or moisture from entering the cylinder and compromising its performance. These protective measures help extend the service life of hydraulic cylinders in demanding conditions.

9. Compliance with Standards:

- Hydraulic cylinders manufactured for specific industries or applications often comply with industry standards or regulations related to operating temperature ranges, environmental conditions, or safety requirements. Compliance with these standards ensures that hydraulic cylinders are designed and tested to meet the specific demands of their intended operating environments.

In summary, hydraulic cylinders are designed to handle variations in temperature and harsh operating environments by incorporating suitable materials, thermal expansion considerations, heat dissipation mechanisms, corrosion-resistant components, specialized sealing systems, proper lubrication, robust construction techniques, protective features, and compliance with industry standards. These design considerations and features enable hydraulic cylinders to operate reliably and effectively in a wide range of demanding applications and environmental conditions.

hydraulic cylinder

What considerations are important when selecting hydraulic cylinders for mobile equipment?

To select hydraulic cylinders for mobile equipment, several important considerations need to be taken into account. Here are the key factors to consider:

  1. Load Capacity: Determine the maximum load or force that the hydraulic cylinder will need to support. This includes both the static load and any dynamic or shock loads that may be encountered during operation.
  2. Stroke Length: Consider the required stroke length, which is the distance the hydraulic cylinder can extend and retract. Ensure that the stroke length is sufficient for the specific application and range of motion needed.
  3. Operating Pressure: Determine the maximum operating pressure required for the hydraulic system. This will depend on the load and the specific application. Select a hydraulic cylinder with a pressure rating that exceeds the maximum operating pressure to ensure safety and durability.
  4. Mounting Style: Consider the available space and the mounting requirements of the mobile equipment. Hydraulic cylinders come in various mounting styles, such as flange, trunnion, clevis, and pivot, among others. Choose a mounting style that is compatible with the equipment and provides the necessary support and stability.
  5. Size and Weight: Take into account the physical dimensions and weight of the hydraulic cylinder. Ensure that it can fit within the available space and that the equipment can support its weight without compromising performance or safety.
  6. Speed and Precision: Evaluate the required speed and precision of the hydraulic cylinder's movement. Different cylinder designs and configurations can affect the speed and accuracy of motion. Consider factors such as cylinder bore size, rod diameter, and the presence of cushioning or dampening features.
  7. Environmental Factors: Assess the operating environment of the mobile equipment. Consider factors such as temperature extremes, exposure to moisture, dust, and chemicals. Select hydraulic cylinders with appropriate seals and coatings that can withstand the environmental conditions and prevent corrosion or damage.
  8. Reliability and Maintenance: Consider the reliability and maintenance requirements of the hydraulic cylinders. Look for reputable manufacturers that provide high-quality products with a proven track record. Evaluate factors such as expected service life, availability of spare parts, and ease of maintenance.
  9. Cost: Finally, consider the cost of the hydraulic cylinders, including the initial purchase price, installation costs, and long-term maintenance expenses. While it is essential to find a cost-effective solution, prioritize quality and performance to ensure safe and efficient operation.

hydraulic cylinder

How do hydraulic cylinders contribute to the efficiency of heavy machinery like excavators?

Hydraulic cylinders play a crucial role in enhancing the efficiency and performance of heavy machinery, such as excavators. These powerful hydraulic actuators enable excavators to perform various tasks efficiently and effectively. Here's a detailed explanation of how hydraulic cylinders contribute to the efficiency of heavy machinery like excavators:

1. Force and Power:

- Hydraulic cylinders provide the necessary force and power required for the excavation process. They convert hydraulic energy from the hydraulic fluid into linear mechanical force, allowing the excavator to exert significant pushing and pulling forces. The force generated by hydraulic cylinders enables the digging arm or boom of the excavator to penetrate and break through tough materials, such as soil, rocks, or concrete, with ease and efficiency.

2. Precise Control:

- Hydraulic cylinders offer precise control over the movement of excavator components. By regulating the flow of hydraulic fluid to the cylinders, operators can control the speed, direction, and positioning of the excavator's arm, boom, bucket, and other attachments. This precise control allows operators to perform delicate operations, such as fine grading or precise material placement, with accuracy and efficiency.

3. Versatility and Adaptability:

- Hydraulic cylinders enable excavators to perform a wide range of tasks by facilitating the quick and easy interchangeability of attachments. Excavators can be equipped with various specialized attachments, including buckets, breakers, grapples, and augers, which can be efficiently connected and disconnected using hydraulic cylinders. This versatility and adaptability enhance the efficiency of excavators by enabling them to tackle different tasks without the need for extensive manual adjustments or downtime.

4. Increased Productivity:

- The power and control provided by hydraulic cylinders significantly increase the productivity of excavators. Excavators equipped with hydraulic cylinders can complete tasks more quickly and efficiently compared to manual or mechanically-driven machinery. The precise control over movements allows for faster cycle times, reduced idle time, and improved overall productivity on the worksite.

5. Enhanced Digging and Lifting Capabilities:

- Hydraulic cylinders enable excavators to perform digging and lifting operations with enhanced capabilities. The force generated by hydraulic cylinders allows excavators to dig deeper and lift heavier loads compared to other types of machinery. This increased digging and lifting capacity contributes to the efficiency of excavators by reducing the number of passes required to complete a task and improving overall productivity.

6. Durability and Reliability:

- Hydraulic cylinders are designed to withstand heavy loads, challenging operating conditions, and frequent use. They are built with robust materials, such as high-strength steel, and undergo stringent quality control measures during manufacturing. The durability and reliability of hydraulic cylinders ensure that excavators can operate efficiently even in demanding environments, minimizing downtime and maximizing productivity.

7. Energy Efficiency:

- Hydraulic systems, including hydraulic cylinders, are known for their energy efficiency. Hydraulic cylinders can deliver high force outputs while consuming relatively low amounts of hydraulic fluid. This energy efficiency translates to lower fuel consumption and reduced operating costs for excavators. The efficient use of hydraulic power contributes to the overall efficiency and sustainability of heavy machinery operations.

8. Safety:

- Hydraulic cylinders play a vital role in ensuring the safety of excavator operations. They provide controlled and predictable movements, reducing the risk of sudden or uncontrolled motions. The precise control offered by hydraulic cylinders allows operators to perform tasks safely and accurately, minimizing the chances of accidents or damage to the machinery or surrounding environment.

Overall, hydraulic cylinders are essential components that significantly contribute to the efficiency of heavy machinery like excavators. By providing force, precise control, versatility, increased productivity, enhanced capabilities, durability, energy efficiency, and safety, hydraulic cylinders enable excavators to perform a wide range of tasks efficiently and effectively in various industries, including construction, mining, and landscaping.

China OEM Factory Supply Construction Machinery Excavator Spare Parts Hydraulic Cylinder Made in China   vacuum pump for ac	China OEM Factory Supply Construction Machinery Excavator Spare Parts Hydraulic Cylinder Made in China   vacuum pump for ac
editor by CX 2023-11-06

China Custom Construction Machinery Parts High Torque Helac L20-Series Hydraulic Rotary Actuator Cylinder vacuum pump booster

Product Description

PRODUCT DESCRIPTION
 

Construction Machinery Parts High Torque Helac L20-Series Hydraulic Rotary Actuator Cylinder

 

Counterbalance Valve

Product Parameters

WL10

WL20

WL30

WL40

WL50

2, 3, 6, 10, 16, 

27

5, 9, 16, 27, 

72

19, 28, 47, 73, 

105, 140, 180, 

240

28, 50, 67

 

180° 

360°

180°

180° 

360°

220°

110° 

134° 

180°

Q:Front Flange

Q:Front Flange 

S:Double Flange

Q:Front Flange 

S:Double Flange 

Z:Shaft Output

H:Spindle

 

H:Rear Flange

D:Foot 

M:Straddle

D:Foot 

H:Rear Flange 

Q:Front Flange 

G:Rail

Q:Front Flange

D:Foot

Y:With Valve 

W:No Valve

Y:With Valve 

W:No Valve

Y:With Valve 

W:No Valve

Y:With Valve 

W:No Valve

Y:With Valve 

W:No Valve

J:Standard 

D:Low Temp 

G:High Temp

J:Standard 

D:Low Temp 

G:High Temp

J:Standard 

D:Low Temp 

G:High Temp

J:Standard 

D:Low Temp 

G:High Temp

J:Standard 

D:Low Temp 

G:High Temp

G:Imperial 

M:Metric 

D:Customized

G:Imperial 

M:Metric 

D:Customized

G:Imperial 

M:Metric 

D:Customized

G:Imperial 

M:Metric 

D:Customized

G:Imperial 

M:Metric 

D:Customized

 

Interchangeability Chart

WEITAI

PARKER

WL10 Series

Helac L10

WL20 Series

Helac L20

WL30 Series

Helac L30

WL40 Series

Helac T20/T30

WL50 Series

Customized

* HKS and Moveco CHINAMFG solutions are available as well
 

 

Company Profile

Weitai Hydraulic is 1 of China's leading hydraulic suppliers, the earliest enterprise specializing in exporting mobile hydraulics. We are committed to providing excellent hydraulic products and services to both businesses and final consumers. Starting as a small OEM manufacturer of hydraulic cylinders, we grew into a global company specializing in research and development, production, and sales of high-end hydraulic parts. Hydraulic motors are 1 of our main products. In addition to our own factories, we are a shareholder of a top-quality hydraulic motor factory. All of our factories are ISO certified and all of our material suppliers have CE, RoHS, CSA and UL certificates. We don't just manufacture our standard motors, but can also design and customize motors based on our customers' requirements.

 

 

FAQ

Q1 How much do CHINAMFG rotary actuators cost?
Our prices are subject to change depending on order quantity, raw materials market fluctuactions, etc. We will send you an updated price list right after your company contacts us.

Q2 Do you have a minimum order quantity?
Yes, we require all international orders to have an ongoing minimum order quantity. Please contact us to learn more specific information.

Q3 Can you provide relevant documentation?
Yes, we are ready to provide all kinds of documents, including Certificate of Analysis/Certificate of Conformance, Insurance, Certificate of Origin, and others.

Q4 What is the average lead time?
For samples, the lead time is about 7 days. For mass production, the lead time is 20-30 days after receiving the deposit payment.

Q5 What kinds of payment methods do you accept?
You can make the payment to our bank account, Western Union or PayPal. 30% deposit in advance, 70% balance against the copy of B/L.

Q6 What is the product warranty?
1 year
 

 

Certification: ISO9001
Working Method: Rotary
Material: Steel
Model: Wl20
Rotation: 180°, 360°
Warranty: 1 Year
Customization:
Available

|

hydraulic cylinder

What advancements in hydraulic cylinder technology have improved sealing and reliability?

Advancements in hydraulic cylinder technology have continuously contributed to improving sealing and reliability in hydraulic systems. These advancements aim to address common challenges such as leakage, wear, and failure of seals, ensuring optimal performance and longevity. Here are several key advancements that have significantly improved sealing and reliability in hydraulic cylinders:

1. High-Performance Sealing Materials:

- The development of advanced sealing materials has greatly improved the sealing capabilities of hydraulic cylinders. Traditional sealing materials like rubber have been replaced or enhanced with high-performance materials such as polyurethane, PTFE (polytetrafluoroethylene), and various composite materials. These materials offer superior resistance to wear, temperature, and chemical degradation, resulting in improved sealing performance and extended seal life.

2. Enhanced Seal Designs:

- Advancements in seal designs have focused on improving sealing efficiency and reliability. Innovative seal profiles, such as lip seals, wipers, and scrapers, have been developed to optimize fluid retention and prevent contamination. These designs provide better sealing performance, minimizing the risk of fluid leakage and maintaining system integrity. Additionally, improved seal geometries and manufacturing techniques ensure tighter tolerances, reducing the potential for seal failure due to misalignment or extrusion.

3. Integrated Seal and Bearing Systems:

- Hydraulic cylinders now incorporate integrated seal and bearing systems, where the sealing elements also serve as bearing surfaces. This design approach reduces the number of components and potential failure points, improving overall reliability. By integrating seals and bearings, the risk of seal damage or displacement due to excessive loads or misalignment is minimized, resulting in enhanced sealing performance and increased reliability.

4. Advanced Coatings and Surface Treatments:

- The application of advanced coatings and surface treatments to hydraulic cylinder components has significantly improved sealing and reliability. Coatings such as chrome plating or ceramic coatings enhance surface hardness, wear resistance, and corrosion resistance. These surface treatments provide a smoother and more durable surface for seals to operate against, reducing friction and improving sealing performance. Moreover, specialized coatings can also provide self-lubricating properties, reducing the need for additional lubrication and enhancing reliability.

5. Sealing System Monitoring and Diagnostic Technologies:

- The integration of monitoring and diagnostic technologies in hydraulic systems has revolutionized seal performance and reliability. Sensors and monitoring systems can detect and alert operators to potential seal failures or leaks before they escalate. Real-time monitoring of pressure, temperature, and seal performance parameters allows for proactive maintenance and early intervention, preventing costly downtime and ensuring optimal sealing and reliability.

6. Computational Modeling and Simulation:

- Computational modeling and simulation techniques have played a significant role in advancing hydraulic cylinder sealing and reliability. These tools enable engineers to analyze and optimize seal designs, fluid flow dynamics, and contact stresses. By simulating various operating conditions, potential issues such as seal extrusion, wear, or leakage can be identified and mitigated early in the design phase, resulting in improved sealing performance and enhanced reliability.

7. Systematic Maintenance Practices:

- Advances in hydraulic cylinder technology have also emphasized the importance of systematic maintenance practices to ensure sealing and overall system reliability. Regular inspection, lubrication, and replacement of seals, as well as routine system flushing and filtration, help prevent premature seal failure and optimize sealing performance. Implementing preventive maintenance schedules and adhering to recommended service intervals contribute to extended seal life and enhanced reliability.

In summary, advancements in hydraulic cylinder technology have led to significant improvements in sealing and reliability. High-performance sealing materials, enhanced seal designs, integrated seal and bearing systems, advanced coatings and surface treatments, sealing system monitoring and diagnostics, computational modeling and simulation, and systematic maintenance practices have all played key roles in achieving optimal sealing performance and increased reliability. These advancements have resulted in more efficient and dependable hydraulic systems, minimizing leakage, wear, and failure of seals, and ultimately improving the overall performance and longevity of hydraulic cylinders in diverse applications.

hydraulic cylinder

Contribution of Hydraulic Cylinders to the Precision of Robotic and Automation Systems

Hydraulic cylinders play a significant role in enhancing the precision of robotic and automation systems. These systems rely on precise and controlled movements to perform various tasks with accuracy and repeatability. Let's explore how hydraulic cylinders contribute to the precision of robotic and automation systems:

  1. Precise Positioning: Hydraulic cylinders enable precise positioning of robotic arms or automation components. They provide accurate control over the linear motion required for tasks such as picking, placing, and assembly. By precisely controlling the extension and retraction of the hydraulic cylinder, the system can achieve the desired position with high accuracy, ensuring precise alignment and consistent results.
  2. Controlled Motion: Hydraulic cylinders offer controlled and smooth motion, which is crucial for precise operation in robotic and automation systems. The flow of hydraulic fluid can be precisely regulated to control the speed and acceleration of the cylinder's movement. This precise control allows for gentle and controlled movements, minimizing vibrations, overshooting, or jerky motions that could affect the accuracy of the system.
  3. Force Control: Hydraulic cylinders provide force control capabilities that contribute to precision in robotic and automation systems. By adjusting the hydraulic pressure, the force exerted by the cylinder can be precisely controlled. This is particularly valuable in applications that require delicate force-sensitive tasks, such as gripping fragile objects or performing precise force feedback during assembly or testing processes.
  4. Load Handling: Hydraulic cylinders are capable of handling heavy loads, allowing robotic and automation systems to manipulate and transport objects with precision. The high force capabilities of hydraulic cylinders ensure secure and stable handling of loads, minimizing the risk of slippage or imprecise positioning. This is crucial in applications where precise control over heavy objects is required, such as material handling or industrial assembly processes.
  5. Durability and Reliability: Hydraulic cylinders are known for their durability and reliability in demanding industrial environments. The ability to withstand repeated use, high loads, and harsh conditions ensures consistent performance over time. This reliability contributes to the precision of robotic and automation systems, as any deviation or failure in the cylinder's movement could lead to inaccuracies or disruptions in the system's operation.

In summary, hydraulic cylinders make significant contributions to the precision of robotic and automation systems by enabling precise positioning, controlled motion, force control, load handling, and offering durability and reliability. These capabilities ensure accurate and repeatable movements, minimize errors, and enhance the overall precision of the system. By incorporating hydraulic cylinders into robotic and automation systems, manufacturers can achieve higher levels of precision, efficiency, and productivity in various industrial applications.

hydraulic cylinder

What is a hydraulic cylinder and how does it function in various applications?

A hydraulic cylinder is a mechanical actuator that converts hydraulic energy into linear force and motion. It plays a critical role in various applications where controlled and powerful linear motion is required. Hydraulic cylinders are commonly used in industries such as construction, manufacturing, agriculture, and transportation. Here's a detailed explanation of what a hydraulic cylinder is and how it functions:

Definition and Components:

- A hydraulic cylinder consists of a cylindrical barrel, a piston, a piston rod, and various seals. The barrel is a hollow tube that houses the piston and allows for fluid flow. The piston divides the cylinder into two chambers: the rod side and the cap side. The piston rod extends from the piston and provides a connection point for external loads. Seals are used to prevent fluid leakage and maintain hydraulic pressure within the cylinder.

Function:

- The function of a hydraulic cylinder is to convert the pressure and flow of hydraulic fluid into linear force and motion. The hydraulic fluid, typically oil, is pressurized and directed into one of the chambers of the cylinder. As the fluid enters the chamber, it applies pressure on the piston, causing it to move in a linear direction. This linear motion of the piston is transferred to the piston rod, creating a pushing or pulling force.

Working Principle:

- The working principle of a hydraulic cylinder is based on Pascal's law, which states that pressure exerted on a fluid in a confined space is transmitted equally in all directions. In a hydraulic cylinder, when hydraulic fluid is pumped into one side of the cylinder, it creates pressure on the piston. The pressure is transmitted through the fluid to the other side of the piston, resulting in a balanced force across the piston and piston rod. This force generates linear motion in the direction determined by the fluid input.

Applications:

- Hydraulic cylinders find extensive use in a wide range of applications due to their ability to generate high forces and precise control of linear motion. Some common applications include:

1. Construction Equipment: Hydraulic cylinders are used in excavators, loaders, bulldozers, and cranes for lifting, pushing, and digging tasks.

2. Manufacturing Machinery: Hydraulic cylinders are employed in presses, machine tools, and material handling equipment for pressing, clamping, and lifting operations.

3. Agricultural Machinery: Hydraulic cylinders are used in tractors, harvesters, and irrigation systems for tasks like steering, lifting, and controlling attachments.

4. Transportation: Hydraulic cylinders are utilized in vehicles such as dump trucks, garbage trucks, and forklifts for tilting, lifting, and tipping operations.

5. Aerospace and Defense: Hydraulic cylinders are employed in aircraft landing gear, missile systems, and hydraulic actuators for control surfaces.

6. Marine and Offshore: Hydraulic cylinders are used in ship steering systems, cranes, and offshore drilling equipment for various lifting and positioning tasks.

In these applications, hydraulic cylinders offer advantages such as high force capability, precise control, compact size, and durability. They provide efficient and reliable linear motion, contributing to enhanced productivity and functionality in a wide range of industries.

Overall, hydraulic cylinders are integral components in various applications where controlled and powerful linear motion is required. Their ability to convert hydraulic energy into mechanical force makes them invaluable in numerous industries, enabling the operation of heavy machinery, precise positioning, and efficient load handling.

China Custom Construction Machinery Parts High Torque Helac L20-Series Hydraulic Rotary Actuator Cylinder   vacuum pump booster	China Custom Construction Machinery Parts High Torque Helac L20-Series Hydraulic Rotary Actuator Cylinder   vacuum pump booster
editor by CX 2023-10-31

China Custom OEM ODM Cardan Transmission Tractor Parts Pto Drive Shaft for Agriculture Machinery

Product Description

OEM ODM Pto Drive Cardan Transmission Shaft Tractor Parts for Agriculture Machinery with Ce Certificate

1. Tubes or Pipes
We've already got Triangular profile tube and Lemon profile tube for all the series we provide.
And we have some star tube, splined tube and other profile tubes required by our customers (for a certain series). (Please notice that our catalog doesnt contain all the items we produce)
If you want tubes other than triangular or lemon, please provide drawings or pictures.

2.End yokes
We've got several types of quick release yokes and plain bore yoke. I will suggest the usual type for your reference.
You can also send drawings or pictures to us if you cannot find your item in our catalog.

3. Safety devices or clutches
I will attach the details of safety devices for your reference. We've already have Free wheel (RA), Ratchet torque limiter(SA), Shear bolt torque limiter(SB), 3types of friction torque limiter (FF,FFS,FCS) and overrunning couplers(adapters) (FAS).

4.For any other more special requirements with plastic guard, connection method, color of painting, package, etc., please feel free to let me know.

Features: 
1. We have been specialized in designing, manufacturing drive shaft, steering coupler shaft, universal joints, which have exported to the USA, Europe, Australia etc for years 
2. Application to all kinds of general mechanical situation 
3. Our products are of high intensity and rigidity. 
4. Heat resistant & Acid resistant 
5. OEM orders are welcomed

Our factory is a leading manufacturer of PTO shaft yoke and universal joint.

We manufacture high quality PTO yokes for various vehicles, construction machinery and equipment. All products are constructed with rotating lighter.

We are currently exporting our products throughout the world, especially to North America, South America, Europe, and Russia. If you are interested in any item, please do not hesitate to contact us. We are looking CHINAMFG to becoming your suppliers in the near future.
FAQ:
Q1: Are you trading company or manufacturer ?
A: We are factory.

Q2: How long is your delivery time and shipment?
1.Sample Lead-times: generally 10 workdays.
2.Production Lead-times: 20-40 workdays after getting your deposit.

Q3. What is your terms of payment?
A: T/T 30% as deposit, and 70% before delivery.

Q4: What is your advantages?
1. Manufacturer,the most competitive price and good quality.
2. Perfect technical engineers give you the best support.
3. OEM is available.
4. Rich stock and quick delivery.

Q5. If you can't find the product on our website,what do you next?
Please send us inquiry with product pictures and drawings by email or other ways and we'll check.

 

Type: Fork
Usage: Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying
Material: Carbon Steel
Power Source: Pto Shaft Tube
Transport Package: Standard Sea Worthy Package
Specification: ISO
Customization:
Available

|

Customized Request

pto shaft

How do PTO shafts handle variations in length and connection methods?

PTO (Power Take-Off) shafts are designed to handle variations in length and connection methods to accommodate different equipment setups and ensure efficient power transfer. PTO shafts need to be adjustable in length to bridge the distance between the power source and the driven machinery. Additionally, they must provide versatile connection methods to connect to a wide range of equipment. Here's a detailed explanation of how PTO shafts handle variations in length and connection methods:

1. Telescoping Design: PTO shafts often feature a telescoping design, allowing them to be adjusted in length to suit different equipment configurations. The telescoping feature enables the shaft to extend or retract, accommodating varying distances between the power source (such as a tractor or engine) and the driven machinery. By adjusting the length of the PTO shaft, it can be properly aligned and connected to ensure optimal power transfer. Telescoping PTO shafts typically consist of multiple tubular sections that slide into one another, providing flexibility in length adjustment.

2. Splined Shafts: PTO shafts commonly employ splined shafts as the primary connection method between the power source and driven machinery. Splines are a series of ridges or grooves along the shaft that interlock with corresponding grooves in the mating component. The splined connection allows for torque transfer while maintaining alignment between the power source and driven machinery. Splined shafts can handle variations in length by extending or retracting the telescoping sections while still maintaining a solid connection between the power source and the driven equipment.

3. Adjustable Sliding Yokes: PTO shafts typically feature adjustable sliding yokes on one or both ends of the shaft. These yokes allow for angular adjustment, accommodating variations in the alignment between the power source and driven machinery. The sliding yokes can be moved along the splined shaft to achieve the desired angle and maintain proper alignment. This flexibility ensures that the PTO shaft can handle length variations while ensuring efficient power transfer without placing excessive strain on the universal joints or other components.

4. Universal Joints: Universal joints are integral components of PTO shafts that allow for angular misalignment between the power source and driven machinery. They consist of a cross-shaped yoke with bearings that transmit torque between connected shafts while accommodating misalignment. Universal joints provide flexibility in connecting PTO shafts to equipment that may not be perfectly aligned. As the PTO shaft length varies, the universal joints compensate for the changes in angle, allowing for smooth power transmission even when there are variations in length or misalignment between the power source and driven machinery.

5. Coupling Mechanisms: PTO shafts utilize various coupling mechanisms to securely connect to the power source and driven machinery. These mechanisms often involve a combination of splines, bolts, locking pins, or quick-release mechanisms. The coupling methods can vary depending on the specific equipment and industry requirements. The versatility of PTO shafts allows for the use of different coupling methods, ensuring a reliable and secure connection regardless of the length variation or equipment configuration.

6. Customization Options: PTO shafts can be customized to handle specific length variations and connection methods. Manufacturers offer options to select different lengths of telescoping sections to match the specific distance between the power source and driven machinery. Additionally, PTO shafts can be tailored to accommodate various connection methods through the selection of splined shaft sizes, yoke designs, and coupling mechanisms. This customization enables PTO shafts to meet the specific requirements of different equipment setups, ensuring optimal power transfer and compatibility.

7. Safety Considerations: When handling variations in length and connection methods, it is essential to consider safety. PTO shafts incorporate protective guards and shields to prevent accidental contact with rotating components. These safety measures must be appropriately adjusted and installed to provide adequate coverage and protection, regardless of the PTO shaft's length or connection configuration. Safety guidelines and regulations should be followed to ensure the proper installation, adjustment, and use of PTO shafts in order to prevent accidents or injuries.

By incorporating telescoping designs, splined shafts, adjustable sliding yokes, universal joints, and versatile coupling mechanisms, PTO shafts can handle variations in length and connection methods. The flexibility of PTO shafts allows them to adapt to different equipment setups, ensuring efficient power transfer while maintaining alignment and safety.

pto shaft

Can PTO shafts be customized for specific machinery and power requirements?

Yes, PTO (Power Take-Off) shafts can be customized to meet the specific machinery and power requirements of different applications. Manufacturers offer customization options to ensure that PTO shafts are precisely tailored to the power source, driven machinery, and the intended application. Here's a detailed explanation of how PTO shafts can be customized:

1. Shaft Length: PTO shafts can be customized in terms of length to accommodate different equipment configurations. The length of the PTO shaft is critical to ensure proper alignment and connection between the power source and driven machinery. Manufacturers can provide PTO shafts with adjustable or fixed-length options, allowing for flexibility in meeting specific length requirements. Customizing the shaft length ensures that the PTO shaft fits the equipment properly, optimizing power transfer efficiency and reducing the risk of misalignment or excessive stress.

2. Spline Sizes: PTO shafts are available with different spline sizes to match the input and output shafts of various equipment. Spline size customization allows the PTO shaft to seamlessly connect to the power source and driven machinery. Manufacturers can offer different spline configurations, such as 1-3/8 inch, 1-3/4 inch, or metric sizes, to accommodate specific machinery requirements. Customizing the spline size ensures a proper fit and secure connection, enabling efficient power transfer without the need for additional adapters or modifications.

3. Yoke Designs: PTO shafts can be customized with different yoke designs to match the connection points on the power source and driven machinery. The yoke is the component that attaches to the shaft and connects to the equipment. Manufacturers can provide various yoke designs, such as round, triangular, or splined yokes, to ensure compatibility with specific machinery. Customizing the yoke design allows for a secure and reliable connection, aligning the PTO shaft with the equipment's input/output shafts and optimizing power transmission efficiency.

4. Torque Ratings: PTO shafts can be customized to handle specific torque requirements based on the power demands of the application. Torque is the rotational force that the PTO shaft needs to transmit from the power source to the driven machinery. Manufacturers can design PTO shafts with different torque ratings by using appropriate materials, dimensions, and reinforcement techniques. Customizing the torque rating ensures that the PTO shaft can safely and reliably handle the required power levels without premature wear or failure.

5. Coupling Mechanisms: PTO shafts can be customized with different coupling mechanisms to match the connection requirements of specific equipment. Coupling mechanisms are the means by which the PTO shaft connects and disconnects from the power source and driven machinery. Manufacturers can provide various coupling options, such as quick-release couplings, shear pin couplings, or mechanical lock couplings, to accommodate different machinery designs and operational needs. Customizing the coupling mechanism ensures ease of use, secure attachment, and quick disengagement when necessary.

6. Protective Features: PTO shafts can be customized with additional protective features to enhance safety and durability. These features may include guard shields, safety covers, or slip clutches. Guard shields and safety covers provide physical protection by enclosing the rotating shaft and preventing accidental contact, reducing the risk of injuries. Slip clutches offer overload protection by allowing the PTO shaft to slip or disengage when excessive torque or resistance is encountered, preventing damage to the shaft and associated equipment. Customizing the protective features ensures compliance with safety regulations and addresses specific safety requirements of the machinery or application.

7. Material Selection: PTO shafts can be customized with different materials based on the application's demands. Manufacturers can offer a range of material options, such as steel, aluminum, or composite materials, with varying strength, weight, and corrosion resistance properties. Customizing the material selection allows for optimizing the PTO shaft's performance, considering factors like operating conditions, environmental exposure, and weight restrictions.

By providing customization options such as shaft length, spline sizes, yoke designs, torque ratings, coupling mechanisms, protective features, and material selection, manufacturers can ensure that PTO shafts are specifically tailored to meet the machinery and power requirements of different applications. Customized PTO shafts facilitate seamless integration, efficient power transfer, and reliable operation, enhancing the overall performance and productivity of the equipment.

pto shaft

How do PTO shafts handle variations in speed and torque requirements?

PTO shafts (Power Take-Off shafts) are designed to handle variations in speed and torque requirements between the power source (such as a tractor or engine) and the driven machinery or equipment. They incorporate various mechanisms and components to ensure efficient power transmission while accommodating the different speed and torque demands. Here's a detailed explanation of how PTO shafts handle variations in speed and torque requirements:

1. Gearbox Systems: PTO shafts often incorporate gearbox systems to match the speed and torque requirements between the power source and the driven machinery. Gearboxes allow for speed reduction or increase and can also change the rotational direction if necessary. By using different gear ratios, PTO shafts can adapt the rotational speed and torque output to suit the specific requirements of the driven equipment. Gearbox systems enable PTO shafts to provide the necessary power and speed compatibility between the power source and the machinery they drive.

2. Shear Bolt Mechanisms: Some PTO shafts, particularly in applications where sudden overloads or shock loads are expected, use shear bolt mechanisms. These mechanisms are designed to protect the driveline components from damage by disconnecting the PTO shaft in case of excessive torque or sudden resistance. Shear bolts are designed to break at a specific torque threshold, ensuring that the PTO shaft separates before the driveline components suffer damage. By incorporating shear bolt mechanisms, PTO shafts can handle variations in torque requirements and provide a safety feature to protect the equipment.

3. Friction Clutches: PTO shafts may incorporate friction clutch systems to enable smooth engagement and disengagement of power transfer. Friction clutches use a disc and pressure plate mechanism to control the transmission of power. Operators can gradually engage or disengage the power transfer by adjusting the pressure on the friction disc. This feature allows for precise control over torque transmission, accommodating variations in torque requirements while minimizing shock loads on the driveline components. Friction clutches are commonly used in applications where smooth power engagement is essential, such as in hydraulic pumps, generators, and industrial mixers.

4. Constant Velocity (CV) Joints: In cases where the driven machinery requires a significant range of movement or articulation, PTO shafts may incorporate Constant Velocity (CV) joints. CV joints allow the PTO shaft to accommodate misalignment and angular variations without affecting power transmission. These joints provide a smooth and constant power transfer even when the driven machinery is at an angle relative to the power source. CV joints are commonly used in applications such as articulated loaders, telescopic handlers, and self-propelled sprayers, where the machinery requires flexibility and a wide range of movement.

5. Telescopic Designs: Some PTO shafts feature telescopic designs that allow for length adjustment. These shafts consist of two or more concentric shafts that slide within each other, providing the ability to extend or retract the PTO shaft as needed. Telescopic designs accommodate variations in the distance between the power source and the driven machinery. By adjusting the length of the PTO shaft, operators can ensure proper power transmission without the risk of the shaft dragging on the ground or being too short to reach the equipment. Telescopic PTO shafts are commonly used in applications where the distance between the power source and the implement varies, such as in front-mounted implements, snow blowers, and self-loading wagons.

By incorporating these mechanisms and designs, PTO shafts can handle variations in speed and torque requirements effectively. They provide the necessary flexibility, safety, and control to ensure efficient power transmission between the power source and the driven machinery. PTO shafts play a critical role in adapting power to meet the specific needs of various equipment and applications.

China Custom OEM ODM Cardan Transmission Tractor Parts Pto Drive Shaft for Agriculture Machinery  China Custom OEM ODM Cardan Transmission Tractor Parts Pto Drive Shaft for Agriculture Machinery
editor by CX 2023-09-15

China OEM OEM ODM Cardan Transmission Tractor Parts Pto Drive Shaft for Agriculture Machinery

Product Description

OEM ODM Pto Drive Cardan Transmission Shaft Tractor Parts for Agriculture Machinery with Ce Certificate

1. Tubes or Pipes
We've already got Triangular profile tube and Lemon profile tube for all the series we provide.
And we have some star tube, splined tube and other profile tubes required by our customers (for a certain series). (Please notice that our catalog doesnt contain all the items we produce)
If you want tubes other than triangular or lemon, please provide drawings or pictures.

2.End yokes
We've got several types of quick release yokes and plain bore yoke. I will suggest the usual type for your reference.
You can also send drawings or pictures to us if you cannot find your item in our catalog.

3. Safety devices or clutches
I will attach the details of safety devices for your reference. We've already have Free wheel (RA), Ratchet torque limiter(SA), Shear bolt torque limiter(SB), 3types of friction torque limiter (FF,FFS,FCS) and overrunning couplers(adapters) (FAS).

4.For any other more special requirements with plastic guard, connection method, color of painting, package, etc., please feel free to let me know.

Features: 
1. We have been specialized in designing, manufacturing drive shaft, steering coupler shaft, universal joints, which have exported to the USA, Europe, Australia etc for years 
2. Application to all kinds of general mechanical situation 
3. Our products are of high intensity and rigidity. 
4. Heat resistant & Acid resistant 
5. OEM orders are welcomed

Our factory is a leading manufacturer of PTO shaft yoke and universal joint.

We manufacture high quality PTO yokes for various vehicles, construction machinery and equipment. All products are constructed with rotating lighter.

We are currently exporting our products throughout the world, especially to North America, South America, Europe, and Russia. If you are interested in any item, please do not hesitate to contact us. We are looking CZPT to becoming your suppliers in the near future.
FAQ:
Q1: Are you trading company or manufacturer ?
A: We are factory.

Q2: How long is your delivery time and shipment?
1.Sample Lead-times: generally 10 workdays.
2.Production Lead-times: 20-40 workdays after getting your deposit.

Q3. What is your terms of payment?
A: T/T 30% as deposit, and 70% before delivery.

Q4: What is your advantages?
1. Manufacturer,the most competitive price and good quality.
2. Perfect technical engineers give you the best support.
3. OEM is available.
4. Rich stock and quick delivery.

Q5. If you can't find the product on our website,what do you next?
Please send us inquiry with product pictures and drawings by email or other ways and we'll check.

 

Type: Fork
Usage: Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying
Material: Carbon Steel
Power Source: Pto Shaft Tube
Transport Package: Standard Sea Worthy Package
Specification: ISO
Customization:
Available

|

Customized Request

pto shaft

Are there any limitations or disadvantages associated with drive shafts?

While drive shafts are widely used and offer several advantages, they also have certain limitations and disadvantages that should be considered. Here's a detailed explanation of the limitations and disadvantages associated with drive shafts:

1. Length and Misalignment Constraints:

Drive shafts have a maximum practical length due to factors such as material strength, weight considerations, and the need to maintain rigidity and minimize vibrations. Longer drive shafts can be prone to increased bending and torsional deflection, leading to reduced efficiency and potential driveline vibrations. Additionally, drive shafts require proper alignment between the driving and driven components. Misalignment can cause increased wear, vibrations, and premature failure of the drive shaft or its associated components.

2. Limited Operating Angles:

Drive shafts, especially those using U-joints, have limitations on operating angles. U-joints are typically designed to operate within specific angular ranges, and operating beyond these limits can result in reduced efficiency, increased vibrations, and accelerated wear. In applications requiring large operating angles, constant velocity (CV) joints are often used to maintain a constant speed and accommodate greater angles. However, CV joints may introduce higher complexity and cost compared to U-joints.

3. Maintenance Requirements:

Drive shafts require regular maintenance to ensure optimal performance and reliability. This includes periodic inspection, lubrication of joints, and balancing if necessary. Failure to perform routine maintenance can lead to increased wear, vibrations, and potential driveline issues. Maintenance requirements should be considered in terms of time and resources when using drive shafts in various applications.

4. Noise and Vibration:

Drive shafts can generate noise and vibrations, especially at high speeds or when operating at certain resonant frequencies. Imbalances, misalignment, worn joints, or other factors can contribute to increased noise and vibrations. These vibrations may affect the comfort of vehicle occupants, contribute to component fatigue, and require additional measures such as dampers or vibration isolation systems to mitigate their effects.

5. Weight and Space Constraints:

Drive shafts add weight to the overall system, which can be a consideration in weight-sensitive applications, such as automotive or aerospace industries. Additionally, drive shafts require physical space for installation. In compact or tightly packaged equipment or vehicles, accommodating the necessary drive shaft length and clearances can be challenging, requiring careful design and integration considerations.

6. Cost Considerations:

Drive shafts, depending on their design, materials, and manufacturing processes, can involve significant costs. Customized or specialized drive shafts tailored to specific equipment requirements may incur higher expenses. Additionally, incorporating advanced joint configurations, such as CV joints, can add complexity and cost to the drive shaft system.

7. Inherent Power Loss:

Drive shafts transmit power from the driving source to the driven components, but they also introduce some inherent power loss due to friction, bending, and other factors. This power loss can reduce overall system efficiency, particularly in long drive shafts or applications with high torque requirements. It is important to consider power loss when determining the appropriate drive shaft design and specifications.

8. Limited Torque Capacity:

While drive shafts can handle a wide range of torque loads, there are limits to their torque capacity. Exceeding the maximum torque capacity of a drive shaft can lead to premature failure, resulting in downtime and potential damage to other driveline components. It is crucial to select a drive shaft with sufficient torque capacity for the intended application.

Despite these limitations and disadvantages, drive shafts remain a widely used and effective means of power transmission in various industries. Manufacturers continuously work to address these limitations through advancements in materials, design techniques, joint configurations, and balancing processes. By carefully considering the specific application requirements and potential drawbacks, engineers and designers can mitigate the limitations and maximize the benefits of drive shafts in their respective systems.

pto shaft

How do drive shafts enhance the performance of automobiles and trucks?

Drive shafts play a significant role in enhancing the performance of automobiles and trucks. They contribute to various aspects of vehicle performance, including power delivery, traction, handling, and overall efficiency. Here's a detailed explanation of how drive shafts enhance the performance of automobiles and trucks:

1. Power Delivery: Drive shafts are responsible for transmitting power from the engine to the wheels, enabling the vehicle to move forward. By efficiently transferring power without significant losses, drive shafts ensure that the engine's power is effectively utilized, resulting in improved acceleration and overall performance. Well-designed drive shafts with minimal power loss contribute to the vehicle's ability to deliver power to the wheels efficiently.

2. Torque Transfer: Drive shafts facilitate the transfer of torque from the engine to the wheels. Torque is the rotational force that drives the vehicle forward. High-quality drive shafts with proper torque conversion capabilities ensure that the torque generated by the engine is effectively transmitted to the wheels. This enhances the vehicle's ability to accelerate quickly, tow heavy loads, and climb steep gradients, thereby improving overall performance.

3. Traction and Stability: Drive shafts contribute to the traction and stability of automobiles and trucks. They transmit power to the wheels, allowing them to exert force on the road surface. This enables the vehicle to maintain traction, especially during acceleration or when driving on slippery or uneven terrain. The efficient power delivery through the drive shafts enhances the vehicle's stability by ensuring balanced power distribution to all wheels, improving control and handling.

4. Handling and Maneuverability: Drive shafts have an impact on the handling and maneuverability of vehicles. They help establish a direct connection between the engine and the wheels, allowing for precise control and responsive handling. Well-designed drive shafts with minimal play or backlash contribute to a more direct and immediate response to driver inputs, enhancing the vehicle's agility and maneuverability.

5. Weight Reduction: Drive shafts can contribute to weight reduction in automobiles and trucks. Lightweight drive shafts made from materials such as aluminum or carbon fiber-reinforced composites reduce the overall weight of the vehicle. The reduced weight improves the power-to-weight ratio, resulting in better acceleration, handling, and fuel efficiency. Additionally, lightweight drive shafts reduce the rotational mass, allowing the engine to rev up more quickly, further enhancing performance.

6. Mechanical Efficiency: Efficient drive shafts minimize energy losses during power transmission. By incorporating features such as high-quality bearings, low-friction seals, and optimized lubrication, drive shafts reduce friction and minimize power losses due to internal resistance. This enhances the mechanical efficiency of the drivetrain system, allowing more power to reach the wheels and improving overall vehicle performance.

7. Performance Upgrades: Drive shaft upgrades can be popular performance enhancements for enthusiasts. Upgraded drive shafts, such as those made from stronger materials or with enhanced torque capacity, can handle higher power outputs from modified engines. These upgrades allow for increased performance, such as improved acceleration, higher top speeds, and better overall driving dynamics.

8. Compatibility with Performance Modifications: Performance modifications, such as engine upgrades, increased power output, or changes to the drivetrain system, often require compatible drive shafts. Drive shafts designed to handle higher torque loads or adapt to modified drivetrain configurations ensure optimal performance and reliability. They enable the vehicle to effectively harness the increased power and torque, resulting in improved performance and responsiveness.

9. Durability and Reliability: Robust and well-maintained drive shafts contribute to the durability and reliability of automobiles and trucks. They are designed to withstand the stresses and loads associated with power transmission. High-quality materials, appropriate balancing, and regular maintenance help ensure that drive shafts operate smoothly, minimizing the risk of failures or performance issues. Reliable drive shafts enhance the overall performance by providing consistent power delivery and minimizing downtime.

10. Compatibility with Advanced Technologies: Drive shafts are evolving in tandem with advancements in vehicle technologies. They are increasingly being integrated with advanced systems such as hybrid powertrains, electric motors, and regenerative braking. Drive shafts designed to work seamlessly with these technologies maximize their efficiency and performance benefits, contributing to improved overall vehicle performance.

In summary, drive shafts enhance the performance of automobiles and trucks by optimizing power delivery, facilitating torque transfer, improving traction and stability, enhancing handling and maneuverability, reducing weight, increasing mechanical efficiency, enabling compatibility with performance upgrades and advanced technologies, and ensuring durability and reliability. They play a crucial role in ensuring efficient power transmission, responsive acceleration, precise handling, and overall improved performance of vehicles.

pto shaft

How do drive shafts handle variations in length and torque requirements?

Drive shafts are designed to handle variations in length and torque requirements in order to efficiently transmit rotational power. Here's an explanation of how drive shafts address these variations:

Length Variations:

Drive shafts are available in different lengths to accommodate varying distances between the engine or power source and the driven components. They can be custom-made or purchased in standardized lengths, depending on the specific application. In situations where the distance between the engine and the driven components is longer, multiple drive shafts with appropriate couplings or universal joints can be used to bridge the gap. These additional drive shafts effectively extend the overall length of the power transmission system.

Additionally, some drive shafts are designed with telescopic sections. These sections can be extended or retracted, allowing for adjustments in length to accommodate different vehicle configurations or dynamic movements. Telescopic drive shafts are commonly used in applications where the distance between the engine and the driven components may change, such as in certain types of trucks, buses, and off-road vehicles.

Torque Requirements:

Drive shafts are engineered to handle varying torque requirements based on the power output of the engine or power source and the demands of the driven components. The torque transmitted through the drive shaft depends on factors such as the engine power, load conditions, and the resistance encountered by the driven components.

Manufacturers consider torque requirements when selecting the appropriate materials and dimensions for drive shafts. Drive shafts are typically made from high-strength materials, such as steel or aluminum alloys, to withstand the torque loads without deformation or failure. The diameter, wall thickness, and design of the drive shaft are carefully calculated to ensure it can handle the expected torque without excessive deflection or vibration.

In applications with high torque demands, such as heavy-duty trucks, industrial machinery, or performance vehicles, drive shafts may have additional reinforcements. These reinforcements can include thicker walls, cross-sectional shapes optimized for strength, or composite materials with superior torque-handling capabilities.

Furthermore, drive shafts often incorporate flexible joints, such as universal joints or constant velocity (CV) joints. These joints allow for angular misalignment and compensate for variations in the operating angles between the engine, transmission, and driven components. They also help absorb vibrations and shocks, reducing stress on the drive shaft and enhancing its torque-handling capacity.

In summary, drive shafts handle variations in length and torque requirements through customizable lengths, telescopic sections, appropriate materials and dimensions, and the inclusion of flexible joints. By carefully considering these factors, drive shafts can efficiently and reliably transmit power while accommodating the specific needs of different applications.

China OEM OEM ODM Cardan Transmission Tractor Parts Pto Drive Shaft for Agriculture Machinery  China OEM OEM ODM Cardan Transmission Tractor Parts Pto Drive Shaft for Agriculture Machinery
editor by CX 2023-09-15

China supplier Mechanical Parts Transmission/Starter/CNC Machining/Drive Gears/Agricultural Machinery Use Power Shaft Pto and Transmission Shaft 7

Product Description

Company Profile

 

HangZhou Xihu (West Lake) Dis. East Port Gear Manufacturing factory is located in Zhoujia Industrial Zone, CHINAMFG Town, HangZhou, 3km away from Xihu (West Lake) Dis.qian Lake. It focuses on precision gear research, development, production and sales. The factory has obtained ISO9001: 2015 certificate, IATF16949:2016. The main export markets were North America, South America and Europe. Products can be customized and mainly includes: New Energy Motor Shaft, Oil Pump Gear, Agricultural Machinery Gear, Transmission Gear, Electric Vehicle gear, etc. We are sincerely willing to cooperate with enterprises from all over the world. 

Equipment And Main Products

Certifications

FAQ

Q1:How is the quality of your product?
A:Our product has reliable quality,  high wear life

Q2:Customization process/work flow?
Advisory - Material selection - 2D/3D Drawing - Quotation - Payment - Production - Quality Control - Package - Delivery

Q3: What is your terms of packing?
A:Generally, we pack our goods in wooden cases, If you have special request about packing, pls negotiate with us in advance, we can pack the goods as your request.

Q4:Price?
A:We will offer competitive price after receiving your drawing

Q5:What is your terms of payment?

A:30% T/T advanced, 70% T/T before shipping

Q6:What is your terms of delivery?
A: FOB

Q7:What drawing software does your company use?
A:CAXA

Q8:Do you test all your goods before delivery?
A: Yes, we have 100% test before delivery

Q9:How about your delivery time?
A:Product can often be delivered within 40-90 days

Q10:Sample?
A:We offer paid sample.If you have sample requirements, please feel free to contact us at any time

Q11:What logistics packaging does your company use?
A:Express for urgent orders. UPS, FedEx, DHL, TNT, EMS.

Q12:Application range?
A:Automotive, medical, automation, agricultural, marine, etc.
 

Q13: How do you make our business long-term and good relationship?
A:1. We keep good quality and competitive price to ensure our customers benefit ;
   2. We respect every customer as our friend and we sincerely do business and make friends with them, 
   no matter where they come from.

Parameter specifications

 

Certification Shipment Quality material Company System Certification
IATF16949 in time high steel ISO9001

 

 

Shipping Cost:

Estimated freight per unit.



To be negotiated
Application: Motor, Electric Cars, Motorcycle, Machinery, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Gear Position: External Gear
Samples:
US$ 50/Piece
1 Piece(Min.Order)

|

Order Sample

customized version
Customization:
Available

|

Customized Request

pto shaft

Are there variations in PTO shaft designs for different types of machinery?

Yes, there are variations in PTO (Power Take-Off) shaft designs to accommodate the specific requirements of different types of machinery. PTO shafts are highly versatile and adaptable components used to transfer power from a power source, such as a tractor or engine, to driven machinery or equipment. The design variations in PTO shafts are necessary to ensure compatibility, efficiency, and safety in various applications. Here's a detailed explanation of the different PTO shaft designs for different types of machinery:

1. Standard PTO Shafts: Standard PTO shafts are the most common design and are widely used in a variety of applications. They typically consist of a solid steel shaft with a universal joint at each end. These universal joints allow for angular misalignment between the power source and the driven machinery. Standard PTO shafts are suitable for applications where the distance between the power source and the driven machinery remains relatively fixed. They are commonly used in agricultural implements, such as mowers, balers, tillers, and seeders, as well as in industrial applications.

2. Telescopic PTO Shafts: Telescopic PTO shafts feature a telescoping design that allows for length adjustment. These shafts consist of two or more concentric shafts that can slide within each other. Telescopic PTO shafts are beneficial in applications where the distance between the power source and the driven machinery varies. By adjusting the length of the shaft, operators can ensure proper power transmission without the risk of the shaft dragging on the ground or being too short to reach the equipment. Telescopic PTO shafts are commonly used in front-mounted implements, snow blowers, self-loading wagons, and other applications where the distance between the power source and the implement changes.

3. CV (Constant Velocity) PTO Shafts: CV PTO shafts incorporate Constant Velocity joints to accommodate misalignment and angular variations. These joints maintain a constant speed and torque transfer even when the driven machinery is at an angle relative to the power source. CV PTO shafts are beneficial in applications where the driven machinery requires flexibility and a wide range of movement. They are commonly used in articulated loaders, telescopic handlers, self-propelled sprayers, and other equipment that requires continuous power transmission while operating at various angles.

4. Gearbox Driven PTO Shafts: Some machinery requires specific speed or torque ratios between the power source and the driven equipment. In such cases, PTO shafts may incorporate gearbox systems. Gearbox driven PTO shafts allow for speed reduction or increase and can change the rotational direction if necessary. The gear ratios in the gearbox can be adjusted to match the speed and torque requirements of the driven machinery. These PTO shafts are commonly used in applications where the power source operates at a different speed or torque level than the equipment it drives, such as in certain industrial manufacturing processes and specialized machinery.

5. High-Torque PTO Shafts: Some heavy-duty machinery requires high torque levels for power transmission. High-torque PTO shafts are designed to handle these demanding applications. They are constructed with reinforced components, including larger diameter shafts and heavier-duty universal joints, to withstand the increased torque requirements. High-torque PTO shafts are commonly used in equipment such as wood chippers, crushers, and heavy-duty agricultural implements that require substantial power and torque for their operation.

6. Safety PTO Shafts: Safety is a crucial consideration when using PTO shafts. Safety PTO shafts incorporate mechanisms to reduce the risk of accidents and injuries. One common safety feature is the use of protective guards that cover the rotating shaft to prevent accidental contact. These guards are typically made of metal or plastic and are designed to shield the rotating components while allowing the necessary movement for power transmission. Safety PTO shafts are used in various applications where the risk of entanglement or accidental contact with the rotating shaft is high, such as in grass mowers, rotary cutters, and other equipment used in landscaping and agriculture.

These are some of the key variations in PTO shaft designs for different types of machinery. The specific design used depends on factors such as the application requirements, power source characteristics, torque levels, movement flexibility, and safety considerations. PTO shaft manufacturers offer a range of designs to ensure compatibility and efficient power transmission in diverse industries and applications.

pto shaft

How do PTO shafts handle variations in load and torque during operation?

PTO (Power Take-Off) shafts are designed to handle variations in load and torque during operation by employing specific mechanisms and features that ensure efficient power transfer and protection against overload conditions. Here's a detailed explanation of how PTO shafts handle variations in load and torque:

1. Mechanical Design: PTO shafts are engineered with robust mechanical design principles that enable them to handle variations in load and torque. They are typically constructed using high-strength materials such as steel, which provides durability and resistance to bending or twisting forces. The shaft's diameter, wall thickness, and overall dimensions are carefully calculated to withstand the expected torque levels and load variations. The mechanical design of the PTO shaft ensures that it can transmit power reliably and accommodate the dynamic forces encountered during operation.

2. Universal Joints: Universal joints are a key component of PTO shafts that allow for flexibility and compensation of misalignment between the power source and driven machinery. These joints can accommodate variations in angular alignment, which may occur due to changes in load or movement of the machinery. Universal joints consist of a cross-shaped yoke with needle bearings that allow for smooth rotation and transfer of torque, even when the shafts are not perfectly aligned. The design of universal joints enables PTO shafts to handle variations in load and torque while maintaining consistent power transmission.

3. Slip Clutches: Slip clutches are often incorporated into PTO shafts to provide overload protection. These clutches allow the PTO shaft to slip or disengage momentarily when excessive torque or resistance is encountered. Slip clutches typically consist of friction plates that can be adjusted to a specific torque setting. When the torque surpasses the predetermined limit, the clutch slips, preventing damage to the PTO shaft and connected equipment. Slip clutches are particularly useful when sudden changes in load or torque occur, providing a safety mechanism to protect the PTO shaft and associated machinery.

4. Torque Limiters: Torque limiters are another protective feature found in some PTO shafts. These devices are designed to automatically disengage the power transmission when a predetermined torque threshold is exceeded. Torque limiters can be mechanical, such as shear pin couplings or friction clutches, or electronic, utilizing sensors and control systems. When the torque exceeds the set limit, the torque limiter disengages, preventing further power transfer and protecting the PTO shaft from overload conditions. Torque limiters are effective in handling sudden spikes in torque and safeguarding the PTO shaft and associated equipment.

5. Maintenance and Inspection: Regular maintenance and inspection of PTO shafts are essential to ensure their proper functioning and ability to handle variations in load and torque. Routine maintenance includes lubrication of universal joints, inspection of shaft integrity, and tightening of fasteners. Regular inspections allow for early detection of wear, misalignment, or other issues that may affect the PTO shaft's performance. By addressing maintenance and inspection requirements, operators can identify and address any concerns that may arise due to variations in load and torque, ensuring the continued safe and efficient operation of the PTO shaft.

6. Operator Awareness and Control: Operators play a crucial role in managing variations in load and torque during PTO shaft operation. They should be aware of the machinery's operational limits, including the recommended torque ratings and load capacities of the PTO shaft. Proper training and understanding of the equipment's capabilities enable operators to make informed decisions and adjust the operation when encountering significant load or torque changes. Operators should also be vigilant in monitoring the equipment's performance, watching for any signs of excessive vibration, noise, or other indications of potential issues related to load and torque variations.

By incorporating robust mechanical design, utilizing universal joints, slip clutches, torque limiters, and implementing proper maintenance practices, PTO shafts are equipped to handle variations in load and torque during operation. These features ensure reliable power transmission, protect against overload conditions, and contribute to the safe and efficient functioning of the PTO shaft and the machinery it drives.

pto shaft

Can you explain the different types of PTO shafts and their applications?

PTO shafts (Power Take-Off shafts) come in various types, each designed for specific applications and requirements. The different types of PTO shafts offer versatility and compatibility with a wide range of machinery and implements. Here's an explanation of the most common types of PTO shafts and their applications:

1. Standard PTO Shaft: The standard PTO shaft, also known as a splined shaft, is the most common type used in agricultural and industrial machinery. It consists of a solid steel shaft with splines or grooves along its length. The standard PTO shaft typically has six splines, although variations with four or eight splines can be found. This type of PTO shaft is widely used in tractors and various implements, including mowers, balers, tillers, and rotary cutters. The splines provide a secure connection between the power source and the driven machinery, ensuring efficient power transfer.

2. Shear Bolt PTO Shaft: Shear bolt PTO shafts are designed with a safety feature that allows the shaft to separate in case of overload or sudden shock to protect the driveline components. These PTO shafts incorporate a shear bolt mechanism that connects the tractor's power take-off to the driven machinery. In the event of excessive load or sudden resistance, the shear bolt is designed to break, disconnecting the PTO shaft and preventing damage to the driveline. Shear bolt PTO shafts are commonly used in equipment that may encounter sudden obstructions or high-stress situations, such as wood chippers, stump grinders, and heavy-duty rotary cutters.

3. Friction Clutch PTO Shaft: Friction clutch PTO shafts feature a clutch mechanism that allows for smooth engagement and disengagement of the power transfer. These PTO shafts typically incorporate a friction disc and a pressure plate, similar to a traditional vehicle clutch system. The friction clutch allows operators to gradually engage or disengage the power transfer, reducing shock loads and minimizing wear on the driveline components. Friction clutch PTO shafts are commonly used in applications where precise control of power engagement is required, such as in hydraulic pumps, generators, and industrial mixers.

4. Constant Velocity (CV) PTO Shaft: Constant Velocity (CV) PTO shafts, also known as homokinetic shafts, are designed to accommodate high angles of misalignment without affecting power transmission. They use a universal joint mechanism that allows for smooth power transfer even when the driven machinery is at an angle relative to the power source. CV PTO shafts are frequently used in applications where the machinery requires a significant range of movement or articulation, such as in articulated loaders, telescopic handlers, and self-propelled sprayers.

5. Telescopic PTO Shaft: Telescopic PTO shafts are adjustable in length, allowing for flexibility in equipment configuration and varying distances between the power source and the driven machinery. They consist of two or more concentric shafts that slide within each other, providing the ability to extend or retract the PTO shaft as needed. Telescopic PTO shafts are commonly used in applications where the distance between the tractor's power take-off and the implement varies, such as in front-mounted implements, snow blowers, and self-loading wagons. The telescopic design enables easy adaptation to different equipment setups and minimizes the risk of the PTO shaft dragging on the ground.

6. Gearbox PTO Shaft: Gearbox PTO shafts are designed to adapt power transmission between different rotational speeds or directions. They incorporate a gearbox mechanism that allows for speed reduction or increase, as well as the ability to change rotational direction. Gearbox PTO shafts are commonly used in applications where the driven machinery requires a different speed or rotational direction than the tractor's power take-off. Examples include grain augers, feed mixers, and industrial equipment that requires specific speed ratios or reversing capabilities.

It's important to note that the availability and specific applications of PTO shaft types may vary based on regional and industry-specific factors. Additionally, certain machinery or implements may require specialized or custom PTO shafts to meet specific requirements.

In summary, the different types of PTO shafts, such as standard, shear bolt, friction clutch, constant velocity (CV), telescopic, and gearbox shafts, offer versatility and compatibility with various machinery and implements. Each type of PTO shaft is designed to address specific needs, such as power transfer efficiency, safety, smooth engagement, misalignment tolerance, adaptability, and speed/direction adjustment. Understanding the different types of PTO shafts and their applications is crucial for selecting the appropriate shaft forthe intended machinery and ensuring optimal performance and reliability.
China supplier Mechanical Parts Transmission/Starter/CNC Machining/Drive Gears/Agricultural Machinery Use Power Shaft Pto and Transmission Shaft 7  China supplier Mechanical Parts Transmission/Starter/CNC Machining/Drive Gears/Agricultural Machinery Use Power Shaft Pto and Transmission Shaft 7
editor by CX 2023-09-15

China Standard Drive Gear Pto and Transmission Shaft Factory Steel Precision Agricultural Machinery Use Power Transmission Shaft Transmission Shaft Factory Steel Precision51 Pto Parts

Product Description

 

Company Profile

 

HangZhou Xihu (West Lake) Dis. East Port Gear Manufacturing factory is located in Zhoujia Industrial Zone, CHINAMFG Town, HangZhou, 3km away from Xihu (West Lake) Dis.qian Lake. It focuses on precision gear research, development, production and sales. The factory has obtained ISO9001: 2015 certificate, IATF16949:2016. The main export markets were North America, South America and Europe. Products can be customized and mainly includes: New Energy Motor Shaft, Oil Pump Gear, Agricultural Machinery Gear, Transmission Gear, Electric Vehicle gear, etc. We are sincerely willing to cooperate with enterprises from all over the world. 

Equipment And Main Products

Certifications

FAQ

Q1:How is the quality of your product?
A:Our product has reliable quality,  high wear life

Q2:Customization process/work flow?
Advisory - Material selection - 2D/3D Drawing - Quotation - Payment - Production - Quality Control - Package - Delivery

Q3: What is your terms of packing?
A:Generally, we pack our goods in wooden cases, If you have special request about packing, pls negotiate with us in advance, we can pack the goods as your request.

Q4:Price?
A:We will offer competitive price after receiving your drawing

Q5:What is your terms of payment?

A:30% T/T advanced, 70% T/T before shipping

Q6:What is your terms of delivery?
A: FOB

Q7:What drawing software does your company use?
A:CAXA

Q8:Do you test all your goods before delivery?
A: Yes, we have 100% test before delivery

Q9:How about your delivery time?
A:Product can often be delivered within 40-90 days

Q10:Sample?
A:We offer paid sample.If you have sample requirements, please feel free to contact us at any time

Q11:What logistics packaging does your company use?
A:Express for urgent orders. UPS, FedEx, DHL, TNT, EMS.

Q12:Application range?
A:Automotive, medical, automation, agricultural, marine, etc.
 

Q13: How do you make our business long-term and good relationship?
A:1. We keep good quality and competitive price to ensure our customers benefit ;
   2. We respect every customer as our friend and we sincerely do business and make friends with them, 
   no matter where they come from.

 

Shipping Cost:

Estimated freight per unit.



To be negotiated
Application: Motor, Electric Cars, Motorcycle, Machinery, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Gear Position: Internal Gear
Samples:
US$ 50/Piece
1 Piece(Min.Order)

|

Order Sample

Customization:
Available

|

Customized Request

pto shaft

Ensuring Quality and Compatibility of PTO Parts with Different Machinery

Manufacturers employ various measures to ensure the quality and compatibility of PTO (Power Take-Off) parts with different machinery. These measures involve thorough design, testing, and quality control processes. Here's an overview of how manufacturers ensure the quality and compatibility of PTO parts:

  1. Research and Development: Manufacturers invest in extensive research and development to design PTO parts that meet the specific requirements of different machinery. They analyze the power transfer needs, torque specifications, operating conditions, and safety considerations of various equipment types. This research forms the basis for developing PTO parts that are compatible with different machinery and deliver optimal performance.
  2. Engineering and Design: Manufacturers employ experienced engineers who specialize in PTO systems and components. These engineers use advanced design software and engineering principles to create PTO parts that are compatible with different machinery. They consider factors such as power ratings, speed requirements, torque capacity, and environmental conditions to design PTO parts that can withstand the demands of specific applications. Compatibility is ensured by designing parts with the appropriate dimensions, mounting configurations, and connection mechanisms required for seamless integration with different machinery.
  3. Prototyping and Testing: Manufacturers typically create prototypes of PTO parts and subject them to rigorous testing. Prototyping allows manufacturers to evaluate the performance, durability, and compatibility of the parts in real-world conditions. Testing involves simulating various operating scenarios, applying loads, and measuring performance parameters. This process helps identify any design flaws or potential compatibility issues early on, allowing manufacturers to make necessary adjustments and improvements before mass production.
  4. Quality Control: Manufacturers implement stringent quality control measures to ensure the reliability and consistency of their PTO parts. Quality control processes involve inspections, measurements, and testing at different stages of production. Manufacturers may perform dimensional checks, material analysis, and performance testing to verify that the PTO parts meet the specified standards and tolerances. Quality control also includes documentation and traceability, ensuring that each PTO part can be identified and tracked throughout the manufacturing process.
  5. Compliance with Standards: PTO parts manufacturers adhere to industry standards and regulations to ensure the quality and compatibility of their products. These standards may include international or regional standards specific to PTO systems, such as ISO standards. By complying with these standards, manufacturers ensure that their PTO parts meet the necessary safety, performance, and compatibility requirements for different machinery. Compliance with standards provides assurance to customers that the PTO parts they purchase are of high quality and suitable for their equipment.

Moreover, manufacturers often provide documentation, such as product catalogs, specification sheets, and compatibility guides, to assist customers in selecting the appropriate PTO parts for their machinery. These documents outline the specifications, compatibility information, and installation guidelines, helping customers make informed decisions and ensuring the proper integration of PTO parts with their equipment.

By employing research and development, engineering and design expertise, prototyping and testing, quality control measures, and compliance with standards, manufacturers ensure the quality and compatibility of PTO parts with different machinery. These efforts contribute to the reliable and efficient operation of PTO systems across a wide range of applications.

pto shaft

Real-World Examples of Machinery where PTO Parts are Essential

PTO (Power Take-Off) parts play a crucial role in various types of machinery, enabling power transfer from a power source to different implements or attachments. These components are commonly found in a wide range of equipment across different industries. Here are some real-world examples of machinery where PTO parts are essential:

  1. Agricultural Machinery: PTO parts are extensively used in agricultural machinery to power various implements and attachments. Tractors, for example, often feature a PTO shaft that enables the transfer of power to implements such as mowers, balers, tillers, and sprayers. The PTO allows these implements to be powered by the tractor's engine, facilitating tasks like cutting crops, baling hay, tilling soil, and spraying pesticides.
  2. Construction Equipment: PTO parts are also essential in construction equipment. For instance, backhoes, excavators, and skid steer loaders may utilize PTO systems to power hydraulic pumps or generators. The PTO transfers power from the equipment's engine to these auxiliary components, allowing for tasks like digging, lifting, and powering electrical tools at the construction site.
  3. Forestry Equipment: In the forestry industry, PTO parts are integral to machinery used for wood processing and tree maintenance. Chippers, grinders, and sawmills often rely on PTO systems to transfer power from tractors or other vehicles to the cutting and processing mechanisms. This enables efficient wood chipping, grinding, and sawing operations in forestry applications.
  4. Utility Vehicles: PTO parts are commonly found in utility vehicles used for a variety of tasks. For example, utility vehicles equipped with snow blowers or snowplows often utilize PTO systems to transfer power from the vehicle's engine to the snow-clearing attachments. This enables efficient snow removal operations in areas with heavy snowfall.
  5. Road Maintenance Equipment: PTO parts are vital in road maintenance machinery such as road sweepers, street cleaners, and asphalt rollers. These machines often incorporate PTO systems to power the sweeping brushes, suction systems, or compacting mechanisms. The PTO transfers power from the vehicle's engine to these components, enabling effective road cleaning and maintenance.
  6. Industrial Equipment: PTO parts are utilized in various industrial applications. For example, in manufacturing plants, PTO systems may be employed in machinery such as conveyor systems, mixers, or pumps. These PTO-driven machines rely on the power from a central source to perform specific industrial processes.
  7. Marine Equipment: PTO parts are essential in marine machinery, particularly in boats and ships. PTO systems can be found in marine engines, enabling the transfer of power to auxiliary equipment such as hydraulic systems, winches, or generators. These components support various marine operations such as lifting heavy loads, powering navigation systems, or generating electricity.

These examples illustrate the diverse range of machinery where PTO parts are essential for efficient operation. By enabling the transfer of power from a primary power source to different implements or attachments, PTO systems enhance the versatility and functionality of these machines across various industries.

pto shaft

How PTO Parts Handle Variations in Torque, Speed, and Alignment During Use

PTO (Power Take-Off) parts are designed to handle variations in torque, speed, and alignment during use, ensuring efficient power transmission between tractors and implements. These parts incorporate specific mechanisms and features to accommodate and manage these variations. Let's explore how PTO parts handle torque, speed, and alignment variations:

  1. Variations in Torque: Torque variations occur when the power requirements of the implement being driven fluctuate. PTO parts, such as the PTO clutch and gearbox, are designed to handle these variations. The PTO clutch allows operators to engage or disengage the power transfer, providing control over torque transmission. When torque requirements increase, the clutch engages to transfer power, and when torque requirements decrease, the clutch disengages to interrupt power transmission. This flexibility ensures that torque variations are effectively managed, preventing overload or underutilization of the implement.
  2. Variations in Speed: Speed variations can arise due to differences in the rotational speeds of the tractor's engine and the implement. PTO parts, including the PTO gearbox, are employed to address these variations. The gearbox allows for speed reduction or increase based on the requirements of the implement. For instance, if the tractor's engine is running at a higher speed than the implement requires, the gearbox can reduce the speed before transmitting it through the PTO shaft. Conversely, if the implement requires a higher speed than the engine provides, the gearbox can increase the speed accordingly. This ensures that the implement operates at the desired speed, irrespective of the tractor's engine speed.
  3. Variations in Alignment: Alignment variations refer to deviations in the positioning and alignment of the tractor and the implement. PTO parts accommodate these variations through flexible couplings and joints. PTO couplings are designed to allow a certain degree of misalignment between the tractor's PTO shaft and the implement's input shaft. Flexible couplings, such as splined or friction-based couplings, can compensate for minor misalignments without affecting power transmission. Additionally, some PTO parts incorporate telescopic or sliding mechanisms that provide further flexibility in accommodating alignment variations. These features ensure that power is effectively transmitted even when there are slight misalignments between the tractor and the implement.

In summary, PTO parts handle variations in torque, speed, and alignment through specific mechanisms and features. PTO clutches enable control over torque transmission, allowing for engagement or disengagement based on the implement's power requirements. PTO gearboxes facilitate speed adjustments to match the implement's needs, compensating for speed variations between the tractor and the implement. Flexible couplings and joints in PTO parts accommodate minor misalignments, ensuring efficient power transmission even when the tractor and implement are not perfectly aligned. By effectively managing torque, speed, and alignment variations, PTO parts contribute to reliable and efficient power transfer between tractors and implements.

China Standard Drive Gear Pto and Transmission Shaft Factory Steel Precision Agricultural Machinery Use Power Transmission Shaft Transmission Shaft Factory Steel Precision51 Pto PartsChina Standard Drive Gear Pto and Transmission Shaft Factory Steel Precision Agricultural Machinery Use Power Transmission Shaft Transmission Shaft Factory Steel Precision51 Pto Parts
editor by CX 2023-09-15

China OEM Mechanical Parts Transmission/Starter/CNC Machining/Drive Gears/Agricultural Machinery Use Power Shaft Pto and Shaft Fact

Product Description

Parameter specifications

 

Certification Shipment Quality material Company System Certification
IATF16949 in time high steel ISO9001

 

Company Profile

 

HangZhou Xihu (West Lake) Dis. East Port Gear Manufacturing factory is located in Zhoujia Industrial Zone, CHINAMFG Town, HangZhou, 3km away from Xihu (West Lake) Dis.qian Lake. It focuses on precision gear research, development, production and sales. The factory has obtained ISO9001: 2015 certificate, IATF16949:2016. The main export markets were North America, South America and Europe. Products can be customized and mainly includes: New Energy Motor Shaft, Oil Pump Gear, Agricultural Machinery Gear, Transmission Gear, Electric Vehicle gear, etc. We are sincerely willing to cooperate with enterprises from all over the world. 

Equipment And Main Products

Certifications

FAQ

Q1:How is the quality of your product?
A:Our product has reliable quality,  high wear life

Q2:Customization process/work flow?
Advisory - Material selection - 2D/3D Drawing - Quotation - Payment - Production - Quality Control - Package - Delivery

Q3: What is your terms of packing?
A:Generally, we pack our goods in wooden cases, If you have special request about packing, pls negotiate with us in advance, we can pack the goods as your request.

Q4:Price?
A:We will offer competitive price after receiving your drawing

Q5:What is your terms of payment?

A:30% T/T advanced, 70% T/T before shipping

Q6:What is your terms of delivery?
A: FOB

Q7:What drawing software does your company use?
A:CAXA

Q8:Do you test all your goods before delivery?
A: Yes, we have 100% test before delivery

Q9:How about your delivery time?
A:Product can often be delivered within 40-90 days

Q10:Sample?
A:We offer paid sample.If you have sample requirements, please feel free to contact us at any time

Q11:What logistics packaging does your company use?
A:Express for urgent orders. UPS, FedEx, DHL, TNT, EMS.

Q12:Application range?
A:Automotive, medical, automation, agricultural, marine, etc.
 

Q13: How do you make our business long-term and good relationship?
A:1. We keep good quality and competitive price to ensure our customers benefit ;
   2. We respect every customer as our friend and we sincerely do business and make friends with them, 
   no matter where they come from.

 

Shipping Cost:

Estimated freight per unit.



To be negotiated
Application: Motor, Electric Cars, Motorcycle, Machinery, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Gear Position: External Gear
Samples:
US$ 50/Piece
1 Piece(Min.Order)

|

Order Sample

customized version
Customization:
Available

|

Customized Request

pto shaft

Are there variations in PTO shaft designs for different types of machinery?

Yes, there are variations in PTO (Power Take-Off) shaft designs to accommodate the specific requirements of different types of machinery. PTO shafts are highly versatile and adaptable components used to transfer power from a power source, such as a tractor or engine, to driven machinery or equipment. The design variations in PTO shafts are necessary to ensure compatibility, efficiency, and safety in various applications. Here's a detailed explanation of the different PTO shaft designs for different types of machinery:

1. Standard PTO Shafts: Standard PTO shafts are the most common design and are widely used in a variety of applications. They typically consist of a solid steel shaft with a universal joint at each end. These universal joints allow for angular misalignment between the power source and the driven machinery. Standard PTO shafts are suitable for applications where the distance between the power source and the driven machinery remains relatively fixed. They are commonly used in agricultural implements, such as mowers, balers, tillers, and seeders, as well as in industrial applications.

2. Telescopic PTO Shafts: Telescopic PTO shafts feature a telescoping design that allows for length adjustment. These shafts consist of two or more concentric shafts that can slide within each other. Telescopic PTO shafts are beneficial in applications where the distance between the power source and the driven machinery varies. By adjusting the length of the shaft, operators can ensure proper power transmission without the risk of the shaft dragging on the ground or being too short to reach the equipment. Telescopic PTO shafts are commonly used in front-mounted implements, snow blowers, self-loading wagons, and other applications where the distance between the power source and the implement changes.

3. CV (Constant Velocity) PTO Shafts: CV PTO shafts incorporate Constant Velocity joints to accommodate misalignment and angular variations. These joints maintain a constant speed and torque transfer even when the driven machinery is at an angle relative to the power source. CV PTO shafts are beneficial in applications where the driven machinery requires flexibility and a wide range of movement. They are commonly used in articulated loaders, telescopic handlers, self-propelled sprayers, and other equipment that requires continuous power transmission while operating at various angles.

4. Gearbox Driven PTO Shafts: Some machinery requires specific speed or torque ratios between the power source and the driven equipment. In such cases, PTO shafts may incorporate gearbox systems. Gearbox driven PTO shafts allow for speed reduction or increase and can change the rotational direction if necessary. The gear ratios in the gearbox can be adjusted to match the speed and torque requirements of the driven machinery. These PTO shafts are commonly used in applications where the power source operates at a different speed or torque level than the equipment it drives, such as in certain industrial manufacturing processes and specialized machinery.

5. High-Torque PTO Shafts: Some heavy-duty machinery requires high torque levels for power transmission. High-torque PTO shafts are designed to handle these demanding applications. They are constructed with reinforced components, including larger diameter shafts and heavier-duty universal joints, to withstand the increased torque requirements. High-torque PTO shafts are commonly used in equipment such as wood chippers, crushers, and heavy-duty agricultural implements that require substantial power and torque for their operation.

6. Safety PTO Shafts: Safety is a crucial consideration when using PTO shafts. Safety PTO shafts incorporate mechanisms to reduce the risk of accidents and injuries. One common safety feature is the use of protective guards that cover the rotating shaft to prevent accidental contact. These guards are typically made of metal or plastic and are designed to shield the rotating components while allowing the necessary movement for power transmission. Safety PTO shafts are used in various applications where the risk of entanglement or accidental contact with the rotating shaft is high, such as in grass mowers, rotary cutters, and other equipment used in landscaping and agriculture.

These are some of the key variations in PTO shaft designs for different types of machinery. The specific design used depends on factors such as the application requirements, power source characteristics, torque levels, movement flexibility, and safety considerations. PTO shaft manufacturers offer a range of designs to ensure compatibility and efficient power transmission in diverse industries and applications.

pto shaft

What safety precautions should be followed when working with PTO shafts?

Working with Power Take-Off (PTO) shafts requires strict adherence to safety precautions to prevent accidents and ensure the well-being of individuals operating or working in the vicinity of the equipment. PTO shafts involve rotating machinery and can pose significant hazards if not handled properly. Here are several important safety precautions that should be followed when working with PTO shafts:

1. Familiarize Yourself with the Equipment: Prior to operating or working near a PTO shaft, it is crucial to thoroughly understand the equipment's operation, including the specific PTO shaft configuration, safety features, and any associated machinery. Read and follow the manufacturer's instructions and safety guidelines pertaining to the PTO shaft and associated equipment. Training and familiarity with the equipment are essential to ensure safe practices.

2. Wear Appropriate Personal Protective Equipment (PPE): When working with PTO shafts, individuals should wear appropriate personal protective equipment to minimize the risk of injury. This may include safety glasses, hearing protection, gloves, and sturdy footwear. PPE protects against potential hazards such as flying debris, noise, and accidental contact with rotating components.

3. Guarding and Shielding: Ensure that the PTO shaft and associated machinery are equipped with appropriate guarding and shielding. Guarding helps prevent accidental contact with rotating parts, reducing the risk of entanglement or injury. PTO shafts should have guard shields covering the rotating shaft and any exposed universal joints. Machinery driven by the PTO shaft should also have adequate guarding in place to protect against contact with moving parts.

4. Securely Fasten and Align PTO Shaft Components: Before operating or connecting the PTO shaft, ensure that all components are securely fastened and aligned. Loose or misaligned components can lead to shaft dislodgement, imbalance, and potential failure. Follow the manufacturer's guidelines for proper installation and tightening of couplings, yokes, and other connecting points. Proper alignment is crucial to prevent excessive stress, vibrations, and premature wear on the PTO shaft and associated equipment.

5. Avoid Loose Clothing and Jewelry: Loose clothing, jewelry, or other items that can become entangled in the PTO shaft or associated machinery should be avoided. Secure long hair, tuck in loose clothing, and remove or properly secure any dangling accessories. Loose items can get caught in rotating parts, leading to serious injury or entanglement hazards.

6. Do Not Modify or Remove Safety Features: PTO shafts are equipped with safety features such as guard shields, safety covers, and torque limiters for a reason. These features are designed to protect against potential hazards and should not be modified, bypassed, or removed. Altering or disabling safety features can significantly increase the risk of accidents and injury. If any safety features are damaged or not functioning correctly, they should be repaired or replaced promptly.

7. Shut Down Power Source Before Maintenance: Before performing any maintenance, repairs, or adjustments on the PTO shaft or associated machinery, ensure that the power source is completely shut down and disconnected. This includes turning off the engine, disconnecting power supply, and engaging any safety locks or mechanisms. Lockout/tagout procedures should be followed to prevent accidental energization or startup during maintenance activities.

8. Regular Maintenance and Inspection: Regular maintenance and inspection of the PTO shaft and associated equipment are vital for safe operation. Follow the manufacturer's recommended maintenance schedule and perform routine inspections to identify any signs of wear, damage, or misalignment. Lubricate universal joints as per the manufacturer's guidelines to ensure smooth operation. Promptly address any maintenance or repair needs to prevent potential hazards.

9. Training and Communication: Ensure that individuals operating or working near PTO shafts receive proper training on safe work practices, hazard identification, and emergency procedures. Promote clear communication regarding the presence and operation of PTO shafts to prevent accidental contact or interference. Establish effective communication methods, such as signals or radios, when working in teams or near noisy equipment.

10. Be Aware of Surroundings: Maintain situational awareness when working with PTO shafts. Be mindful of the location of bystanders, obstacles, and potential hazards. Ensure a clear and safe work area around the PTO shaft. Avoid distractions and focus on the task at hand to prevent accidents caused by inattention.

By following these safety precautions, individuals can minimize the risk of accidents and injuries when working with PTO shafts. Safety should always be the top priority to ensure a safe and productive work environment.

pto shaft

What benefits do PTO shafts offer for various types of machinery?

PTO shafts (Power Take-Off shafts) offer several benefits for various types of machinery in agricultural and industrial applications. They provide a flexible and efficient means of power transmission, enabling machinery to perform specific tasks and functions. Here's a detailed explanation of the benefits that PTO shafts offer for different types of machinery:

Versatility: PTO shafts contribute to the versatility of machinery by allowing them to be powered by a common power source, such as a tractor or an engine. This means that a single power source can be used to drive multiple implements or machines by simply connecting and disconnecting the PTO shaft. For example, in agriculture, a tractor equipped with a PTO shaft can power various implements such as mowers, balers, tillers, sprayers, and grain augers. Similarly, in industrial applications, PTO shafts enable the use of a single engine or motor to power different machines or equipment, such as generators, pumps, compressors, and industrial mixers.

Efficiency: PTO shafts offer an efficient method of power transfer from the power source to the machinery. By directly connecting the power source to the driven machine, PTO shafts minimize energy losses that may occur with other power transmission methods. This direct power transfer results in improved overall efficiency and performance of the machinery. Additionally, PTO shafts allow for the adjustment of rotational speed and power output to match the requirements of the specific machinery, ensuring optimal operation and reducing unnecessary energy consumption.

Cost Savings: The use of PTO shafts can lead to cost savings in multiple ways. Firstly, by utilizing a single power source to drive multiple machines or implements, the need for separate engines or motors for each piece of equipment is eliminated, reducing capital costs. Secondly, PTO shafts eliminate the requirement for additional fuel or energy sources, as they tap into the existing power source, resulting in lower fuel or energy expenses. Additionally, the versatility offered by PTO shafts allows for improved equipment utilization, maximizing the return on investment.

Flexibility: PTO shafts provide flexibility in terms of equipment setup and configuration. They can be adjusted in length or equipped with telescopic sections, allowing for easy adaptation to different equipment arrangements and varying distances between the power source and the driven machinery. This flexibility enables operators to quickly connect and disconnect the PTO shafts as needed, facilitating efficient equipment changes and reducing downtime. Moreover, the ability to adjust the rotational speed and power output of the PTO shafts adds further flexibility, accommodating the specific requirements of different machinery and applications.

Ease of Use: PTO shafts are relatively easy to use, making them accessible to operators with minimal training. The process of connecting and disconnecting the PTO shafts is straightforward, often involving a simple coupling or locking mechanism. This ease of use enhances equipment operability, allowing operators to quickly switch between different implements or machines without significant effort or time-consuming procedures. Furthermore, the direct power transfer through PTO shafts simplifies equipment operation, as the machinery can be powered by the existing power source without the need for additional controls or power management systems.

Increased Productivity: PTO shafts contribute to increased productivity in agricultural and industrial operations. By enabling the use of versatile machinery configurations, operators can perform a wide range of tasks using a single power source. This eliminates the need for manual labor or the use of multiple machines, streamlining workflow and reducing the time required to complete various operations. The efficiency and reliability of power transfer through PTO shafts also contribute to improved productivity by ensuring consistent and effective operation of machinery, resulting in enhanced output and reduced downtime.

Safety: While not directly related to machinery performance, PTO shafts also offer safety benefits. The implementation of safety shields or guards on PTO shafts helps prevent accidental contact with the rotating shaft, reducing the risk of injuries to operators. These safety features are designed to cover the rotating shaft and universal joints, ensuring that operators cannot come into contact with them during operation. Proper training on PTO shaft operation and adherence to safety guidelines further enhance operator safety when working with PTO-driven machinery.

In summary, PTO shafts offer a range of benefits for various types of machinery. These benefits include increased versatility, improved efficiency, cost savings, flexibility in equipment configurations, ease of use, increased productivity, and enhanced operator safety. PTO shafts play a crucial role in agricultural and industrial applications by enabling the direct power transfer from a common power source to different machines or implements, resulting in optimized performance and operational effectiveness.

China OEM Mechanical Parts Transmission/Starter/CNC Machining/Drive Gears/Agricultural Machinery Use Power Shaft Pto and Shaft Fact  China OEM Mechanical Parts Transmission/Starter/CNC Machining/Drive Gears/Agricultural Machinery Use Power Shaft Pto and Shaft Fact
editor by CX 2023-09-14