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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 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
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LOYSEW W47AM56
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LOYSEW WA47AM56
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LOYSEW WH47AM56
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LOYSEW WT47AM182
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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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Request Sample

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 Professional Double Acting Long Stroke Hydraulic Cylinders for Construction Machinery wholesaler

Product Description

                                                                HYDRAULIC CYLINDER

  Widely used in equipment for Construction, Coal&mine, Agriculture , Aerial work table and Environmental sanitation etc.
     

 

Features    customized hydraulic cylinder  
Bore Diameter   2'-50'/50-1500mm
Rod Diameter   1' - 60'/25 -1000 mm
Wall Thickness    0.1'-4'/3-100 mm
Max Stroke   366'/9280 mm
Max Pressure   9600 psi/600 bar
Test Pressure   14500 psi/1000 bar
Material      20#,40#,45#,16Mn,27SiMn,etc
Seal Kits   Hallite, Parker, NOK, DICHTOMATIK, Trelleborg, Merkel
Dimensional Accuracy  H7-H11
Bore Roughness   Ra 0.4-1.6mm
Coating   hard chrome 
Purpose  engineering, Coal &mining, agricultural machinery, environmental sanitation
OEM/ODM  Yes 
MOQ   1 Piece
Certificates  ISO9001,CE, CCS

   

Q1. Are you a manufacturer?

Yes, we have manufactured hydraulic cylinders for over 30 years. They are widely used in Engineers, Coal&mine, Agriculture and Environmental Sanitation etc.

Q2. Do your products come with a warranty?

Yes, we have 1 year warranty.

Q3. Can we customize our products from you?

Yes, actually 70% of our products are customized for our clients. You just need to let us know your demand (specifications &drawing is better), and we shall realize them for you.

Q4. How do you deliver the products?

By sea, by plane, or by couriers.

Q5. How many days the samples can be finished, And how about the mass production?

Generally 5-7days for samples making. The lead time of mass production will depend on quality, production art and so on. Generally 35days.

Certification: CE, ISO9001
Pressure: High Pressure
Work Temperature: -40~120
Acting Way: Double Acting
Working Method: Straight Trip
Structure: Piston Type
Customization:
Available

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hydraulic cylinder

Are there any emerging trends in hydraulic cylinder technology, such as smart features?

Yes, there are several emerging trends in hydraulic cylinder technology, including the integration of smart features. As industries continue to adopt advanced technologies and seek greater efficiency, hydraulic cylinders are being equipped with innovative capabilities to enhance their performance and provide additional benefits. Here are some of the emerging trends in hydraulic cylinder technology:

1. Sensor Integration:

- One of the significant trends in hydraulic cylinder technology is the integration of sensors. Sensors can be embedded within the hydraulic cylinder to monitor various parameters such as pressure, temperature, position, and load. These sensors provide real-time data, allowing for condition monitoring, predictive maintenance, and improved operational control. By collecting and analyzing data, operators can optimize the performance of hydraulic systems, detect potential issues in advance, and prevent failures, resulting in increased reliability and reduced downtime.

2. Connectivity and IoT:

- Hydraulic cylinders are being integrated into the Internet of Things (IoT) ecosystem, enabling connectivity and data exchange. By connecting hydraulic cylinders to a network, operators can remotely monitor and control their performance. IoT-enabled hydraulic cylinders facilitate features such as remote diagnostics, performance optimization, and predictive maintenance. The connectivity aspect allows for better integration with overall equipment systems and enables data-driven decision-making for improved efficiency and productivity.

3. Energy-Efficient Designs:

- With the increasing focus on sustainability and energy efficiency, hydraulic cylinder technology is evolving to incorporate energy-saving features. Manufacturers are developing hydraulic cylinders with improved sealing technologies, reduced friction, and optimized fluid flow dynamics. These advancements minimize energy losses and increase overall system efficiency. Energy-efficient hydraulic cylinders contribute to reduced power consumption, lower operating costs, and a smaller environmental footprint.

4. Advanced Materials and Coatings:

- The use of advanced materials and coatings is another emerging trend in hydraulic cylinder technology. Manufacturers are exploring lightweight materials, such as composites and alloys, to reduce the overall weight of hydraulic cylinders without compromising strength and durability. Furthermore, specialized coatings and surface treatments are being applied to improve corrosion resistance, wear resistance, and lifespan. These advancements enhance the longevity and reliability of hydraulic cylinders, particularly in demanding environments.

5. Intelligent Control Systems:

- Hydraulic cylinder technology is embracing intelligent control systems that optimize performance and enable advanced functionalities. These systems utilize algorithms, machine learning, and artificial intelligence to automate processes, adapt to changing conditions, and optimize hydraulic cylinder movements. Intelligent control systems can adjust parameters in real-time, ensuring precise and efficient operation. This trend allows for increased automation, improved productivity, and enhanced safety in hydraulic system applications.

6. Predictive Maintenance:

- Predictive maintenance is gaining prominence in hydraulic cylinder technology. By utilizing data collected from sensors and monitoring systems, predictive maintenance algorithms can analyze the condition and performance of hydraulic cylinders. This analysis helps to identify potential failures or degradation in advance, enabling proactive maintenance actions. Predictive maintenance reduces unplanned downtime, extends the lifespan of hydraulic cylinders, and optimizes maintenance schedules, resulting in cost savings and improved equipment availability.

7. Enhanced Safety Features:

- Hydraulic cylinder technology is incorporating enhanced safety features to improve operator and equipment safety. These features include integrated safety valves, load monitoring systems, and emergency stop functionalities. Safety systems in hydraulic cylinders help prevent accidents, protect against overloads, and ensure reliable operation. The integration of advanced safety features contributes to safer working environments and compliance with stringent safety regulations.

These emerging trends in hydraulic cylinder technology demonstrate the industry's focus on innovation, performance optimization, and sustainability. The integration of smart features, connectivity, advanced materials, and predictive maintenance capabilities enables hydraulic cylinders to operate more efficiently, provide real-time insights, and enhance overall system performance. As technology continues to advance, hydraulic cylinder technology is expected to evolve further, offering increased functionality and efficiency for various industries and applications.

hydraulic cylinder

Customization of Hydraulic Cylinders for Marine and Offshore Applications

Yes, hydraulic cylinders can be customized for use in marine and offshore applications. These environments present unique challenges, such as exposure to corrosive saltwater, high humidity, and extreme operating conditions. Customization allows hydraulic cylinders to meet the specific requirements and withstand the harsh conditions encountered in marine and offshore settings. Let's delve into the details of how hydraulic cylinders can be customized for marine and offshore applications:

  1. Corrosion Resistance: Marine and offshore environments expose hydraulic cylinders to corrosive elements, such as saltwater. To mitigate corrosion, hydraulic cylinders can be customized with materials and surface treatments that provide enhanced corrosion resistance. For example, cylinders can be constructed from stainless steel or coated with protective layers like chrome plating or specialized coatings to withstand the corrosive effects of saltwater.
  2. Sealing and Environmental Protection: Hydraulic cylinders for marine and offshore applications require robust sealing systems to prevent water ingress and protect internal components. Customized sealing solutions, such as high-quality seals, wipers, and gaskets, can be employed to ensure effective sealing and resistance to water, debris, and contaminants. Additionally, hydraulic cylinders can be designed with protective features like bellows or boots to shield vulnerable areas from environmental elements.
  3. High-Pressure and Shock Resistance: Marine and offshore operations may involve high-pressure hydraulic systems and encounters with dynamic loads or shocks. Customized hydraulic cylinders can be engineered to withstand these demanding conditions. They can be designed with reinforced construction, thicker walls, and specialized components to handle high-pressure applications and absorb shock loads, ensuring reliable performance and durability.
  4. Temperature and Fluid Compatibility: Marine and offshore applications can expose hydraulic cylinders to extreme temperature variations and specific fluid requirements. Customization allows the selection of materials, seals, and fluids compatible with the anticipated temperature range and the specific fluid being used. Hydraulic cylinders can be tailored to maintain optimal performance and reliability under challenging temperature conditions and with the designated fluid type.
  5. Mounting and Integration: Customized hydraulic cylinders can be designed to facilitate easy integration and mounting within marine and offshore machinery. Mounting options can be tailored to suit the available space and structural requirements of the equipment. Additionally, customized hydraulic cylinder designs can incorporate features for easy maintenance, accessibility, and connection to the hydraulic system, ensuring convenient installation and serviceability in marine and offshore applications.

In summary, hydraulic cylinders can be customized to meet the unique demands of marine and offshore applications. Customization enables the integration of corrosion-resistant materials, robust sealing systems, high-pressure and shock-resistant designs, temperature and fluid compatibility, as well as optimized mounting and integration features. By tailoring hydraulic cylinders to the specific requirements of marine and offshore environments, reliable performance, extended service life, and efficient operation can be achieved in these challenging operating conditions.

hydraulic cylinder

How do hydraulic cylinders handle variations in load and pressure during operation?

Hydraulic cylinders are designed to handle variations in load and pressure during operation, making them versatile and efficient in various applications. Hydraulic systems use the principle of transmitting force through incompressible fluid to generate linear motion. Here's a detailed explanation of how hydraulic cylinders handle variations in load and pressure:

1. Load Handling:

- Hydraulic cylinders are capable of handling different loads by utilizing the principle of Pascal's law. According to Pascal's law, when pressure is applied to a fluid in a confined space, the pressure is transmitted equally in all directions. In a hydraulic cylinder, the force applied to the piston results in an equal force output at the rod end of the cylinder. The size of the piston and the pressure exerted determine the force generated by the cylinder. Therefore, hydraulic cylinders can handle a wide range of loads by adjusting the pressure applied to the fluid.

2. Pressure Compensation:

- Hydraulic systems incorporate pressure compensation mechanisms to handle variations in pressure during operation. Pressure compensating valves or regulators are often used to maintain a consistent pressure in the hydraulic system, regardless of load changes. These valves automatically adjust the flow rate or pressure to ensure stable and controlled operation of the hydraulic cylinder. By compensating for pressure variations, hydraulic cylinders can maintain a consistent force output and prevent damage or instability due to excessive pressure.

3. Control Valves:

- Control valves play a crucial role in managing variations in pressure and load during hydraulic cylinder operation. Directional control valves, such as spool valves or poppet valves, control the flow of hydraulic fluid into and out of the cylinder, enabling precise control of the cylinder's extension and retraction. By adjusting the position of the control valve, the speed and force exerted by the hydraulic cylinder can be regulated to match the load and pressure requirements of the application. Control valves allow for efficient handling of variations in load and pressure by providing fine-tuned control over the hydraulic system.

4. Accumulators:

- Hydraulic accumulators are often used to handle fluctuations in pressure and load. Accumulators store hydraulic fluid under pressure, which can be released or absorbed as needed to compensate for sudden changes in load or pressure. When the load on the hydraulic cylinder decreases, the accumulator releases stored fluid to maintain pressure and prevent pressure spikes. Conversely, when the load on the cylinder increases, the accumulator absorbs excess fluid to maintain system stability. By utilizing accumulators, hydraulic cylinders can effectively handle variations in load and pressure, ensuring smooth and controlled operation.

5. Feedback and Control Systems:

- Advanced hydraulic systems may incorporate feedback and control systems to monitor and adjust the operation of hydraulic cylinders in real-time. Position sensors or pressure sensors provide feedback on the cylinder's position, force, and pressure, allowing the control system to make continuous adjustments to optimize performance. These systems can automatically adapt to variations in load and pressure, ensuring precise control and efficient operation of the hydraulic cylinder.

6. Design Considerations:

- Proper design considerations, such as selecting the appropriate cylinder size, piston diameter, and rod diameter, are essential for handling variations in load and pressure. The design should account for the maximum anticipated load and pressure conditions to ensure the hydraulic cylinder operates within its specified range. Additionally, the selection of suitable seals, materials, and components that can withstand the anticipated load and pressure variations is crucial for maintaining the reliability and longevity of the hydraulic cylinder.

By utilizing the principles of hydraulic systems, incorporating pressure compensation mechanisms, employing control valves and accumulators, and implementing feedback and control systems, hydraulic cylinders can effectively handle variations in load and pressure during operation. These features and design considerations allow hydraulic cylinders to adapt and perform optimally in a wide range of applications and operating conditions.

China Professional Double Acting Long Stroke Hydraulic Cylinders for Construction Machinery   wholesaler China Professional Double Acting Long Stroke Hydraulic Cylinders for Construction Machinery   wholesaler
editor by CX 2023-11-09

China high quality Engineering and Construction Hydraulic Cylinder for Coal Mining Machinery vacuum pump diy

Product Description

1.Company Introduction:

ZheJiang CHINAMFG hydraulic co., ltd. set up in 1995, is a specialized custom hydraulic cylinder for tipper truck manufacturing enterpirise which takes up with design, manufacturer, sell hydraulic products. The company covers an area of 180,
Web:wthydraulic

Certification: GS, RoHS, CE
Pressure: High Pressure
Work Temperature: Normal Temperature
Acting Way: Single Acting
Structure: Piston Type
Material: Steel
Samples:
US$ 1000/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

hydraulic cylinder

How do hydraulic cylinders ensure smooth and consistent movement in heavy machinery?

Hydraulic cylinders play a vital role in ensuring smooth and consistent movement in heavy machinery. Their design and operation allow for precise control over the motion of heavy loads, resulting in efficient and reliable performance. Here's a detailed explanation of how hydraulic cylinders contribute to smooth and consistent movement in heavy machinery:

1. Hydraulic Fluid and Pressure:

- Hydraulic cylinders operate by utilizing hydraulic fluid, typically oil, to transmit force and motion. The fluid is pressurized by a hydraulic pump, creating a force that acts on the piston inside the cylinder. The pressure of the hydraulic fluid can be precisely controlled, allowing for smooth and gradual movement of heavy machinery. The fluid's incompressibility ensures that the force is evenly distributed, resulting in consistent and predictable motion.

2. Piston and Cylinder Design:

- Hydraulic cylinders are designed with precision to ensure smooth movement. The piston and cylinder bore are machined to tight tolerances, reducing friction and minimizing internal leakage. This precise fit between the piston and cylinder walls helps maintain consistent motion without jerks or sudden changes in speed. Additionally, the use of high-quality seals and lubrication further enhances the smooth operation of the cylinder.

3. Control Valves and Flow Control:

- Hydraulic systems incorporate control valves that regulate the flow of hydraulic fluid into and out of the cylinder. These valves allow for precise control over the speed and direction of the cylinder's movement. By adjusting the flow rate, operators can achieve smooth and controlled motion of heavy machinery, avoiding sudden starts or stops. Flow control valves also enable speed adjustment, ensuring consistent movement even under varying loads or operating conditions.

4. Cushioning and Damping:

- Hydraulic cylinders can be equipped with cushioning mechanisms to absorb shock and minimize impacts during the movement of heavy machinery. Cushioning is achieved by incorporating specialized valves or adjustable orifices in the cylinder, which restrict the flow of hydraulic fluid near the end of the stroke. This gradual deceleration helps prevent sudden jolts or vibrations, maintaining smooth and consistent movement while reducing stress on the machinery and its components.

5. Load Balancing:

- Hydraulic cylinders can be designed and arranged in a system to balance the load and distribute forces evenly. By utilizing multiple cylinders in parallel or series configurations, heavy machinery can achieve balanced movement, preventing uneven stress and ensuring smooth operation. Load balancing also helps minimize the risk of component failure and enhances the overall stability and longevity of the machinery.

6. Feedback and Control Systems:

- Advanced hydraulic systems incorporate feedback sensors and control systems to monitor and adjust the movement of heavy machinery. These sensors provide real-time information about the position, speed, and force exerted by the hydraulic cylinders. The control system processes this data and adjusts the flow of hydraulic fluid accordingly to maintain smooth and consistent movement. By continuously monitoring and regulating the cylinder's operation, feedback and control systems contribute to precise and reliable motion control.

7. Maintenance and Servicing:

- Regular maintenance and servicing of hydraulic cylinders are essential to ensure their smooth and consistent movement in heavy machinery. Proper lubrication, inspection of seals, and replacement of worn-out components help maintain optimal performance. Preventive maintenance practices, such as filter replacements and fluid analysis, also contribute to the longevity and reliability of hydraulic systems, ensuring consistent movement over time.

In summary, hydraulic cylinders ensure smooth and consistent movement in heavy machinery through the use of hydraulic fluid and pressure, precise piston and cylinder design, control valves and flow control, cushioning and damping mechanisms, load balancing, feedback and control systems, and regular maintenance and servicing. By leveraging these features, hydraulic cylinders provide the necessary force and control to handle heavy loads while maintaining precise and reliable motion, enhancing the overall performance and productivity of heavy machinery in various industrial applications.

hydraulic cylinder

How do hydraulic cylinders contribute to the efficiency of agricultural tasks like plowing?

Hydraulic cylinders play a crucial role in improving the efficiency of agricultural tasks, including plowing. These cylinders provide several benefits that enhance the performance and productivity of agricultural machinery. Let's explore how hydraulic cylinders contribute to the efficiency of plowing and other agricultural tasks:

  1. Powerful Force Generation: Hydraulic cylinders are capable of generating high forces, which is essential for tasks like plowing. The hydraulic system supplies pressurized fluid to the cylinders, converting hydraulic energy into mechanical force. This force is then utilized to drive plow blades through the soil, overcoming resistance and facilitating efficient soil penetration. The power generated by hydraulic cylinders ensures effective plowing, even in tough or compacted soil conditions.
  2. Adjustable Working Depth: Hydraulic cylinders allow for easy and precise adjustment of the plow's working depth. By controlling the extension or retraction of the hydraulic cylinder, farmers can adjust the depth of the plow blades according to soil conditions, crop requirements, or their specific preferences. This adjustability enhances efficiency by ensuring optimal soil tillage and minimizing unnecessary energy expenditure. Farmers can adapt the plowing depth to different field areas, optimizing the use of resources and promoting uniform crop growth.
  3. Responsive Control: Hydraulic systems offer highly responsive control, enabling farmers to make quick adjustments during plowing operations. Hydraulic cylinders respond rapidly to changes in hydraulic pressure and valve settings, allowing for immediate modifications in the plow's position, depth, or angle. This responsiveness enhances efficiency by facilitating on-the-go adjustments based on soil variations, obstacles, or changing field conditions. Farmers can maintain precise control over the plow's performance, ensuring effective soil tillage and minimizing the risk of crop damage.
  4. Implement Versatility: Hydraulic cylinders enable the attachment of various implements to agricultural machinery, expanding their functionality and versatility. In the context of plowing, hydraulic cylinders allow for the attachment and detachment of plow blades or other tillage implements. This versatility enables farmers to adapt their equipment to different soil types, field sizes, or specific plowing requirements. By using hydraulic cylinders, farmers can easily switch between different implements, optimizing their equipment for specific tasks and maximizing efficiency.
  5. Efficient Time Management: Hydraulic cylinders contribute to time efficiency in agricultural tasks like plowing. With hydraulic systems, farmers can operate plows at higher speeds while maintaining control and precision. The responsive nature of hydraulic cylinders allows for efficient turning, maneuvering, and repositioning of plows, minimizing downtime and optimizing field coverage. This time efficiency translates into increased productivity and reduced overall operational costs. Farmers can accomplish plowing tasks more quickly, allowing them to cover larger field areas in less time.

In summary, hydraulic cylinders significantly contribute to the efficiency of agricultural tasks like plowing. Through powerful force generation, adjustable working depth, responsive control, implement versatility, and efficient time management, hydraulic systems equipped with cylinders enhance the performance and productivity of agricultural machinery. These contributions allow farmers to accomplish plowing tasks more effectively, optimize field operations, and achieve improved overall efficiency in their agricultural practices.

hydraulic cylinder

What safety precautions should be followed when working with hydraulic cylinders?

Working with hydraulic cylinders requires strict adherence to safety precautions to prevent accidents, injuries, and damage to equipment or property. Hydraulic systems operate under high pressures and involve moving parts, which can pose serious hazards if not handled properly. Here's a detailed explanation of the safety precautions that should be followed when working with hydraulic cylinders:

1. Training and Knowledge:

- Ensure that personnel working with hydraulic cylinders have received adequate training and possess a thorough understanding of hydraulic system operation, maintenance, and safety protocols. Proper training should cover topics such as hydraulic principles, pressure ratings, safe work practices, and emergency procedures. Only trained and authorized personnel should be allowed to handle hydraulic cylinders.

2. Wear Personal Protective Equipment (PPE):

- Always wear appropriate personal protective equipment when working with hydraulic cylinders. This may include safety glasses, gloves, protective clothing, and steel-toed boots. PPE helps protect against potential hazards, such as hydraulic fluid leaks, flying debris, or accidental contact with moving parts.

3. Hydraulic System Inspection:

- Before working with hydraulic cylinders, inspect the entire hydraulic system for any signs of damage, leaks, or loose connections. Check hydraulic hoses, fittings, valves, and cylinders for integrity and secure fastening. If any issues are detected, the system should be repaired or serviced before operation.

4. Relieve Pressure:

- Before performing any maintenance or disassembly on a hydraulic cylinder, it is crucial to relieve the pressure in the system. Follow the manufacturer's instructions to properly release pressure and ensure that the hydraulic cylinder is depressurized before starting any work. Failure to do so can result in sudden and uncontrolled movement of the cylinder or hydraulic lines, leading to serious injuries.

5. Lockout/Tagout Procedures:

- Implement lockout/tagout procedures to prevent accidental energization of the hydraulic system while maintenance or repair work is being conducted. Lockout/tagout involves isolating the energy source, such as shutting off the hydraulic pump and locking or tagging the controls to prevent unauthorized operation. This procedure ensures that the hydraulic cylinder remains in a safe, non-operational state during maintenance activities.

6. Use Proper Lifting Techniques:

- When working with heavy hydraulic cylinders or components, use proper lifting techniques and equipment to avoid strain or injury. Hydraulic cylinders can be heavy and awkward to handle, so ensure that lifting equipment, such as cranes or hoists, is properly rated and used correctly. Follow safe lifting practices, including securing the load and maintaining a stable lifting posture.

7. Hydraulic Fluid Handling:

- Handle hydraulic fluid with care and follow proper procedures for fluid filling, transfer, and disposal. Avoid contact with the skin or eyes, as hydraulic fluid may be hazardous. Use appropriate containers and equipment to prevent spills or leaks. If any hydraulic fluid comes into contact with the skin or eyes, rinse thoroughly with water and seek medical attention if necessary.

8. Regular Maintenance:

- Perform regular maintenance and inspections on hydraulic cylinders to ensure their safe and reliable operation. This includes checking for leaks, inspecting seals, monitoring fluid levels, and conducting periodic servicing as recommended by the manufacturer. Proper maintenance helps prevent unexpected failures and ensures the continued safe use of hydraulic cylinders.

9. Follow Manufacturer Guidelines:

- Always follow the manufacturer's guidelines, instructions, and recommendations for the specific hydraulic cylinders and equipment being used. Manufacturers provide important safety information, maintenance schedules, and operational guidelines that should be strictly adhered to for safe and optimal performance.

10. Emergency Preparedness:

- Be prepared for potential emergencies by having appropriate safety equipment, such as fire extinguishers, first aid kits, and emergency eyewash stations, readily available. Establish clear communication channels and emergency response procedures to promptly address any accidents, leaks, or injuries that may occur during hydraulic cylinder operations.

By following these safety precautions, individuals working with hydraulic cylinders can minimize the risk of accidents, injuries, and property damage. It is essential to prioritize safety, maintain awareness of potential hazards, and ensure compliance with relevant safety regulations and industry standards.

China high quality Engineering and Construction Hydraulic Cylinder for Coal Mining Machinery   vacuum pump diyChina high quality Engineering and Construction Hydraulic Cylinder for Coal Mining Machinery   vacuum pump diy
editor by CX 2023-11-09

China Hot selling Reliable Hydraulic Cylinders for Heavy-Duty Construction Machinery vacuum pump booster

Product Description

MEDIUM AND HIGH PRESSURE OIL CYLINDER FOR MICRO EXCAVATOR
 

Product Description

We can produce 1 million hydraulic cylinders per year. We mainly produce 4-100 tons of construction machinery hydraulic cylinder, 4-58 CHINAMFG of safe operation equipment hydraulic cylinder, and cylinder diameter 40mm-250 mm, stroke length to 12 CHINAMFG industrial machinery, Marine ships, aerospace and other hydraulic cylinder products.

 

Detailed Photos

 

 

Packaging & Shipping

  • Conventional wooden case packing, packing can be customized according to your needs.

Company Profile

 

ZheJiang CHINAMFG Machinery Equipment Co., Ltd. is an international sales subsidiary of ZheJiang CHINAMFG Hydraulic Technology Co., Ltd. Our company is Top 1 machinery parts production factory in ZheJiang , with 24 years production experience on research and development.
Our company specializes in the production of hydraulic cylinder, electric cylinder, hydraulic valve, integrated hydraulic valve, hydraulic tubing, structural parts, cab, balance iron and other products research and development, production.
At present, the Group has 4 factories, covering a total area of 864,000 square CHINAMFG and employing more than 2,200 people.
The company has supplied to more than 50 countries and regions around the world, and its products cover construction machinery, Marine ships, new energy equipment, tunnel machinery, aerospace, industrial manufacturing and other high-end parts fields.

 

  • Intelligent production line

  • Intelligent assembly line

  • Parts intelligent production line

  • Fully automatic opal + hard chrome intelligent production line

  • Automatic paint line

 

FAQ

 

1.How will you guarantee the quality? 
We have a professional R & D team, and will discuss with each production minister repeatedly and determine the production plan before the order production. We also have a professional quality inspection team to ensure that the order is completed with quality and quantity.And we will test and send testing video to buyer confirm before shipping too. 

2.When will you ship the order?
Once we get confirmation of payment,we will try our best to ship within 48 hours. 

3.How can I track my order?
Once your order in shipped,we will e-mail you shipping details.

4.If I was not satisfied with the products,can i return goods?
Yes,we offer exchange and repair service in the warranty time. 

5.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.

6. What is your terms of packing?
A: Generally, will pack in strong fumigate wooden pallet or Case. If you have legally registered patent, we can pack the goods in your branded boxes after getting your authorization letters.

 

Certification: CE, ISO9001
Pressure: High Pressure
Work Temperature: High Temperature
Acting Way: Double Acting
Working Method: Straight Trip
Adjusted Form: Regulated Type
Samples:
US$ 399/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

hydraulic cylinder

How do hydraulic cylinders enhance the performance of construction and mining equipment?

Hydraulic cylinders play a vital role in enhancing the performance of construction and mining equipment by providing powerful and precise linear motion. These industries require heavy-duty machinery that can withstand demanding conditions and efficiently perform tasks such as lifting, pushing, and digging. Here's a detailed explanation of how hydraulic cylinders enhance the performance of construction and mining equipment:

1. Power and Force:

- Hydraulic cylinders are capable of generating substantial force, allowing construction and mining equipment to handle heavy loads and perform challenging tasks. The hydraulic system applies pressure to the fluid, which is transmitted to the hydraulic cylinder, resulting in the movement of the piston rod. The larger the diameter of the cylinder, the greater the force that can be generated. Hydraulic cylinders enable the equipment to exert significant force, making it possible to lift and move heavy materials, excavate soil and rock, and perform other demanding operations.

2. Precise Control:

- Hydraulic cylinders offer precise control over the movement of construction and mining equipment. By regulating the flow of hydraulic fluid into and out of the cylinder through control valves, operators can precisely control the speed, position, and force exerted by the hydraulic cylinder. This level of control allows for accurate and controlled movements, enabling operators to perform tasks with precision and efficiency. Whether it's lifting a specific load, positioning an attachment, or maneuvering in tight spaces, hydraulic cylinders provide the necessary control for optimal equipment performance.

3. Adaptability:

- Hydraulic cylinders are highly adaptable to various construction and mining equipment. They can be designed and manufactured in different sizes, stroke lengths, and configurations to suit specific requirements. Hydraulic cylinders can be integrated into different types of equipment, such as excavators, loaders, bulldozers, and drilling rigs. Their adaptability allows for the customization of equipment to meet the needs of different applications and operating conditions, enhancing overall performance.

4. Durability and Reliability:

- Construction and mining environments are known for their harsh conditions, including extreme temperatures, vibrations, and exposure to dust, dirt, and debris. Hydraulic cylinders are designed to withstand these challenging conditions and provide long-lasting performance. They are constructed using robust materials, such as high-strength steel, and equipped with seals and components that can endure heavy loads, impacts, and contaminants. The durability and reliability of hydraulic cylinders ensure that construction and mining equipment can operate continuously and withstand the demanding nature of these industries.

5. Safety:

- Hydraulic cylinders contribute to the safety of construction and mining equipment operations. Their precise control allows operators to perform tasks with accuracy, minimizing the risk of accidents and damage to the equipment or surrounding structures. Hydraulic cylinders also enable the implementation of safety features, such as overload protection systems and emergency stop mechanisms, ensuring the safe operation of the equipment. The reliable and controlled movements provided by hydraulic cylinders enhance overall safety in construction and mining operations.

6. Increased Productivity:

- By providing the necessary power, precise control, and adaptability, hydraulic cylinders contribute to increased productivity in construction and mining applications. Construction and mining equipment equipped with hydraulic cylinders can perform tasks more efficiently and effectively, reducing the time and effort required to complete projects. The ability to handle heavy loads, control movements precisely, and adapt to various tasks improves the overall productivity of the equipment, leading to cost savings and improved project timelines.

In summary, hydraulic cylinders enhance the performance of construction and mining equipment by providing power, precise control, adaptability, durability, and safety. They enable these machines to handle heavy loads, perform tasks with accuracy, withstand harsh conditions, and increase productivity. Hydraulic cylinders are integral components that contribute to the efficiency and effectiveness of construction and mining operations.

hydraulic cylinder

Ensuring Stable Performance of Hydraulic Cylinders Under Fluctuating Loads

Hydraulic cylinders are designed to provide stable performance even under fluctuating loads. They achieve this through various mechanisms and features that allow for efficient load control and compensation. Let's explore how hydraulic cylinders ensure stable performance under fluctuating loads:

  1. Piston Design: The piston inside the hydraulic cylinder plays a crucial role in load control. It is typically equipped with seals and rings that prevent leakage of hydraulic fluid and ensure effective transfer of force. The piston design may incorporate features such as stepped or tandem pistons, which provide enhanced load-bearing capabilities and improved stability by distributing the load across multiple surfaces.
  2. Cylinder Cushioning: Hydraulic cylinders often incorporate cushioning mechanisms to minimize the impact and shock caused by fluctuating loads. Cushioning can be achieved through various methods, such as adjustable cushion screws, hydraulic cushioning valves, or elastomeric cushioning rings. These mechanisms slow down the piston's movement near the end of the stroke, reducing the impact and preventing sudden stops that could lead to instability.
  3. Pressure Compensation: Fluctuating loads can result in pressure variations within the hydraulic system. To ensure stable performance, hydraulic cylinders are equipped with pressure compensation mechanisms. These mechanisms maintain a consistent pressure level in the system, regardless of load changes. Pressure compensation can be achieved through the use of pressure relief valves, compensating pistons, or pressure-compensated flow control valves.
  4. Flow Control: Hydraulic cylinders often incorporate flow control valves to regulate the speed of the cylinder's movement. By controlling the flow rate of hydraulic fluid, the cylinder's motion can be adjusted to match the changing load conditions. Flow control valves allow for smooth and controlled movement, preventing abrupt changes that could lead to instability.
  5. Feedback Systems: To ensure stable performance under fluctuating loads, hydraulic cylinders can be integrated with feedback systems. These systems provide real-time information on the cylinder's position, velocity, and force. By continuously monitoring these parameters, the hydraulic system can make immediate adjustments to maintain stability and compensate for load fluctuations. Feedback systems can include position sensors, pressure sensors, or load sensors, depending on the specific application.
  6. Proper Sizing and Selection: Ensuring stable performance under fluctuating loads starts with proper sizing and selection of hydraulic cylinders. It is crucial to choose cylinders with appropriate bore size, rod diameter, and stroke length to match the anticipated load conditions. Oversized or undersized cylinders can lead to instability and reduced performance. Proper sizing also involves considering factors such as the required force, speed, and duty cycle of the application.

In summary, hydraulic cylinders ensure stable performance under fluctuating loads through features such as piston design, cushioning mechanisms, pressure compensation, flow control, feedback systems, and proper sizing and selection. These mechanisms and considerations allow hydraulic cylinders to provide consistent and controlled movement, even in dynamic load conditions, resulting in reliable and stable performance.

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 Hot selling Reliable Hydraulic Cylinders for Heavy-Duty Construction Machinery   vacuum pump booster	China Hot selling Reliable Hydraulic Cylinders for Heavy-Duty Construction Machinery   vacuum pump booster
editor by CX 2023-11-07

China high quality High Pressure Customized Tie Rod Welding Hydraulic Cylinder for Construction Machinery with Great quality

Product Description

High Pressure Customized Tie Rod Welding Hydraulic Cylinder for Construction Machinery  

Data Sheet

Machine Type Heavy-duty hydraulic cylinder
Mounting Type Binaural Mounting
Code No. af003
Pressure Range 21 (Mpa)
Brand  Aofa Machinery 
Custom tiles Yes
Specifications the specific price is subject to the customer service quotation

Product Description
This series of hydraulic cylinders has the characteristics of simple structure, reliable operation, convenient disassembly and assembly, easy maintenance, buffer device and various connection methods. All seals are made of CHINAMFG brand products. Applicable to construction machinery, mining machinery, lifting and transportation machinery and other industries.

Product Characteristics
1.Durable and Reliable Cylinders to Fit Several Models.
2.Rugged and built to last with threaded rod end caps for longer life and better sealing
3.Manufactured with CHINAMFG brand seals for durability, quality and performance
 

*Plated Chrome Piston Rod

 

        

*Automatic Welding

 

*#45 Steel

 

*Quality Test

  

 ------RELATED  PRODUCTS------

 

HangZhou CHINAMFG Machinery Co., LTD., formerly known as HangZhou Xihu (West Lake) Dis.n East CHINAMFG Petrochemical Fitting Corporation, was founded in 1997. CHINAMFG focus on the field of machinery manufacturing, committed to providing cylinder, flange (petrochemical accessories), pin, sheet metal parts and other mechanical products; Heat exchanger, ambient vaporizer, LNG handling arm and other gas engineering products for domestic sales and foreign trade import and export services. CHINAMFG is a leading enterprise who collects production, foreign trade, sales and service. Relying on our technology, taking quality as the core and efficiency as the soul, we aim to bring the best quality mechanical products to our customers, and is committed to becoming a one-stop solution expert of mechanical parts. It is determined to become a one-stop service supplier integrating research and development, production and sales. Enterprises adhere to the "all for the customer" service purpose, implement the "customer first, quality first, service first" business philosophy, the use of omni-channel sales model, to build a global sales network, open CHINAMFG machinery brand development road.

Aofa always follows the purpose of "providing value products for customers, providing development space for employees, and creating outstanding leading brands in the industry", abides by the enterprise development concept of "creating value by heart", and adheres to the mission of "manufacturing machinery high-quality products, creating a harmonious society". The enterprise gathers many young and promising, positive people with lofty ideals, through the perfect management system and competitive incentive mechanism, aims to provide all-round development space for employees, and create a better future with the enterprise. Scientific management mode, intimate service attitude, for the enterprise to win credibility and public praise. In the fierce market competition to establish a good corporate image, and with many enterprises to establish long-term, stable strategic partnership, for the further development of the enterprise has laid a CHINAMFG foundation.

Q1:Can you provide a sample before a big order?
A:Yes, we can .

Q2:Are you able to make Non-standard or customized air cylinders?
A:Yes, we can, we have our own factory, we can satisfy the customers' demands

Q3:How long is the warranty?
A:We offer 12 months warranty time.

Q4:Can I have my brand on the products?
A:Of course you can.

Q5:What is your delivery time?
A:3-5days if we have stock, 15-25days if we have no stock.

Q6.  Do you test all your goods before delivery?
 A: Yes, we have 100% test before delivery
 

Certification: ISO9001
Pressure: 21MPa
Work Temperature: Normal Temperature
Acting Way: Double Acting
Working Method: Straight Trip
Adjusted Form: Regulated Type

hydraulic cylinder

What role do hydraulic cylinders play in optimizing power distribution and efficiency?

Hydraulic cylinders play a significant role in optimizing power distribution and efficiency in various applications. They are widely used in industries such as construction, manufacturing, agriculture, and transportation, where efficient power transmission and precise control are essential. Here's a detailed explanation of the role hydraulic cylinders play in optimizing power distribution and efficiency:

1. Power Transmission:

- Hydraulic cylinders serve as a means of power transmission in hydraulic systems. They convert the hydraulic fluid's pressure and flow into linear mechanical force, allowing for controlled movement of loads. Hydraulic cylinders efficiently transmit power from an energy source, such as a hydraulic pump, to the working components of the system. The ability to transmit power over long distances with minimal energy losses makes hydraulic cylinders an efficient choice for various applications.

2. High Power Density:

- Hydraulic cylinders offer high power density, meaning they can generate significant force relative to their size. This characteristic enables compact and lightweight hydraulic systems while delivering substantial power output. Hydraulic cylinders can produce high forces even at low operating speeds, making them suitable for heavy-duty applications. The high power density of hydraulic cylinders contributes to the optimization of power distribution by maximizing the force output while minimizing the system's overall size and weight.

3. Load Handling and Control:

- Hydraulic cylinders provide precise load handling and control capabilities, contributing to power distribution optimization. By adjusting the flow of hydraulic fluid to the cylinder, operators can control the speed, force, and direction of the cylinder's movement. This level of control allows for accurate positioning and smooth operation of loads, reducing energy waste and improving overall system efficiency. Hydraulic cylinders enable precise load handling and control, leading to optimal power distribution and improved energy efficiency.

4. Variable Force and Speed:

- Hydraulic cylinders offer the advantage of variable force and speed control. By regulating the flow of hydraulic fluid, the force exerted by the cylinder can be adjusted as needed. This flexibility enables hydraulic systems to adapt to different load requirements, optimizing power distribution. Hydraulic cylinders can operate at varying speeds, allowing for efficient power distribution across different stages of an operation. The ability to vary force and speed according to the application's demands enhances energy efficiency and overall system performance.

5. Energy Recovery:

- Hydraulic cylinders can contribute to energy efficiency through energy recovery mechanisms. In certain applications, hydraulic systems utilize accumulators to store and release energy. Hydraulic cylinders can store energy during deceleration or when the load is lowering, and then release it to assist in subsequent movements. This energy recovery process reduces the overall energy consumption of the system, optimizing power distribution and improving efficiency. The ability to recover and reuse energy enhances the sustainability and cost-effectiveness of hydraulic systems.

6. Integrated Control Systems:

- Hydraulic cylinders can be integrated into advanced control systems, such as servo control or proportional control systems. These systems utilize electronic feedback, sensors, and control algorithms to optimize power distribution and efficiency. By continuously monitoring and adjusting the flow of hydraulic fluid, the control systems ensure that the cylinder operates at the most efficient operating point, minimizing energy losses and maximizing power distribution. Integrated control systems enhance the overall energy efficiency of hydraulic systems and contribute to power optimization.

7. System Efficiency Improvement:

- Hydraulic cylinders, when combined with other components in a hydraulic system, contribute to overall system efficiency improvement. The integration of efficient hydraulic pumps, valves, and actuators helps minimize energy losses, pressure drops, and heat generation. By optimizing the design and configuration of the hydraulic system, including the selection of appropriate cylinder sizes, operating pressures, and control strategies, power distribution can be optimized, leading to improved energy efficiency. Proper system design and component selection are critical for achieving optimal power distribution and efficiency.

In summary, hydraulic cylinders play a crucial role in optimizing power distribution and efficiency in various applications. They enable efficient power transmission, offer high power density, provide precise load handling and control, allow for variable force and speed control, facilitate energy recovery, can be integrated into advanced control systems, and contribute to overall system efficiency improvement. By leveraging the capabilities of hydraulic cylinders, industries can achieve better power utilization, reduced energy consumption, and improved system performance.

hydraulic cylinder

Handling the Challenges of Minimizing Fluid Leaks and Contamination in Hydraulic Cylinders

Hydraulic cylinders face challenges when it comes to minimizing fluid leaks and contamination, as these issues can impact the performance, reliability, and lifespan of the system. However, there are several measures and design considerations that help address these challenges effectively. Let's explore how hydraulic cylinders handle the challenges of minimizing fluid leaks and contamination:

  1. Sealing Systems: Hydraulic cylinders employ advanced sealing systems to prevent fluid leaks. These systems typically include various types of seals, such as piston seals, rod seals, and wiper seals. The seals are designed to create a tight and reliable barrier between the moving components of the cylinder and the external environment, minimizing the risk of fluid leakage.
  2. Seal Material Selection: The choice of seal materials is crucial in minimizing fluid leaks and contamination. Hydraulic cylinder manufacturers carefully select seal materials that are compatible with the hydraulic fluid used and resistant to wear, abrasion, and chemical degradation. This ensures the longevity and effectiveness of the seals, reducing the likelihood of leaks or premature seal failure.
  3. Proper Installation and Maintenance: Ensuring proper installation and regular maintenance of hydraulic cylinders is essential for minimizing fluid leaks and contamination. During installation, attention should be given to proper alignment, torqueing of bolts, and adherence to recommended procedures. Regular maintenance includes inspecting seals, replacing worn-out components, and addressing any signs of leakage promptly. Proper maintenance practices help identify and rectify issues before they escalate and cause significant problems.
  4. Contamination Control: Hydraulic cylinders incorporate measures to control contamination and maintain fluid cleanliness. This includes the use of filtration systems, such as in-line filters, to remove particles and contaminants from the hydraulic fluid. Additionally, hydraulic reservoirs often have breathers and desiccant filters to prevent moisture and airborne contaminants from entering the system. By controlling contamination, hydraulic cylinders minimize the risk of damage to internal components and maintain optimal system performance.
  5. Environmental Protection: Hydraulic cylinders may be equipped with protective features to safeguard against external contaminants. For example, bellows or protective boots can be installed to shield the rod and seals from debris, dirt, or moisture present in the operating environment. These protective measures help extend the life of the seals and enhance the overall reliability of the hydraulic cylinder.

In summary, hydraulic cylinders employ sealing systems, appropriate seal materials, proper installation and maintenance practices, contamination control measures, and environmental protection features to handle the challenges of minimizing fluid leaks and contamination. By implementing these measures, manufacturers can ensure reliable and long-lasting hydraulic cylinder performance, minimize the risk of fluid leakage, and maintain the cleanliness of the hydraulic system.

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 high quality High Pressure Customized Tie Rod Welding Hydraulic Cylinder for Construction Machinery   with Great quality China high quality High Pressure Customized Tie Rod Welding Hydraulic Cylinder for Construction Machinery   with Great quality
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 Standard Construction Machinery Attachment Helical Cylinder Position Helac L30-Series Rotary Hydraulic Actuators Cylinder vacuum pump oil near me

Product Description

PRODUCT DESCRIPTION
 

Construction Machinery Attachment Helical Cylinder Position
Helac L30-Series Rotary Hydraulic Actuators 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 rotary actuators are 1 of our main products. 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 models, but can also design and customize actuators 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
Pressure: Medium Pressure
Work Temperature: Normal Temperature
Acting Way: Single/Double
Working Method: Rotary
Adjusted Form: Customized
Samples:
US$ 950/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

hydraulic cylinder

Can hydraulic cylinders be integrated with modern telematics and remote monitoring?

Yes, hydraulic cylinders can indeed be integrated with modern telematics and remote monitoring systems. The integration of hydraulic cylinders with telematics and remote monitoring technology offers numerous benefits, including enhanced operational efficiency, improved maintenance practices, and increased overall productivity. Here's a detailed explanation of how hydraulic cylinders can be integrated with modern telematics and remote monitoring:

1. Sensor Integration:

- Hydraulic cylinders can be equipped with various sensors to gather real-time data about their performance and operating conditions. Sensors such as pressure transducers, temperature sensors, position sensors, and load sensors can be integrated directly into the cylinder or its associated components. These sensors provide valuable information about parameters such as pressure, temperature, position, and load, enabling remote monitoring and analysis of the cylinder's behavior.

2. Data Transmission:

- The data collected from the sensors in hydraulic cylinders can be transmitted wirelessly or through wired connections to a central monitoring system. Wireless communication technologies such as Bluetooth, Wi-Fi, or cellular networks can be employed to transmit data in real-time. Alternatively, wired connections such as Ethernet or CAN bus can be utilized for data transmission. The choice of communication method depends on the specific requirements of the application and the available infrastructure.

3. Remote Monitoring Systems:

- Remote monitoring systems receive and process the data transmitted from hydraulic cylinders. These systems can be cloud-based or hosted on local servers, depending on the implementation. Remote monitoring systems collect and analyze the data to provide insights into the cylinder's performance, health, and usage patterns. Operators and maintenance personnel can access the monitoring system through web-based interfaces or dedicated software applications to view real-time data, receive alerts, and generate reports.

4. Condition Monitoring and Predictive Maintenance:

- Integration with telematics and remote monitoring enables condition monitoring and predictive maintenance of hydraulic cylinders. By analyzing the collected data, patterns and trends can be identified, allowing for the detection of potential issues or anomalies before they escalate into major problems. Predictive maintenance algorithms can be applied to the data to generate maintenance schedules, recommend component replacements, and optimize maintenance activities. This proactive approach helps prevent unexpected downtime, reduces maintenance costs, and maximizes the lifespan of hydraulic cylinders.

5. Performance Optimization:

- The data collected from hydraulic cylinders can also be utilized to optimize their performance. By analyzing parameters such as pressure, temperature, and load, operators can identify opportunities for improving operational efficiency. Insights gained from the remote monitoring system can guide adjustments in system settings, load management, or operational practices to optimize the performance of hydraulic cylinders and the overall hydraulic system. This optimization can result in energy savings, improved productivity, and reduced wear and tear.

6. Integration with Equipment Management Systems:

- Telematics and remote monitoring systems can be integrated with broader equipment management systems. This integration allows hydraulic cylinder data to be correlated with data from other components or related machinery, providing a comprehensive view of the overall system's performance. This holistic approach enables operators to identify potential interdependencies, optimize system-wide performance, and make informed decisions regarding maintenance, repairs, or upgrades.

7. Enhanced Safety and Fault Diagnosis:

- Telematics and remote monitoring can contribute to enhanced safety and fault diagnosis in hydraulic systems. Real-time data from hydraulic cylinders can be used to detect abnormal conditions, such as excessive pressure or temperature, which may indicate potential safety risks. Fault diagnosis algorithms can analyze the data to identify specific issues or malfunctions, enabling prompt intervention and reducing the risk of catastrophic failures or accidents.

In summary, hydraulic cylinders can be effectively integrated with modern telematics and remote monitoring systems. This integration enables the collection of real-time data, remote monitoring of performance, condition monitoring, predictive maintenance, performance optimization, integration with equipment management systems, and enhanced safety. By harnessing the power of telematics and remote monitoring, hydraulic cylinder users can achieve improved efficiency, reduced downtime, optimized maintenance practices, and enhanced overall productivity in various applications and industries.

hydraulic cylinder

Contribution of Hydraulic Cylinders to the Efficiency of Agricultural Tasks like Plowing

Hydraulic cylinders play a significant role in enhancing the efficiency of agricultural tasks, including plowing. By providing power, control, and versatility, hydraulic cylinders enable agricultural machinery to perform tasks more effectively and with greater precision. Let's explore how hydraulic cylinders contribute to the efficiency of plowing and other agricultural tasks:

  1. Powerful Force Generation: Hydraulic cylinders are capable of generating high forces, making them ideal for tasks that require substantial power, such as plowing. The hydraulic system provides pressurized fluid to the cylinders, which convert this hydraulic energy into mechanical force. This force is then utilized to drive plow blades through the soil, overcoming resistance and facilitating efficient soil penetration.
  2. Adjustable Working Depth: Hydraulic cylinders allow for easy and precise adjustment of plow working depth. By controlling the extension or retraction of the hydraulic cylinder, the depth of the plow blades can be adjusted according to soil conditions, crop requirements, or the farmer's preferences. This adjustability enhances efficiency by ensuring optimal soil tillage and minimizing unnecessary energy expenditure.
  3. Responsive Control: Hydraulic systems offer highly responsive control, enabling farmers to make quick adjustments during plowing operations. Hydraulic cylinders respond rapidly to changes in hydraulic pressure and valve settings, allowing for immediate modifications in the plow's position, depth, or angle. This responsiveness enhances efficiency by facilitating on-the-go adjustments based on soil variations, obstacles, or changing field conditions.
  4. Implement Versatility: Hydraulic cylinders enable the attachment of various implements to agricultural machinery, expanding their functionality and versatility. In the case of plowing, hydraulic cylinders allow for the attachment and detachment of plow blades or other tillage implements. This versatility enables farmers to adapt their equipment to different soil types, field sizes, or specific plowing requirements, enhancing efficiency by maximizing the utility of the machinery.
  5. Efficient Time Management: Hydraulic cylinders contribute to time efficiency in agricultural tasks like plowing. With hydraulic systems, farmers can operate plows at higher speeds while maintaining control and precision. The responsive nature of hydraulic cylinders allows for efficient turning, maneuvering, and repositioning of plows, minimizing downtime and optimizing field coverage. This time efficiency translates into increased productivity and reduced overall operational costs.

In summary, hydraulic cylinders significantly contribute to the efficiency of agricultural tasks like plowing. Through powerful force generation, adjustable working depth, responsive control, implement versatility, and efficient time management, hydraulic systems equipped with cylinders enhance the performance and productivity of agricultural machinery. These contributions allow farmers to accomplish plowing tasks more effectively, optimize field operations, and achieve improved overall efficiency in their agricultural practices.

hydraulic cylinder

How do hydraulic cylinders ensure precise and controlled movement in equipment?

Hydraulic cylinders are widely used in various equipment and machinery to provide precise and controlled movement. They utilize hydraulic fluid and mechanical components to achieve accurate positioning, smooth operation, and reliable control. Here's a detailed explanation of how hydraulic cylinders ensure precise and controlled movement in equipment:

1. Hydraulic Principle:

- Hydraulic cylinders operate based on Pascal's law, which states that pressure exerted on a fluid is transmitted equally in all directions. The hydraulic fluid is contained within the cylinder, and when pressure is applied, it acts on the piston, generating force. By controlling the pressure and flow of hydraulic fluid, the movement of the cylinder can be precisely regulated, allowing for accurate and controlled motion.

2. Force and Load Management:

- Hydraulic cylinders are designed to handle specific loads and forces. The force generated by the hydraulic cylinder depends on the hydraulic pressure and the surface area of the piston. By adjusting the pressure, the force output can be controlled. This allows for precise management of the load and ensures that the cylinder can handle the required force without exerting excessive or insufficient force. Proper load management contributes to the precise and controlled movement of the equipment.

3. Control Valves:

- Control valves play a crucial role in regulating the flow and direction of hydraulic fluid within the cylinder. These valves allow operators to control the extension and retraction of the cylinder, adjust the speed of movement, and stop or hold the cylinder at any desired position. By manipulating the control valves, precise and controlled movement can be achieved, enabling operators to position equipment accurately and perform specific tasks with precision.

4. Flow Control:

- Hydraulic cylinders incorporate flow control valves to manage the rate of hydraulic fluid flow. These valves control the speed of the cylinder's extension and retraction, allowing for smooth and controlled movement. By adjusting the flow rate, operators can precisely control the speed of the cylinder, ensuring that it moves at the desired rate without sudden or erratic movements. Flow control contributes to the overall precision and control of the equipment's movement.

5. Position Sensing:

- To ensure precise movement, hydraulic cylinders can be equipped with position sensing devices such as linear transducers or proximity sensors. These sensors provide feedback on the position of the cylinder, allowing for accurate position control and closed-loop control systems. By continuously monitoring the position, the equipment's movement can be controlled with high accuracy, enabling precise positioning and operation.

6. Proportional Control:

- Advanced hydraulic systems utilize proportional control technology, which allows for precise and fine-tuned control of the hydraulic cylinder's movement. Proportional valves, often operated by electronic control systems, provide variable flow rates and pressure adjustments. This technology enables precise control of speed, force, and position, resulting in highly accurate and controlled movement of the equipment.

7. Cushioning and Damping:

- Hydraulic cylinders can incorporate cushioning and damping mechanisms to ensure smooth and controlled movement at the end of the stroke. Cushioning features, such as adjustable cushions or shock absorbers, reduce the impact and decelerate the cylinder before reaching the end of the stroke. This prevents abrupt stops and minimizes vibrations, contributing to precise and controlled movement.

8. Load Compensation:

- Some hydraulic systems utilize load compensation mechanisms to maintain precise movement even when the load varies. Load-sensing systems monitor the load demand and adjust the hydraulic pressure and flow accordingly to meet that demand. This compensation ensures that the equipment's movement remains accurate and controlled, regardless of changes in the applied load.

In summary, hydraulic cylinders ensure precise and controlled movement in equipment through the application of hydraulic principles, force and load management, control valves, flow control, position sensing, proportional control, cushioning and damping mechanisms, and load compensation. These features and technologies allow operators to achieve accurate positioning, smooth operation, and reliable control, enabling equipment to perform tasks with precision and efficiency. The combination of hydraulic power and careful design considerations ensures that hydraulic cylinders deliver precise and controlled movement in a wide range of industrial applications.

China Standard Construction Machinery Attachment Helical Cylinder Position Helac L30-Series Rotary Hydraulic Actuators Cylinder   vacuum pump oil near me		China Standard Construction Machinery Attachment Helical Cylinder Position Helac L30-Series Rotary Hydraulic Actuators Cylinder   vacuum pump oil near me
editor by CX 2023-11-03

China manufacturer Excavators Construction Machinery Dumper Truck Hydraulic Cylinder for IATF 16949: 2016 with high quality

Product Description

Product Description

 Bore of cylinder's first stage    Stroke  Upper mouting Upper mouting Mounting dimension Working pressure 
Diameter of the hole Deep Diameter of the hole Deep
5 84.00  1.63  1.50  2.00  7.00  41.09  2500
6 120.06  2.00  2.00  2.00  7.00  52.62  2500
7 120.00  2.00  2.00  2.00  8.25  53.12  2500
8.125 234.00  2.00  2.00  2.00  9.50  64.62  2500
9.375 235.00  2.00  2.00  2.00  10.88  65.44  2500

 

L2 L3 L4 L5 L6 ØA Fitting Workable container length   Rear suspension length  Lift angle   Lift capacity   Oil tank volume
65 360 60 325 1585 Ø60 G1 4700-5300 800 47-52° 43 80
65 360 60 325 1270 Ø60 G1 4700-5300 800 47-52° 31 80
65 360 60 325 1390 Ø60 G1 5300-6000 800 47-52° 36 80
65 360 60 325 1510 Ø60 G1 5800-6500 800 47-52° 36 80
65 360 60 325 1385 Ø60 G1 5300-5800 800 47-52° 53 80
65 360 60 325 1505 Ø60 G1 5800-6500 800 47-52° 53 100
65 360 60 325 1580 Ø60 G1 6200-6800 800 47-52° 58 100
65 360 60 325 1655 Ø60 G1 6600-7200 800 47-52° 58 100
65 360 60 325 1125 Ø60 G1 5000-5500 800 47-52° 46 80
65 360 60 325 1165 Ø60 G1 5300-6000 800 47-52° 46 80
65 360 60 325 1265 Ø60 G1 5800-6500 800 47-52° 49 80
65 360 60 325 1340 Ø60 G1 6200-6800 800 47-52° 49 80
65 360 60 325 1385 Ø60 G1 6600-7200 800 47-52° 49 80
65 360 65 325 1455 Ø60 G1 5600-6300 800 47-52° 66 120
65 360 65 325 1505 Ø60 G1 5800-6500 800 47-52° 66 120
65 360 65 325 1580 Ø60 G1 6200-6800 800 47-52° 70 120
65 360 65 325 1655 Ø60 G1 6600-7200 800 47-52° 70 120
65 360 65 325 1750 Ø60 G1 7200-8000 1000 47-52° 70 135
65 360 65 325 1270 Ø60 G1 7200-8000 1000 47-52° 49 120
65 360 65 325 1675 Ø65 G1 6600-7200 800 47-52° 92 165
65 360 65 325 1770 Ø65 G1 7200-8000 1000 47-52° 96 165
65 360 65 325 1870 Ø65 G1 8000-8500 1000 47-52° 96 185
65 360 65 325 1770 Ø65 G1 8700-9500 1000 47-52° 88 185

 

Company Profile

 

 

Certifications

 

Packaging & Shipping

FAQ

Q1: Can your cylinders with HYVA ones ?
      Yes, our cylinders can replace HYVA ones well, with same technical details and mounting sizes

Q2: What's your cylinder's advantages ?
      The cylinders are made under strictly quality control processing.
      All the raw materials and seals we used are all from world famous companies.
      Cost effective

Q3: When your company be established ?
      Our company be established in 1996, and we are professional for hydraulic cylinders for more than 25 years.
      And we had passed IATF 16949:2016 Quality control system.

Q4: How about the delivery time ?
       For samples about 20 days. And 15 to 30 days about mass orders.

Q5: How about the cylinder's quality gurantee ?
      We have 1 year quality grantee of the cylinders.
      

Certification: ISO9001, IATF 16949:2016
Pressure: High Pressure
Work Temperature: Normal Temperature
Acting Way: Double Acting
Working Method: Straight Trip
Adjusted Form: Regulated Type
Samples:
US$ 1000/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

hydraulic cylinder

How do hydraulic cylinders ensure smooth and consistent movement in heavy machinery?

Hydraulic cylinders play a vital role in ensuring smooth and consistent movement in heavy machinery. Their design and operation allow for precise control over the motion of heavy loads, resulting in efficient and reliable performance. Here's a detailed explanation of how hydraulic cylinders contribute to smooth and consistent movement in heavy machinery:

1. Hydraulic Fluid and Pressure:

- Hydraulic cylinders operate by utilizing hydraulic fluid, typically oil, to transmit force and motion. The fluid is pressurized by a hydraulic pump, creating a force that acts on the piston inside the cylinder. The pressure of the hydraulic fluid can be precisely controlled, allowing for smooth and gradual movement of heavy machinery. The fluid's incompressibility ensures that the force is evenly distributed, resulting in consistent and predictable motion.

2. Piston and Cylinder Design:

- Hydraulic cylinders are designed with precision to ensure smooth movement. The piston and cylinder bore are machined to tight tolerances, reducing friction and minimizing internal leakage. This precise fit between the piston and cylinder walls helps maintain consistent motion without jerks or sudden changes in speed. Additionally, the use of high-quality seals and lubrication further enhances the smooth operation of the cylinder.

3. Control Valves and Flow Control:

- Hydraulic systems incorporate control valves that regulate the flow of hydraulic fluid into and out of the cylinder. These valves allow for precise control over the speed and direction of the cylinder's movement. By adjusting the flow rate, operators can achieve smooth and controlled motion of heavy machinery, avoiding sudden starts or stops. Flow control valves also enable speed adjustment, ensuring consistent movement even under varying loads or operating conditions.

4. Cushioning and Damping:

- Hydraulic cylinders can be equipped with cushioning mechanisms to absorb shock and minimize impacts during the movement of heavy machinery. Cushioning is achieved by incorporating specialized valves or adjustable orifices in the cylinder, which restrict the flow of hydraulic fluid near the end of the stroke. This gradual deceleration helps prevent sudden jolts or vibrations, maintaining smooth and consistent movement while reducing stress on the machinery and its components.

5. Load Balancing:

- Hydraulic cylinders can be designed and arranged in a system to balance the load and distribute forces evenly. By utilizing multiple cylinders in parallel or series configurations, heavy machinery can achieve balanced movement, preventing uneven stress and ensuring smooth operation. Load balancing also helps minimize the risk of component failure and enhances the overall stability and longevity of the machinery.

6. Feedback and Control Systems:

- Advanced hydraulic systems incorporate feedback sensors and control systems to monitor and adjust the movement of heavy machinery. These sensors provide real-time information about the position, speed, and force exerted by the hydraulic cylinders. The control system processes this data and adjusts the flow of hydraulic fluid accordingly to maintain smooth and consistent movement. By continuously monitoring and regulating the cylinder's operation, feedback and control systems contribute to precise and reliable motion control.

7. Maintenance and Servicing:

- Regular maintenance and servicing of hydraulic cylinders are essential to ensure their smooth and consistent movement in heavy machinery. Proper lubrication, inspection of seals, and replacement of worn-out components help maintain optimal performance. Preventive maintenance practices, such as filter replacements and fluid analysis, also contribute to the longevity and reliability of hydraulic systems, ensuring consistent movement over time.

In summary, hydraulic cylinders ensure smooth and consistent movement in heavy machinery through the use of hydraulic fluid and pressure, precise piston and cylinder design, control valves and flow control, cushioning and damping mechanisms, load balancing, feedback and control systems, and regular maintenance and servicing. By leveraging these features, hydraulic cylinders provide the necessary force and control to handle heavy loads while maintaining precise and reliable motion, enhancing the overall performance and productivity of heavy machinery in various industrial applications.

hydraulic cylinder

Utilizing Hydraulic Cylinders in Conjunction with Alternative Energy Sources

Hydraulic cylinders can indeed be used in conjunction with alternative energy sources. The versatile nature of hydraulic systems allows them to be integrated with various alternative energy technologies to enhance efficiency, control, and power generation. Let's explore some examples of how hydraulic cylinders can be utilized alongside alternative energy sources:

  1. Hydraulic Energy Storage: Hydraulic cylinders can be employed in energy storage systems that utilize alternative energy sources such as renewable sources (e.g., solar or wind) or waste energy recovery. These systems convert excess energy into hydraulic potential energy by pumping fluid into a high-pressure accumulator. When the energy is needed, the pressurized fluid is released, driving the hydraulic cylinder and generating mechanical power.
  2. Wave and Tidal Energy Conversion: Hydraulic cylinders can be utilized in wave and tidal energy conversion systems. These systems harness the power of ocean waves or tidal currents and convert it into usable energy. Hydraulic cylinders, along with associated pumps and valves, can be used to capture and control the energy from the waves or tides, driving the cylinders and generating mechanical power or producing electricity.
  3. Hydroelectric Power Generation: Hydraulic cylinders play a crucial role in traditional hydroelectric power generation. However, alternative approaches such as small-scale or micro-hydropower systems can also benefit from hydraulic cylinders. These systems utilize natural or man-made water flows to drive turbines connected to hydraulic cylinders, which then convert the hydraulic energy into mechanical power or electricity.
  4. Hydraulic Actuation in Wind Turbines: Hydraulic cylinders can be employed in wind turbines to enhance performance and control. For example, hydraulic pitch control systems use hydraulic cylinders to adjust the pitch angle of wind turbine blades, optimizing their aerodynamic performance based on wind conditions. This allows for efficient power generation and protection against excessive wind loads.
  5. Geothermal Energy Extraction: Geothermal energy extraction involves utilizing the natural heat from the Earth's interior to generate power. Hydraulic cylinders can be utilized in geothermal systems to control and regulate fluid flow, allowing for efficient extraction and utilization of geothermal energy. They can also be used in geothermal heat pumps for heating and cooling applications.

In summary, hydraulic cylinders can be effectively utilized in conjunction with alternative energy sources to enhance energy storage, power generation, and control. Whether it's through hydraulic energy storage systems, wave and tidal energy conversion, hydroelectric power generation, hydraulic actuation in wind turbines, or geothermal energy extraction, hydraulic cylinders offer versatile and efficient solutions for harnessing and utilizing alternative energy sources.

hydraulic cylinder

Can hydraulic cylinders be customized for specific equipment or attachment needs?

Yes, hydraulic cylinders can be customized to meet specific equipment or attachment needs. Hydraulic cylinder manufacturers often offer customization options to ensure that the cylinders meet the unique requirements of different applications. Here's a detailed explanation of how hydraulic cylinders can be customized for specific equipment or attachment needs:

1. Size and Configuration:

- Hydraulic cylinders can be customized in terms of size and configuration to fit specific equipment or attachment requirements. The dimensions of the cylinder, such as bore size, rod diameter, and stroke length, can be tailored to match the available space and the desired force or movement requirements. Additionally, the mounting style and orientation of the cylinder can be customized to ensure proper integration with the equipment or attachment.

2. Operating Pressure and Force:

- The operating pressure and force capabilities of hydraulic cylinders can be customized to suit the specific equipment or attachment needs. Different applications may require different force outputs, and hydraulic cylinder manufacturers can design and manufacture cylinders with the appropriate piston area and pressure ratings to meet those requirements. Customization in this aspect ensures optimal performance and efficiency for the particular equipment or attachment.

3. Stroke Length:

- The stroke length of a hydraulic cylinder refers to the distance the piston can travel from fully retracted to fully extended. Customization of the stroke length allows the hydraulic cylinder to accommodate the specific range of motion required by the equipment or attachment. By adjusting the stroke length, the cylinder can be tailored to deliver the necessary extension and retraction capabilities for efficient operation.

4. Mounting Options:

- Hydraulic cylinders can be customized with various mounting options to facilitate easy installation and integration with specific equipment or attachments. Different applications may require different mounting styles, such as flange mounts, trunnion mounts, or clevis mounts. Manufacturers can provide customized mounting options to ensure proper alignment, stability, and functionality when the cylinder is connected to the equipment or attachment.

5. Sealing and Material Options:

- The sealing system of a hydraulic cylinder is crucial for preventing fluid leakage and maintaining the cylinder's integrity. Hydraulic cylinder manufacturers offer customization options for sealing materials, such as different types of seals and seal configurations, to suit specific equipment or attachment needs. Additionally, customization of cylinder materials, such as selecting corrosion-resistant materials or specialized coatings, can enhance the cylinder's durability and performance in specific operating environments.

6. Integration with Control Systems:

- In certain applications, hydraulic cylinders may need to be integrated with sophisticated control systems or automation technologies. Customization can involve incorporating sensors, position feedback devices, or other control elements into the hydraulic cylinder design to enable seamless integration with the overall equipment or attachment control system. This customization ensures precise control, monitoring, and synchronization of the hydraulic cylinder's movements within the specific application.

7. Specialized Features or Accessories:

- Hydraulic cylinder customization can also involve incorporating specialized features or accessories to meet unique equipment or attachment needs. This may include the integration of safety features, such as pressure relief valves or load-holding valves, or the addition of specific ports or fittings for auxiliary functions or attachments. Customization allows hydraulic cylinders to be tailored to the specific requirements and functionalities of the equipment or attachment.

By offering customization options, hydraulic cylinder manufacturers can provide solutions that precisely match the needs of different equipment or attachment applications. Customized hydraulic cylinders ensure optimal performance, efficiency, and integration, enhancing the overall functionality and productivity of the equipment or attachment. It is important to work closely with experienced manufacturers or hydraulic system specialists to determine the specific customization requirements and ensure the successful implementation of customized hydraulic cylinders.

China manufacturer Excavators Construction Machinery Dumper Truck Hydraulic Cylinder for IATF 16949: 2016   with high quality China manufacturer Excavators Construction Machinery Dumper Truck Hydraulic Cylinder for IATF 16949: 2016   with high quality
editor by CX 2023-11-01

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

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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 factory 200ton 300ton 500ton hydraulic cylinder for construction machinery vacuum pump ac system

Product Description

100ton 200ton 300ton 500ton hydraulic cylinder for construction machinery

1.Describe:
Hydraulic cylinder can bear partial loading is 5% of rated pressure. High pressure alloy cylinder is very durable, especially in the larger project, it is easily to be operated and control. It can be used for lifting heavy machine, bridge project, hydraulic engineering, harbour construction and other equipment. It has large output, light weight, remote control and other advantages, it can match with our high pressure oil pump, it can reach jack, push, pull and extrusion and kinds of working.

2. Features

1. Integral stop ring provides piston blow-out protection
2. Double-acting for positive retraction
3. Baked enamel outside finish and plated pistons provide superior corrosion resistance
4. Safety valve in retract side of cylinder helps to prevent damage in case of accidental over-pressurization
5. Interchangeable, hardened grooved saddles are standard
6. Plunger wiper reduces contamination, extending cylinder life

 

Model Tonnage T Stroke mm Closed height mm Extend height mm Outer diameter of oil cylinder mm Dimension of plunger mm Dimension of oil pump  mm Weight kg Pressure
STQ50-100 50 100 225 325 127 70 100 35 63MPA
STQ50-160 160 285 445 39
STQ50-200 200 325 525 46
STQ50-300 300 425 725 48
STQ50-500 500 625 1125 63
STQ100-100 100 100 250 350 180 100 140 58
STQ100-160 160 310 470 63
STQ100-200 200 350 550 78
STQ100-300 300 450 750 96
STQ100-500 500 650 1150 130
STQ150-100 150 100 260 360 219 125 180 58
STQ150-160 160 320 480 69
STQ150-200 200 360 560 86
STQ150-300 300 460 760 103
STQ150-500 500 660 1160 255
STQ200-100 200 100 285 385 240 150 200 96
STQ200-160 160 345 505 103
STQ200-200 200 385 585 116
STQ200-300 300 485 785 161
STQ200-500 500 685 1185 221
STQ320-100 320 100 310 410 330 180 250 196
STQ320-160 160 370 530 240
STQ320-200 200 410 610 258
STQ320-300 300 510 810 311
STQ320-500 500 710 1210 456
STQ400-100 400 100 355 455 380 200 290 198
STQ400-160 160 415 575 231
STQ400-200 200 460 660 264
STQ400-300 300 555 855 367
STQ400-500 500 755 1255 456
STQ500-100 500 100 360 460 430 200 320 323
STQ500-160 160 420 580 330
STQ500-200 200 460 660 420
STQ500-300 300 560 860 581
STQ500-500 500 760 1260 599
STQ630-100 630 100 417 517 500 250 360 560
STQ630-160 160 477 637 633
STQ630-200 200 517 717 696
STQ630-300 300 617 917 898
STQ630-500 500 817 1317 1250
STQ800-100 800 100 488 588 560 300 400 896
STQ800-200 200 598 798 1040
STQ800-300 300 698 998 1380
STQ800-500 500 898 1398 1520
STQ1000-100 1000 100 530 630 600 320 450 1286
STQ1000-200 200 630 830 1332
STQ1000-300 300 760 1060 1663

If the model you are looking for is not available, please contact us! We will customize it according to your needs.

3. Application:
Our hydraulic jacks have been widely used for industrial field, such as steel plant, cement industry, chemical and refinery, bridge, railway, highway, hydropower station, ship repair, building, construction and maintenance.

4.Company information:
HangZhou Lead Equipment Co., Ltd. Have been in hydraulic tools industry since 2009.
Our main products as follow:
Single acting hydraulic jack/cylinder/ram (10-100 tons)
Single acting hollow hydraulic jack/cylinder/ram (12-100 tons)
Double acting hydraulic jack/cylinder/ram (50-2000 tons)
Double acting hollow hydraulic jack/cylinder/ram (50-2000 tons)
Single acting hydraulic jack/cylinder/ram with lock nut (55-200 tons)
Thin type single acting hydraulic jack/cylinder/ram (10-200 tons)
Ultrathin hydraulic jack/cylinder/ram (10-200 tons)
Flange type hydraulic jack/cylinder/ram (10-630 tons)
Synchronous hydraulic jack (10-1000 tons)
Hydraulic accessories: high pressure oil hose, couplers, seal kits, mainfold, etc.
All the tonnage, stroke, height can be customized according to client's requirements, supply the best quality and serve. Our warranty is 2 years.

Certification: CE, SGS
Pressure: High Pressure
Work Temperature: Normal Temperature
Acting Way: Double Acting
Working Method: Rotary
Adjusted Form: Switching Type
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

Impact of Hydraulic Cylinders on Overall Productivity of Manufacturing Operations

Hydraulic cylinders play a crucial role in enhancing the overall productivity of manufacturing operations. These versatile devices are widely used in various industrial applications due to their ability to generate powerful and controlled linear motion. Let's explore how hydraulic cylinders impact the overall productivity of manufacturing operations:

  1. Powerful Force Generation: Hydraulic cylinders are capable of generating high forces, which enables them to handle heavy loads and perform demanding tasks. By providing the necessary force, hydraulic cylinders facilitate efficient and effective operation of machinery and equipment in manufacturing processes. This ability to exert substantial force contributes to increased productivity by enabling the handling of larger workpieces, enhancing process efficiency, and reducing manual labor requirements.
  2. Precision and Control: Hydraulic cylinders offer precise control over the movement of loads, allowing for accurate positioning, alignment, and repetitive tasks. The smooth and controlled linear motion provided by hydraulic cylinders ensures precise operation in manufacturing processes, such as assembly, material handling, and machining. This precision and control minimize errors, rework, and scrap, leading to improved productivity and higher-quality output.
  3. Speed and Efficiency: Hydraulic cylinders can operate at high speeds, enabling rapid movement and cycle times in manufacturing operations. The combination of high force and speed allows for faster operation of machinery and equipment, reducing production cycle times and increasing overall throughput. By optimizing the speed and efficiency of manufacturing processes, hydraulic cylinders contribute to improved productivity and output.
  4. Flexibility and Adaptability: Hydraulic cylinders are highly flexible and adaptable to different manufacturing applications. They can be customized to meet specific requirements, such as load capacity, stroke length, and mounting options. This versatility allows hydraulic cylinders to be integrated into a wide range of machinery and equipment, accommodating diverse manufacturing needs. The ability to adapt to different tasks and environments enhances overall productivity by enabling efficient utilization of resources and facilitating process optimization.
  5. Reliability and Durability: Hydraulic cylinders are known for their robustness and durability, making them suitable for demanding manufacturing environments. Their ability to withstand heavy loads, repeated use, and harsh operating conditions ensures reliable performance over extended periods. Minimizing downtime due to cylinder failure or maintenance requirements contributes to increased productivity and uninterrupted manufacturing operations.

In summary, hydraulic cylinders have a significant impact on the overall productivity of manufacturing operations. Their powerful force generation, precision and control, speed and efficiency, flexibility and adaptability, as well as reliability and durability, contribute to optimized processes, increased throughput, improved quality, and reduced labor requirements. By leveraging the capabilities of hydraulic cylinders, manufacturers can enhance productivity, streamline operations, and achieve greater efficiency in their manufacturing processes.

hydraulic cylinder

How do hydraulic cylinders generate force and motion using hydraulic fluid?

Hydraulic cylinders generate force and motion by utilizing the principles of fluid mechanics, specifically Pascal's law, in conjunction with the properties of hydraulic fluid. The process involves the conversion of hydraulic energy into mechanical force and linear motion. Here's a detailed explanation of how hydraulic cylinders achieve this:

1. Pascal's Law:

- Hydraulic cylinders operate based on Pascal's law, which states that when pressure is applied to a fluid in a confined space, it is transmitted equally in all directions. In the context of hydraulic cylinders, this means that when hydraulic fluid is pressurized, the force is evenly distributed throughout the fluid and transmitted to all surfaces in contact with the fluid.

2. Hydraulic Fluid and Pressure:

- Hydraulic systems use a specialized fluid, typically hydraulic oil, as the working medium. This fluid is stored in a reservoir and circulated through the system by a hydraulic pump. The pump pressurizes the fluid, creating hydraulic pressure that can be controlled and directed to various components, including hydraulic cylinders.

3. Cylinder Design and Components:

- Hydraulic cylinders consist of several key components, including 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.

4. Fluid Input and Motion:

- To generate force and motion, hydraulic fluid is directed into one side of the cylinder, creating pressure on the corresponding surface of the piston. This pressure is transmitted through the fluid to the other side of the piston.

5. Force Generation:

- The force generated by a hydraulic cylinder is a result of the pressure applied to a specific surface area of the piston. The force exerted by the hydraulic cylinder can be calculated using the formula: Force = Pressure × Area. The area is determined by the diameter of the piston or the piston rod, depending on which side of the cylinder the fluid is acting upon.

6. Linear Motion:

- As the pressurized hydraulic fluid acts on the piston, it generates a force that moves the piston in a linear direction within the cylinder. This linear motion is transferred to the piston rod, which extends or retracts accordingly. The piston rod can be connected to external components or machinery, allowing the generated force to perform various tasks, such as lifting, pushing, pulling, or controlling mechanisms.

7. Control and Regulation:

- The force and motion generated by hydraulic cylinders can be controlled and regulated by adjusting the flow of hydraulic fluid into the cylinder. By regulating the flow rate, pressure, and direction of the fluid, the speed, force, and direction of the cylinder's movement can be precisely controlled. This control allows for accurate positioning, smooth operation, and synchronization of multiple cylinders in complex machinery.

8. Return and Recirculation of Fluid:

- After the hydraulic cylinder completes its stroke, the hydraulic fluid on the opposite side of the piston needs to be returned to the reservoir. This is typically achieved through hydraulic valves that control the flow direction, allowing the fluid to return and be recirculated in the system for further use.

In summary, hydraulic cylinders generate force and motion by utilizing the principles of Pascal's law. Pressurized hydraulic fluid acts on the piston, creating force that moves the piston in a linear direction. This linear motion is transferred to the piston rod, allowing the generated force to perform various tasks. By controlling the flow of hydraulic fluid, the force and motion of hydraulic cylinders can be precisely regulated, contributing to their versatility and wide range of applications in machinery.

China factory 200ton 300ton 500ton hydraulic cylinder for construction machinery   vacuum pump ac system	China factory 200ton 300ton 500ton hydraulic cylinder for construction machinery   vacuum pump ac system
editor by CX 2023-10-31