Fixture1

 



HYDRAULIC CYLINDERS

 

ME5 Head Mounting Rectangular

ME6 Cap Mounting Rectangular MT1 Head Mounting Integral Trunnion MT2 Cap Mounting
Integral Trunnion
MT4 MountingWith
Intermediate Fixed Trunnion
ME5 ME6 MT1 MT2 MT4
MX2-Cap Mounting
Tie Rods Extended
MX3-Head Mounting
Tie Rods Extended
MP1-Cap Mounting
Fixed Clevis
MP3-Cap Mounting
Fixed Eye
MS2-Mounting
With Side Lugs
MX2 MX3 MP1 MP3 MS2

Details

Specifications :

  •  Max. pressure - 160 bar.
  •  Max reciprocating speed - 12 m/min.
  •  Break-away pressure - 3 to 5 bar.
  •  Standard cushioning length - 20 mm.
  •  Minimum cushioning speed -
  •  400 mm/min or less adjustable.
  •  Cushioning is available from 63 mm bore onwards only.
  •  For Bronze filled teflon seals, min. speed without stimm/min.ck-slip - 5

    HPCPL Hydraulic Cylinders are as per ISO 6020/2 (second edition 1991-09-15) and are suitable upto 160 bar pressure.

    Features and Benefits:

  •  The Piston Rod is toughened, ground, hard chrome plated and polished to ensure a smooth, dent & rust resistant surface for
     best sealing and long life.
  •  The Cylinder Tube is to meet close standards of straightness, roundness and surface finish for longer seal life and performance.
  •  Floating Cushion Bush and Sleeve. The floating cushion bush and sleeve are self centering, allowing close tolerances and
     therefore more effective cushioning. For the return stroke, a ball check valve at the head end and the lifting bush at the cap end
     allow free flow for fast cycle time.
  •  HPCPL Seals : HPCPL uses Polyurethene seals for rod & piston. Groove dimentions are as per international standards. Standard
     option is a new generation compound seals . In these compound seals, sealing element is "Bronze + MoS2" filled teflon ring
     and 'O' ring is used as an elastomer. "FLAT Seal" is used for piston and "STEP seal" is used for rod. The sealing is due to the
     interference fit of the profile ring and the 'O' ring squeeze. As these seals are self energizing, the sealing force is directly proportional
     to the system pressure.

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