Enerpac RCH1211 - Cylinder - 13 Tons - Stroke 42 mm.

Enerpac RCH1211 - Cylinder - 13 Tons - Stroke 42 mm.

Product no.: RCH-1211
6.007 DKK (excl. VAT)

Hydraulic jack

Hollow cylinder: 13 Tons - Stroke: 42 mm.

Diameter center hole: 20 mm.

2-4 days
Pcs
Specifications
Max pressure (Bar): 700
Stroke (mm) 42

Enerpac Single-Acting Hollow Plunger Cylinder

The Enerpac RCH1211 is a robust hydraulic cylinder designed for both pulling and pushing forces. This model has a capacity of 13.8 tons (125 kN) and is equipped with a hollow bore, allowing the cylinder to be used for both pull and push operations. It is ideal for applications where both push and pull forces need to be applied to a load, such as cable tensioning or pulling heavy objects.

Features

  • Hollow Plunger Design: The hollow plunger design allows for a threaded steel rod to pass through the cylinder and be attached to a load, enabling both pull and push operations.

  • Single-Acting with Spring Return: This cylinder features a single-acting function with a spring return, meaning the spring helps to retract the plunger when the pressure is released.

  • Steel Construction: Built from durable steel, ensuring long life and reliable performance under demanding conditions.

  • Compact and Lightweight: Weighing only 2.8 kg and with a compact size, this hydraulic cylinder is ideal for use in tight working spaces.

  • Maximum Precision and Reliability: Perfect for applications requiring precise control over both pull and push forces.

Specifications:

Maximum Operating Pressure Capacity: 700 bar

Capacity Class: 12 tons

Maximum Cylinder Capacity Forward (kN): 125 kN

Stroke: 42 mm

Collapsed Height: 120 mm

Extended Height : 162 mm

Center Hole Diameter: 19.5 mm

Return Type: Single-Acting, Spring Return

Plunger Type: Hollow Plunger

Material: Steel

Effective Cylinder Area Forward (cm²): 17.9 cm²

Oil Capacity Forward (cm³): 75 cm³

Surface Treatment: Painted

Coupling: AR630 Coupling

Weight: 2.8 kg

The Enerpac RCH1211 is ideal for applications requiring precise control over both pull and push forces, and it is suitable for a wide range of industrial applications where high precision and reliability are critical.