TRALE EN 857 2SC DN 1" PRODUCT CODE - 2SC-16-T

Manufacturer Code - M2SC16

£11.82Ex. VAT£14.18Incl. VAT

QUANTITY DISCOUNT
50 + 35%
Buy 50m and get 35% off
QTY

Product Description

The EN 857 2SC Hose is a compact, high-pressure hydraulic hose that is specifically designed to meet the stringent requirements of the EN 857 2SC standard. It is reinforced with two layers of high-tensile steel wire braids, making it lighter, more flexible, and thinner than traditional high-pressure hoses.

Key Features

  • Double Steel Wire Reinforcement: The hose is reinforced with two layers of high-tensile steel wire braiding.
  • Compact Design: The EN 857 2SC hose has a smaller outside diameter compared to conventional high-pressure hoses.
  • Weather and Abrasion Resistance: The outer cover is constructed from synthetic rubber that is highly resistant to wear, abrasion, ozone, and weathering.
  • High Pressure Ratings: Designed to handle pressures up to 5000 psi (depending on the hose diameter), making it suitable for heavy-duty hydraulic applications.
  • Wide Operating Temperature Range: Capable of operating within a temperature range from -40°C to +100°C.

Benefits

  • Space-Saving Solution: The compact design of the EN 857 2SC hose allows for easier routing and installation in confined spaces.
  • High-Pressure Performance: With double-wire reinforcement, the hose is suitable for applications that require consistent high pressure.
  • Durable Construction: The hose’s oil-resistant inner tube and abrasion-resistant cover ensure a long-lasting, durable product that reduces the need for frequent replacements and lowers maintenance costs.
  • Increased Flexibility: The flexibility of the EN 857 2SC hose makes it easier to handle and route during installation.
  • Safety and Reliability: The hose meets stringent EN 857 2SC standards, ensuring safe and reliable operation under high pressure.
  • Cost-Effective: Its durable construction, long service life, and resistance to wear make it a cost-effective option for industries that require consistent hydraulic performance.