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SAE 100 R1 HIGH TEMPERATURE HYDRAULIC HOSE

The SAE 100 R1 AT High Temperature Hydraulic Hose is engineered for high-temperature medium-pressure hydraulic systems in industries such as earthmoving and other industrial applications. With an inner tube composed of oil-resistant synthetic rubber, this hose is designed for reliable performance even under elevated temperatures.


Its single braid of high-tensile steel wire reinforcement offers enhanced strength and flexibility. The hose can withstand temperatures ranging from -40°C to +150°C (-40°F to +302°F) and meets the required standards, including SAE 100 R1 AT, DIN EN 853 1SN, and MSHA, ensuring quality and durability in demanding environments.


Application: High temperature medium pressure hydraulic systems in various industrial, earthmoving and other applications.

Inner Tube: Oil-resistant synthetic rubber

Reinforcement: Single braid of high-tensile steel wire

Temperature: -40°C to +150°C (-40°F to +302°F)

Standard: SAE 100 R1 AT, DIN EN 853 1SN, MSHA

SAE 100 R1 HIGH TEMPERATURE HYDRAULIC HOSE

Application: High temperature medium pressure hydraulic systems in various industrial, earthmoving and other applications.

Inner Tube: Oil-resistant synthetic rubber

Reinforcement: Single braid of high-tensile steel wire

Temperature: -40°C to +150°C (-40°F to +302°F)

Standard: SAE 100 R1 AT, DIN EN 853 1SN, MSHA

The SAE 100 R1 AT High Temperature Hydraulic Hose is engineered for high-temperature medium-pressure hydraulic systems in industries such as earthmoving and other industrial applications. With an inner tube composed of oil-resistant synthetic rubber, this hose is designed for reliable performance even under elevated temperatures.


Its single braid of high-tensile steel wire reinforcement offers enhanced strength and flexibility. The hose can withstand temperatures ranging from -40°C to +150°C (-40°F to +302°F) and meets the required standards, including SAE 100 R1 AT, DIN EN 853 1SN, and MSHA, ensuring quality and durability in demanding environments.


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