Description
- Construction: SAE 100R13 hydraulic hoses are typically constructed with a six-layer structure, consisting of an inner tube, multiple layers of spiral-wound high-tensile steel wire reinforcement, and an outer cover.
- Inner Tube: The inner tube of the hose is usually made of synthetic rubber or thermoplastic material, serving as a barrier to contain hydraulic fluid and prevent leakage. It must be compatible with the type of fluid it will come into contact with.
- Multiple Layers of Spiral-Wound Steel Wire Reinforcement: SAE 100R13 hoses feature multiple layers of high-tensile steel wire reinforcement. These layers provide exceptional strength and flexibility, allowing the hose to withstand extremely high pressure and handle the stresses of hydraulic systems operating under such conditions.
- Outer Cover: The outer cover of the hose is typically made of a synthetic rubber compound that is resistant to abrasion, weather, and various environmental conditions. It protects the inner layers from external damage and helps prolong the hose’s lifespan.
- Pressure Rating: SAE 100R13 hydraulic hoses are designed for high-pressure hydraulic systems and have a high pressure rating, which can range from 5,000 to 6,000 psi (pounds per square inch) or even higher, depending on the manufacturer and materials used.
- Temperature Range: These hoses are designed to operate within a specific temperature range, typically from -40°C to 121°C (-40°F to 250°F), but the exact range may vary depending on the manufacturer and materials used.
- Application: SAE 100R13 hoses are suitable for applications with very high-pressure hydraulic fluid transfer, such as in heavy machinery, construction equipment, mining equipment, and other industrial applications where extreme pressure resistance is required.
- Compatibility: SAE 100R13 hydraulic hoses are designed to work with a variety of hydraulic fluids, including mineral oils, water-based fluids, and some synthetic oils. Ensuring compatibility with the specific fluid used in your application is crucial for optimal performance and safety.
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