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1" SAE Flange 3000 PSI x 1" BSP Female (c/w Metric Bolts, Washers & O-ring)
£28.33Ex. VAT£34.00Incl. VAT
Product Description
The BSP Threaded SAE Flange rated for 3000 PSI is a vital component in hydraulic systems, designed to ensure secure and leak-proof connections between various hydraulic components. This flange is manufactured to meet stringent industry standards.
Key Features:
- BSP Threaded Connection: Features BSP threading, allowing for easy and secure attachment to various hydraulic components commonly used in the UK and internationally.
- SAE Standard Compliance: Manufactured to SAE J518 specifications, ensuring compatibility with other SAE components for seamless integration into hydraulic systems.
- High-Pressure Rating: Capable of withstanding pressures up to 3000 PSI, making it suitable for a variety of high-pressure hydraulic applications.
- Precision Machining: Engineered for a precise fit, ensuring effective sealing and minimising the risk of leaks in the hydraulic system.
- Versatile Application: Suitable for a range of hydraulic systems, including those used in machinery, industrial equipment, and fluid transfer applications.
Benefits:
- Corrosion Resistance: The durable construction ensures resistance to corrosion and rust, enhancing the longevity of the flange and reducing the need for frequent replacements.
- Leak-Proof Performance: The effective sealing design prevents hydraulic fluid leakage.
- Reliability in High-Pressure Systems: Designed to handle pressures up to 3000 PSI, this flange is built to perform reliably in demanding hydraulic applications.
- Cost-Effective Solution: By ensuring leak prevention and maintaining system integrity, this flange helps reduce maintenance costs and downtime.
- Easy Installation: The BSP threaded design allows for straightforward installation and removal, facilitating quick maintenance and reducing system downtime.
- Wide Compatibility: The SAE-compliant design ensures easy integration with various hydraulic components, providing versatility across different applications.