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0531601533

HAD0,35-160-1X/0F08A-2N111-USA

Manufacturer: Bosch Rexroth

Material #: 0531601533

Model : HAD0,35-160-1X/0F08A-2N111-USA


***Disclaimer: The following summary contains information gathered from various sources such as product descriptions, technical specifications and catalogs. While efforts have been made to provide accurate details, inaccuracies may occur. It is advised to verify all information by contacting Bosch Rexroth directly.***
The Model Code HAD035-160-1X/0F08A-2N111-USA (Material Number 0531601533) is a diaphragm-type hydraulic accumulator designed to efficiently manage the storage and release of hydraulic fluid within a system. This model serves as a critical component in hydraulic circuits, where it performs the dual function of absorbing fluid under pressure and discharging it back into the system when needed. The accumulator's construction includes a robust, pressure-resistant steel vessel that can take on spherical to cylindrical shapes, ensuring durability and reliability under varying operational conditions. At the core of this accumulator is a high-quality diaphragm made from an elastic elastomer material, which acts as a gas-tight separator between the fluid and gas sections. The closing button and plug screw (gas filling screw) are integral parts of the design, facilitating secure sealing and ease of maintenance. This particular model adheres to the stringent requirements of the Pressure Equipment Directive 97/23/EC, which governs the design and fabrication standards for pressure vessels within Europe. The HAD035-160-1X/0F08A-2N111-USA accumulator is engineered to handle maximum operating overpressure scenarios with efficiency while maintaining safety standards. Its ability to accept variable volumes of pressurized liquid makes it versatile for various applications where energy conservation, shock absorption, or supplementary power is required. Additionally, its diaphragm material is selected to suit different applications, ensuring compatibility with various types of hydraulic fluids and operating conditions. Overall, this model offers reliability for systems requiring precision control over fluid dynamics without compromising on safety or performance.

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