The pump belongs to the radial piston pump family, known for their excellent volumetric efficiency and high-pressure capabilities.
The 2R5 model specifically features two pistons arranged in a radial configuration. This design ensures smooth and consistent fluid flow, minimizing pulsations and pressure variations.
One of the key specifications of the 2R5 pump is its displacement capacity. It is capable of delivering a maximum displacement of 2.5 cc/rev (cubic centimeters per revolution). This displacement capacity determines the volume of fluid delivered by the pump with each revolution of the drive shaft. It is an essential parameter for sizing and matching the pump to the specific hydraulic system requirements.
The 2R5 pump is designed to operate at high pressures, with a maximum pressure rating of 250 bar (25 MPa). This makes it suitable for demanding applications that require substantial force and power. The pump's ability to maintain pressure stability contributes to the overall efficiency and performance of the hydraulic system.
In terms of speed, the 2R5 pump can operate at a maximum speed of 2000 RPM (revolutions per minute). The rotational speed affects the flow rate and pressure capabilities of the pump. The pump's speed rating ensures compatibility with a variety of hydraulic systems, providing flexibility in application usage.
The 2R5 pump is built with durable materials to withstand demanding environments.
It features a cast iron body that offers excellent strength and resistance to wear. The pistons are typically made of high-quality steel, ensuring reliability and longevity. The pump's construction is designed to minimize internal leakage and maximize efficiency.
Furthermore, the pump incorporates advanced sealing technology to prevent fluid leakage. This ensures the hydraulic system maintains its performance and avoids potential damage or inefficiencies. The pump's seals are designed to withstand high pressures and provide a tight seal even under demanding conditions.
The 2R5 pump can be driven by various types of prime movers, such as electric motors or internal combustion engines. Its flexible design allows for easy integration into different hydraulic systems. The pump can be connected to the prime mover through a coupling or belt drive, depending on the specific application requirements.