The 2RCE3 Polyhydron Radial Piston Double Pump is designed to deliver high-pressure hydraulic fluid for industrial and mobile machinery applications.
It features a radial piston design, which ensures smooth and precise operation even under demanding loads and pressures. The pump consists of two sets of radial pistons arranged in a balanced manner, providing continuous and pulsation-free fluid flow.
This pump is capable of delivering a maximum pressure of up to 350 bar (5075 psi) and a maximum displacement of 4.4 cc/rev (0.27 in³/rev). It operates within a speed range of 600-1800 RPM, offering flexibility to accommodate various application requirements. The compact size and lightweight construction of the pump make it suitable for installations where space is limited.
The 2RCE3 Polyhydron Radial Piston Double Pump stands out for its high efficiency. It incorporates a precision-machined swash plate mechanism, which ensures efficient power transmission from the drive shaft to the pistons. This design minimizes energy losses and increases overall system efficiency, resulting in reduced operating costs and improved productivity.
Durability and long service life are prioritized in the construction of the 2RCE3 Polyhydron Radial Piston Double Pump.
The pistons are made of hardened steel, providing excellent wear resistance and the ability to withstand harsh operating conditions. The pump housing is constructed from a robust aluminum alloy, offering lightweight yet durable protection against external impacts.
To ensure reliable performance, the 2RCE3 Polyhydron Radial Piston Double Pump incorporates advanced sealing technology. The pump utilizes high-quality piston seals and shaft seals to prevent fluid leakage, ensuring consistent and dependable operation over time. This sealing arrangement reduces maintenance requirements and contributes to increased uptime and productivity.
The pump is compatible with a wide range of hydraulic fluids, including mineral oil, synthetic oil, and biodegradable fluids, allowing for versatility and seamless integration into existing hydraulic systems without the need for major modifications.