The A10VG 63EP4D1/10L-NSC10F025SH pump belongs to the A10VG series, which is manufactured by a renowned hydraulic equipment company.
This series is known for its high-performance capabilities and reliability. The pump has a nominal size of 63 and features an EP4D1 control device, which allows for accurate regulation of hydraulic flow and pressure.
One important specification of the A10VG 63EP4D1/10L-NSC10F025SH pump is its displacement volume. The displacement volume indicates the amount of fluid that the pump can transfer in a single revolution. In this case, the pump has a displacement volume of 10 cm³/rev. This value determines the flow rate and is crucial for selecting the appropriate pump for a specific application.
Furthermore, the pump operates at a maximum pressure of 400 bar (40 MPa). This high-pressure capability makes it suitable for demanding hydraulic systems that require substantial force or power. The pump's ability to generate high pressure allows it to handle heavy loads and perform tasks efficiently in various industrial settings.
The A10VG 63EP4D1/10L-NSC10F025SH pump also features a robust construction that ensures durability and longevity. The pump body is made from high-quality materials such as cast iron or steel, providing excellent resistance to wear and corrosion. This construction enables the pump to withstand challenging operating conditions and maintain optimal performance over an extended period.
Moreover, the pump incorporates a range of advanced technologies to enhance its efficiency.
It utilizes axial piston design, which ensures smooth operation and minimizes energy losses. This design also allows for precise control of fluid flow, contributing to better overall system performance.
Another notable feature of the A10VG 63EP4D1/10L-NSC10F025SH pump is its versatility in terms of installation options. The pump can be mounted in various positions, including horizontal and vertical orientations, depending on the requirements of the system. This flexibility enables seamless integration into different hydraulic setups, enhancing its adaptability and usability.