The A10VG 28DA1D4/10R-NSC10F005SH hydraulic pump is part of the A10VG series produced by a renowned manufacturer.
It is a variable displacement axial piston pump designed to provide precise control of hydraulic systems. This pump operates on the axial piston principle, making it ideal for applications that require high pressure and high flow rates.
One of the notable features of the A10VG 28DA1D4/10R-NSC10F005SH pump is its variable displacement capability. It can adjust the displacement volume, allowing the user to control the flow rate and pressure according to the specific needs of the system. This feature provides flexibility and energy efficiency, as the pump only delivers the required amount of hydraulic fluid, minimizing wastage and reducing energy consumption.
The pump has a displacement of 28 cm³/rev, meaning it can deliver 28 cubic centimeters of fluid per revolution. This displacement volume is suitable for a wide range of applications, including but not limited to industrial machinery, construction equipment, and mobile hydraulic systems. The maximum operating pressure of the pump is 280 bar, enabling it to handle demanding tasks and operate efficiently under high-pressure conditions.
The A10VG 28DA1D4/10R-NSC10F005SH pump is designed with high-quality materials and precision engineering to ensure reliability and durability. It features robust construction, including a sturdy housing, high-performance pistons, and precise control mechanisms. These components are built to withstand demanding operating conditions and provide long service life, reducing maintenance costs and downtime.
In terms of technical specifications, the pump has a rated speed range of 1800 to 3000 RPM (revolutions per minute), allowing for versatile operation in different applications.
The pump's control mechanism is a hydraulic servo proportional control system, ensuring precise and responsive control over the displacement and flow rate.
The A10VG 28DA1D4/10R-NSC10F005SH pump also offers excellent efficiency. Its advanced design and hydraulic system optimization minimize energy losses, resulting in higher overall system efficiency. This efficiency translates into reduced operating costs and improved productivity.
The pump is equipped with various safety features to protect the system and components from damage. These include pressure relief valves, anti-cavitation valves, and a built-in temperature sensor. These safety measures help maintain system integrity and prevent potential failures or malfunctions.