The A10VO 45DFLR/31L-PSC62K04 belongs to the A10VO series of axial piston variable pumps, manufactured by Bosch Rexroth.
It features a displacement of 45 cc/rev, making it suitable for medium to large-scale hydraulic systems. The pump utilizes the axial piston principle to convert mechanical energy into hydraulic power, delivering consistent and precise fluid flow.
One of the notable features of the A10VO 45DFLR/31L-PSC62K04 pump is its 31L control device. This control device offers load-sensing functionality, enabling the pump to adjust the flow rate based on the system's demand. This feature optimizes energy efficiency by supplying only the required amount of hydraulic fluid, reducing power consumption and enhancing overall system performance.
The pump also incorporates a highly efficient swashplate design, allowing for smooth and precise control of the piston stroke. The swashplate angle can be adjusted, enabling the pump to deliver variable flow rates and pressure levels. This versatility makes the A10VO 45DFLR/31L-PSC62K04 pump suitable for applications with varying operating conditions and load requirements.
In terms of pressure capabilities, the A10VO 45DFLR/31L-PSC62K04 pump offers a maximum operating pressure of 350 bar (5075 psi). This robust pressure rating ensures the pump can handle demanding hydraulic systems and provides a reliable power source for heavy-duty applications.
Furthermore, the A10VO 45DFLR/31L-PSC62K04 pump features a built-in pressure cut-off function.
This safety feature protects the pump and the entire hydraulic system from excessive pressure by automatically shutting off the pump when the pressure exceeds a predefined threshold. This safeguard prevents potential damage and ensures the longevity of the equipment.
The pump is constructed using high-quality materials to withstand demanding operating conditions. It is designed to be resistant to wear, ensuring durability and longevity even in harsh environments. The A10VO 45DFLR/31L-PSC62K04 pump also incorporates efficient sealing technology to prevent internal leakage, enhancing its overall efficiency and reliability.