The A10VG 18EP41/10R-NSC16F016SP hydraulic pump is part of the A10VG series manufactured by a renowned hydraulic equipment company.
It is a variable displacement axial piston pump, which means it can adjust its displacement based on the flow requirements of the system. This feature allows for precise control over the hydraulic power output, making it suitable for applications that demand varying flow rates.
One of the notable specifications of this pump is its displacement range. The "18" in the model number indicates that it has a maximum displacement of 18 cm³ per revolution. This displacement capacity determines the volume of fluid the pump can deliver in one revolution and is an important factor in determining the overall hydraulic power output.
The pump is designed to operate at a maximum pressure of 400 bar (5,800 psi). This high-pressure rating enables it to handle demanding tasks that require significant force or pressure, such as heavy lifting, excavating, or powering hydraulic motors. The pump's robust construction and quality materials ensure its durability and reliability even under extreme operating conditions.
The A10VG 18EP41/10R-NSC16F016SP hydraulic pump features a 10-degree swashplate angle. The swashplate angle affects the pump's displacement and flow rate characteristics. By adjusting the swashplate angle, the operator can regulate the output flow of the pump and thus control the speed and force of the hydraulic system.
Furthermore, the pump is equipped with a 16F displacement control mechanism.
This mechanism allows for precise control over the pump's displacement, enabling fine-tuning of the hydraulic power output. The displacement control can be achieved manually or electronically, depending on the specific requirements of the application.
The A10VG 18EP41/10R-NSC16F016SP hydraulic pump incorporates advanced noise reduction technology, ensuring quiet operation. This feature is particularly beneficial in applications where noise reduction is essential, such as indoor machinery or noise-sensitive environments.