The A10VG 63EP4D1/10R-NTC10F075DP belongs to the A10VG series of axial piston variable displacement pumps manufactured by a well-known hydraulic equipment company.
It has a displacement of 63 cc per revolution, which refers to the amount of fluid it can deliver with each revolution. This displacement value determines the pump's capacity and flow rate, making it suitable for medium-duty applications.
The pump features a 4D1 control device, which provides precise control over the displacement and flow rate of the pump. This control device allows for easy adjustment of the pump output, making it versatile for different operating conditions. It also incorporates a 10R hydraulic control mode, enabling smooth and efficient operation, especially in load-sensing systems.
The NTC10F075DP designation signifies the pump's mounting style and pressure rating. The pump is designed to be flange-mounted, ensuring a secure and rigid installation. This mounting style is commonly used in hydraulic systems where space is limited. The pump is capable of handling a maximum operating pressure of 350 bar (5075 psi), making it suitable for demanding applications that require high-pressure performance.
The A10VG 63EP4D1/10R-NTC10F075DP hydraulic pump features an advanced swashplate design. The swashplate is responsible for converting the rotary motion of the pump's drive shaft into the axial reciprocating motion of the pistons. This design ensures smooth and efficient power transmission, resulting in improved overall pump performance and reduced energy consumption.
Furthermore, the pump incorporates a high-quality displacement control mechanism.
This mechanism allows for precise and stepless adjustment of the pump displacement, enabling operators to optimize the system's performance based on specific requirements. The pump also features excellent starting characteristics, ensuring reliable operation even under challenging conditions.
The A10VG 63EP4D1/10R-NTC10F075DP hydraulic pump is designed for durability and longevity. It utilizes high-quality materials and components, including hardened cylinder surfaces and robust piston rings, to withstand demanding operating conditions. The pump's design also includes efficient filtration and cooling systems to enhance reliability and prevent system contamination.