The A10VG 28HWDT1/10R-NSC10F015S hydraulic pump is part of the A10VG series, which is produced by a reputable manufacturer known for its high-quality hydraulic products.
This specific model has a displacement of 28 cc/rev and is designed for medium-duty applications. It is capable of delivering pressures up to 350 bar, making it suitable for various hydraulic systems that require high-pressure operation.
One of the key features of the A10VG 28HWDT1/10R-NSC10F015S pump is its axial piston design. It consists of a series of pistons arranged in a circular pattern within a cylinder block. As the pistons reciprocate, they generate the pumping action, which pressurizes the hydraulic fluid and delivers it to the system. This design ensures smooth and efficient operation, reducing energy loss and improving overall system performance.
The pump's displacement is adjustable, allowing for precise control of the hydraulic system's flow rate. This feature is particularly useful in applications where varying flow rates are required, such as in mobile machinery, construction equipment, and industrial processes. The pump's displacement can be easily adjusted using external controls, enabling operators to optimize system performance according to specific operational requirements.
To ensure durability and longevity, the A10VG 28HWDT1/10R-NSC10F015S pump is built with high-quality materials and precision manufacturing techniques.
It has a rugged housing that can withstand harsh operating conditions, including high temperatures, heavy loads, and extreme vibrations. The pump's internal components are designed to minimize wear and ensure smooth operation, resulting in reduced maintenance and extended service life.
The A10VG 28HWDT1/10R-NSC10F015S pump incorporates advanced technologies to enhance its performance and efficiency. It features a swashplate design that allows for variable displacement, enabling efficient power management and reducing energy consumption. This feature contributes to cost savings and environmental sustainability by minimizing power wastage and maximizing system efficiency.