The K3V112DT-HN0V hydraulic pump is designed to meet the rigorous requirements of the DH225-7 excavator, ensuring efficient operation and optimal power transmission.
This pump operates on the axial piston principle, delivering hydraulic fluid under high pressure for smooth and precise movement of the excavator's hydraulic system.
With a displacement of 112 cc/rev, the K3V112DT-HN0V hydraulic pump offers substantial fluid flow capacity, enabling the DH225-7 excavator to perform a wide range of tasks with ease. It provides a maximum pressure rating of 35 MPa, allowing for high-pressure operation and enhanced lifting and digging capabilities.
The K3V112DT-HN0V hydraulic pump features a highly efficient design, incorporating advanced technologies to minimize energy loss and maximize overall system efficiency. Its precisely engineered components and optimized hydraulic circuitry contribute to reduced fuel consumption and lower operating costs, making it an economical choice for contractors and operators.
To ensure durability and longevity, the K3V112DT-HN0V hydraulic pump is constructed with high-quality materials and undergoes rigorous testing and quality control measures. It is built to withstand harsh working environments, including extreme temperatures, heavy loads, and prolonged usage. This reliability ensures minimal downtime and increased productivity for the DH225-7 excavator.
The hydraulic pump is equipped with a variety of safety features, including pressure relief valves and filtration systems, to protect the hydraulic system from damage caused by excessive pressure, contaminants, or other potential hazards. These safety mechanisms help prolong the lifespan of the pump and prevent costly repairs or replacements.
Installation and maintenance of the K3V112DT-HN0V hydraulic pump are designed to be straightforward and user-friendly.
The pump is compatible with the DH225-7 excavator's existing hydraulic system, allowing for easy integration. Routine maintenance tasks, such as oil changes and filter replacements, can be performed efficiently, minimizing downtime and optimizing equipment utilization.