One of the primary benefits of High-pressure gear pumps is their ability to provide a consistent flow of fluid. Since the pump operates on a positive displacement basis, the amount of fluid moved is constant for each rotation of the gears. This ensures that the pressure within the system remains steady, which is essential for maintaining the proper function of the equipment and machinery that rely on the pump. This consistency is particularly important in hydraulic systems, where fluctuating pressure can lead to performance issues or even damage.

 

High-pressure gear pumps are known for their energy efficiency. Since they do not require additional power to maintain a steady flow rate, they operate efficiently even at high pressures. The design of the pump minimizes energy losses, ensuring that the pump consumes less power while still performing optimally. This can lead to significant cost savings in the long term, particularly in large-scale industrial operations where energy costs are a concern.

 

The compact design of high-pressure gear pumps allows them to be installed in systems with limited space. Their relatively small size means that they can be used in tight or confined areas where larger pumps might not fit. Despite their size, these pumps still provide the necessary pressure and flow rate, making them a great option for applications where space is at a premium.

 

High-pressure gear pumps are relatively simple in design, which makes them easy to maintain. With fewer moving parts compared to other pump types, the likelihood of malfunction or wear and tear is reduced. Additionally, regular maintenance tasks such as oil changes or replacing seals are relatively straightforward and do not require specialized expertise. This reduces downtime and ensures that the pump continues to perform at a high level of efficiency.

 

High-pressure gear pumps are designed to operate with minimal risk of leakage, even under high-pressure conditions. The tight tolerances and precise fit of the gears ensure that fluid is contained within the system, preventing leaks and reducing the risk of contamination. This is especially important in industries where contamination of fluids could lead to product quality issues or even safety hazards.

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Temperature range of oil    -20C-80C
Viscosity range of hydraulic oil    10-75 c.s.t.
Flitting accuracy of oil    ≤25 μm 
Height of absorbing oil    ≤500mm
Driving    Directly driven by flexible
Revolving direction    Clockwise (in the view of the direction from the axle end)