The KIRANDY Gear Pump represents a remarkable solution for your hydraulic needs. This micro gear pump, specifically the CBK-1.6/2.1 model, is designed with a high-strength aluminum alloy shell that ensures durability and reliability. The innovative design not only provides longevity but also guarantees smooth operation with minimal noise, making it an ideal choice for various applications.
One of the standout features of this pump is its versatility in oil inlet and outlet options. You can choose from various configurations, such as rear in and front out, side in and side out, or rear in and rear out. This flexibility allows you to tailor the pump’s setup to fit your specific requirements. Each configuration is designed to maintain high volumetric efficiency, thanks to the automatic compensation mechanism for axial clearance. This mechanism ensures that the oil pump delivers consistent performance over time, making it a reliable component in micro power unit hydraulic systems.
Hydraulic gear pumps like the KIRANDY model operate on the principle of positive displacement. This means that they pump a fixed amount of fluid for each revolution of the gears, providing a steady and reliable flow. This characteristic is particularly beneficial for applications requiring precise fluid delivery and pressure control. With its efficient design, the KIRANDY gear pump is well-suited for various hydraulic fluid power applications.
Model | CBK-1.6/2.1 |
Material | Aluminum Alloy |
Displacement | 1.1 mL/r |
Features | Low Noise, Smooth Operation, Long Life |
In summary, the KIRANDY Gear Pump is not just an ordinary hydraulic pump. Its combination of high-strength materials, efficient design, and customizable configurations makes it an excellent choice for anyone in need of a reliable hydraulic solution. Whether you are working on small-scale projects or larger hydraulic systems, this pump is designed to meet your needs with efficiency and effectiveness. Choose the KIRANDY Micro Gear Pump for your next project and experience the difference in hydraulic performance.
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