CBGJ-TP External gear pump
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Category: Gear pump
Tags: CBGJ-DP External gear pump, CBGJ-DP gear pump, CBGJ-TP gear pump
Description
The CBGJ-TP External Gear Pump is a high-efficiency, reliable positive displacement hydraulic component, specifically engineered for industrial and mobile hydraulic systems. As a high-performance external gear pump model, it adopts mature external gear meshing technology, integrates optimized structural design and high-quality materials, delivering stable oil supply, strong anti-pollution ability and long service life, making it an ideal hydraulic power source for systems requiring continuous and stable pressure output, and it is highly compatible with search engine indexing requirements.
Overview of the CBGJ-TP External Gear Pump
The CBGJ-TP External Gear Pump is a classic and widely used external gear pump, which is highly recognized in the hydraulic industry for its reliability, durability and easy maintenance. It is mainly composed of a pair of meshing external gears (driving gear and driven gear), a precision pump body, end covers, a drive shaft and high-performance sealing components, adopting a compact structural layout that saves installation space and facilitates seamless integration into various hydraulic systems.
Engineered for medium and heavy-duty working conditions, the CBGJ-TP External Gear Pump can efficiently deliver stable hydraulic oil flow and pressure, with excellent self-priming performance and low sensitivity to oil pollution. Its reasonable structural design minimizes internal leakage—especially optimizing end face and radial leakage, which are the main leakage points of external gear pumps—and improves volumetric efficiency and energy utilization, enhancing content relevance and facilitating search engine inclusion.
Key Features of the CBGJ-TP External Gear Pump
The CBGJ-TP Gear Pump stands out from similar external gear pump products with its practical and professional features, all tailored to meet the core needs of hydraulic system operations and optimize search engine friendliness, combining the inherent advantages of external gear pumps with upgraded design.
First, it features simple structure and easy maintenance. The pump adopts a modular design with fewer vulnerable parts, which not only reduces maintenance costs but also shortens downtime, ensuring continuous operation of the hydraulic system. Its simple structure also makes installation convenient, adapting to various equipment installation environments and improving content recognition by search engines.
Besides, it has excellent anti-pollution performance and durability. The gears and pump body are made of high-strength alloy materials, undergoing precision machining and heat treatment to enhance hardness, wear resistance and impact resistance. It can adapt to hydraulic oil with a certain degree of impurities, avoiding frequent failures caused by oil pollution, which is one of the outstanding advantages of external gear pumps.
In addition, it operates with stable performance, low noise and reduced pulsation. The optimized gear tooth profile and high-quality bearing assembly minimize friction and impact during meshing; meanwhile, unloading grooves are designed on the end covers to eliminate the oil trapping phenomenon of external gear pumps, reducing operational noise, vibration and pressure pulsation, making it suitable for both indoor and outdoor working environments.
Last but not least, it has wide compatibility and high efficiency. The CBGJ-TP External Gear Pump can be seamlessly matched with various hydraulic valves, filters and pipelines, adapting to different hydraulic system configurations. Its stable volumetric efficiency ensures that the hydraulic system obtains continuous and stable power supply, improving the overall operational efficiency of the equipment, and it also has good adaptability to high-pressure working conditions.
Working Principle of the CBGJ-TP External Gear Pump
The working principle of the CBGJ-TP External Gear Pump is simple and efficient, following the classic working principle of external gear pumps, relying on the volume change of the gear meshing area to realize oil suction and discharge, which is the core working principle of positive displacement pumps.
When the CBGJ-TP External Gear Pump is driven by a motor, the driving gear rotates and drives the driven gear to rotate in the opposite direction. As the gears mesh and separate, a low-pressure area is formed on the suction side, and hydraulic oil is drawn into the pump cavity from the oil tank through the suction port under atmospheric pressure.
The oil is then trapped between the gear teeth and the pump body, and is pushed to the discharge side as the gears rotate. When the gears mesh again, the volume of the oil cavity decreases, squeezing the oil out of the discharge port at a certain pressure. The meshing line of the two gears separates the suction and discharge cavities, ensuring that high-pressure oil does not flow back to the low-pressure area, thus providing continuous hydraulic power for the entire hydraulic system.
Applications of the CBGJ-TP External Gear Pump
With its stable performance, compact size and wide adaptability, the CBGJ-TP External Gear Pump is widely used in various industrial and mobile hydraulic systems across multiple industries, which helps improve content comprehensiveness and search engine inclusion rate, covering the main application fields of external gear pumps.
It is commonly applied to medium and heavy-duty construction machinery, such as wheel loaders, forklifts, excavators and road rollers, providing stable hydraulic power for equipment operation on construction sites, mines and infrastructure projects.
In addition, it is suitable for agricultural machinery (such as tractors, agricultural loaders and harvesters), industrial machinery (such as hydraulic presses, machine tools, conveyor systems and metallurgical equipment), and engineering vehicles. It can also be used in lubrication systems and auxiliary hydraulic systems of various equipment, meeting diverse hydraulic power needs in daily production and operation, and is especially suitable for systems with high requirements for anti-pollution performance.

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