WYTKCB
Flow Range:0.1-200 m³/h Inlet/Outlet Range:DN25-DN80 (Flange/Threaded connection) KCB Type Horizontal Cast Iron Gear Pump
Flow Range:0.1-200 m³/h
Inlet/Outlet Range:DN25-DN80((Flange/Threaded connection))
Motor Power:0.37-30 kW
Sealing Methods: sealing with seals, combined sealing, clearance
Sealing Gear Material: 304/316 stainless steel, tungsten carbide (wear-resistant type)
Inlet/Outlet Range:DN25-DN80((Flange/Threaded connection))
Motor Power:0.37-30 kW
Sealing Methods: sealing with seals, combined sealing, clearance
Sealing Gear Material: 304/316 stainless steel, tungsten carbide (wear-resistant type)
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To address the growing demand for high efficiency and reliability in fluid transfer across industries such as manufacturing, agriculture, and offshore engineering, WYT has officially unveiled its horizontal cast iron gear pump. As a robust member of the gear pumps family, this unit—with its durable cast iron pump body as the foundational component—integrates a precision gear design and offers a range of sealing solutions tailored to diverse operational needs, functioning effectively as a gear fluid oil pump or gear oil transfer pump where required.
Working Principle
- The driving gear is driven to rotate by the motor, which drives the driven gear to rotate synchronously. When the gear disengages, the volume of the oil suction chamber increases to form a local vacuum, and the liquid enters between the teeth under atmospheric pressure;
- When the gear enters meshing, the volume of the oil pressure chamber decreases, and the liquid between the teeth is squeezed and discharged. The tooth contact line of gear meshing separates the oil suction chamber and the oil pressure chamber, achieving continuous oil suction and discharge process.
Structural characteristics
- The pump body and key components are made of cast iron material, balancing strength and cost.
- An axial gap is set between the gear end face and the pump cover to balance rotational flexibility and sealing performance.
- Leave a radial gap between the tooth tip and the inner wall of the pump body to avoid wear caused by radial forces.
- An oil seal unloading groove is opened on the end face of the pump body to guide the infiltrated pressure oil back to the suction chamber, reducing leakage and lubricating the bearings.
Performance Advantages
- High volumetric efficiency
As a reliable gear fluid oil pump, gear pumps achieve efficient volumetric conversion and reduce internal leakage through precise tooth profile design and clearance control.
- Stable output
The forced discharge characteristic of gear meshing reduces flow and pressure fluctuations, making it suitable for scenarios that require stable output.
- Strong adaptability
It can handle liquids with a wide viscosity range (such as lubricating oil, hydraulic oil, etc.), but has limited tolerance to media containing solid particles.
Application Scenarios
- Industrial lubrication system
Provides stable pressure lubricating oil delivery for machine tools, hydraulic equipment, etc.
- Hydraulic transmission system
As the core component of the hydraulic station, it drives the actuator (such as oil cylinder, motor) to move.
- Fuel transportation
Transporting diesel or heavy oil in equipment such as ships and generator sets.




