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Constant Filling Fluid Coupling

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The Structure And Principle Of Hydraulic Coupling

The Structure And Principle Of Hydraulic Coupling

Runtime drive hydraulic coupler shell of the motor and pump wheel rotation together, the pump wheel blade of hydraulic oil in the pump wheel driven rotating together, then under the action of centrifugal force, the hydraulic oil is flung to the pump impeller blade tip, and rushed to the turbine...

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Runtime drive hydraulic coupler shell of the motor and pump wheel rotation together, the pump wheel blade of hydraulic oil in the pump wheel driven rotating together, then under the action of centrifugal force, the hydraulic oil is flung to the pump impeller blade tip, and rushed to the turbine blades at the outer edge and make the turbine under hydraulic impact and rotation;

The hydraulic oil that rushes to the turbine blade flows along the turbine blade towards the inner edge, returns to the inner edge of the pump wheel, and then is thrown again to the outer edge by the pump wheel.

The hydraulic fluid flows from the pump to the turbine, and from the turbine to the pump.

The circulating hydraulic oil in the hydraulic coupler, in the process of flowing from the inner edge of the impeller blade to the outer edge, is performed by the pump wheel, and its speed and kinetic energy are gradually increased.

In the process of flow from the outer edge of the turbine blade to the inner edge, the hydraulic oil works on the turbine, and its velocity and kinetic energy are gradually reduced.

In the process of circulation, the hydraulic oil is not subjected to any additional external forces except the force between the pump wheel and the turbine.

According to the principle that the force is equal to the reaction force, the torque of the hydraulic oil on the turbine should equal the torque of the pump wheel on the hydraulic oil, which is the working principle of the hydraulic coupler.

Runtime drive hydraulic coupler shell of the motor and pump wheel rotation together, the pump wheel blade of hydraulic oil in the pump wheel driven rotating together, then under the action of centrifugal force, the hydraulic oil is flung to the pump impeller blade tip, and rushed to the turbine blades at the outer edge and make the turbine under hydraulic impact and rotation;

The hydraulic oil that rushes to the turbine blade flows along the turbine blade towards the inner edge, returns to the inner edge of the pump wheel, and then is thrown again to the outer edge by the pump wheel.

The hydraulic fluid flows from the pump to the turbine, and from the turbine to the pump.

The circulating hydraulic oil in the hydraulic coupler, in the process of flowing from the inner edge of the impeller blade to the outer edge, is performed by the pump wheel, and its speed and kinetic energy are gradually increased.

In the process of flow from the outer edge of the turbine blade to the inner edge, the hydraulic oil works on the turbine, and its velocity and kinetic energy are gradually reduced.

In the process of circulation, the hydraulic oil is not subjected to any additional external forces except the force between the pump wheel and the turbine.

According to the principle that the force is equal to the reaction force, the torque of the hydraulic oil on the turbine should equal the torque of the pump wheel on the hydraulic oil, which is the working principle of the hydraulic coupler.


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