Operation principle and technical analysis of RY heat transfer oil pump

The operating principle and technical analysis of the RY heat transfer oil pump The main overcurrent components of the RY heat transfer oil pump are the oil suction chamber, the impeller and the oil pressure chamber. The oil suction chamber is located in front of the oil inlet of the impeller to guide the liquid to the impeller; the oil pressure chamber mainly has three forms: a spiral oil pressure chamber (volute type), a guide vane and a space guide vane; the impeller is a pump The most important working element is the heart of the flow-through component, which consists of a cover plate and an intermediate blade.
Before the RY heat transfer oil pump works, the pump is filled with liquid, then the RY heat transfer oil pump is started, the impeller rotates rapidly, the blades of the impeller drive the liquid to rotate, the liquid rotates by inertia to the outer edge of the impeller, and the impeller sucks in the liquid from the suction chamber. In this process, the liquid in the impeller flows around the blade, and the liquid acts on the blade in the flow of the movement. In turn, the blade acts on the liquid with a force equal to the lift force and the opposite direction. Work on the liquid to get the liquid out of the impeller, and the kinetic energy and pressure energy of the liquid increase.
The RY heat transfer oil pump relies on the action of the rotating impeller on the liquid to transfer the mechanical energy of the prime mover to the liquid. Due to the action of the RY heat transfer oil pump, the velocity energy and pressure energy are increased during the flow from the impeller inlet to the outlet. The liquid discharged by the impeller passes through the press chamber, and most of the velocity can be converted into pressure energy, and then along the discharge pipeline. When it is transported out, at the inlet of the impeller, a vacuum or a low pressure is formed due to the discharge of the liquid, and the liquid in the oil suction tank is pressed into the inlet of the impeller under the action of the liquid surface pressure (atmospheric pressure), so that the rotating impeller is continuous. Continuously inhale and discharge liquid.

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