Shaft Coupling Power Transmission Coupling Motor Coupling Alignment
No leakage magnetic coupling power transmission is essential in many process control fields. It is widely used in petroleum, chemical, acid, alkali, smelting, rare earth, pesticides, dyes, medicine, papermaking, electroplating, electrolysis, pickling, radio, foil, research institutions, defense industry and other production processes conveying corrosive liquids , especially for flammable, explosive, volatile, toxic, conveying high temperature, strong acids and alkalis, organic solvent and precious liquid.
How Does Magnetic Shaft Coupling Work
A magnetic coupling consists of two magnetic assemblies and isolation cover. One is the external assembly (the driver magnet) and the other is the internal assembly (the driven magnet). The external assembly is connected to a motor and the internal assembly is directly attached to the pump input drive shaft. Since the internal magnet is isolated within the pump case, seals and therefore leaks are eliminated.
The coupling deflects angularly and the magnets create a force of simultaneous attraction and repulsion while the magnetic coupler assembly are working. This force is used to transfer torque from the motor to the pump drive shaft. This permanent magnet coupling creates neither slippage nor induction current during rotation.
Advantages of GME Magnetic Couplings
1.Machining equipment continuously updated to ensure accuracy of product processing and production capacity.
2.PEEK high performance isolation units are produced by professional specialized machinery so as to ensure the stable and reliable quality.
3.PEEK non-metallic materials can reduce or even completely avoid eddy current losses.
4.Small laser welding heat affected zone, rapid and centralized heating, low thermal stress, and the automatic laser welding ensures the consistency and reliability of the weld sealing.
Specifications of GME Motor Coupling Alignment
Specification Data Required for Power Transmission CouplingQuotation
1.Motor output power(KW)
3.Torque of the magnetic coupling
4.Working pressure of the housing (isolation sleeve)
5.Working temperature of magnetic coupling
6.Connector size of the output part (usually motor)
7.Technical drawing/Mounting Dimensions of the input part (usually pump)
Project of GME Power Transmission Coupling
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