The performance of the motor's magnetic bearings directly affects the motor's working efficiency

Oct 28, 2024 Leave a message

With the continuous development of industrial technology, motors have become one of the indispensable key equipment in all walks of life. The performance of the motor directly affects its working efficiency in production, and one of the important components is the motor magnetic tile. This article will introduce how the performance of the motor magnetic tile affects the working efficiency of the motor. In the motor, the magnetic tile is a key component used to generate a magnetic field. The working principle of the motor is to generate a magnetic field in the coil through current, and the magnetic tile is used to enhance this magnetic field. This magnetic field interacts with the rotor (usually a shaft) in the motor to generate a rotating force. The relationship between the performance of the magnetic tile and the efficiency of the motor:

Magnetic properties of magnetic tiles: The performance of the magnetic tile directly determines the strength of the magnetic field generated. The greater the magnetic field strength, the greater the force generated by the motor, thereby improving the efficiency of the motor. Therefore, high-quality and high-grade magnetic tiles have higher magnetic field strength.

Magnetic tile hysteresis loss: The magnetic tile will generate hysteresis loss when the magnetic field changes, which will cause the motor to generate additional energy loss during operation. In order to reduce hysteresis loss, magnetic tile materials with low hysteresis coefficients should be selected.

Thermal stability of magnetic tiles:

When the motor runs at high speed, it will generate greater friction and heat, and the magnetic tiles may experience magnetic reversal or decrease in magnetic properties in a high temperature environment, thus affecting the efficiency of the motor. Therefore, selecting magnetic tile materials with higher thermal stability and magnetic stability can improve the efficiency and reliability of the motor.

Ferrite Segment Magnets