Affiliation:
1. Department of Electrical Engineering, Shenyang University of Technology, Shenyang 110870, China
2. Suzhou Inn-Mag New Energy Ltd., Suzhou 215000, China
Abstract
In the face of the rapid development of the motor industry, some motors with traditional soft magnetic materials can no longer meet the needs of the market. Using new high-saturation magnetic density materials has become a new breakthrough to improve the torque density of motors. Fe-Co alloys (1J22) have high-saturation magnetic induction strength, which can effectively improve the motor’s magnetic field strength and increase its torque density. At the same time, the temperature rise of the motor is also an important factor to consider in the motor design process. In particular, the change in core temperature caused by loss makes the coupling of the internal temperature field and the electromagnetic field of the motor more common. Therefore, it is necessary to test the temperature and magnetic properties of 1J22 together. In this paper, a coupling measurement device for magnetic properties of soft magnetic materials is built, and a 1J22 temperature field–electromagnetic field coupling experiment is completed. It is found that the maximum loss of 1J22 decreases by 4.44% with the increase in temperature; the maximum loss is 6.41% less than that of traditional silicon steel. Finally, a finite element simulation model is built to simulate the actual working conditions of the motor, and it is verified that the magnetic properties of the material at high temperature will have a certain impact on the performance of the motor.
Funder
Shenyang University of Technology Interdisciplinary Team Project
Central guide to local science and technology development funds
Reference32 articles.
1. Power loss and thermal analysis of a MW high speed permanent magnet synchronous machine;Zhang;IEEE Trans. Energy Convers.,2017
2. Comparison Study of a Surface-Mounted PM Rotor and an Interior PM Rotor Made from Amorphous Metal of High-Speed Motors;Ou;IEEE Trans. Ind. Electron.,2021
3. Chai, F., Li, Z., Ou, J., and Yu, Y. (2020, January 23–26). Torque analysis of high-speed switched reluctance motor with amorphous alloy core. Proceedings of the 2020 International Conference on Electrical Machines (ICEM), Gothenburg, Sweden.
4. Development of a High Power Density Motor Made of Amorphous Alloy Cores;Fan;IEEE Trans. Ind. Electron.,2014
5. Application of High-Strength Nonoriented Electrical Steel to Interior Permanent Magnet Synchronous Motor;Tanaka;IEEE Trans. Magn.,2013
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