电工钢 ›› 2025, Vol. 7 ›› Issue (5): 58-.

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自粘结涂层工艺对电机效能影响的研究

李晓燕1,施立发2,陆天林2,李国洋3   

  1. 1.奎克化学(中国)有限公司 研发部,上海 201712;

    2.马鞍山钢铁有限公司 技术中心,安徽 马鞍山243003; 3.奎克化学(中国)有限公司 商务部,上海 201712

  • 出版日期:2025-10-28 发布日期:2025-10-21

Study on the influence of self⁃bonding coating process on motor efficiency

LI Xiaoyan1,SHI Lifa2,LU Tianlin2,LI Guoyang3   

  1. 1.R&D Department of Quaker Chemical(China) Co.Ltd.,Shanghai 201712,China;

    2.Technical Center of Maanshan Iron & Steel Co., Ltd.,Maanshan 243003,China; 3.Commercial Department of Quaker Chemical(China) Co.Ltd.,Shanghai 201712,China

  • Online:2025-10-28 Published:2025-10-21

摘要: 为研究自粘结涂层工艺对电机效能的影响,分别将采用自粘结、焊接、点胶三种不同工艺的同一牌号无取向硅钢材料放入同一电机模型进行对比。结果表明:采用自粘结工艺的电机相较于其他两种工艺的电机,效率可以提升约0.5 %,铁损降低约10 %。自粘结工艺下的电机具有更低的铁损,电机的高效率区间均高于点胶工艺和焊接工艺,为自粘结涂层工艺在电机上的应用提供参考。

关键词: 无取向硅钢, 自粘结涂层, 焊接, 点胶, 电机效能

Abstract: To investigate the impact of self⁃bonding coating technology on motor performance, the same grade of non⁃oriented silicon steel material was tested using three different methods: self⁃adhesion, welding, and gluing, in the same motor model for comparison. The results showed that motors with the self⁃adhesion process can achieve an efficiency improvement of about 0.5 % and a reduction in iron loss of about 10 % compared to motors using the other two methods. Motors with the self⁃adhesion process exhibit lower iron losses, and their high⁃efficiency range is higher than that of the gluing and welding processes, providing valuable insights into the application of self⁃adhesive coating technology in motors.

Key words: non?oriented silicon steel, self?bonding coating, welding, gluing, motor efficiency