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Hysteresis loss reduction in self-bias FeSi/SrFe12O19 soft magnetic composites

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【作者】 冯双久倪江利胡锋阚绪材吕庆荣刘先松

【Author】 Shuangjiu Feng;Jiangli Ni;Feng Hu;Xucai Kan;Qingrong Lv;Xiansong Liu;Engineering Technology Research Center of Magnetic Materials of Anhui Province, School of Physics and Materials Science,Anhui University;Engineering Technology Research Center of Preparation and Application of Industrial Ceramics of Anhui Province,School of Chemistry and Material Engineering, Chaohu University;

【通讯作者】 冯双久;

【机构】 Engineering Technology Research Center of Magnetic Materials of Anhui Province, School of Physics and Materials Science,Anhui UniversityEngineering Technology Research Center of Preparation and Application of Industrial Ceramics of Anhui Province,School of Chemistry and Material Engineering, Chaohu University

【摘要】 The magnetic field provided by magnetized SrFe12 O19 particles in FeSi/SrFe12 O19 composites is used to replace the applied transverse magnetic field, which successfully reduces the magnetic loss of the composites with minor reduction of permeability. This magnetic loss reduction mainly comes from the decrease in hysteresis loss, while the eddy current loss is basically unaffected. The hysteresis loss reduction in magnetized composites is believed to be due to the decrease in domain wall displacement caused by the increase in the average magnetic domain size in a DC magnetic field. This is an effective method for reducing the magnetic loss of soft magnetic composites with wide application potential, and there is no problem of increasing the cost and the volume of the magnetic cores.

【Abstract】 The magnetic field provided by magnetized SrFe12 O19 particles in FeSi/SrFe12 O19 composites is used to replace the applied transverse magnetic field, which successfully reduces the magnetic loss of the composites with minor reduction of permeability. This magnetic loss reduction mainly comes from the decrease in hysteresis loss, while the eddy current loss is basically unaffected. The hysteresis loss reduction in magnetized composites is believed to be due to the decrease in domain wall displacement caused by the increase in the average magnetic domain size in a DC magnetic field. This is an effective method for reducing the magnetic loss of soft magnetic composites with wide application potential, and there is no problem of increasing the cost and the volume of the magnetic cores.

【基金】 supported by the National Natural Science Foundation of China (Grant Nos. 51872004 and 51802002);the Key Program of the Education Department of Anhui Province, China (Grant No. KJ2019ZD03);the Science Foundation of the National Key Laboratory of Science and Technology on Advanced Composites in Specials Environments (Grant No. 6142905202112)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年02期
  • 【分类号】TM271.2
  • 【下载频次】31
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