Influence of the Ferromagnetic Component on the Magnetic Properties of Polymer-Matrix Soft Magnetic Composites

Q4 Materials Science Powder Metallurgy Progress Pub Date : 2021-06-01 DOI:10.2478/pmp-2021-0001
Z. Birčáková, P. Kollár, J. Füzer, M. Streckova, J. Szabó, Radovan Bureš, M. Fáberová
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Abstract

Abstract The paper presents the study of the influence of different ferromagnetic powders on magnetic properties of polymer-matrix soft magnetic composites. Samples were prepared from pure Fe and Permalloy powders with the same amount of resin and by the same technological process. The coercivity, the real part of complex permeability, saturation magnetic polarization, hysteresis loops and total energy losses and their components were investigated. It was found that the coercivity, DC losses, classical losses, excess losses and thus the total energy losses of composites depended on intrinsic magnetic properties and/or on the size and shape of ferromagnetic powder particles, while the permeability of composites was affected predominantly by inner demagnetizing fields due to the insulation. The numbers of moving domain walls involved in magnetization reversal were analyzed in connection with the magnetic properties.
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铁磁组分对聚合物基软磁复合材料磁性能的影响
摘要本文研究了不同铁磁粉末对聚合物基软磁复合材料磁性能的影响。采用相同的工艺流程,用相同数量的树脂制备了纯铁和坡莫合金粉末样品。研究了矫顽力、复磁导率实部、饱和磁极化、磁滞回线和总能量损失及其组成。结果表明,复合材料的矫顽力、直流电损耗、经典损耗、过剩损耗及总能量损耗与材料的本征磁性能和/或铁磁粉颗粒的大小和形状有关,而复合材料的磁导率主要受材料绝缘引起的内部退磁场的影响。结合磁性能分析了磁化反转过程中运动畴壁的数目。
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Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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