Compression Dependence of Magnetization Curves on Iron-Based Soft Magnetic Materials

Ijlal Hasif, M. Shimada, T. Kubota
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Abstract

Magnetic properties of soft magnetic materials under stress are important, however, they have not fully understood. We measured magnetization curves of soft magnetic alloy sheets, electrical steel sheets and nanocrystalline alloys, with positive magnetostriction, under compression. The stress was applied in the same direction of magnetic elds. Magnetization curves have smaller slopes due to anisotropy of magnetoelasticity. The anisotropy energy was estimated from the magnetization curve. And we could obtain a stress dependence of the anisotropy energy; a relation between anisotropy energy and stress was a straight line. The slope of the line correlates magnetostriction values. We devised a magnetic domain model under compression; a magnetization process on the model is a 90 degree magnetic domain wall movement; the relation between anisotropy energy and stress could be formulated. The magnetostriction values estimated from the line slope coincided with experimental ones. Therefore, it can be thought that the magnetization process under compression is mainly 90 degree domain wall movements. [doi:10.2320/jinstmet.J2018037]
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铁基软磁材料磁化曲线的压缩依赖性
软磁材料在应力作用下的磁性是很重要的,但人们对软磁材料的磁性还没有完全了解。测量了具有正磁致伸缩的软磁合金片、电钢片和纳米晶合金在压缩条件下的磁化曲线。在磁场的相同方向上施加应力。由于磁弹性的各向异性,磁化曲线具有较小的斜率。根据磁化曲线估计了各向异性能量。我们可以得到各向异性能量的应力依赖性;各向异性能量与应力之间呈直线关系。这条线的斜率与磁致伸缩值有关。我们设计了一个压缩磁畴模型;模型磁化过程为90度磁畴壁运动;各向异性能量与应力之间的关系可以用公式表示。由线斜率估计的磁致伸缩值与实验值吻合。因此,可以认为压缩下的磁化过程主要是90度畴壁运动。(doi: 10.2320 / jinstmet.J2018037)
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