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首页> 外文期刊>The European physical journal. Applied physics >An analytical model for the magnetostriction strain of ferromagnetic materials subjected to multiaxial stress
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An analytical model for the magnetostriction strain of ferromagnetic materials subjected to multiaxial stress

机译:多轴应力进行铁磁材料磁致伸缩菌株的分析模型

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摘要

Magnetostriction is the magnetisation-induced strain in ferromagnetic materials. It highly depends on mechanical stress. Stress state in electromagnetic devices is usually multiaxial and its effect on magnetostrictive properties is not easily predicted. In this paper, an original three-parameter analytical model for the stress-dependent magnetostriction strain of ferromagnetic materials is proposed. It is based on a simplified energetic description of magneto-elastic behaviour. It follows a similar method previously adopted for the description of the effect of stress on the magnetic permeability of magnetic materials. It is applied for the first time to the magnetostriction behaviour and results in a simple formula to express the effect of multiaxial magneto-mechanical loadings on the magnetostriction strain. The approach also naturally includes the description of the so-called Delta E effect. The analytical formula is derived in the paper. It shows very satisfying agreement with experimental results on iron cobalt alloy and pure iron specimen.
机译:磁致伸缩是铁磁材料中的磁化诱导的应变。它高度取决于机械应力。电磁器件中的应力状态通常是多轴的,并且不容易预测其对磁致伸缩性能的影响。本文提出了一种原始的三参数分析模型,用于铁磁性材料的应力依赖性磁致伸缩菌株。它基于磁弹性行为的简化能量描述。它遵循先前用于描述应力对磁性材料磁导率的影响的类似方法。它首次应用于磁致索传动行为,并导致简单的公式,以表达多轴磁力机械载荷对磁致伸缩菌株的影响。该方法还自然地包括所谓的ΔE效应的描述。分析配方衍生在纸中。它表现出非常令人满意的协议与铁钴合金和纯铁标本的实验结果。

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