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Influence of Biaxial Stress on Vector Magnetic Properties and 2-D Magnetostriction of a Nonoriented Electrical Steel Sheet Under Alternating Magnetic Flux Conditions

机译:交变磁通条件下双轴应力对无取向电工钢板矢量磁性能和二维磁致伸缩的影响

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摘要

Magnetic properties of nonoriented electrical steel sheets are influenced by mechanical stress because they exhibit the phenomenon of magnetostriction. Therefore, it is necessary to clarify the relationship between magnetic properties and magnetostriction under mechanical stress. This paper presents the results of measurements of the vector magnetic properties and the magnetostriction of a nonoriented electrical steel sheet under biaxial stress. The loci of the magnetic field strength vector and the 2-D magnetostriction are measured under both biaxial stresses. The magnetic power loss and the peak-to-peak value of the magnetostriction in an arbitrary direction decreased due to the applied biaxial tensile stress. It can be concluded that it is possible to improve the magnetic properties and reduce the magnetostriction of an electrical steel sheet by applying biaxial tensile stress.
机译:无方向性电磁钢板的磁性能受到机械应力的影响,因为它们表现出磁致伸缩现象。因此,有必要弄清机械应力下的磁性能和磁致伸缩之间的关系。本文介绍了双轴应力下无取向电工钢板的矢量磁性能和磁致伸缩性的测量结果。在两个双轴应力下都测量了磁场强度矢量和二维磁致伸缩的轨迹。由于施加的双轴拉伸应力,在任意方向上的磁功率损耗和磁致伸缩的峰峰值减小。可以得出结论,通过施加双轴拉伸应力,可以改善电磁钢板的磁性能并减小其磁致伸缩。

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