Theoretical analysis of the magnetic field and eddy current within a rectangular giant magnetostrictive material plate

Huifeng Liu, Junlin Li, Kewei Zhang, Donghui Yang
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引用次数: 3

Abstract

In this paper, we present the distribution functions of magnetic field intensity and eddy current intensity within a rectangular magnetostrictive material plate. Firstly, on the basis of Maxwell's theory, the mathematical model for the magnetic field within the plate is established. Then, the governing equation for determining the magnetic field is solved by Fourier transform; an error in Stoll's book (1983) is corrected. Furthermore, the function of eddy current intensity is deduced. Next, the expressions of the magnetic field and eddy current are given in the case of the external magnetic field and the plate makes an angle of θ. Lastly, taking rectangular giant magnetostrictive plate is parallel to external magnetic field as example, the influencing factors of the inner magnetic field and eddy current are unveiled: the skin effect is enhanced with the increase of the exciting frequency, the relative permeability or conductivity; the higher the relative permeability or conductivity, the more significant the eddy current density increases.
矩形超磁致伸缩材料板内磁场和涡流的理论分析
本文给出了矩形磁致伸缩材料板内磁场强度和涡流强度的分布函数。首先,在麦克斯韦理论的基础上,建立了板内磁场的数学模型。然后,用傅里叶变换求解确定磁场的控制方程;斯托尔的书(1983)中的一个错误被纠正。进一步推导了涡流强度的函数。其次,给出了在外加磁场条件下,当极板夹角为θ时,磁场和涡流的表达式。最后,以与外磁场平行的矩形超磁致伸缩板为例,揭示了内磁场和涡流的影响因素:集肤效应随着激励频率、相对磁导率或电导率的增加而增强;相对磁导率或电导率越高,涡流密度增大越显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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