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Two-dimensional magnetostriction analysis using ES-W model in induction motor model core

机译:使用E&S-W模型在感应电动机模型核心中进行二维磁致伸缩分析

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This paper presents two-dimensional magnetostriction analysis using a numerical modeling method of two-dimensional magnetostriction (E&S-W model) on magnetic core in induction motor. In order to reduce vibration and acoustic noise of the induction motor, it is necessary to evaluate the magnetostriction on the magnetic core. The Two-dimensional magnetostriction and vector magnetic characteristics on electrical steel sheet have been measured. The relationships among magnetic flux density vector and magnetic field strength vector, maximum magnetostriction of expansion and contraction have been made clearly. The E&S-W model is suggested in order to estimate the two-dimensional magnetostriction under non-sinusoidal magnetic flux condition. It is possible to analyze the two-dimensional magnetostriction on the magnetic core using vector magnetic characteristics analysis and the E&S-W model. In this method, the distribution of peak-to-peak two-dimensional magnetostriction and relationship among the magnetic flux density vector and maximum magnetostriction of expansion and contraction were made clearly. The distribution of the peak-to-peak two-dimensional magnetostriction was not similar to the distribution of maximum magnetic flux density vector.
机译:本文利用二维磁致伸缩数值模型方法(E&S-W模型)对感应电动机的磁芯进行了二维磁致伸缩分析。为了减少感应电动机的振动和噪声,有必要评估磁芯上的磁致伸缩。测量了电磁钢板的二维磁致伸缩和矢量磁特性。磁通密度矢量和磁场强度矢量之间的关系已经清楚地表明了。为了估计在非正弦磁通量条件下的二维磁致伸缩,建议使用E&S-W模型。可以使用矢量磁特性分析和E&S-W模型来分析磁芯上的二维磁致伸缩。用这种方法,可以清楚地看到峰-峰二维磁致伸缩的分布,以及磁通量密度矢量和最大伸缩率之间的关系。峰-峰二维磁致伸缩的分布与最大磁通密度矢量的分布不同。

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