Eddy current losses computation in conductives materials: case of Aluminum and Permanent Magnet-Part I: Frequency and current effects

P. Chetangny, J. Aredjodoun, S. Houndedako, A. Vianou, D. Chamagne, G. Barbier
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Abstract

This paper presents a method for calculation of eddy current losses in the conductive material such as permanent magnet and aluminum. A quasi-3D analytical model is developed and the results have been compared to an experimental test. A U-cored Electromagnet Device is used to evaluate eddy current losses generated in the conductive material. The analytical method considers only the effect of frequency, current for differents thickness of the conductives materials. The novelty of this work is based on the modeling by electrical equivalent circuit to find the boundary conditions needed and to verify the assumptions made on the current density by FE results, when solving the Maxwell equations.
导电材料中的涡流损耗计算:铝和永磁体的情况-第1部分:频率和电流效应
本文提出了一种计算永磁体、铝等导电材料涡流损耗的方法。建立了准三维解析模型,并与实验结果进行了比较。采用u型磁芯电磁铁装置对导电材料中产生的涡流损耗进行了评价。分析方法只考虑了频率、电流对不同厚度导电材料的影响。本工作的新颖之处在于,在求解麦克斯韦方程组时,通过等效电路的建模,找到了所需的边界条件,并验证了有限元结果对电流密度的假设。
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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