含磁性包裹体复合材料的宽带电磁响应预测

K. Rozanov, M. Koledintseva, J. Drewniak
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摘要

用于各种电磁干扰应用的吸收大块和片状复合材料(包括纳米复合材料)的工程需要对这些复合材料的频率和浓度行为进行充分的预测。本文提出了磁-介电复合材料有效介电常数和磁导率随频率和浓度变化的两个简单解析公式。第一个新的混合规则是基于Ghosh-Fuchs理论提出的,它与含磁性合金粉末的复合材料的介电常数和磁导率的测量结果吻合得很好。这种方法采用了谱函数的伯格曼-米尔顿概念。本文选择布鲁格曼有效介质理论中典型的谱函数,也称为布鲁格曼对称规则(BSR)。该谱函数由两个拟合参数组成:包裹体的平均形状因子和渗透阈值。这些拟合参数是由介电常数的浓度依赖性得到的,然后用它们来反演磁导率的频率依赖性。所提出的混合规律适用于复合材料中近乎球形的夹杂物,如碎屑。本文提出的另一种分析模型可用于预测含磁性包裹体复合材料的有效磁导率。它基于布鲁格曼不对称规则(BAR),该规则经过修改,考虑了磁性内含物的形状因素,特别是随机取向的血小板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predicting of wideband electromagnetic responses of composites containing magnetic inclusions
Engineering of absorbing bulk and sheet composite materials, including nanocomposites, for various EMI applications, requires adequate prediction of frequency and concentration behavior of these composites. This paper proposes two simple analytical formulations for effective permittivity and permeability of magneto-dielectric composites as functions of frequency and concentration. The first new proposed mixing rule is based on the Ghosh-Fuchs theory, which gives good agreement with the measured permittivity and permeability for composites containing magnetic alloy powders. This approach employs the Bergman-Milton concept of spectral function. Herein, the spectral function typical for the Bruggeman effective medium theory, also known as the Bruggeman symmetric rule (BSR), is chosen. This spectral function is composed using two fitting parameters: an averaged shape factor of inclusions, and the percolation threshold. These fitting parameters are found from the concentration dependence of permittivity, and then they are used to retrieve frequency dependence of permeability. The proposed mixing law is valid for nearly spherical inclusions in the composite, e.g., crumbs. Another analytical model proposed in this work can be applied to predict effective permeability of composites containing magnetic inclusions. It is based on the Bruggeman asymmetric rule (BAR), which has been modified in such a way that it takes into account shape factors of magnetic inclusions, in particular, randomly oriented platelets.
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