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Multiscale Phenomena in Bruggeman Composites

机译:布鲁日曼复合材料中的多尺度现象

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Mechanical, magnetic, and transport properties of arbitrary inhomogeneous composites are investigated by a Bruggeman-type mean-field approach. The theory yields materials parameters as functions of the volume fractions, geometries, and materials constants of the phases. Each system is described by a single response parameter g, which is equal to the percolation threshold of the composite. For macroscopic systems, the approach yields very simple expressions, but nanoscale and multiferroic effects yield relatively complicated corrections to g. In the respective cases, the parameter g depends on the length scale of the composite and has the character of a combination of magnetic, electric, and mechanical degrees of freedom.
机译:通过Bruggeman型平均场方法研究了任意非均质复合材料的机械,磁性和传输性能。该理论得出的材料参数是相的体积分数,几何形状和材料常数的函数。每个系统由单个响应参数g表示,该参数等于复合材料的渗透阈值。对于宏观系统,该方法产生非常简单的表达式,但是纳米级和多铁性效应会产生相对复杂的g校正。在各个情况下,参数g取决于复合材料的长度范围,并具有磁,电和机械自由度组合的特征。

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