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Bounds on effective magnetic permeability of three-phase composites with coated spherical inclusions

机译:带涂层球形夹杂物的三相复合材料有效磁导率的界

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摘要

An effective model is developed to bound the effective magnetic permeability of three-phase composites with coated spherical inclusions. In the present model, the trial magnetic potential for the upper bound and the trial magnetic induction field for the lower bound are constructed to satisfy continuity interface conditions. According to the variational principle, the upper and lower bounds on the effective magnetic permeability of three-phase composites with coated spherical inclusions are derived. In this paper, trial magnetic potentials with different function forms are taken and the optimal upper bound is obtained for the trail magnetic potential corresponding to the third-order function. When the three-phase model degenerates into the composite spheres assemblage model [1], it is interesting that the optimal upper and lower bounds are the same. The effects of the volume fraction of coated spherical inclusions and the thickness and magnetic permeability of coated layers between the matrix and spherical inclusions on the effective magnetic permeability of composites are analyzed. The upper and lower bounds are finite non-zero values when the magnetic permeability of spherical inclusions tends to oo and 0, respectively.
机译:建立了一个有效的模型来约束带涂层球形夹杂物的三相复合材料的有效磁导率。在本模型中,构造用于上限的试磁势和用于下限的试磁感应场以满足连续性界面条件。根据变分原理,推导了带涂层球形夹杂物的三相复合材料有效磁导率的上限和下限。本文采用具有不同函数形式的试验磁势,并获得了对应于三阶函数的尾迹磁势的最佳上限。当三相模型退化为复合球组装模型[1]时,有趣的是,最佳上下边界是相同的。分析了包覆的球形夹杂物的体积分数以及基体与球形夹杂物之间的包覆层的厚度和磁导率对复合材料有效磁导率的影响。当球形夹杂物的磁导率分别趋于oo和0时,上限和下限是有限的非零值。

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