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Magnetoelectricity in coated fibrous composites of piezoelectric and piezomagnetic phases

机译:压电和压电相的涂层纤维复合材料中的磁电

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This paper studies the effective magnetoelectric (ME) behavior of coated fibrous composites made of piezoelectric and piezomagnetic phases. We employ a micromechancial model, the two-level recursive scheme together with the Mori-Tanaka method, to evaluate the ME effect of the composites. The magnitudes and trends of the solutions are in good agreement with the calculations by the finite element analysis. Based on this model, we find the optimal volume fractions of the inclusion, the ratio of the radii between the core and shell for maximum ME coupling. Further, we correlate the ME effect with the material parameters of the constituent phases and propose useful engineering guide to the development of new ME coated fibrous composites.
机译:本文研究了由压电相和压电相组成的涂层纤维复合材料的有效磁电(ME)行为。我们采用微力学模型,两级递归方案以及Mori-Tanaka方法,来评估复合材料的ME效果。解的大小和趋势与有限元分析的计算结果非常吻合。在此模型的基础上,我们找到了夹杂物的最佳体积分数,最大的ME耦合的核与壳之间的半径比。此外,我们将ME效应与组成相的材料参数相关联,并为开发新型ME涂层纤维复合材料提供有用的工程指导。

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