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A variational approach of homogenization of piezoelectric composites towards piezoelectric and flexoelectric effective media

机译:压电复合材料对压电和柔性有效介质的均质化改变方法

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摘要

The effective piezoelectric properties of heterogeneous materials are evaluated in the context of periodic homogenization, whereby a variational formulation is developed, articulated with the extended Hill macrohomogeneity condition. The entire set of homogenized piezoelectric moduli is obtained as the volumetric averages of the microscopic properties of the individual constituents weighted by the displacement and polarization localization operators. This framework is extended in a second part of the paper to the computation of the flexoelectric effective properties, thereby accounting for higher gradient effects that may be induced by a strong contrast of properties of the composite constituents. The effective properties of inclusion-based composites are evaluated numerically as an illustration of the general homogenization theory and the respective effect of the volume fraction and relative tensile modulus of the reinforcement is assessed numerically. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在周期性均质化的背景下评估异质材料的有效压电性能,从而开发了分解制剂,铰接着延伸的山脉大型均匀性条件。获得整体均质化压电模量作为由位移和偏振定位运营商加权的各个成分的显微性质的体积平均值。该框架在纸张的第二部分中延伸到计算柔性电有效性,从而占据可以通过复合成分的性质的强对比度诱导的更高梯度效应。作为一般均匀化理论的说明,数值评价包含基复合材料的有效性能,并且数值评估增强物的体积分数和相对拉伸模量的各自效果。 (c)2020 elestvier有限公司保留所有权利。

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