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An analytical and numerical approach for calculating effective material coefficients of piezoelectric fiber composites

机译:计算压电纤维复合材料有效材料系数的解析和数值方法

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摘要

The present work deals with the modeling of 1-3 periodic composites made of piezoceramic (PZT) fibers embedded in a soft non-piezoelectric matrix (polymer). We especially focus on predicting the effective coefficients of periodic transversely isotropic piezoelectric fiber composites using representative volume element method (unit cell method). In this paper the focus is on square arrangements of cylindrical fibers in the composite. Two ways for calculating the effective coefficients are presented, an analytical and a numerical approach. The analytical solution is based on the asymptotic homogenization method (AHM) and for the numerical approach the finite element method (FEM) is used. Special attention is given on definition of appropriate boundary conditions for the unit cell to ensure periodicity. With the two introduced methods the effective coefficients were calculated for different fiber volume fractions. Finally the results are compared and discussed. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本工作涉及由压电陶瓷(PZT)纤维制成的1-3周期复合材料的建模,该复合材料嵌入软性非压电基质(聚合物)中。我们特别着重于使用代表性的体积元法(单位单元法)预测周期性横向各向同性压电纤维复合材料的有效系数。在本文中,重点是复合材料中圆柱形纤维的方形排列。提出了两种计算有效系数的方法,一种是解析方法,一种是数值方法。解析解基于渐近均匀化方法(AHM),对于数值方法,则使用有限元方法(FEM)。特别注意确定晶胞的适当边界条件以确保周期性。使用这两种引入的方法,可以计算出不同纤维体积分数的有效系数。最后,对结果进行比较和讨论。 (c)2005 Elsevier Ltd.保留所有权利。

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