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Construction of the Electroelastic Green's Function of the Hexagonal Infinite Medium and its Application to Inclusion Problems

机译:六角形无限培养基的电弹性绿色函数的构建及其应用中的应用

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The absence of explicit Green's functions for piezoelectric media has hindered progress in the modelling of mateiral properties of piezoelectric materials for a long time. Due to the improtance of piezoelectrics in smart structures, the construction of explicit Green's functions for such materials is highly desirable. We introduce here a method of integral transformation to construct the electroelastic (4 x 4) Green's function for a piezoelectric hexagonal (transversely isotropic) infinitely extended medium in explicit compact form.~7 This Green's function gives the elastic displacements and electric potentials caused by a unit point force and a unit point charge, respectively. This explicit form of the Green's function is convenient for many applciations due to its natural representation is a tensor basis of hexagonal symmetry. for vanishing piezoelectric coupling the derived Green's function coincides with two well known results: Kroener's expression for the (3 x 3) elastic green's function tensor~3 is reproduced and the electric part then coincides with hte electric potnetial (solution of Poison equation0 caused by a unit point charge. for spheroidal inclusions having the same electroelastic characteristics and orientation as the hexagonal matrix the constructed Green's function is used to obtain the electroelastic analogue of Eshelby tensor in explicit form.
机译:没有明确的压电介质功能的功能在长时间内阻碍了压电材料的Mateiral特性建模的进展。由于智能结构中压电的态度,因此非常理想的是显式绿色函数的构造。这里介绍一种整体变换的方法,以构建电源(4×4)绿色的压电六边形(横向各向同性)无限扩展介质以明确的紧凑型形式进行的。〜7这个绿色的功能为由A引起的弹性位移和电位提供了弹性位移和电位单位点力和单位点电荷。这种明确形式的绿色功能是由于其自然表示引起的许多拍卖的方便是六边形对称的张量。为了消失压电耦合,衍生的绿色函数与两个众所周知的结果一致:克罗纳对(3 x 3)弹性绿色函数张量〜3的表达被再现,电动部件与HTE电流(毒物公式0的溶液)重合单位点电荷。对于具有相同电弹性特性的球形夹杂物和作为六边形基质的取向,所构造的绿色功能用于以明确的形式获得eShelby张量的电弹性模拟。

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