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Exact relations for effective tensors of composites: Necessary conditions and sufficient conditions

机译:复合材料有效张量的精确关系:必要条件和充分条件

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摘要

Typically the elastic and electrical properties of composite materials are strongly microstructure dependent. So it comes as a nice surprise to come across exact formulae for effective moduli that are universally valid no matter what the microstructure. Such exact formulae provide useful benchmarks for testing numerical and actual experimental data and for evaluating the merit of various approximation schemes. They can also be regarded as fundamental invariances existing in a given physical context. Classic examples include Hill's formulae for the effective bulk modulus of a two-phase mixture when the phases have equal shear moduli, Levin's formulae linking the effective thermal expansion coefficient and effective bulk modulus of two-phase mixtures, and Dykhne's result for the effective conductivity of an isotropic two-dimensional polycrystalline material. Here we present a systematic theory of exact relations embracing the known exact relations and establishing new ones. The search for exact relations is reduced to a search far matrix subspaces having a structure of special Jordan algebras. One of many new exact relations is for the effective shear modulus of a class of three-dimensional polycrystalline materials. We present complete lists of exact relations for three-dimensional thermoelectricity and far three-dimensional thermopiezoelectric composites that include all exact relations for elasticity, thermoelasticity, and piezoelectricity as particular cases. (C) 2000 John Wiley & Sons, inc. [References: 54]
机译:通常,复合材料的弹性和电学性质与微观结构密切相关。因此,无论什么微观结构,都能找到有效模量的精确公式,这些公式普遍有效,这真是一个令人惊讶的事情。这些精确的公式为测试数值和实际实验数据以及评估各种近似方案的优点提供了有用的基准。它们也可以视为在给定物理环境中存在的基本不变性。经典示例包括当相具有相同的剪切模量时两相混合物的有效体积模量的希尔公式,将两相混合物的有效热膨胀系数和有效体积模量联系在一起的Levin公式以及Dykhne的有效电导率结果各向同性的二维多晶材料。在这里,我们介绍了一种精确关系的系统理论,包括已知的精确关系和建立新的精确关系。对精确关系的搜索被简化为具有特殊约旦代数结构的搜索远矩阵子空间。许多新的精确关系之一是一类三维多晶材料的有效剪切模量。我们提供了三维热电和远三维热压电复合材料的精确关系的完整列表,其中包括在特定情况下的弹性,热弹性和压电性的所有精确关系。 (C)2000 John Wiley&Sons,inc。 [参考:54]

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