首页> 外文期刊>Journal of mechanics of materials and structures >EVALUATION OF THE EFFECTIVE ELASTIC MODULI OF PARTICULATE COMPOSITES BASED ON MAXWELL'S CONCEPT OF EQUIVALENT INHOMOGENEITY: MICROSTRUCTURE-INDUCED ANISOTROPY
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EVALUATION OF THE EFFECTIVE ELASTIC MODULI OF PARTICULATE COMPOSITES BASED ON MAXWELL'S CONCEPT OF EQUIVALENT INHOMOGENEITY: MICROSTRUCTURE-INDUCED ANISOTROPY

机译:基于等效不均质性的麦克斯韦概念的微粒复合材料有效弹性模量的评估:微观结构诱导的各向异性

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Maxwell's concept of equivalent inhomogeneity is employed for evaluating the effective elastic properties of macroscopically anisotropic particulate composites with isotropic phases. The effective anisotropic elastic properties of the material are obtained by comparing the far-field solutions for the problem of a finite cluster of isotropic particles embedded in an infinite isotropic matrix with those for the problem of a single anisotropic equivalent inhomogeneity embedded in the same matrix. The former solutions precisely account for the interactions between all particles in the cluster and for their geometrical arrangement. Illustrative examples involving periodic (simple cubic) and random composites suggest that the approach provides accurate estimates of their effective elastic moduli.
机译:麦克斯韦的等效不均匀性概念用于评估具有各向同性相的宏观各向异性颗粒复合材料的有效弹性。通过将无限大各向同性矩阵中嵌入的各向同性粒子的有限簇问题与同一矩阵中嵌入的单个各向异性等效不均匀性问题的远场解进行比较,可以获得材料的有效各向异性弹性特性。前一种解决方案精确地说明了簇中所有粒子之间的相互作用及其几何排列。涉及周期(简单三次)和随机复合材料的说明性示例表明,该方法可提供其有效弹性模量的准确估算。

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