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首页> 外文期刊>International Journal of Solids and Structures >Micromechanical analysis of the finite elastic-viscoplastic response of multiphase composites
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Micromechanical analysis of the finite elastic-viscoplastic response of multiphase composites

机译:多相复合材料有限弹塑性响应的微力学分析

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摘要

Nonlinear thermoelastic-viscoplastic constitutive equations for large deformations with isotropic and directional hardening, are incorporated into a micromechanical finite strain analysis. As a result of this analysis, which is based on the homogenization technique for periodic microstructures, a global thermoinelastic constitutive law is established that governs the overall response of multiphase materials under finite deformations. This constitutive law is expressed in terms of the instantaneous effective mechanical and thermal stress tangent tensors together with the instantaneous global inelastic stress tenso that represents the viscoplastic effects. Results for a thermoinelastic matrix reinforced by a hyperelastic compressible material are given that illustrate the response of fibrous and particulate composites to various types of loading. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 28]
机译:具有各向同性和方向性硬化作用的大变形的非线性热弹-粘塑性本构方程被纳入微机械有限应变分析中。分析的结果是基于周期性微结构的均质化技术,建立了全局热弹性本构定律,该定律控制着有限变形下多相材料的整体响应。该本构定律用瞬时有效机械应力和热应力切线张量以及代表粘塑性作用的瞬时全局非弹性应力Tenso表示。给出了由超弹性可压缩材料增强的热弹性矩阵的结果,该结果说明了纤维和颗粒复合材料对各种载荷的响应。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:28]

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