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首页> 外文期刊>International Journal of Solids and Structures >Micromechanical concept for the analysis of damage evolution in thermo-viscoelastic and quasi-brittle materials
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Micromechanical concept for the analysis of damage evolution in thermo-viscoelastic and quasi-brittle materials

机译:热粘弹性和准脆性材料损伤演化分析的微力学概念

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The aim of this paper is to develop a thermodynamically consistent micromechanical concept for the damage analysis of viscoelastic and quasi-brittle materials. As kinematical damage variables a set of scalar-, vector-, and tensor-valued functions is chosen to describe isotropic and anisotropic damage. Since the process of material degradation is governed by physical mechanisms on levels with different length scale, the macro- and mesolevel, where on the mesolevel microdefects evolve due to microforces, we formulate in this paper the dynamical balance laws for macro- and microforces and the first and second law of thermodynamics for macro- and mesolevel. Assuming a general form of the constitutive equations for thermo-viscoelastic and quasi-brittle materials, it is shown that according to the restrictions imposed by the Clausius-Duhem inequality macro- and microforces consist of two parts, a non-dissipative and a dissipative part, where on the mesolevel the latter can be regarded as driving forces on moving microdefects. It is shown that the non-dissipative forces can be derived from a free energy potential and the dissipative forces from a dissipation pseudo-potential, if its existence can be assured. The micromechanical damage theory presented in this paper can be considered as a framework which enables the formulation of various weakly nonlocal and gradient, respectively, damage models. This is outlined in detail for isotropic and anisotropic damage. (C) 2002 Published by Elsevier Science Ltd. [References: 36]
机译:本文的目的是为粘弹性和准脆性材料的损伤分析开发一种热力学一致的微力学概念。作为运动损伤变量,选择了一组标量,向量和张量值函数来描述各向同性和各向异性损伤。由于材料的降解过程是由不同长度尺度上的物理机制控制的,因此在宏观和中观层面上,微观层面上的微观缺陷是由于微力而产生的,因此我们在本文中制定了宏观和微观力的动态平衡定律。宏观和介观热力学第一定律和第二定律。假设热粘弹性和准脆性材料的本构方程的一般形式表明,根据克劳修斯-杜海不等式不等式所施加的限制,宏观力和微观力由两部分组成:非耗散部分和耗散部分,在中观水平上,后者可被视为移动微缺陷的驱动力。结果表明,如果能够确保自由能,则非耗散力可以来自自由能势,而耗散力可以来自耗散伪势。本文提出的微机械损伤理论可以看作是一个框架,可以用来分别建立各种弱非局部和梯度损伤模型。对于各向同性和各向异性损坏,将对此进行详细概述。 (C)2002由Elsevier Science Ltd.发布[参考:36]

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