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Application of the material force method to isotropic continuum damage

机译:物质力法在各向同性连续损伤中的应用

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摘要

The objective of this work is the exploitation of the notion of material forces in computational continuum damage mechanics. To this end we consider the framework of isotropic geometrically non–linear continuum damage and investigate the spatial and material settings that lead to either spatial or material forces, respectively. Thereby material forces essentially represent the tendency of material defects to move relative to the ambient material. In this work we combine an internal variable approach towards damage mechanics with the material force method. Thus the appearance of distributed material volume forces that are conjugated to the damage field necessitates the discretization of the damage variable as an independent field in addition to the deformation field. Consequently we propose a monolithic solution strategy for the corresponding coupled problem. The underlying kinematics, strong and weak forms of the coupled problem will be presented and implemented within a standard Galerkin finite element procedure. As a result in particular global discrete nodal quantities, the so–called material node point (surface) forces, are obtained and are studied for a number of computational examples.
机译:这项工作的目的是在计算连续损伤力学中利用物质力的概念。为此,我们考虑了各向同性几何非线性连续体损伤的框架,并研究了分别导致空间力或材料力的空间和材料设置。因此,材料力基本上代表了材料缺陷相对于周围材料移动的趋势。在这项工作中,我们将内部变量法和破坏力法结合起来。因此,与损伤场共轭的分布的材料体积力的出现使得除了变形场之外,还需要将损伤变量离散化为独立场。因此,我们为相应的耦合问题提出了整体解决方案。耦合问题的基本运动学,强弱形式将在标准的Galerkin有限元程序中提出和实施。结果,获得了特定的全局离散节点量,即所谓的材料节点点(表面)力,并进行了许多计算示例的研究。

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  • 来源
    《Computational Mechanics》 |2003年第3期|171-184|共14页
  • 作者单位

    Chair for Applied Mechanics Department of Mechanical Engineering University of Kaiserslautern P.O. Box 3049 D-67653 Kaiserslautern Germany e-mail: ps@rhrk.uni-kl.de;

    Chair for Applied Mechanics Department of Mechanical Engineering University of Kaiserslautern P.O. Box 3049 D-67653 Kaiserslautern Germany e-mail: ps@rhrk.uni-kl.de;

    Chair for Applied Mechanics Department of Mechanical Engineering University of Kaiserslautern P.O. Box 3049 D-67653 Kaiserslautern Germany e-mail: ps@rhrk.uni-kl.de;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Keywords Computational damage mechanics; Material force method; Finite element method;

    机译:关键词:计算损伤力学;物质力法;有限元法;

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