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Shape sensitivity analysis in mixed-mode fracture mechanics

机译:混合模式断裂力学中的形状敏感性分析

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摘要

This paper presents a new method for continuum-based shape sensitivity analysis for a crack in a homogeneous, isotropic, and linear-elastic body subject to mixed-mode (modes I and II) loading conditions. The method is based on the material derivative concept of continuum mechanics, domain integral representation of an interaction integral, and direct differentiation. Unlike virtual crack extension techniques, no mesh perturbation is needed in the proposed method to calculate the sensitivity of stress-intensity factors. Since the governing variational equation is differentiated prior to the process of discretization, the resulting sensitivity equations are independent of approximate numerical techniques, such as the finite element method, boundary element method, meshless methods, or others. In addition, since the interaction integral is represented by domain integration, only the first-order sensitivity of the displacement field is needed. Two numerical examples are presented to illustrate the proposed method. The results show that the maximum difference in the sensitivity of stress-intensity factors calculated using the proposed method and reference solutions obtained by analytical or finite-difference methods is less than four percent.
机译:本文提出了一种基于连续体的形状敏感性分析的新方法,该方法对均质,各向同性和线弹性体在混合模式(模式I和II)加载条件下的裂纹进行分析。该方法基于连续体力学的材料导数概念,相互作用积分的域积分表示和直接微分。与虚拟裂纹扩展技术不同,该方法无需网格扰动即可计算应力强度因子的敏感性。由于控制变分方程是在离散化过程之前进行微分的,因此所得灵敏度方程与近似数值技术无关,例如有限元法,边界元法,无网格法或其他方法。另外,由于相互作用积分由域积分表示,所以仅需要位移场的一阶灵敏度。给出两个数值例子来说明所提出的方法。结果表明,使用本文提出的方法和通过解析或有限差分法获得的参考溶液计算的应力强度因子的灵敏度最大差异小于4%。

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  • 来源
    《Computational Mechanics》 |2001年第4期|282-291|共10页
  • 作者

    G. Chen; S. Rahman; Y. H. Park;

  • 作者单位

    Department of Mechanical Engineering The University of Iowa Iowa City IA 52242 e-mail: rahman@engineering.uiowa.edu;

    Department of Mechanical Engineering The University of Iowa Iowa City IA 52242 e-mail: rahman@engineering.uiowa.edu;

    Department of Mechanical Engineering New Mexico State University Las Cruces NM 88003;

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