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首页> 外文期刊>International journal of mechanics and materials in design >Calculation of stress intensity factors for functionally graded materials by using the weight functions derived by the virtual crack extension technique
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Calculation of stress intensity factors for functionally graded materials by using the weight functions derived by the virtual crack extension technique

机译:使用虚拟裂纹扩展技术得出的权函数计算功能梯度材料的应力强度因子

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摘要

The weight function method provides a powerful approach for calculating the stress intensity factors for a homogeneous cracked body subjected to mechanical loadings. In this paper, the basic equations of weight function method for mode I and mixed mode crack problems in a two-dimensional functionally graded crack system are derived based on the Betti's reciprocal theorem. The weight functions derived by the virtual crack extension technique are further used to calculate the stress intensity factors of functionally graded materials (FGMs). The practicability and accuracy of this proposed method has been confirmed by the comparison with theoretical or numerical solutions available in the literatures. On account that the repeated extractions of the distributions of normal stress and shear stress in the uncracked component along the prospective crack line under different loadings can be avoided using the method presented in this paper, this method can be potentially used for optimal design for FGMs under multiple-load cases.
机译:权函数法提供了一种强大的方法来计算承受机械载荷的均质裂纹体的应力强度因子。本文基于贝蒂互易定理,推导了二维功能梯度裂纹系统中模式I和混合模式裂纹问题的权函数方法的基本方程式。通过虚拟裂纹扩展技术得出的权函数进一步用于计算功能梯度材料(FGM)的应力强度因子。通过与文献中可用的理论或数值解决方案进行比较,证实了该方法的实用性和准确性。由于使用本文提出的方法可以避免在不同载荷下沿着预期裂纹线在未破裂组件中重复提取法向应力和剪切应力的分布,因此该方法可以潜在地用于FGMs的优化设计。多负载情况。

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