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首页> 外文期刊>International Journal of Fracture >Stress intensity factor analysis of an interface crack between dissimilar anisotropic materials under thermal stress using the finite element analysis
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Stress intensity factor analysis of an interface crack between dissimilar anisotropic materials under thermal stress using the finite element analysis

机译:有限元分析热应力作用下异质材料界面裂纹的应力强度因子分析

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摘要

New numerical methods were presented for stress intensity factor analyses of two-dimensional interfacial crack between dissimilar anisotropic materials subjected to thermal stress. The virtual crack extension method and the thermal M-integral method for a crack along the interface between two different materials were applied to the thermoelastic interfacial crack in anisotropic bimaterials. The moving least-squares approximation was used to calculate the value of the thermal M-integral. The thermal M-integral in conjunction with the moving least-squares approximation can calculate the stress intensity factors from only nodal displacements obtained by the finite element analysis. The stress intensity factors analyses of double edge cracks in jointed dissimilar isotropic semi-infinite plates subjected to thermal load were demonstrated. Excellent agreement was achieved between the numerical results obtained by the present methods and the exact solution. In addition, the stress intensity factors of double edge cracks in jointed dissimilar anisotropic semi-infinite plates subjected to thermal loads were analyzed. Their results appear reasonable.
机译:提出了一种新的数值方法,用于分析各向异性材料在热应力作用下的二维界面裂纹的应力强度因子。沿两种不同材料之间界面的裂纹的虚拟裂纹扩展方法和热M积分方法被应用于各向异性双材料的热弹性界面裂纹中。使用移动最小二乘近似来计算热M积分的值。热M积分与移动最小二乘法近似可以仅根据通过有限元分析获得的节点位移来计算应力强度因子。阐述了在热载荷作用下,各向同性的各向同性连接的半无限平板双边缘裂纹的应力强度因子分析。通过本方法获得的数值结果与精确解之间达成了极好的一致性。此外,分析了在热载荷作用下,异种连接的各向异性半无限平板双边缘裂纹的应力强度因子。他们的结果似乎是合理的。

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