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Mixed-Mode Crack-Tip Fields in an Anisotropic Functionally Graded Material

机译:各向异性功能梯度材料中的混合模式裂纹尖端场

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This paper provides asymptotic full crack-tip stress field solutions for an in-plane mixed-mode stationary crack in an anisotropic functionally graded material. A monoclinic graded material that has a material symmetry plane is considered. The complex variable approach and the asymptotic scaling factor are used to solve the governing fourth-order partial differential equation for exponentially graded anisotropic materials with gradation either parallel or perpendicular to the crack. Full crack-tip stress fields under mode-I and mode-II loading are visualized and discussed for homogeneous and exponentially graded anisotropic materials. We observe that higher-order terms are affected by material gradation and play an important role on crack-tip stress fields in functionally graded materials.
机译:本文提供了各向异性功能梯度材料中面内混合模式固定裂纹的渐近全裂纹尖端应力场解。考虑具有材料对称平面的单斜梯度材料。复变量方法和渐近缩放比例因子用于求解梯度平行于或垂直于裂纹的指数级各向异性材料的控制四阶偏微分方程。可视化并讨论了均质和指数梯度各向异性材料在I型和II型载荷下的全裂纹尖端应力场。我们观察到,高阶项受材料渐变影响,并且在功能渐变材料中的裂纹尖端应力场中发挥重要作用。

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