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Analysis of stress field in a single anisotropic diamond/square shaped inclusion using the volume integral equation method and the numerical equivalent inclusion method

机译:使用体积整体式方法和数值等同夹杂物法分析单个各向异性金刚石/方形夹杂物中的应力场

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摘要

A volume integral equation method (VIEM) is used to study elastostatic problems in an unbounded elastic solid containing a single diamond/ square shaped inclusion subject to uniform tensile stress at infinity. The inclusion is assumed to be a long parallel diamond/square cylinder composed of isotropic or anisotropic elastic materials and perfectly bonded to the isotropic matrix. The solid is assumed to be under plane strain on the plane normal to the cylinder. A detailed analysis of the stress field at the interface between the isotropic matrix and the single isotropic/orthotropic diamond/square shaped inclusion is carried out. The effects of a single isotropic/orthotropic diamond/square shaped inclusion on the stress field at the interface between the matrix and the inclusion are investigated in detail. The accuracy of the volume integral equation method for the interfacial stress field is validated and compared by the numerical equivalent inclusion method (NEIM) and the finite element method (FEM) using ADINA. Through detailed analysis of plane elastostatic problems using the parallel volume integral equation method (PVIEM) in an unbounded isotropic matrix with multiple isotropic diamond shaped inclusions under uniform remote tensile loading, it is demonstrated that the volume integral equation method can also be applied to solve general two- and three-dimensional elastostatic problems involving multiple isotropic/anisotropic inclusions whose shape and number are arbitrary.
机译:体积整体式方法(VIEM)用于研究含有单金刚石/方形夹杂物的未束缚的弹性固体中的弹性型问题,该夹杂物在无限远处均匀拉应力。假设包含由各向同性或各向异性弹性材料构成的长平行金刚石/方圆筒,并且与各向同性基质完全结合。假设固体在正常到圆柱体的平面上的平面应变下方。进行了各向同性基质与单个各向同性/正交金刚石/方形夹杂物之间的界面处的应力场的详细分析。详细研究了在基质和包含夹杂物之间的界面处的应力场上的单个各向同性/正交金刚石/方形夹杂物的影响。通过使用ADINA的数值等同的夹杂度(NEIM)和有限元方法(FER)验证和比较界面应力场的体积积分方程方法的精度。通过使用平行体积整体式方法(PVIEM)在未绑定的各向同性基质中的平面弹性型问题的详细分析,在均匀的远程拉伸负载下具有多个各向同性金刚石形状的夹杂物,证明体积整体方程方法也可以应用于解决一般情况涉及多个各向同性/各向异性夹杂物的两维的弹性问题,其形状和数量是任意的。

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