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Boundary element analysis of infinite anisotropic elastic medium containing inclusions and cracks

机译:包含夹杂物和裂纹的无限各向异性弹性介质的边界元分析

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The purpose of this paper is to investigate the interaction between inclusions and cracks in an infinite anisotropic elastic medium (matrix) subject to a remote loading using the boundary element method. The displacement boundary integral equation is used for the matrix and the inclusion, respectively, when the source points are located on the inclusion-matrix interfaces, whilst the stress boundary integral equation is enforced only for the matrix when the source points are acting on the crack surfaces. Quadratic continuous isoparametric boundary elements are employed to discretize the inclusion-matrix interfaces, whilst quadratic discontinuous boundary elements are used to model the crack surfaces. Special crack tip elements are adopted to model the r~(1/2) variation of displacements near the crack tips. The inclusion-matrix interfaces are assumed to be perfectly bonded. Based on this assumption, the resulting system of equations can be formed to obtain the interface unknowns, i.e. displacements and tractions, and the discontinuous displacements over the crack surfaces. Thus, the stress intensity factors at the crack tips can be obtained from the discontinuous displacements at the crack tip elements based on one point displacement formulation. Some examples are given to show accuracy and effectiveness of the boundary element method.
机译:本文的目的是利用边界元方法研究无限载荷作用于无限各向异性弹性介质(基体)中夹杂物与裂纹之间的相互作用。当源点位于夹杂物-矩阵界面上时,位移边界积分方程分别用于矩阵和夹杂物,而当源点作用于裂纹时,应力边界积分方程仅对矩阵执行表面。二次连续等参边界元被用来离散包含矩阵的界面,而二次不连续边界元被用来对裂纹表面进行建模。采用特殊的裂纹尖端单元模拟裂纹尖端附近位移的r〜(1/2)变化。包含矩阵的接口被认为是完美结合的。基于该假设,可以形成所得的方程组以获得界面未知量,即位移和牵引力以及裂纹表面上的不连续位移。因此,裂纹尖端处的应力强度因子可以基于一个点位移公式从裂纹尖端元件处的不连续位移中获得。给出了一些例子来说明边界元法的准确性和有效性。

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