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Boundary integral equation method to solve embedded planar crack problems under shear loading

机译:边界积分方程法求解剪切载荷下的平面裂纹问题

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摘要

The solution of three-dimensional planar cracks under shear loading are investigated by the boundary integral equation method. A system of two hypersingular integral equations of a three-dimensional elastic solid with an embedded planar crack are given. The solution of the boundary integral equations is succeeded taking into consideration an appropriate Gauss quadrature rule for finite part integrals which is suitable for the numerical treatment of any plane crack without a polygonal contour shape and permit the fast convergence for the results. The stress intensity factors at the crack front are calculated in the case of a circular and an elliptic crack and are compared with the analytical solution.
机译:采用边界积分方程法研究了剪切载荷作用下三维平面裂纹的解。给出了具有平面裂纹的三维弹性固体的两个超奇异积分方程组。边界积分方程的求解考虑了有限零件积分的适当高斯正交规则,该规则适用于任何不具有多边形轮廓形状的平面裂纹的数值处理,并允许结果快速收敛。计算圆形和椭圆形裂纹时裂纹前沿的应力强度因子,并将其与解析解进行比较。

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