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Stress intensity factor analysis of friction sliding at discontinuity interfaces and junctions

机译:间断面和交界处的摩擦滑动应力强度因子分析

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A stress intensity factor (SIF) analysis for two-dimensional fractures with frictional contact (crack friction) is presented. This analysis is carried out using the symmetric-Galerkin boundary element method, and a modified quarter-point crack tip element. As in case of non-contact fracture, it is shown that highly accurate SIFs can be obtained, even with the simple Displacement Correlation SIF technique. Moreover, with the modified crack tip element, the mesh on the crack does not need to be excessively refined in order to achieve high accuracy. This meshing advantage is especially important in the context of the nonlinear frictional contact problem, as the computing time for the iterative process strongly depends on the number of elements used. Several numerical examples are presented and the SIF results are compared with available analytical or reference solutions.
机译:提出了具有摩擦接触(裂纹摩擦)的二维裂缝的应力强度因子(SIF)分析。使用对称-Galerkin边界元法和改进的四分之一点裂纹尖端元进行分析。与非接触破裂一样,即使使用简单的位移相关SIF技术,也可以得到高精度的SIF。此外,利用改进的裂纹尖端元件,不需要过度细化裂纹上的网格以获得高精度。这种啮合优势在非线性摩擦接触问题的情况下尤其重要,因为迭代过程的计算时间很大程度上取决于所用元素的数量。给出了几个数值示例,并将SIF结果与可用的分析或参考解决方案进行了比较。

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