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Study of static fracture propagation by element-free Galerkin method with singular weight function at crack tip

机译:裂纹尖端奇异权重的无元素Galerkin方法研究静态裂缝扩展

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摘要

Element-free Galerkin method (EFGM) based on moving least-square curve fitting concept is presented and applied to elastic fracture problems. Because no element connectivity data are needed, EFGM is very convenient and effective numerical method for crack growth analysis. This paper is intended as an investigation of crack trajectory for different notch locations under three-point bending test. The initial crack growth angles obtained by element-free Galerkin method in comparison with those obtained by lab test reveal that both results are very close. However, numerical results also show that the location of an original notch can stronger affect the variation of crack path for different increment. The stress intensity factors (SIF) of cracks under three-point bending test with different increment are also investigated by EFGM.
机译:提出了基于移动最小二乘曲线拟合概念的无元素伽勒金方法(EFGM),并将其应用于弹性断裂问题。由于不需要元素连接性数据,因此EFGM是用于裂纹扩展分析的非常方便有效的数值方法。本文旨在研究三点弯曲试验下不同缺口位置的裂纹轨迹。通过无元素Galerkin方法获得的初始裂纹扩展角度与通过实验室测试获得的初始裂纹扩展角度表明,这两个结果非常接近。但是,数值结果也表明,对于不同的增量,原始缺口的位置会更强烈地影响裂纹路径的变化。 EFGM还研究了裂纹在不同增量的三点弯曲试验下的应力强度因子(SIF)。

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