Automatic LEFM crack propagation method based on local Lepp-Delaunay mesh refinement

Advances in Engineering Software(2010)

引用 39|浏览17
暂无评分
摘要
A numerical method for 2D LEFM crack propagation simulation is presented. This uses a Lepp-Delaunay based mesh refinement algorithm for triangular meshes which allows both the generation of the initial mesh and the local modification of the current mesh as the crack propagates. For any triangle t, Lepp(t) (Longest Edge Propagation Path of t) is a finite, ordered list of increasing longest edge neighbor triangles, that allows to find a pair of triangles over which mesh refinement operations are easily and locally performed. This is particularly useful for fracture mechanics analysis, where high gradients of element size are needed. The crack propagation is simulated by using a finite element model for each crack propagation step, then the mesh near the crack tip is modified to take into account the crack advance. Stress intensify factors are calculated using the displacement extrapolation technique while the crack propagation angle is calculated using the maximum circumferential stress method. Empirical testing shows that the behavior of the method is in complete agreement with experimental results reported in the literature. Good results are obtained in terms of accuracy and mesh element size across the geometry during the process.
更多
查看译文
关键词
finite element method,initial mesh,triangulation,crack propagation,crack tip,mesh element size,local lepp-delaunay mesh refinement,numerical methods,current mesh,delaunay,crack advance,lepp–delaunay method,automatic lefm crack propagation,crack propagates,displacement extrapolation,crack propagation angle,crack propagation step,lefm crack propagation simulation,delaunay triangulation,numerical method,triangular mesh,finite element model
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要