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MODE III 2-D FRACTURE ANALYSIS BY THE SCALED BOUNDARY FINITE ELEMENT METHOD
Authors:Shenshen Chen  Qinghua Li  Yinghua Liu  Zhiqing Xue
Institution:[1]College of Civil Engineering, Hunan University of Technology,Zhuzhou 412007, China [2]Department of Engineering Mechanics, School of Aerospace, Tsinghua University, Beijing 100084, China
Abstract:The scaled boundary finite element method (SBFEM) is a novel semi-analytical technique that combines the advantages of the finite element method and the boundary element method with unique properties of its own. This method has proven very efficient and accurate for determining the stress intensity factors (SIFs) for mode I and mode II two-dimensional crack problems. One main reason is that the SBFEM has a unique capacity of analytically representing the stress singularities at the crack tip. In this paper the SBFEM is developed for mode III (out of plane deformation) two-dimensional fracture analysis. In addition, cubic B-spline functions are employed in this paper for constructing the shape functions in the circumferential direction so that higher continuity between elements is obtained. Numerical examples are presented at the end to demonstrate the simplicity and accuracy of the present approach for mode III two-dimensional fracture analysis.
Keywords:fracture mechanics  scaled boundary finite element method  mode Ⅲ  stress in- tensity factors
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