Analysis of three-dimensional interface cracks using enriched finite elements

被引:0
作者
A. O. Ayhan
A. C. Kaya
H. F. Nied
机构
[1] General Electric Company,Global Research Center
[2] Lehigh University,Mechanical Engineering and Mechanics
来源
International Journal of Fracture | 2006年 / 142卷
关键词
Interface cracks; Three-dimensional cracks; Finite elements; Surface cracks; Corner cracks; Enriched elements; Dundurs’ parameters; Phase angle; Stress intensity factors; Silicon; Epoxy;
D O I
暂无
中图分类号
学科分类号
摘要
Many important interface crack problems are inherently three-dimensional in nature, e.g., debonding of laminated structures at corners and holes. In an effort to accurately analyze three-dimensional interface fracture problems, an efficient computational technique was developed that utilizes enriched crack tip elements containing the correct interface crack tip asymptotic behavior. In the enriched element formulation, the stress intensity factors KI, KII, and KIII are treated as additional degrees of freedom and are obtained directly during the finite element solution phase. In this study, the results that should be of greatest interest are obtained for semi-circular surface and quarter-circular corner cracks. Solutions are generated for uniform remote tension and uniform thermal loading, over a wide range of bimaterial combinations. Of particular interest are the free surface effects, and the influence of Dundurs’ material parameters on the strain energy release rate magnitudes and corresponding phase angles.
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页码:255 / 276
页数:21
相关论文
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