Crack analysis in unidirectionally and bidirectionally functionally graded materials

被引:0
作者
Chuanzeng Zhang
Jan Sladek
Vladimir Sladek
机构
[1] University of Applied Sciences Zittau/Görlitz,Department of Civil Engineering
[2] Slovak Academy of Sciences,Institute of Construction and Architecture
来源
International Journal of Fracture | 2004年 / 129卷
关键词
boundary integral equation method; crack analysis; fracture mechanics; functionally graded materials; stress intensity factors.;
D O I
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中图分类号
学科分类号
摘要
Mixed-mode crack analysis in unidirectionally and bidirectionally functionally graded materials is performed by using a boundary integral equation method. To make the analysis tractable, the Young's modulus of the functionally graded materials is assumed to be exponentially dependent on spatial variables, while the Poisson's ratio is assumed to be constant. The corresponding boundary value problem is formulated as a set of hypersingular traction boundary integral equations, which are solved numerically by using a Galerkin method. The present method is especially suited for straight cracks in infinite FGMs. Numerical results for the elastostatic stress intensity factors are presented and discussed. Special attention of the analysis is devoted to investigate the effects of the material gradients and the crack orientation on the elastostatic stress intensity factors.
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页码:385 / 406
页数:21
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