The interface crack problem under a concentrated load for a functionally graded coating–substrate composite system |
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Authors: | Li-Cheng Guo LinZhi Wu Li Ma |
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Affiliation: | Center for Composite Materials, Harbin Institute of Technology, Harbin 150001, PR China |
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Abstract: | The plane crack problem for a functionally graded coating–substrate system under a concentrated load is studied in this paper. The medium consists of a functionally graded coating bonded to a homogeneous substrate of finite thickness, containing an interface crack of finite length. With use of the integration transform and differential factor methods, the displacement form can be obtained. By introducing auxiliary functions, the present problem can be turned into solving a group of singular integral equations. The mixed-mode stress intensity factors (SIFs) and strain energy release rates (SERRs) are obtained. The influences of the parameters such as the load location, nonhomogeneity constants and the geometry parameters on the SIFs and SERRs are studied. |
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Keywords: | Functionally graded coating–substrate system Concentrated load Interface crack Mixed-mode SIFs and SERRs |
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