Mode III SIFs for interface cracks in an FGM coating-substrate system

MM Monfared - Structural engineering and mechanics: An international …, 2017 - dbpia.co.kr
Structural engineering and mechanics: An international journal, 2017dbpia.co.kr
In this study, interaction of several interface cracks located between a functionally graded
material (FGM) layer and an elastic layer under anti-plane deformation based on the
distributed dislocation technique (DDT) is analyzed. The variation of the shear modulus of
the functionally graded coating is modeled by an exponential and linear function along the
thickness of the layer. The complex Fourier transform is applied to governing equation to
derive a system of singular integral equations with Cauchy type kernel. These equations are …
In this study, interaction of several interface cracks located between a functionally graded material (FGM) layer and an elastic layer under anti-plane deformation based on the distributed dislocation technique (DDT) is analyzed. The variation of the shear modulus of the functionally graded coating is modeled by an exponential and linear function along the thickness of the layer. The complex Fourier transform is applied to governing equation to derive a system of singular integral equations with Cauchy type kernel. These equations are solved by a numerical method to obtain the stress intensity factors (SIFs) at the crack tips. The effects of non-homogeneity parameters for exponentially and linearly form of shear modulus, the thickness of the layers and the length of crack on the SIFs for several interface cracks are investigated. The results reveal that the magnitude of SIFs decrease with increasing of FG parameter and thickness of FGM layer. The values of SIFs for FGM layer with exponential form is less than the linear form.
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