Dynamic mode III stress intensity factors of multiple axisymmetric interfacial cracks in an FGM coated orthotropic layer

Farid Bagherpoor, M. Pourseifi
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引用次数: 3

Abstract

Abstract In the present study, mode III dynamic stress intensity factors (DSIFs) for the multiple axisymmetric interfacial cracks in an orthotropic layer with FGM orthotropic coating under transient torsional loading are formulated. It is assumed that the mass density and the shear modulus of the FGM orthotropic coating vary exponentially and power-law form along the thickness of the layer. At first, the solution for Somigliana-type dynamic rotational ring dislocation in the layer and its coating is obtained by using the Laplace and Hankel transforms. Then, the dislocation solution is used to derive a set of singular integral equations for a system of coaxial axisymmetric interfacial cracks, including penny-shaped and annular cracks. The integral equations are of Cauchy singular type, which are solved by Erdogan’s collocation method for dislocation density on the surface of interfacial crack and the results are used to determine DSIFs for axisymmetric interfacial cracks. Finally, several examples are provided to study the effects of the non-homogeneity constant, orthotropy parameter and thickness of FGM coating as well as the interaction of multiple interfacial cracks on the DSIFs.
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FGM包覆正交各向异性层轴对称界面裂纹的动态III型应力强度因子
摘要本文建立了瞬态扭转载荷作用下FGM正交异性涂层正交异性层中多个轴对称界面裂纹的III型动应力强度因子。假设FGM正交各向异性涂层的质量密度和剪切模量沿层厚呈指数和幂律形式变化。首先,利用拉普拉斯变换和汉克尔变换,得到了层及其涂层中somigliana型动态转动环位错的解。然后,利用位错解导出了包括便士形裂纹和环形裂纹在内的同轴轴对称界面裂纹系统的奇异积分方程。积分方程为柯西奇异型,采用埃尔多安配点法求解界面裂纹表面位错密度,并将其结果用于确定轴对称界面裂纹的深应力分布。最后,通过算例研究了FGM涂层的非均匀性常数、正交异性参数、厚度以及多界面裂纹的相互作用对DSIFs的影响。
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