首页> 外文期刊>European Journal of Mechanics. A, Solids >Stress intensity factors for an oblique edge crack in a coating/substrate system with a graded interfacial zone under antiplane shear
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Stress intensity factors for an oblique edge crack in a coating/substrate system with a graded interfacial zone under antiplane shear

机译:在反平面剪切作用下具有渐变界面区域的涂层/基体系统中倾斜边缘裂纹的应力强度因子

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This paper investigates the edge crack problem for a coating/substrate system with a functionally graded interfacial zone under the condition of antiplane deformation. With the interfacial zone being modeled by a nonhomogeneous interlayer having the continuously varying shear modulus between the dissimilar, homogeneous phases of the coated medium, the coating is assumed to contain an edge crack at an arbitrary angle to the interfacial zone. The Fourier integral transform method is used in conjunction with the coordinate transformations of basic field variables. Formulation of the proposed crack problem is then reduced to solving a singular integral equation with a generalized Cauchy kernel. The mode Ⅲ stress intensity factors are defined and evaluated in terms of the solution to the integral equation. In the numerical results, the values of the stress intensity factors are plotted, illustrating the effects of the crack orientation angle for various material and geometric combinations of the coating/substrate system with the graded interfacial zone.
机译:本文研究了在反平面变形条件下具有功能梯度界面区域的涂层/基体系统的边缘裂纹问题。由于界面区域是由不均匀的中间层模拟的,该中间层在涂覆介质的不同均相之间具有连续变化的剪切模量,因此可以认为涂层在与界面区域成任意角度的情况下都包含边缘裂纹。傅立叶积分变换方法与基本场变量的坐标变换结合使用。然后,将所提出的裂纹问题的公式简化为使用广义柯西核求解奇异积分方程。根据积分方程的解定义并评估了Ⅲ型应力强度因子。在数值结果中,绘制了应力强度因子的值,以说明裂纹取向角对具有渐变界面区域的涂层/基体系统的各种材料和几何组合的影响。

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