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Shear-compression loaded interface crack between a rigid substrate and an FGM layerfrictional crack closure effects

机译:刚性基板和FGM二层裂纹闭合效果之间的剪切压缩界面裂缝

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A typical application of functionally graded materials (FGMs) is the coating of homogeneous or inhomogeneous substrates. This work investigates numerically an interfacial crack between an FGM coating and a rigid substrate that is subjected to shear-compression loading under the effect of friction. Two types of linearly graded coatings and one homogeneous coating exhibiting the same average Young's modulus were examined. Two different numerical methods were applied for solving the singular receding contact problem: in-house finite difference software and a commercial finite element software. The effect of friction on the crack closure parameters such as tangential shifts and normal gaps of the crack face were studied with both methods and revealed an excellent agreement between the two. The effect of friction on the transition of the crack face from the slip to stick condition was studied as well. An extended J line formulation was used to extract the stress intensity factors (SIFs) for the crack tip for which the adjacent crack face experiences a large frictional contact. It was demonstrated that increasing the coefficient of friction causes a decrease in the tangential shifts and normal gaps until the whole crack face exhibits stick. The linear gradation in which the material is harder on the interface than on the top results in lower crack face displacement and SIFs.
机译:功能梯度材料(FGM)的典型应用是均匀或非均匀基材的涂层。该工作在数量上研究了FGM涂层和刚性基底之间的界面裂缝,其在摩擦的作用下进行剪切压缩负载。检查了两种类型的线性分级涂层和具有相同平均杨氏模量的一个均匀涂层。应用了两种不同的数值方法来解决单数后退接触问题:内部有限差分软件和商业有限元软件。用两种方法研究了摩擦对裂纹闭合参数的影响,例如裂缝面的切向偏移和正常间隙,并揭示了两者之间的良好协议。还研究了摩擦对裂缝面从滑动裂缝转变为粘附条件的影响。延伸的J线制剂用于提取用于裂纹尖端的应力强度因子(SIFS),相邻的裂缝面的经历大摩擦接触。结果证明,增加摩擦系数导致切向变化的减少和正常间隙,直到整个裂缝面呈现棍子。其中材料在界面上更难的线性灰度比顶部更亮,导致较低的裂缝面位移和SIFS。

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