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Dynamic analysis of a crack in a functionally graded material sandwiched between two elastic layers under anti-plane loading

机译:反平面载荷作用下夹在两个弹性层之间的功能梯度材料中裂纹的动态分析

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The transient response of a crack embedded in a functionally graded material (FGM) layer sandwiched between two dissimilar elastic layers is analyzed under anti-plane shear impact loads. The material properties of the FGM is assumed to be an exponential function of the thickness. The problem is reduced to a singular integral equation via the Fourier and Laplace transforms, and the resulting equation is solved numerically. Dynamic stress intensity factors are determined by a numerical inversion of the Laplace transform. The results indicate that in addition to the crack geometry, the dynamic stress intensity factors depend upon the material properties and the crack position. Moreover, there is a significant error in the obtained dynamic stress intensity factors for applied impacts acting at the material surface and at the crack surfaces.
机译:在反平面剪切冲击载荷下分析了嵌入在两个不同弹性层之间的功能梯度材料(FGM)层中嵌入的裂纹的瞬态响应。 FGM的材料特性被假定为厚度的指数函数。通过傅立叶变换和拉普拉斯变换将问题简化为奇异积分方程,并对所得方程进行数值求解。动态应力强度因子由拉普拉斯变换的数值反演确定。结果表明,除了裂纹的几何形状,动应力强度因子还取决于材料的性能和裂纹的位置。而且,对于作用在材料表面和裂纹表面的施加的冲击,在获得的动态应力强度因子中存在很大的误差。

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