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Dynamic stress from a subsurface cylindrical inclusion in a functionally graded material layer under anti-plane shear waves

机译:反梯度剪切波作用下功能梯度材料层中地下圆柱形夹杂物的动应力

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Department of Engineering Mechanics, Shijiazhuang Railway Institute, Shijiazhuang 050043,People's Republic of China;Department of Engineering Mechanics, Shijiazhuang Railway Institute, Shijiazhuang 050043,People's Republic of China;Department of Engineering Mechanics, Shijiazhuang Railway Institute, Shijiazhuang 050043,People's Republic of China;Department of Engineering Mechanics, Shijiazhuang Railway Institute, Shijiazhuang 050043,People's Republic of China;%The multiple scattering of shear waves and dynamic stress resulting from a subsurface cylindrical inclusion in a functionally graded material (FGM) layer bonded to homogeneous materials are investigated, and the analytical solution of this problem is derived. Image method is used to satisfy the traction free boundary condition of the FGM layer. The analytical solutions of wave fields around the actual and image inclusions are expressed by employing wave functions expansion method, and the expanded mode coefficients are determined by satisfying the continuous boundary conditions around the inclusions. Through the numerical solutions of dynamic stress concentration factors (DSCFs) around the inclusion, the effects of the position of the inclusion in the material layer, the properties of the inclusion, and the properties of the two phases of composites on the DSCFs are analyzed. Analyses show that when the cylindrical inclusion is stiffer than the two phases of FGMs, the dynamic stress around the inclusion increases greatly. When the distance between the surface of the structure and the inclusion is smaller, the effect of the properties of the inclusion becomes greater. When the cylindrical inclusion is softer than the two phases of FGMs, the maximum dynamic stress shows little difference; however, the variation of the distribution of the dynamic stress around the inclusion is greater.
机译:石家庄铁道学院工程力学系,中华人民共和国石家庄050043;石家庄铁道学院工程力学系,中国石家庄050043;石家庄铁道学院工程力学系,中国石家庄050043 ;石家庄铁道学院工程力学系,中华人民共和国石家庄050043;%研究了功能梯度材料(FGM)层中均质材料粘结的地下圆柱形夹杂物引起的剪切波和动应力的多重散射,并导出了该问题的解析解。图像方法被用来满足FGM层的无牵引边界条件。利用波函数展开法表示了实际夹杂物和图像夹杂物周围的波场的解析解,并通过满足夹杂物周围的连续边界条件来确定展开模系数。通过围绕夹杂物的动态应力集中因子(DSCF)的数值解,分析了夹杂物在材料层中的位置,夹杂物的性质以及复合材料两相在DSCF上的性质的影响。分析表明,当圆柱形夹杂物的硬度高于FGMs的两相时,夹杂物周围的动应力会大大增加。当结构的表面与夹杂物之间的距离较小时,夹杂物的性质的影响变大。当圆柱形夹杂物比FGMs的两相软时,最大动应力几乎没有差别。然而,夹杂物周围动应力分布的变化较大。

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