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Surface Effects on the Scattering of SH-Wave Around an Arbitrary Shaped Nano-Cavity

机译:对任意形状纳米腔周围的SH波散射的表面影响

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By using the complex variable function theory and the conformal mapping method, the scattering of plane shear wave (SH-wave) around an arbitrary shaped nano-cavity is studied. Surface effects at the nanoscale are explained based on the surface elasticity theory. According to the generalized Yong–Laplace equations, the boundary conditions are given, and the infinite algebraic equations for solving the unknown coefficients of the scattered wave solutions are established. The numerical solutions of the stress field can be obtained by using the orthogonality of trigonometric functions. Lastly, the numerical results of dynamic stress concentration factor around a circular hole, an elliptic hole and a square hole as the special cases are discussed. The numerical results show that the surface effect and wave number have a significant effect on the dynamic stress concentration, and prove that our results from theoretical derivation are correct.
机译:通过使用复杂的变量函数理论和保形映射方法,研究了围绕任意形状纳米腔周围的平面剪切波(SH波)的散射。基于表面弹性理论解释纳米级的表面效应。根据广义的Yong-Laplace方程,给出了边界条件,并且建立了用于解决散射波解决方案的未知系数的无限代数方程。通过使用三角函数的正交性可以获得应力场的数值解。最后,讨论了圆孔周围的动态应力集中因子的数值结果,椭圆孔和方孔作为特殊情况。数值结果表明,表面效应和波数对动态应力集中具有显着影响,并证明我们从理论衍生的结果是正确的。

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