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Effects of surface elasticity on scattering of P waves by an elastic half-plane with a nanosized semi-cylindrical inclusion

机译:具有纳米型半圆柱夹杂物的弹性半平面对P波散射表面弹性的影响

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The scattering of plane P waves by a nanosized semi-cylindrical inclusion embedded in an elastic half-plan has been studied in this paper. To account for the surface effect at nanoscale, the surface elasticity is also adopted. When the boundary condition at the straight edge of the half-plane is traction free, the analytical solutions of stress fields of the half plan with semi-cylindrical inclusion are expressed by employing a wave function expansion method. The results show that surface energy has a significant effect on the scattering of plane P waves as the radius of the semi-cylindrical inclusion shrinks to nanoscale. For incident waves with different frequencies, radius of semi-cylindrical inclusion, the effects of surface energy on the dynamic stress concentration near the semi-cylindrical inclusion are discussed in detail.
机译:本文研究了嵌入在弹性半导体中的纳米半圆柱形夹杂物的平​​面P波的散射。为了考虑纳米级的表面效果,还采用了表面弹性。当半平面的直边的边界条件自由牵引时,通过采用波函数膨胀方法表达半圆柱夹杂物的半柱的应力场的分析解。结果表明,随着半圆柱夹杂物的半径缩小到纳米级,表面能对平面P波的散射具有显着影响。对于具有不同频率的入射波,半圆柱形夹杂物的半径,详细讨论了表面能对半圆柱夹杂物附近的动态应力集中的影响。

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