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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Scattering of Incident P-Waves by a Semicylindrical Core-Shell Structure in an Elastically Constrained Half-Space at Nanoscale
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Scattering of Incident P-Waves by a Semicylindrical Core-Shell Structure in an Elastically Constrained Half-Space at Nanoscale

机译:在纳米载体在弹性受约束的半空间中散射入射的p波的圆柱核心壳结构

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摘要

Under the premise of the theory of surface elasticity, the scattering of plane compressional waves (P-waves) in the surface of a semicylindrical core-shell structure within the nanoscale elastic confinement half-space is studied by using the method of eigen-function expansion. The generalized Y-L equation is used to give the nanoscale boundary conditions, and the dynamic stress concentration factor (DSCF) along the interface of core-shell structure induced by the plane elastic wave are derived and numerically evaluated. Under different incident wave frequencies, surface energy, and shear modulus, when the radius of the core-shell structure is reduced to the nanometer level, their influence on the DSCF is very significant. These have been confirmed by numerical calculations.
机译:在表面弹性理论的前提下,通过使用特征函数膨胀的方法,研究了纳米级弹性限制半空间内半透明核心壳结构的表面的平面压缩波(P波)的散射。推导出沿着由平面弹性波引起的核心壳结构界面的纳米级边界条件,并且沿着由平面弹性波引起的界面的动态应力集中因子(DSCF)进行了数字评价。在不同的入射波频率下,表面能和剪切模量下,当芯壳结构的半径减小到纳米级时,它们对DSCF的影响非常显着。这些已经通过数值计算确认。

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