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Finite-amplitude shear horizontal waves propagating in a pre-stressed layer between two half-spaces

机译:在两个半空间之间的预应力层中传播的有限振幅剪切水平波

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摘要

The propagation of finite-amplitude time-harmonic shear horizontal waves, in a pre-stressed compressible elastic layer of finite thickness embedded between two identical compressible elastic half-spaces, is investigated. This is accomplished by combining finite-amplitude linearly polarized inhomogeneous transverse plane wave solutions in the half-spaces and finite-amplitude linearly polarized unattenuated transverse plane wave solutions in the layer. The layer and half-spaces are made of different pre-stressed compressible neo-Hookean materials. The dispersion relation which relates wave speed and wavenumber is obtained in explicit form. The special case where the interfaces between the layer and the half-spaces are principal planes of the left Cauchy-Green deformation tensor is also investigated. Numerical results are presented showing the variation of the shear horizontal wave speed with the pre-stress and the propagation angle.
机译:研究了在两个相同的可压缩弹性半空间之间嵌入的有限厚度的预应力可压缩弹性层中的有限振幅时谐剪切水平波的传播。这是通过将半空间中的有限振幅线性极化非均匀横向平面波解决方案与该层中的有限振幅线性极化非衰减横向平面波解决方案相结合来实现的。层和半空间由不同的预应力可压缩新霍克材料制成。以明确的形式获得了与波速和波数相关的色散关系。还研究了层与半空间之间的界面为左柯西-格林变形张量的主平面的特殊情况。数值结果表明剪切水平波速度随预应力和传播角的变化。

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