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INTERFACIAL WAVES IN PRE-STRESSED INCOMPRESSIBLE ELASTIC INTERLAYERS

机译:预应力不可压缩弹性夹层中的界面波

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Elastic interfacial waves along planar interfaces in pre-stressed incompressible layered solids are examined. The layered structure consists of an infinite solid which contains a layer of arbitrary uniform thickness. The material and pre-strain parameters of the interlayer are in general different from those of the surrounding solid. The underlying finite strain in the solids is homogeneous with common principal axes, one axis being normal to the planar interfaces. For arbitrary strain energy functions and propagation along a principal pre-strain axis lying on an interfacial plane, the dispersion equation is derived in explicit form. The interfacial wave speed is subsequently obtained explicitly in respect of the solids' material and prestrain parameters for wavelengths large as compared to the layer thickness, yielding parameter conditions for filtering low frequency interfacial waves. It is proven that it is under these same conditions that interfacial waves of any wavelength cannot exist. For arbitrary interlayer thickness necessary parameter conditions are derived for the existence of quasi-static interfacial deformations corresponding td standing waves. The dependence of interfacial propagating and standing wave characteristics on pre-strain parameters is also illustrated numerically by considering specific incompressible materials. [References: 9]
机译:考察了预应力不可压缩层状固体中沿平面界面的弹性界面波。分层结构由无限固体组成,其中包含任意均匀厚度的层。中间层的材料和预应变参数通常与周围实体的不同。固体中的基本有限应变是同质的,且具有共同的主轴线,一个轴正交于平面界面。对于任意应变能函数以及沿界面上的主预应变轴的传播,色散方程以显式形式导出。随后相对于与层厚度相比较大的波长,针对固体的材料和预应变参数明确地获得界面波速度,从而产生用于过滤低频界面波的参数条件。事实证明,在这些相同条件下,任何波长的界面波都不存在。对于任意的层间厚度,导出了与td驻波相对应的准静态界面变形的必要参数条件。通过考虑特定的不可压缩材料,还以数字方式说明了界面传播和驻波特性对预应变参数的依赖性。 [参考:9]

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