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首页> 外文期刊>International Journal of Engineering Science >Subsonic interfacial (Stoneley) waves in anisotropic multiferroic bimaterials with a viscous interface
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Subsonic interfacial (Stoneley) waves in anisotropic multiferroic bimaterials with a viscous interface

机译:具有粘性界面的各向异性多铁双材料中的亚音速(Stoneley)波

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The problem of subsonic interfacial (Stoneley) wave propagation in anisotropic multiferroic bimaterials with a viscous interface is treated. A concise analytical method is constructed for deduction of possible subsonic interfacial wave with varying viscosity of the interface. A numerical scheme and several calculations are given based on the method, which demonstrate interesting results. For an interface constructed by a piezoelectric half-space and a piezomagnetic half-space, when assumed to be non-viscous, calculation shows that it does not permit any subsonic interfacial wave. Yet when the same interface is assumed to be viscous, at least one possible subsonic interfacial wave speed appears which varies with the viscosity of the interface. By introducing the relation between viscosity of certain adhesives and temperature, the possibility of control of interfacial wave speeds through accommodating the working temperature is put forward.
机译:解决了具有粘性界面的各向异性多铁双材料中亚音速界面(Stoneley)波传播的问题。构建了一种简洁的分析方法,以推论界面粘度变化时可能发生的亚音速界面波。基于该方法给出了一个数值方案和一些计算结果,这些结果证明了有趣的结果。对于由压电半空间和压电半空间构成的界面,当假定为非粘性时,计算表明它不允许任何亚音速界面波。然而,当假定同一界面是粘性的时,至少出现一种可能的亚音速界面波速度,该速度随界面的粘度而变化。通过介绍某些粘合剂的粘度与温度之间的关系,提出了通过适应工作温度来控制界面波速的可能性。

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