Highl'/> Reflection and refraction of thermoelastic waves at an interface of two couple-stress solids based on Lord-Shulman thermoelastic theory
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Reflection and refraction of thermoelastic waves at an interface of two couple-stress solids based on Lord-Shulman thermoelastic theory

机译:基于Lord-Shulman热弹性理论的两个偶应力固体界面处的热弹性波的反射和折射

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HighlightsThe coupled governing equations of thermoelastic couple stress solid are derived in detail.The thermal wave effects and the couple-stress effects are both studied.The mechanically and thermally imperfect interface conditions are considered.The transmission mechanism of waves across an imperfect interface is explained by three channels of energy flux.The influences of the thermal relaxation time are discussed.AbstractThe reflection and refraction of thermoelastic waves at an imperfect interface of two semi-infinite homogeneous isotropic thermoelastic couple stress solids are studied in this paper. First, the coupled governing equations and the constitutive equations of thermoelastic couple-stress medium are derived based on Lord-Shulman generalized thermoelastic theory. In contrast to the classical thermoelastic solid, there exist four kinds of wave modes (two coupled longitudinal waves and two transversal waves) in the thermoelastic couple-stress solid. Second, the reflection and refraction of these coupled thermoelastic waves across a mechanically and thermally imperfect interface are considered. The interfacial conditions result in a set of algebraic equations from which the reflection and refraction amplitudes ratios can be obtained for both incident CP-wave and incident SV-wave. The numerical results are shown graphically and the influences of the thermal relaxation time and the imperfect interface parameters are discussed. The transmission mechanism of waves across an imperfect interface is explained by three kinds of channels of energy flux.
机译: 突出显示 详细推导了热弹耦合应力固体的耦合控制方程。 同时研究了热波效应和耦合应力效应。 考虑了机械和热方面不完美的界面条件。 < ce:label>• 讨论了热弛豫时间的影响。 摘要 热弹性波的反射和折射本文研究了两个半无限均质各向同性热弹性耦合应力固体的不完美界面。首先,基于Lord-Shulman广义热弹性理论,推导了热弹性偶应力介质的耦合控制方程和本构方程。与经典的热弹性固体相反,热弹性偶应力固体中存在四种波模式(两个耦合纵波和两个横向波)。其次,考虑了这些耦合的热弹性波在机械和热不完全界面上的反射和折射。界面条件导致了一组代数方程,从中可以得到入射CP波和入射SV波的反射和折射振幅比。数值结果以图形方式显示,并讨论了热弛豫时间和不完善的界面参数的影响。波通过不完全界面的传输机理可以通过三种能量通量通道来解释。

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