两温度对弹性-压热弹性界面能量比的响应

R. Kumar, P. Sharma
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引用次数: 4

摘要

本文用双温理论讨论了平面波在弹性和正交各向异性压热弹性两半空间间的反射和透射现象。假设一个压热弹性固体半空间承载着一个弹性半空间。由于这种现象,得到了四种高斯波;准纵波(qP)、准横波(qS)、准热波(qT)和电位波(eP)。发现各种反射波和折射波的振幅比是入射角和入射波频率的函数,并受介质的压热弹性特性的影响。能量比的数值计算使用振幅比的特定模型的石墨和硒化镉(CdSe)。能量比随入射角的变化用图形表示了两种温度的影响。整个界面的能量守恒是合理的。从目前的调查中还推断出一个特殊的感兴趣的案例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response of Two-Temperature on the Energy Ratios at Elastic-Piezothermoelastic Interface
In the present investigation the reflection and transmission phenomenon of plane waves between two half spaces elastic and orthotropic piezothermoelastic with two-temperature theory is discussed. A piezothermoelastic solid half space is assumed to be loaded with an elastic half space. Due to the phenomenon, four qausi waves are obtained; quasi longitudinal (qP) wave, quasi transverse (qS) wave, quasi thermal (qT) wave and electric potential wave (eP). It is found that the amplitude ratios of various reflected and refracted waves are functions of angle of incidence, frequency of incident wave and are influenced by the piezothermoelastic properties of media. The energy ratios are computed numerically using amplitude ratios for a particular model of graphite and cadmium selenide (CdSe). The variations of energy ratios with angle of incidence are shown graphically depicting the effect of two-temperature. The conservation of energy across the interface is justified. A particular case of interest is also deduced from the present investigation.
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