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Lamb waves in micropolar thermoelastic solid plates immersed in liquid with varying temperature

机译:浸没在温度变化的液体中的微极热弹性固体板中的兰姆波

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In the present paper the theory of micropolar generalized thermoelastic continua has been employed to study the propagation of plane waves in micropolar thermoelastic plates bordered with inviscid liquid layers (or half-spaces) with varying temperature on both sides. The secular equations in closed form and isolated mathematical conditions are derived and discussed. Thin plate and short wave length results have also been deduced under different cases and situations and discussed as special cases of this work. The results in case of conventional coupled and uncoupled theories of thermoelasticity can be obtained both in case of micropolar elastic and elastokinetics from the present analysis by appropriate choice of relevant parameters. The various secular equations and relevant relations have been solved numerically by using functional iteration method in order to illustrate the analytical developments. Effect of characteristic length and coupling factors have also been studied on phase velocity. The computer simulated results in case of phase velocity, attenuation coefficient and specific loss of symmetric and skew symmetric are presented graphically. Keywords Micropolar - Interfacial waves - Generalized thermoelasticity - Characteristic length - Continuum mechanics
机译:在本文中,微极性广义热弹性连续理论已经被用来研究平面波在微极性热弹性板中的传播,该板在两侧具有变化的温度的不粘液体层(或半空间)边界。导出并讨论了封闭形式的世俗方程和孤立的数学条件。在不同情况和情况下,也推导出了薄板和短波的结果,并作为这项工作的特例进行了讨论。在微极性弹性和弹性动力学的情况下,通过适当选择相关参数,可以从常规分析中获得常规耦合和非耦合热弹性理论的结果。为了说明分析的发展,通过函数迭代法对各种长期方程和相关关系进行了数值求解。还研究了特征长度和耦合因子对相速度的影响。图形显示了相速度,衰减系数以及对称和偏斜对称比损耗的计算机模拟结果。关键词微极性-界面波-广义热弹性-特征长度-连续体力学

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