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Plane waves in nonlocal micropolar thermoelastic material with voids

机译:具有空隙的非局部微柱热弹性材料的平面波

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Constitutive relations and field equations are developed for an isotropic linear micropolar thermoelastic material with voids within the context of Eringen's theory of nonlocal elasticity. It is found that six plane waves may propagate in this medium consisting of four sets of coupled dilatational waves and two sets of coupled transverse waves. All the waves are found to be affected by the nonlocality of the medium, however, the sets of coupled transverse waves do not depend on the presence of thermal and void parameters in the medium. The dispersion relation yielding the speeds of coupled dilatational waves is analyzed, in particular, and several earlier known results are recovered from the present formulation. Numerical computations for a specific material are performed to clarify the effects of wave characteristics in detail. The computational results are displayed through graphs and explained.
机译:构成关系和现场方程是针对各向同性的线性微柱热弹性材料开发的,在eringen的非局部弹性理论的背景下具有空隙。发现六个平面波可以在该介质中传播,该介质包括四组耦合扩张波和两组耦合横波。发现所有波受到介质的非界面的影响,然而,耦合横波的组组不依赖于介质中的热和空隙参数的存在。特别地,分析了产生耦合扩张波的速度的分散关系,并且从本制剂中回收了几个早期已知结果。执行特定材料的数值计算以阐明波特征的效果详细。计算结果通过图形显示并解释。

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