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Nonlocal vibration of coupled DLGS systems embedded on Visco-Pasternak foundation

机译:嵌在Visco-Pasternak基础上的耦合DLGS系统的非局部振动

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摘要

In this paper, vibration analysis of the coupled system of double-layered graphene sheets (CS-DLGSs) embedded in a Visco-Pasternak foundation is carried out using the nonlocal elasticity theory of orthotropic plate. The two DLGSs are coupled by an enclosing viscoelastic medium which is simulated as a Visco-Pasternak foundation. Considering the Von Kármán nonlinear strain-displacement-relations, the motion equations are derived using the Hamilton's principle. Differential quadrature method (DQM) is applied to obtain the frequency ratio for various boundary conditions. The detailed parametric study is conducted, focusing on the combined effects of the nonlocal parameter, aspect ratio, graphene sheet's size, boundary conditions and the elastic and viscoelastic medium coefficients on the frequency ratio of CS-DLGSs. In this coupled system, two case of DLGSs vibration are investigated and compared with each other: (1) In-phase vibration (2) Out-of-phase vibration. The results indicate that the frequency ratio of the CS-DLGSs is more than the single-layered graphene sheet (SLGS). The results are in good agreement with the previous researches.
机译:本文利用正交异性板的非局部弹性理论对嵌在Visco-Pasternak基础上的双层石墨烯片(CS-DLGSs)耦合系统进行了振动分析。两个DLGS通过封闭的粘弹性介质耦合,该介质被模拟为Visco-Pasternak基础。考虑VonKármán非线性应变-位移关系,使用汉密尔顿原理导出运动方程。应用差分正交方法(DQM)来获得各种边界条件下的频率比。进行了详细的参数研究,重点研究了非局部参数,长宽比,石墨烯片的尺寸,边界条件以及弹性和粘弹性介质系数对CS-DLGS频率比的综合影响。在此耦合系统中,研究并比较了两种DLGS振动情况:(1)同相振动(2)异相振动。结果表明,CS-DLGS的频率比大于单层石墨烯片(SLGS)。研究结果与以往的研究相吻合。

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