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首页> 外文期刊>Journal of nanomaterials >Vibration Analysis of Bilayered Graphene Sheets for Building Materials in Thermal Environments Based on the Element-Free Method
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Vibration Analysis of Bilayered Graphene Sheets for Building Materials in Thermal Environments Based on the Element-Free Method

机译:基于无元素法的热环境下建筑材料双层石墨烯片的振动分析

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摘要

Graphene sheets are widely applied due to their unique and highly valuable properties, such as energy conservation materials in buildings. In this paper, we investigate the vibration behavior of double layer graphene sheets (DLGSs) in thermal environments which helps probe into the mechanism of energy conservation of graphene sheets in building materials. The nonlocal elastic theory and classical plate theory (CLPT) are used to derive the governing equations. The element-free method is employed to analyze the vibration behaviors of DLGSs embedded in an elastic medium. The accuracy of the solutions in this study is demonstrated by comparison with published results in the literature. Furthermore, a number of numerical results are presented to investigate the effects of various parameters (boundary conditions, nonlocal parameter, aspect ratio, side length, elastic foundation parameter, and temperature) on the frequency of DLGSs.
机译:石墨烯片因其独特且极有价值的特性而被广泛应用,例如建筑中的节能材料。在本文中,我们研究了双层石墨烯片(DLGSs)在热环境中的振动行为,这有助于探索建筑材料中石墨烯片的节能机理。用非局部弹性理论和经典板理论(CLPT)推导控制方程。采用无单元法分析了嵌入弹性介质中的DLGS的振动行为。通过与文献中已发表的结果进行比较,可以证明本研究中解决方案的准确性。此外,提供了许多数值结果,以研究各种参数(边界条件,非局部参数,纵横比,边长,弹性基础参数和温度)对DLGS频率的影响。

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