首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >A novel model for analysis of multilayer graphene sheets taking into account the interlayer shear effect
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A novel model for analysis of multilayer graphene sheets taking into account the interlayer shear effect

机译:考虑中间层剪切效果的多层石墨烯片分析的新模型

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摘要

In this study, a multiplate shear model is developed for dynamic analysis of multilayer graphene sheets with arbitrary shapes considering the interlayer shear effect. By utilizing the model, then some free-vibration analysis is presented. According to the experimental results, the weak interlayer van der Waals interaction cannot maintain the integrity of carbon atoms in adjacent layers. Therefore, it is required that the interlayer shear effect is accounted to study multilayer graphene mechanical behavior. The governing differential equation of motion is derived for the multilayer graphene sheets utilizing a variational approach based on the Kirchhoff plate model. The essential and natural boundary conditions are also obtained at both the smooth periphery parts of the multilayer graphene sheets and the possible sharp corners. By considering cantilever and simply supported multilayer rectangular graphene sheets as two case studies, the results for the free-vibration analysis are presented based on the developed model, and these results are compared with those of molecular dynamics simulations as some sort of verification. These results show that when the layers number increases, the natural frequency also increases up to a specific number, and afterward the influence of layers number on the natural frequency significantly decreases. Moreover, the natural frequency decreases with increase in the sheet aspect ratio up to a specific value, then the changes in the aspect ratio have no considerable effect in the natural frequency.
机译:在该研究中,开发了一种多板剪切模型,用于考虑中间层剪切效果的任意形状的多层石墨烯片的动态分析。通过利用该模型,提出了一些自由振动分析。根据实验结果,弱层间范德华相互作用不能保持相邻层中碳原子的完整性。因此,需要算像层间剪切效应来研究多层石墨烯的机械行为。用于利用基于Kirchhoff板模型的变分方法,导出运动的控制微分方程。在多层石墨烯片的光滑外周部分和可能的尖角中也可以获得必要和自然的边界条件。通过考虑悬臂和简单地支撑的多层矩形石墨烯片作为两种情况研究,基于开发的模型提出了自由振动分析的结果,并将这些结果与分子动力学模拟的结果进行了比较,作为某种验证。这些结果表明,当层数增加时,自然频率也增加到特定数量,之后的层数对自然频率的影响显着降低。此外,自然频率随着纸张纵横比增加到特定值的增加而降低,然后纵横比的变化在自然频率中没有相当大的效果。

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