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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Interlayer effects of Van der Waals interactions on transverse vibrational behavior of bilayer graphene sheets
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Interlayer effects of Van der Waals interactions on transverse vibrational behavior of bilayer graphene sheets

机译:范德华相互作用对双层石墨烯片横向振动行为的层间效应

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This study focuses only on the interlayer effects of van der Waals (VdWs) interactions (including simultaneous effects of shear and tensile-compressive effects) on the free transverse vibrational behavior of bilayer graphene sheets by implementing the classical continuum mechanics theory. To this end, the classical sandwich plate theory and the Hamilton's principle are involved to obtain the governing equations and the harmonic differential quadrature method is employed to calculate the natural frequencies and related mode shapes. The results show the shear effect of VdWs interactions has significant influences on primary natural frequencies and mode shapes. Therefore it is a main determinant and can safely assume the pure shear effect while designing sensors, actuators, accelerometers and resonators. Finally, the potential depth parameter is introduced to consider the simultaneous effects of shear and tensile-compressive forces.
机译:本研究仅通过应用经典连续介质力学理论,重点关注范德华(VdWs)相互作用(包括剪切效应和拉伸-压缩效应的同时效应)对双层石墨烯片自由横向振动行为的层间效应。为此,采用经典夹层板理论和哈密顿原理得到控制方程,并采用谐波微分正交法计算固有频率和相关振型。结果表明,VdWs相互作用的剪切效应对初级固有频率和模态有显著影响。因此,它是一个主要的决定因素,在设计传感器、执行器、加速度计和谐振器时可以安全地假设纯剪切效应。最后,引入势深参数,考虑剪切力和拉压力的同时作用。

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