Interlayer effects of Van der Waals interactions on transverse vibrational behavior of bilayer graphene sheets

被引:0
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作者
Kamran Kamali
Reza Nazemnezhad
Mojtaba Zare
机构
[1] Iran University of Science and Technology,School of Mechanical Engineering
[2] Fateh Sanat Kimia Company,Department of Design
[3] Damghan University,School of Engineering
[4] Schulich School of Engineering,Department of Mechanical and Manufacturing Engineering
[5] University of Calgary,undefined
关键词
Free vibration; Bilayer graphene sheet; Van der Waals forces; Harmonic differential quadrature method; Equivalent forces;
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中图分类号
学科分类号
摘要
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.
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