王立峰
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Timoshenko beam model for vibrational analysis of double-walled carbon nanotubes bridged on substrate
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Affiliation of Author(s):航空学院

Journal:CURRENT APPLIED PHYSICS

Key Words:Double-walled carbon nanotubes Vibration Fourier series method Double Timoshenko beam

Abstract:This paper proposes a continuum three-segment double Timoshenko beam (TSDTB) model to investigate free vibration of double-walled carbon nanotubes (DWCNTs) bridged on a silicon channel. Accurate explicit formulas of the van der Waals (vdW) interactions between each tube as well as between the tubes and a substrate are derived for a better prediction of the vibrational behaviors of the DWCNTs. An analytical modified Fourier series method (MFSM) is developed for the vibrational analysis of the TSDTB model. Numerical results show the good convergence characteristics and accuracy of the MSFM. The overlapped lengths between DWCNTs and the substrate at both ends have almost no effects on the lower natural frequencies of the TSDTB model when the overlapped lengths are long enough. Moreover, the natural frequencies of the TSDTB model are much less than of those of one-segment double Timoshenko beam (OSDTB) model with clamped supported boundary condition, whereas the TSDTB model can be equivalent to the simply supported OSDTB model under certain condition. In addition, the effects of vdW interaction coefficients on the vibrational behaviors of the DWCNTs are also revealed. The obtained results in this work should be greatly helpful in the design and application of CNTs-based nanomechanical resonators. (C) 2017 Elsevier B.V. All rights reserved.

ISSN No.:1567-1739

Translation or Not:no

Date of Publication:2017-12-01

Co-author:Jiang, Jingnong

Correspondence Author:WANG Lifeng

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Professor
Supervisor of Doctorate Candidates

Main positions:航空航天结构力学及控制全国重点实验室副主任

Other Post:中国振动工程学会动力学载荷与设计专业委员会主任

Gender:Male

Alma Mater:南京航空航天大学

Education Level:Postgraduate (Doctoral)

Degree:Doctoral Degree in Science

School/Department:College of Aerospace Engineering

Discipline:Engineering Mechanics. General and Fundamental Mechanics. Engineering Mechanics

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