双夹紧单壁卷曲碳纳米管的自由振动:一种新的尺寸依赖连续体模型

F. Darvishi, O. Rahmani
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引用次数: 2

摘要

本文采用非局域螺旋梁模型研究了双夹紧单壁螺旋碳纳米管的尺寸相关振动特性。该模型基于和足梁理论,运动方程中所有CCNT的位移分量都在质心主轴处定义,并考虑了横向剪切变形。在推导出非局部自由振动方程后,采用广义微分正交法对其进行求解。然后,确定了夹固边界条件(bc)的固有频率和相应的振型。然后,对螺旋圆柱与管径比、螺距数、螺旋螺距角、非定域参数等参数对固有频率的影响进行了参数化研究。值得注意的是,所提出的方法的结果将有助于ccnt的实际应用,例如在纳米机电系统中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On The Free Vibration of Doubly Clamped Single-Walled Coiled Carbon Nanotubes: A Novel Size Dependent Continuum Model
In this paper, the size dependent vibration behavior of doubly clamped single-walled coiled carbon nanotubes (CCNTs) is investigated using nonlocal helical beam model. This model is based on Washizu’s beam theory so that all displacement components of CCNT in the equations of motion are defined at the centroidal principal axis and transverse shear deformations are considered. After deriving the nonlocal free vibration equations, they are solved by the generalized differential quadrature method (GDQM). Then, the natural frequencies and corresponding mode shapes are determined for the clamped-clamped boundary conditions (BCs). After that, a parametric study on the effect of different parameters, including the helix cylinder to the tube diameters ratio , the number of pitches, the helix pitch angle, and the nonlocal parameter on the natural frequencies is conducted. It is worth noting that the results of the proposed method would be useful in the practical applications of CCNTs such as using in nanoelectromechanical systems.
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