Natural Frequency of Rotating Single-Walled Carbon Nanotubes with Considering Gyroscopic Effect

A Fatahi-Vajari, Z. Azimzadeh
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引用次数: 1

Abstract

This paper investigates the bending vibration of rotating single-walled carbon nanotubes (SWCNTs) based on nonlocal theory. To this end, the rotating SWCNTs system modeled as a beam with a circular cross section and the Euler-Bernoulli beam theory (EBT) is applied with added effects such as rotary inertia, gyroscopic effect and rotor mass unbalance. Using nonlocal theory, two coupled sixth order partial differential equations that govern the vibration of rotating SWCNTs are derived. To obtain the natural frequency and dynamic response of the nanorotor system, the equation of motion for the rotating SWCNTs are solved. It is found that there are two frequencies in the frequency spectrum. The positive rootintroduced as forward whirling mode, while the negative root represents backward whirling mode. The detailed mathematical derivations are presented while the emphasis is placed on investigating the effect of the several parameters such as, tube radius, angular velocity and small scale parameter on the vibration behavior of rotating nanotubes. It is explicitly shown that the vibration of a spinning nanotube is significantly influenced by these effects. To validate the accuracy and efficiency of this work, the results obtained herein are compared with the existing theoretical and experimental results and good agreement is observed. To the knowledge of authors, the vibration of rotating SWCNTs considering gyroscopic effect has not investigated analytically yet and then the results generated herein can be served as a benchmark for future works.
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考虑陀螺效应的旋转单壁碳纳米管的固有频率
基于非局域理论研究了旋转单壁碳纳米管的弯曲振动。为此,采用欧拉-伯努利梁理论(Euler-Bernoulli beam theory, EBT)将旋转SWCNTs体系建模为圆截面梁,并加入旋转惯性、陀螺仪效应和转子质量不平衡等效应。利用非局部理论,推导了控制旋转SWCNTs振动的两个耦合六阶偏微分方程。为了得到纳米转子系统的固有频率和动力响应,求解了旋转SWCNTs的运动方程。我们发现在频谱中存在两个频率。正根为正向旋转模式,负根为反向旋转模式。给出了详细的数学推导,重点研究了管半径、角速度和小尺度参数等参数对旋转纳米管振动行为的影响。结果表明,这些效应对旋转纳米管的振动有显著影响。为了验证该工作的准确性和效率,将所得结果与已有的理论和实验结果进行了比较,结果吻合较好。据作者所知,目前还没有对考虑陀螺效应的旋转SWCNTs的振动进行分析研究,因此本文的结果可以作为今后工作的基准。
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