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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Vibration and instability analysis of carbon nanotubes conveying fluid and resting on a linear viscoelastic Winkler foundation
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Vibration and instability analysis of carbon nanotubes conveying fluid and resting on a linear viscoelastic Winkler foundation

机译:碳纳米管输送流体并基于线性粘弹性Winkler基础的振动和不稳定性分析

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摘要

Carbon nanotubes (CNTs) are used for a variety of technological and biomedical applications. Fluid flows inside CNTs have become an attractive research topic in recent years. In the present study, the vibration and instability analysis of a CNT resting on a linear viscoelastic Winkler foundation are investigated based on the classical EulerBernoulli beam model. The effect of internal moving fluid is characterized by two parameters, the steady flow velocity and the mass density of the fluid. The finite element method is used to discretize the equation of motion, and the resonant frequencies are obtained by solving a quadratic eigenvalue problem. The lowest four frequencies are determined for different boundary conditions. The effects of the modulus and the damping factor of the linear viscoelastic Winkler foundation and the fluid velocity on the resonance frequencies are also examined. The validity of the present analysis is confirmed by comparing the results with those obtained from the literature.
机译:碳纳米管(CNT)用于多种技术和生物医学应用。近年来,CNT内部的流体流动已成为有吸引力的研究课题。在本研究中,基于经典的EulerBernoulli梁模型,研究了基于线性粘弹性Winkler基础的CNT的振动和不稳定性分析。内部运动流体的影响由两个参数表征,即稳定流速和流体的质量密度。使用有限元方法离散运动方程,并通过求解二次特征值问题获得共振频率。针对不同的边界条件确定最低的四个频率。还研究了线性粘弹性Winkler基础的模量和阻尼因数以及流体速度对共振频率的影响。通过将结果与从文献中获得的结果进行比较,可以确认本分析的有效性。

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