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Thermo-mechanical vibration analysis of a single-walled carbon nanotube embedded in an elastic medium based on higher-order shear deformation beam theory

机译:基于高阶剪切变形束理论的弹性介质中嵌入单壁碳纳米管的热机械振动分析

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摘要

In this study, the thermal effect on the free vibration characteristics of embedded Single-walled carbon nanotubes (SWCNTs) based on the size-dependent Reddy higher order shear deformation beam theory subjected to in-plane thermal loading is investigated by presenting a Navier-type solution and employing a semi-analytical Differential transform method (DTM) for the first time. In addition, the exact nonlocal Reddy beam theory solution presented here should be useful to engineers designing nanoelectromechanical devices. The smallscale effect is considered based on nonlocal elasticity theory of Eringen. The nonlocal equations of motion are derived through Hamilton's principle, and they are solved by applying DTM. Numerical results reveal that the proposed modeling and semi-analytical approach can provide more accurate frequency results of the SWCNTs compared to analytical results and some cases in the literature. The detailed mathematical derivations are presented, and numerical investigations are performed, whereas emphasis is placed on investigating the effect of several parameters such as small-scale effects, boundary conditions, mode number, thickness ratio, temperature change, and Winkler spring modulus on the natural frequencies of the SWCNTs in detail. The vibration behavior of SWCNTs is significantly influenced by these effects. Results indicate that the inclusion of size effect results in a decrease in nanobeam stiffness and leads to a decrease in natural frequency. Numerical results are presented to serve as benchmarks for future analyses of SWCNTs.
机译:在本研究中,基于面内热负荷,基于尺寸相关的Reddy高阶剪切变形梁理论,研究了对嵌入式单壁碳纳米管(SWCNTs)自由振动特性的热效应。解决方案,并首次采用半解析微分变换方法(DTM)。此外,此处介绍的精确的非局部Reddy波束理论解决方案对于设计纳米机电设备的工程师应该是有用的。基于Eringen的非局部弹性理论来考虑小尺度效应。非局部运动方程是根据汉密尔顿原理导出的,可以通过应用DTM进行求解。数值结果表明,与分析结果和文献中的某些情况相比,所提出的建模和半分析方法可以提供更准确的单壁碳纳米管频率结果。给出了详细的数学推导,并进行了数值研究,而重点放在研究几个参数的影响上,例如小尺度效应,边界条件,模数,厚度比,温度变化和温克勒弹簧模量对自然SWCNT的详细频率。这些影响极大地影响了SWCNT的振动行为。结果表明,包含尺寸效应会导致纳米束刚度降低,并导致自然频率降低。结果表明,数值结果可作为未来SWCNTs分析的基准。

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