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Finite element formulation for the free vibration analysis of embedded double-walled carbon nanotubes based on nonlocal Timoshenko beam theory

机译:基于非局部Timoshenko束理论的嵌入式双壁碳纳米管自由振动分析的有限元公式

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The present paper is concerned with the free vibration analysis of double-walled carbon nanotubes embedded in an elastic medium and based on Eringen's nonlocal elasticity theory. The effects of the transverse shear deformation and rotary inertia are included according to the Timoshenko beam theory. The governing equations of motion which are coupled with each other via the van der Waals interlayer forces have been derived using Hamilton's principle. The thermal effect is also incorporated into the formulation. Using the statically exact beam element with displacement fields based on the first order shear deformation theory, the finite element method is employed to discretize the coupled governing equations which are then solved to find the natural frequencies. The effects of the small scale parameter, boundary conditions, thermal effect, changes in material constant of the surrounding elastic medium, and geometric parameters on the vibration characteristics are investigated. Furthermore, our analysis includes nonlocal double-walled carbon nanotubes with different boundary conditions between inner and outer tubes which seem to be scarcely considered in the literature, and the corresponding given results for this case can be considered as a benchmark for further studies. Comparison of the present numerical results with those from the open literature shows an excellent agreement.
机译:本文基于Eringen的非局部弹性理论,对嵌入弹性介质中的双壁碳纳米管的自由振动进行了分析。根据Timoshenko梁理论,包括了横向剪切变形和旋转惯性的影响。使用汉密尔顿原理导出了通过范德华层间力相互耦合的控制运动方程。热效应也被并入制剂中。基于一阶剪切变形理论,使用具有位移场的静态精确梁单元,采用有限元方法离散耦合控制方程,然后求解求解固有频率。研究了小尺度参数,边界条件,热效应,周围弹性介质材料常数的变化以及几何参数对振动特性的影响。此外,我们的分析包括在内管和外管之间具有不同边界条件的非局部双壁碳纳米管,这在文献中似乎很少考虑,这种情况下相应的给定结果可被视为进一步研究的基准。将当前数值结果与公开文献中的数值结果进行比较显示出很好的一致性。

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