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A continuum elastic three-dimensional model for natural frequencies of single-walled carbon nanotubes

机译:单壁碳纳米管固有频率的连续弹性三维模型

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摘要

The free vibration analysis of Single-Walled Carbon NanoTubes (SWCNTs) is proposed in the present paper. A continuum approach (based on an exact elastic three-dimensional shell model) is used for natural frequency investigation of simply supported SWCNTs. In order to apply this continuum model, carbon nanotubes are defined as isotropic cylinders with an equivalent thickness and Young modulus. Preliminary remarks are proposed concerning the possible use of a continuum approach and the most convenient definitions of the equivalent thickness and Young modulus. Subsequently, the 3D shell method is compared with different beam analyses to show the limitations of 1D beam models. Finally, zigzag, armchair and general chirality SWCNTs (with various lengths and geometries) are analyzed via the 3D shell model to calculate their vibration modes.
机译:本文提出了单壁碳纳米管(SWCNTs)的自由振动分析。连续方法(基于精确的弹性三维壳模型)用于简单支撑的SWCNT的固有频率研究。为了应用该连续模型,碳纳米管被定义为具有等效厚度和杨氏模量的各向同性圆柱体。提出了有关连续方法的可能使用以及等效厚度和杨氏模量的最方便定义的初步说明。随后,将3D Shell方法与不同的光束分析进行比较,以显示1D光束模型的局限性。最后,通过3D壳模型分析了锯齿形,扶手椅形和手性的SWCNT(具有不同的长度和几何形状),以计算其振动模式。

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