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Nonlocal anisotropic elastic shell model for vibrations of single-walled carbon nanotubes with arbitrary chirality

机译:具有任意手性的单壁碳纳米管振动的非局部各向异性弹性壳模型

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A nonlocal anisotropic elastic shell model is developed to study the effect of small scale on shell-like vibration of single-walled carbon nanotubes (SWCNTs) with arbitrary chirality. Anisotropic elastic shell model is reformulated using the nonlocal differential constitutive relations of Eringen. The equations of motion are derived and analytical solution for the vibration of anisotropic SWCNTs is presented by using the Fliigge shell theory and complex method. The suggested model is justified by a good agreement between the results given by the present model and available data in literature. Furthermore, the model is used to elucidate the effect of small scale on the vibration of zigzag, armchair and chiral SWCNTs. Our results show that small scale is essential for vibration of SWCNTs when the axial wave-length is not extremely long. Moreover, the results show that local model substantially overestimates vibrational frequencies of almost all modes.
机译:建立了非局部各向异性弹性壳模型,以研究小尺度对任意手性的单壁碳纳米管(SWCNT)的壳状振动的影响。利用Eringen的非局部微分本构关系,重新构造了各向异性弹性壳模型。推导了运动方程,并利用Fliigge壳理论和复杂方法给出了各向异性SWCNTs振动的解析解。建议的模型是合理的,因为该模型给出的结果与文献中的可用数据之间具有很好的一致性。此外,该模型用于阐明小规模对之字形,扶手椅和手性SWCNT振动的影响。我们的结果表明,当轴向波长不是很长时,小尺寸对于SWCNT的振动至关重要。此外,结果表明,局部模型实质上高估了几乎所有模式的振动频率。

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