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首页> 外文期刊>Journal of nanomaterials >Variational Principles for Multiwalled Carbon Nanotubes Undergoing Vibrations Based on Nonlocal Timoshenko Beam Theory
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Variational Principles for Multiwalled Carbon Nanotubes Undergoing Vibrations Based on Nonlocal Timoshenko Beam Theory

机译:基于非局部Timoshenko束理论的多壁碳纳米管振动的变分原理

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摘要

Variational principles are derived for multiwalled carbon nanotubes undergoing linear vibrations using the semi-inverse method with the governing equations based on nonlocal Timoshenko beam theory which takes small scale effects and shear deformation into account. Physical models based on the nonlocal theory approximate the nanoscale phenomenon more accurately than the local theories by taking small scale phenomenon into account. Variational formulation is used to derive the natural and geometric boundary conditions which give a set of coupled boundary conditions in the case of free boundaries which become uncoupled in the case of the local theory. Hamilton's principle applicable to this case is also given.
机译:基于半局部反推方法,基于非局部Timoshenko束理论,采用考虑了小尺度效应和剪切变形的控制方程,得出了经受线性振动的多壁碳纳米管的变分原理。通过考虑小尺度现象,基于非局部理论的物理模型比局部理论更准确地近似了纳米尺度现象。变分公式用于导出自然边界条件和几何边界条件,在自由边界的情况下,它们给出了一组耦合的边界条件,而在局部理论的情况下,这些边界条件变得不耦合。还给出了适用于这种情况的汉密尔顿原理。

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