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Combined torsional buckling of carbon nanotubes subjected to thermo-electro-mechanical loadings with consideration of scale effect

机译:考虑尺度效应的热-机电载荷作用下碳纳米管的组合扭转屈曲

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The present study has theoretically investigated the combined torsional buckling behavior of carbon nanotubes (CNTs) with consideration of scale effect in the multi-field coupling condition.The generalized governing equation of buckling for CNTs subjected to thermo-electro-mechanical loadings has been established based on an elastic shell model of continuum mechanics,in which scale effect is taken account of through the nonlocal elasticity theory.Except the applied torque and torsion-related axial load,the Van der Waals forces between adjacent nanotubes,as well as effects of temperature change and voltage load,is taken into consideration at the meantime.Numerical experiments are conducted to demonstrate the influences of different factors.The conclusions provided herein will be helpful and valuable for the dependent designs and related applications of CNT-based nano-structures serving in the complex thermal and electrical environment.
机译:本研究从理论上研究了在多场耦合条件下考虑尺度效应的碳纳米管的组合屈曲屈曲行为。建立了热电-机械载荷作用下碳纳米管屈曲的广义控制方程。在连续力学的弹性壳模型上,通过非局部弹性理论考虑了尺度效应。除了施加的扭矩和与扭转有关的轴向载荷外,相邻纳米管之间的范德华力以及温度变化的影响数值实验表明了不同因素的影响。本文提供的结论对于碳纳米管基纳米结构的相关设计和相关应用将是有益的和有价值的。复杂的热电环境。

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