Buckling Analysis of Intermediately Supported Nanobeams via Strain Gradient Elasticity Theory

M. Arda
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引用次数: 2

Abstract

Buckling of axially loaded cantilever nanobeams with intermediate support have been studied in the current study. Higher order size dependent strain gradient theory has been utilized to capture the scale effect in nano dimension. Minimum total potential energy formulation has been used in modeling of nanobeam. Approximate Ritz method has been applied to the energy formulation for obtaining critical buckling loads. Position of the intermediate support has been varied and its effect on the critical buckling load has been investigated in the analysis. Mode shapes in critical buckling loads have been shown for various intermediate support positions. Present results could be useful in design of carbon nanotube resonators.
基于应变梯度弹性理论的中间支承纳米梁屈曲分析
本文主要研究了轴向载荷下具有中间支承的悬臂纳米梁的屈曲问题。采用高阶尺寸相关应变梯度理论来描述纳米尺度上的尺度效应。最小总势能公式已被用于纳米梁的建模。采用近似里兹法求解临界屈曲载荷的能量公式。分析了中间支承位置的变化及其对临界屈曲载荷的影响。临界屈曲载荷下的模态振型已在各种中间支撑位置显示。本研究结果对碳纳米管谐振器的设计具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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