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Free and forced vibration analysis of viscoelastic damped FG-CNT reinforced micro composite beams

机译:粘弹性阻尼FG-CNT加筋微复合梁的自由和强制振动分析

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In this paper, free and forced vibration analysis of viscoelastic microcomposite beam reinforced by functionally graded single-walled carbon nanotubes (FG-SWCNTs) is studied using the modified couple stress theory (MCST). The material properties of micro composite beam by generalized rule of mixtures carbon nanotubes are estimated. In addition, these properties are stated as uniform, and functionally graded (FG) distributions in the thickness direction. Energy method and Hamilton's principle are employed to establish the governing equations of motion for the vibration of viscoelastic damped micro composite beam reinforced by SWCNTs based on the Kelvin-Voigt model. The influences of material length scale parameter, structural damping coefficient and different distributions of SWCNTs on non-dimensional complex natural frequency and amplitude vibration of the viscoelastic micro composite beam are investigated. The results reveal that the lowest vibration amplitude of FG microcomposite beam by the FG-X and the highest occurs by FG-LOZENGE. Moreover, in the presence of external periodic load and the absence of structural damping coefficient, the vibration amplitude increases and FG microcomposite beam becomes unstable, even though the amplitude of vibration decreases with increasing structural damping coefficient. It is shown that the natural frequency of SWCNT reinforced composite is more than the frequency of multi-walled carbon nanotubes because SWCNT have more stiffness. In addition, the results illustrate that the experimental data by Lei et al. agree well with those predicted by the MCST in the present work.
机译:在本文中,使用经过改进的耦合应力理论(MCST)研究了功能梯度单壁碳纳米管(FG-SWCNT)加强的粘弹性微型复合梁的自由和强制振动分析。据估计了混合物碳纳米管的广义规则通过微复合梁的材料特性。另外,这些性质在厚度方向上表示为均匀,并且在厚度方向上的功能梯度(FG)分布。采用能量法和汉密尔顿的原理建立了基于Kelvin-Voigt模型的SWCNTS加强的粘弹性阻尼微复合梁振动的控制动作方程。研究了材料长度参数,结构阻尼系数和SWCNT的不同分布对粘弹性微复合梁的非尺寸复合固体频率和幅度振动的影响。结果表明,FG-X的FG微型复合梁的最低振动幅度和最高的FG-Lozenge发生。此外,在存在外部周期性载荷和没有结构阻尼系数的情况下,即使振动的幅度随着结构阻尼系数的增加而降低,振动幅度增加和FG微型复合梁变得不稳定。结果表明,SWCNT增强复合材料的固有频率大于多壁碳纳米管的频率,因为SWCNT具有更高的刚度。此外,结果说明了Lei等人的实验数据。与目前工作中MCST预测的人同意。

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