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Vibration analysis of functionally graded carbon nanotube-reinforced composite shell structures

机译:功能梯度碳纳米管增强复合壳结构的振动分析

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This article deals with the vibration analysis of functionally graded carbon nanotube-reinforced composite (FG-CNTRC) shell structures. The material properties of an FG-CNTRC shell are graded smoothly through the thickness direction of the shell according to uniform distribution and some other functionally graded (FG) distributions (such as FG-X, FG-V, FG-O and FG-) of the volume fraction of the carbon nanotube (CNT), and the effective material properties are estimated by employing the extended rule of mixture. An eight-noded shell element considering transverse shear effect according to Mindlin's hypothesis has been employed for the finite element modelling and analysis of the composite shell structures. The formulation of the shell midsurface in an arbitrary curvilinear coordinate system based on the tensorial notation is also presented. The Rayleigh damping model has been implemented in order to study the effects of carbon nanotubes (CNTs) on the damping capacity of such shell structures. Different types of shell panels have been analyzed in order to study the impulse and frequency responses. The influences of CNT volume fraction, CNT distribution, geometry of the shell and material distributions on the dynamic behavior of FG-CNTRC shell structures have also been presented and discussed. Various types of FG-CNTRC shell structures (such as spherical, ellipsoidal, doubly curved and cylindrical) have been analyzed and discussed in order to compare studies in terms of settling time, first resonant frequency and absolute amplitude corresponding to first resonant frequency based on the impulse and frequency responses, and the effects of CNTs on vibration responses of such shell structures are also presented. The results show that the CNT distribution and volume fraction of CNT have a significant effect on vibration and damping characteristics of the structure.
机译:本文涉及功能梯度碳纳米管增强复合材料(FG-CNTRC)壳体结构的振动分析。 FG-CNTRC外壳的材料属性根据均匀分布和一些其他功能渐变(FG)分布(例如FG-X,FG-V,FG-O和FG-)在外壳的厚度方向上平滑地渐变。碳纳米管(CNT)的体积分数的百分比,以及有效的材料性能通过采用扩展的混合规则来估算。根据Mindlin的假设,考虑横向剪切效应的八节点壳单元已用于复合壳结构的有限元建模和分析。还提出了基于张量表示法的任意曲线坐标系中的壳中表面的表示。为了研究碳纳米管(CNT)对这种壳结构的阻尼能力的影响,已经实施了瑞利阻尼模型。为了研究脉冲和频率响应,已经分析了不同类型的壳体面板。提出并讨论了碳纳米管的体积分数,碳纳米管的分布,壳的几何形状和材料分布对FG-CNTRC壳结构动力学行为的影响。分析和讨论了各种类型的FG-CNTRC壳结构(例如球形,椭圆形,双曲线形和圆柱形),以便在建立时间,第一共振频率和基于第一共振频率的绝对振幅的基础上进行比较研究。还介绍了脉冲和频率响应,以及碳纳米管对此类壳结构的振动响应的影响。结果表明,碳纳米管的碳纳米管分布和体积分数对结构的振动和阻尼特性有显着影响。

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