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Three-Dimensional Static and Free Vibration Analysis of Carbon Nano Tube Reinforced Composite Cylindrical Shell Using Differential Quadrature Method

机译:碳纳米管增强复合圆柱壳的三维静自由振动的微分求积分析

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摘要

In this paper, bending and free vibration analysis of carbon nanotubes reinforced composite (CNTRC) cylindrical shell is carried out using the three-dimensional theory of elasticity. The single-walled carbon nanotubes (SWCNT) reinforcement is either uniformly distributed (UD) or functionally graded (FG) in the thickness direction which, are specified as the cases FG-Delta, FG-del, FG-lozenge and FG-X. Effective material properties of CNTRC cylindrical shell are estimated according to the rule of mixture as well as considering the CNT efficiency parameters. An analytical solution is performed by using Fourier series along the axial coordinate together with state space technique along the radial coordinate for the simply supported CNTRC cylindrical shell. Moreover, for CNTRC cylindrical shell with other edges boundary conditions, a semi-analytical solution is accomplished by using differential quadrature method (DQM) along the axial coordinate and state space technique along the radial coordinate. Present approach is validated by comparing the numerical results with the available published results. Furthermore, effect of types of CNT distributions in the polymer matrix, volume fraction of CNT, edges boundary conditions and radial-to-thickness ratio on the bending and free vibration behavior of FG-CNTRC cylindrical are examined.
机译:本文利用三维弹性理论对碳纳米管增强复合材料圆柱壳的弯曲和自由振动进行了分析。单壁碳纳米管(SWCNT)增强物在厚度方向上均匀分布(UD)或在功能上渐变(FG),具体情况指定为FG-Delta,FG-del,FG-菱形和FG-X。碳纳米管圆柱壳的有效材料性能根据混合规则以及碳纳米管效率参数进行估算。对于简单支撑的CNTRC圆柱壳,通过沿轴向坐标使用傅里叶级数以及沿径向坐标使用状态空间技术进行分析。此外,对于具有其他边缘边界条件的CNTRC圆柱壳,通过沿轴向坐标使用微分正交方法(DQM)和沿径向坐标使用状态空间技术来完成半解析解。通过将数值结果与可用的已发布结果进行比较来验证本方法。此外,研究了聚合物基质中CNT分布类型,CNT的体积分数,边缘边界条件和径向厚度比对FG-CNTRC圆柱体弯曲和自由振动行为的影响。

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