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Dynamic stability analysis for rotating pre-twisted FG-CNTRC beams with geometric imperfections restrained by an elastic root in thermal environment

机译:具有在热环境中弹性根部的几何缺陷旋转前扭曲FG-CNTRC光束的动态稳定性分析

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摘要

This paper deals with the problems of free vibration, buckling, and dynamic stability of rotating pre twisted functionally graded carbon nanotube reinforced composite (FG-CNTRC) imperfect beams in thermal environment. The imperfect beam contains different modes of geometric imperfections such as sine, global, and local modes, and it is restrained by an elastic root. Three types of CNTs distributions including FG-X, UD, and FG-O distributions are considered and the material is temperature-dependent. First, bending-bending coupled governing equations are established through the Hamilton's principle based on the Euler-Bernoulli beam theory. By setting different parameters, the governing equations can solve the problems of free vibration, buckling, and dynamic stability of the beam. Then, the differential quadrature method (DQM) is employed to get the discrete equations and numerical solutions of the natural frequency, critical buckling load, and instability region. Finally, parametric studies are carried out to present the effects of hub radius, rotating speed, material properties, geometric imperfections, and rigidity of the elastic root on the natural frequencies, critical buckling load, and instability regions. Results show that the elastic root and imperfection mode have obvious influence on the instability regions.
机译:本文涉及在热环境中旋转前扭曲功能渐进碳纳米管增强复合材料(FG-CNTRC)旋转前扭曲的自由振动,屈曲和动态稳定性的问题。不完美光束包含不同的几何缺陷模式,例如正弦,全局和本地模式,并且它由弹性root抑制。考虑包括FG-X,UD和FG-O分布的三种类型的CNT分布,材料依赖于温度。首先,通过基于欧拉 - 伯努利光束理论,通过汉密尔顿的原理建立弯曲弯曲耦合控制方程。通过设定不同的参数,控制方程可以解决光束的自由振动,屈曲和动态稳定性的问题。然后,采用差分正交方法(DQM)来获得自然频率,关键屈曲负荷和不稳定区域的离散式和数值解。最后,进行参数研究以呈现集线器半径,旋转速度,材料特性,几何缺陷和弹性根部对自然频率,关键屈曲负荷和不稳定区域的刚性的影响。结果表明,弹性根和缺陷模式对不稳定地区具有明显影响。

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