Nonlinear Vibration Analysis of Functionally Graded Carbon Nanotubes Sandwich Cylindrical Panels

Senaa S. Hafidh, Hama M. Hasan, F. Mohammed
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引用次数: 1

Abstract

In this research, we investigate the nonlinear vibration of functionally graded carbon nanotubes (FG-CNTs) for simply supported sandwich cylindrical panels. The sandwich consisting of three layers formed of (FG-CNTs) and isotropic material as (CNT, ALMINUME, CNT).  Mechanical properties of the sandwich media are acquired according to a refined rule of blend approach. The governing equations were derived using a first-order deformation theory (FOSDT). Four kinds of carbon nanotubes of sandwich cylindrical panels were analyzed. The volume fraction of CNTs is varied. The properties of nonlinear responses and free vibration are studied. The numerical approach employs the fourth-order Runge-Kutta and Galerkine procedure. Which conducted for the dynamic analysis of the panels to present the natural frequencies and non-linear dynamic response expression. The results show that; the natural frequencies and the nonlinear vibration amplitude decrease with the volume fraction and thickness ratio increase. The nonlinear vibration amplitude response increases when increasing the excitation force. The initial imperfection and the elastic foundation have a minor impact on the nonlinear vibration response of the panel. The Pasternak Foundation has a larger impact than the Winkler foundation. The structure formed of FG-CNT present an excellent choice for high-performance of engineering applications.
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功能梯度碳纳米管夹层柱状板的非线性振动分析
在这项研究中,我们研究了功能梯度碳纳米管(FG-CNTs)用于简支夹层圆柱形板的非线性振动。该三明治由三层(FG-CNTs)和各向同性材料(CNT、ALMINUME、CNT)组成。根据一种改进的共混规则获得了夹层介质的力学性能。利用一阶变形理论(FOSDT)推导了控制方程。对四种碳纳米管夹层圆柱板进行了分析。CNTs的体积分数是不同的。研究了结构的非线性响应和自由振动特性。数值方法采用四阶龙格-库塔法和伽辽金法。对面板进行了动力分析,给出了面板的固有频率和非线性动力响应表达式。结果表明:;固有频率和非线性振动幅值随体积分数和厚度比的增大而减小。随着激振力的增大,非线性振动幅值响应增大。初始缺陷和弹性基础对面板的非线性振动响应影响较小。帕斯捷尔纳克基金会比温克勒基金会的影响力更大。石墨烯碳纳米管形成的结构为高性能工程应用提供了良好的选择。
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