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Nonlinear vibration analysis of carbon nanotube reinforced composite plane structures

机译:碳纳米管增强复合平面结构的非线性振动分析

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This paper is dedicated to nonlinear static and free vibration analysis of Uniform Distributed Carbon Nanotube Reinforced Composite (UD-CNTRC) structures under in-plane loading. The authors have suggested an efficient six-node triangular element. Mixed Interpolation of Tensorial Components (MITC) approach is employed to alleviate the membrane locking phenomena. Moreover, the behavior of the well-known LST element is considerably improved by applying an additional linear interpolation on the strain fields. Based on the rule of mixture, the properties of CNTRC are obtained. In this study, only the uniform distributed CNTs are employed through the thickness direction of element. To achieve the natural frequencies and shape modes, the eigenvalue problem is also solved. Using Total Lagrangian Principles, large amplitude free vibration is considered based on the first normalized mode shape of structure. Different well-known plane problem benchmarks and some proposed ones are studied to validate the accuracy and capability of authors' formulations. In addition, the effects of length to the height ratio of beam, CNT's characteristics, support conditions and normalized amplitude parameter on the linear and nonlinear vibration parameters are investigated.
机译:本文专用于在面内载荷下均匀分布碳纳米管增强复合材料(UD-CNTRC)结构的非线性静态和自由振动分析。作者提出了一个有效的六节点三角形元素。采用混合插值(MITC)方法来缓解膜锁定现象。此外,通过在应变场上施加额外的线性插值,可显着改善了众所周知的LST元件的行为。基于混合物的规则,获得CNTRC的性质。在该研究中,仅通过元件的厚度方向使用均匀分布的CNT。为了实现自然频率和形状模式,还解决了特征值问题。使用总拉格朗日原理,基于结构的第一个归一化模式形状来考虑大振幅自由振动。研究了不同的众所周知的平面问题基准和一些建议的概念问题,以验证作者配方的准确性和能力。另外,研究了梁,CNT的特性,支撑条件和归一化幅度参数的长度与线性和非线性振动参数的归一化幅度参数的影响。

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