首页> 外文会议>ASME biennial conference on engineering systems design and analysis;ESDA2010 >ANALYSIS OF FREE NONLINEAR VIBRATION BEHAVIOR FOR CURVED EMBEDDED CARBON NANOTUBES ON ELASTIC FOUNDATION
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ANALYSIS OF FREE NONLINEAR VIBRATION BEHAVIOR FOR CURVED EMBEDDED CARBON NANOTUBES ON ELASTIC FOUNDATION

机译:弹性地基上弯曲埋藏式碳纳米管的自由非线性振动行为分析

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Carbon nanotubes (CNTs) are expected to have significant impact on several emerging nanoelectromechanical (NEMS) applications. Vigorous understanding of the dynamic behavior of CNTs is essential for designing novel nanodevices. Recent literature show an increased utilization of models based on elastic continuum mechanics theories for studying the vibration behavior of CNTs. The importance of the continuum models stems from two points; (i) continuum simulations consume much less computational effort than the molecular dynamics simulations, and (ii) predicting nanostructures behavior through continuum simulation is much cheaper than studying their behavior through experimental verification. In numerous recent papers, CNTs were assumed to behave as perfectly straight beams or straight cylindrical shells. However, images taken by transmission electron microscopes for CNTs show that these tiny structures are not usually straight, but rather have certain degree of curvature or waviness along the nanotubes length. The curved morphology is due to process-induced waviness during manufacturing processes, in addition to mechanical properties such as low bending stiffness and large aspect ratio. In this study the free nonlinear oscillations of wavy embedded multi-wall carbon nanotubes (MWCNTs) are investigated. The problem is formulated on the basis of the continuum mechanics theory and the waviness of the MWCNTs is modeled as a sinusoidal curve. The governing equation of motion is derived by using the Hamilton's principle. The Galerkin approach was utilized to reduce the equation of motion to a second order nonlinear differential equation which involves a quadratic nonlinear term due to the curved geometry of the beam, and a cubic nonlinear term due to the stretching effect. The system response has been obtained using the incremental harmonic balanced method (1HBM). Using this method, the iterative relations describing the interaction between the amplitude and the frequency for the single-wall nanotube and double-wall nanotube are obtained. Also, the influence of the waviness,elastic medium and van der Waals forces on frequency-response curves is researched. Results present some useful information to analyze CNT's nonlinear dynamic behavior.
机译:碳纳米管(CNT)有望对几种新兴的纳米机电(NEMS)应用产生重大影响。深入了解CNT的动态行为对于设计新型纳米器件至关重要。最近的文献表明,基于弹性连续力学理论的模型在研究CNT振动行为方面的利用率越来越高。连续模型的重要性来自两点。与分子动力学模拟相比,(i)连续性模拟消耗的计算量要少得多;(ii)通过连续性模拟预测纳米结构的行为要比通过实验验证研究其行为便宜得多。在最近的许多论文中,都假定CNT表现为完全笔直的光束或笔直的圆柱壳。但是,通过透射电子显微镜拍摄的CNT图像显示,这些微小的结构通常不是直的,而是沿着纳米管的长度具有一定程度的曲率或波纹度。弯曲形态是由于制造过程中由于加工引起的波纹,以及诸如低弯曲刚度和大长宽比的机械特性。在这项研究中,研究了波浪形嵌入多壁碳纳米管(MWCNT)的自由非线性振荡。该问题是基于连续力学原理提出的,并且MWCNT的波纹度被建模为正弦曲线。运动的控制方程式是使用汉密尔顿原理导出的。 Galerkin方法用于将运动方程简化为二阶非线性微分方程,该方程涉及由于梁的弯曲几何形状而产生的二次非线性项,以及由于拉伸效应而引起的三次非线性项。系统响应已使用增量谐波平衡法(1HBM)获得。使用这种方法,获得了描述单壁纳米管和双壁纳米管的振幅和频率之间相互作用的迭代关系。而且,波纹的影响 研究了频率响应曲线上的弹性介质和范德华力。结果为分析碳纳米管的非线性动力学行为提供了一些有用的信息。

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