弹性基础上初始曲率多壁碳纳米管在非线性热磁环境下的非线性振动

Q2 Engineering Engineering Transactions Pub Date : 2021-06-09 DOI:10.24423/ENGTRANS.1233.20210607
G. Sobamowo, James A. Akanmu, O. Adeleye, S. Akingbade, A. Yinusa
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引用次数: 0

摘要

本文利用非局部弹性理论研究了非线性热磁环境下温克勒-帕斯捷尔纳克弹性基础上具有初始曲率的多壁碳纳米管的非线性动力学模型。利用伽辽金分解和同伦摄动法对非线性振动模型的导出系统进行了求解。研究和讨论了温度、磁场、多层等热力学参数对微弯曲多壁碳纳米管动态响应的影响。随着温度的升高,频率比随系统线性固有频率的增大而减小。结果表明,频率比随纳米管壁数、温度、弹簧常数、磁场强度和微弯曲纳米管曲率半径与长度之比的增大而减小;这些趋势对于所考虑的所有边界条件都是相同的。而夹紧-简单型和夹紧-支撑型多壁纳米管的频率比分别最高和最低。此外,通过对碳纳米管非线性振动控制的参数化研究表明,在任意的温克勒和帕斯捷尔纳克线性常数下,四壁碳纳米管都可以被看作是纯线性振动。因此,该方法可用于抑制目标结构的混沌振动。这些研究成果将有助于设计师和制造商开发用于各种结构,电气,机械和生物应用的多壁碳纳米管,特别是在纳米电子,纳米器件,纳米机械系统,纳米生物器件和纳米复合材料的设计领域,特别是当它们受到热负荷,磁场和弹性基础时。
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Nonlinear Vibration of Multi-Walled Carbon Nanotubes with Initial Curvature Resting on Elastic Foundations in a Nonlinear Thermo-Magnetic Environment
The present work focuses on nonlinear dynamics models of multi-walled carbon nanotubes with initial curvature resting on Winkler-Pasternak elastic foundations in a nonlinear thermomagnetic environment using nonlocal elasticity theory. The derived systems of nonlinear vibration models are solved with the aid of the Galerkin decomposition and the homotopy perturbation method. Effects of temperature, magnetic field, multi-layer, and other thermomechanical parameters on the dynamic responses of the slightly curved multi-walled carbon nanotubes are investigated and discussed. As the temperature increases, the frequency ratio decreases as the linear natural frequency of the system increases. The results reveal that the frequency ratios decrease as the number of nanotube walls, temperature, spring constants, magnetic field strength, and the ratio of the radius of curvature to the length of the slightly curved nanotubes increase. These trends are the same for all the boundary conditions considered. However, clamped-simple and clamped-clamped supported multi-walled nanotube have the highest and lowest frequency ratio, respectively. Also, from the parametric studies to control nonlinear vibration of the carbon nanotubes, it is shown that quadruple-walled carbon nanotubes can be taken as pure linear vibration even at any value of linear Winkler and Pasternak constants. Therefore, this can be used for the restraining of the chaos vibration in the objective structure. These research findings will assist the designers and manufacturers in developing multi-walled carbon nanotubes for various structural, electrical, mechanical, and biological applications, especially in the areas of designing nanoelectronics, nanodevices, nanomechanical systems, nanobiological devices, and nanocomposites, and particularly when they are subjected to thermal loads, magnetic fields and elastic foundations.
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Engineering Transactions
Engineering Transactions Engineering-Engineering (all)
CiteScore
1.40
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0.00%
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0
期刊介绍: Engineering Transactions (formerly Rozprawy Inżynierskie) is a refereed international journal founded in 1952. The journal promotes research and practice in engineering science and provides a forum for interdisciplinary publications combining mechanics with: Material science, Mechatronics, Biomechanics and Biotechnologies, Environmental science, Photonics, Information technologies, Other engineering applications. The journal publishes original papers covering a broad area of research activities including: experimental and hybrid techniques, analytical and numerical approaches. Review articles and special issues are also welcome. Following long tradition, all articles are peer reviewed and our expert referees ensure that the papers accepted for publication comply with high scientific standards. Engineering Transactions is a quarterly journal intended to be interesting and useful for the researchers and practitioners in academic and industrial communities.
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