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Issue title: Selected papers from the International Symposium on Applied Electromagnetics and Mechanics - ISEM 2019
Guest editors: Jinhao Qiu, Ke Xiong and Hongli Ji
Article type: Research Article
Authors: Wan, Leia | Liu, Canchanga; | Kong, Weixua | Zhou, Yingchaoa | Ma, Chichenga
Affiliations: [a] School of Transportation and Vehicle Engineering, Shandong University of Technology, Zibo, China
Correspondence: [*] Corresponding author: Canchang Liu, School of Transportation and Vehicle Engineering, Shandong University of Technology, Zibo 255049, China. E-mail: sdutlcch@163.com
Abstract: The nonlinear vibration control of the Euler–Bernoulli beam is studied based on capacitive micro-mechanical acoustic sensors The graphene film has the characteristics of high sensitivity and high accuracy which can be applied to sense the vibration signal. Capacitive micro-mechanical acoustic sensors can be used to detect the acoustic signal of the vibration of the nano-beam. The nonlinear vibration control equation of nano-beam can be established with the displacement and velocity voltage feedback controller based on capacitive micro-mechanical acoustic sensors. The amplitude-frequency response equation of the primary resonance of nano-beam can be gotten by using the multiple scales method. The relationship between the nonlinear vibration of nano-beam and system parameters is investigated. The influencing factors of how to weak system nonlinearity and enhance system stability are analyzed. The static bifurcation behavior of the system is discussed. The numerical results show that the nonlinearity of vibration can be reduced and the stability of the system can be improved by selecting the appropriate control gains and appropriately reducing the amplitude of DC and AC excitation voltages.
Keywords: Nonlinear vibration, capacitive acoustic sensors, nanobeam, vibration control
DOI: 10.3233/JAE-209348
Journal: International Journal of Applied Electromagnetics and Mechanics, vol. 64, no. 1-4, pp. 421-429, 2020
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