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《Journal of Vibration and Shock》 2015-22
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Internal resonance of axially moving laminated thin cylindrical shells

ZHANG Yu-fei;WANG Yan-qing;WEN Bang-chun;Faculty of Aerospace Engineering,Shenyang Aerospace University;School of Mechanical Engineering and Automation,Northeastern University;Institute of Applied Mechanics,Northeastern University;  
A thin composite circular cylindrical shell moving in axial direction was investigated. Based on the Donnell's nonlinear shallow-shell theory,together with the classical laminated shell theory,a nonlinear vibration equation of the system was derived,in which the effects of dynamic Young's modulus,damping and geometric large deformation were considered. The modal expansion with four generalized modal coordinates was adopted,and the vibration equation was discretized by using the Galerkin method. Applying variable step-size four-order Runge-Kutta method,the nonlinear modal equations of the system was solved,and the nonlinear frequency response curves,which show 1:1:1:1 internal resonance phenomenon in the system were obtained. The effects of moving speed,damping coefficients and amplitudes of external force on the nonlinear vibration response of the shell were also analysed.
【Fund】: 国家自然科学基金资助项目(11302046 11172063)
【CateGory Index】: O321
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【Citations】
Chinese Journal Full-text Database 6 Hits
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【Co-citations】
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1 LI Jing;HU Yu-da;Key Laboratory of Mechanical Reliability for Heavy Equipment and Large Structures of Hebei, Yanshan University;Department of Basic Teaching, Tangshan University;;On the 1:3 Internal Resonance of Current-Conducting Strip Plate in Transverse Magnetic Field[J];力学季刊;2016-04
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