Vibration Analysis of a Rail Operating Vehicle

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Abstract:

A simplified rigid-flexible coupling dynamical model of the rail operating vehicle, including bogie frame and car body, was built. The car body is modeled as a flexible uniform Euler beam. The dynamical response of the vehicle under the irregularity dynamic action between wheel and rail was numerically calculated and analyzed by the fast stability algorithms. Influences of the suspension on vibration and stability of the vehicle are analyzed. The results have a certain reference value on the dynamic design of multi-functional track operating vehicle.

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591-594

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February 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Braham Breytenbach, Pieter Schalk Els, Optimal vehicle suspension characteristics for increased structural fatigue life [J]. Journal of Terramechanics. 2011, 48: 397-408.

DOI: 10.1016/j.jterra.2011.09.004

Google Scholar

[2] LI Ling-xuan, MA yuan-yuan, FENG Fei, WEN Bang-chun. Vibration/Comfortableness Analysis of Motor Coach of a Certain Model of Express Train in China [J]. Journal of Northeastern University (Natural Science), 2010, 31(5): 704-707.

Google Scholar

[3] HU Yong-sheng. The modern railway vehicle dynamics. [M]. Beijing: China Railway Publishing House, (2009).

Google Scholar

[4] LU Zheng-gang. Rigid body system dynamics and soft structure vibration control research of Railway vehicle [D]. Shanghai: Tongji University, (2005).

Google Scholar

[5] ZHANG Xiang-wei, ZHOU Jin-song, LI Da-guang els. An Optimum Analysis of the Ride Quality of Maglev Vehicle [J]. Urban Mass Transit, 2009, 8(1): 5-9.

Google Scholar

[6] ZHOU Jin-song, GONG Dao, REN Li-hui . Simulation on Passive Vibration Control of Flexible Carbody of Railway Passenger Vehicles[J], 2008, 30(6): 36-39.

Google Scholar

[7] ZHOU Jin-song, LI Da-guang, SHEN Gang. els. Pseudo-excitation analysis method of riding quality for maglev vehicle [J]. Journal of Traffic and Transportation Engineering , 2008, 8(1): 5-9.

Google Scholar