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Nonlinear responses of a rub-impact overhung rotor
Authors:Weiyang Qin  Guanrong Chen  Guang Meng
Institution:

a Department of Engineering Mechanics, Campus Box 264, Northwestern Polytechnical University, Xi’an 710072, China

b Department of Electronics Engineering, City University of Hong Kong, Kowloon, Hong Kong, China

c State Key Laboratory of Vibration, Shock and Noise, Shanghai Jiao Tong University, Shanghai 200030, China

Abstract:For a rotor system with bearings and step-diameter shaft in the oxygen pump of an engine, the contact between the rotor and the case is considered, and the chaotic response and bifurcation are investigated. The system is divided into elements of elastic support, shaft and disk, and based on the transfer matrix method, the motion equation of the system is derived, and solved by Newmark integration method. It is found that hardening the support can delay the occurrence of chaos. When rubbing begins, the grazing bifurcation will cause periodic motion to become quasi-period. With variation of system parameters, such as rotating speed, imbalance and external damping, chaotic response can be observed, along with other complex dynamics such as period- doubling bifurcation and torus bifurcation in the response.
Keywords:
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