Hopf Bifurcation and Stability Analysis on the Mill Drive System

Author:

Gao Zhi Ying1,Zang Yong1,Han Tian1

Affiliation:

1. University of Science and Technology Beijing

Abstract

According to the lumped mass method, the drive system of rolling mill can be simplified as a three-degree-of-freedom spring-mass model. The nonlinear dynamics equations are established considering nonlinear torsion stiffness of connecting shaft and nonlinear friction force between roller and strip, and Hopf bifurcation and critical parameters are analyzed by applying the Hurwitz algorithm criterion. Furthermore, the system stability is numerically simulated through time-history and phase plots. The results indicate that the system motion can be stable in some range of parameters, and the bifurcation phenomenon occurs and the stability may be lost across the critical points. In addition, at different bifurcation points the phase orbit run along diverse skeleton curves of revolution. These conclusions are significant to reveal the mechanism of system bifurcation and stability, and help for optimization of technology condition in practical application.

Publisher

Trans Tech Publications, Ltd.

Reference8 articles.

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2. S. Liu: Study on Unstable Oscillation and Controll Method in Rolling Mill's Torsional Vibration System [Dissertation]. Qinhuangdao: Yanshan University (2010). In Chinese.

3. Z.H. Wang and D.J. Wang: Journal of Northeastern University(Natural Science), Vol. 19, No. 4 (1998) , p.377. In Chinese.

4. S.B. Xiong, R.F. Wang and Y.W. Liang, etc: Chinese Journal of Mechanical Engineering, Vol. 41, No. 7 (2005) , p.147. In Chinese.

5. A. SwiatoniowsKia and A. Bar: Journal of Materials Processing Technology, Vol. 134, No. 2 (2003), p.214.

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