Vibration Diagnostics of Rolling Mills Based on Nonlinear Effects in Dynamics

Автор(и)

  • Pavel V. Krot
  • Vladimir V. Korennoy

Ключові слова:

Rolling mills, nonlinear oscillations, chatter vibrations, identification

Анотація

This paper intends to describe nonlinear effects occurring in rolling mills dynamics. That is necessarily for vibrations damping and reliable diagnostics of rolling mills equipment under non-stationary working conditions. Three types of nonlinear effects are investigated taking place in drivelines and stands of different design, namely, transient torsional vibrations in hot rolling mills, chatter vibrations in tandem cold rolling mills and parametrical vibrations in high-speed wire and rod rolling mills. The procedure is proposed for natural frequencies identification when short transient torque signals restrict application of the Fourier transform. Examples are given on using nonlinear effects for wear diagnostics and vibrations control based on natural frequencies and modes analysis of multi-body systems.

Посилання

Polzer J., Markworth M., Jelali M. et al. Intelligent soft-sensor technology and automatic model-based diagnosis for improved quality, control and maintenance of mill production lines (Softdetect). Report of Research Fund on Coal and Steel (RFCS). Luxemburg; 2009.

Krot P.V. Nonlinear Vibrations and Backlashes Diagnostics in the Rolling Mills Drive Trains. Proc. of 6th EUROMECH Nonlinear Dynamics Conference (ENOC 2008), Institute of Problems in Mechanical Engineering RAS, June 30 – July 4, 2008, St. Petersburg, Russia, pp. 360-366.

Krot P.V., Prihodko I.Y., Chernov P.P. Regenerative chatter vibrations control in the tandem cold rolling mills. 4th European Conference on Structural Control (ECSC 2008), Institute of Problems in Mechanical Engineering RAS, St. Petersburg, Russia, September 8‑12, 2008, pp. 428-437.

Liu X., Zang Y., Gao Z. and Zeng L. Time Delay Effect on Regenerative Chatter in Tandem Rolling Mills. Shock and Vibration, 2016, vol. 2016, pp. 39-54.

Pei-Hua Hu, Kornel F. Ehmann Regenerative Chatter in High-Speed Tandem Rolling Mills, Conference Paper. ASME 2006 International Manufacturing Science and Engineering Conference. 2006, January.

Chen Y., Liu S., Shi T., Yang S., Liao G. Stability analysis of the rolling process and regenerative chatter on 2030 tandem mills. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2002, vol. 216, No 12, pp. 1225-1235.

Chen Yonghui, Li Weihua, Shi Tielin, Yang Shuzi Regenerative chatter with fifth-octave-mode in 4-H cold rolling mills. Journal of Huazhong University of Science and Technology (Nature Science Edition), 2003, iss. 5, pp. 55-57 (in Chinese).

Zhao H., Ehmann K.F. Stability analysis of chatter in tandem rolling mills – part 2: the regenerative effect. Journal of Manufacturing Science and Engineering – Transactions of the ASME, 2013, vol. 135 (3), pp. 11-22.

Yuan L., Jarvenpaa V.-M. Nonlinear vibrations in a covered roll system with viscoelastic contact. Communications in Nonlinear Science and Numerical Simulation, 2009, vol. 14, pp. 3170–3178.

Guo R.-M., Urso A.C., Schunk J.H. Analysis of chatter vibration phenomena of rolling mills using finite element methods. Iron and Steel Engineer, 1993, vol. 70 (7), pp. 29-39.

Faassen R.P.H. et al. Prediction of regenerative chatter by modelling and analysis of high-speed milling. International Journal of Machine Tools & Manufacture, 2003, vol. 43, pp. 1437–1446.

Krot P.V. Dynamic Model of Geared Drive with Changeable Structure of High-Speed Wire Rolling Block. Vestnik NTU KhPI «Problems of Mechanical Drive», 2010, iss. 27, pp. 96-108 (in Russian).

Treder H., Dikhans G., Peken H. Simulation of torsional vibrations in the splitting gearbox of wire rolling mill. Stahl und Eisen, 1980, № 24, pp. 9-15.

Wang J., Cartright L.M. Torsional vibration modeling and dynamic simulation of a rolling stand power transmission system. Iron & Steel Eng, 1999, No 1, pp. 30-34.

Krot P.V. Dynamical processes in multi-path geared drive of slabbing mill. Vestnik NTU KhPI «Problems of Mechanical Drive», 2009, iss. 19, pp. 96-105 (in Russian).

Hofner J., Olenick J.E., Foley J.D. Predictive maintenance for No-Twist rod mills using vibration signature analysis. Iron & Steel Eng, 1991, No 1, pp. 55-61.

Schmidt J.M., Player R.E. et al. Continuous Vibration Monitoring of a 10 Stand Rod Block. AISE Steel Technology, 2002, No 1, pp. 44-45.

Svetlitsky V.A. Dynamics of rods. In: Foundations of Engineering Mechanics Series. Berlin, Heidelberg: Springer-Verlag; 2005.

##submission.downloads##