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TECHNICAL PAPERS

Vibration Instability in Rolling Mills: Modeling and Experimental Results

[+] Author and Article Information
Paul A. Meehan

Industrial Automation Services Pty. Ltd., Teralba, NSW, 2284, Australia

J. Vib. Acoust 124(2), 221-228 (Mar 26, 2002) (8 pages) doi:10.1115/1.1456457 History: Received January 01, 2000; Revised December 01, 2001; Online March 26, 2002
Copyright © 2002 by ASME
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References

Roberts, W. L., 1988, Flat Processing of Steel, Marcel Dekker, New York.
Bryant, G. F., 1973, Automation of Tandem Mills, London, Iron & Steel Inst., Publication No. 160.
Yarita,  I., Furukawa,  K., Seino,  Y., Takimoto,  T., Nakzato,  Y., and Nakagawa,  K., 1978, “An Analysis of Chattering in Cold Rolling for Ultrathin Gauge Steel Strip,” Trans. Iron Steel Inst. Jpn., 18, pp. 1–10.
Yun,  I-S, Wilson,  W. R. D., and Ehmann,  K. F., 1998, “Chatter in the Strip Rolling Process,” ASME J. Manuf. Sci. Eng., 120, No. 2, pp. 330–348.
Guo, R., 1994, “Material Damping Effect in Cold Rolling Process,” Iron and Steel Engineer, December pp. 28–35.
Paton, D. L., and Critchley, S., 1985, “Tandem Mill Vibration: Its Cause and Control,” Iron and Steel Making, March pp. 37–43.
Tlusty,  J., Chandra,  G., Critchley,  S., and Paton,  D., 1982, “Chatter in Cold Rolling,” CIRP Ann., 31, No. 1, pp. 195–199.
Pawelski, O., Rasp, W., and Friedewald, K., 1987, “Theory of Interaction of Plastic and Elastic Deformations,” 4th International Steel Rolling Conference, Deauville, France, June 1-3, pp. E.11.1-E.11.5.
Tamiya, T., Furui, K., and Iida, H., 1980, “Analysis of Chattering Phenomenon in Cold Rolling,” Proceedings of the International Conference on Steel Rolling, ISIJ, Tokyo, pp. 1191-1202.
Edwards,  W. J., 1975, “Design of a Cold Rolling Mill Thickness Controller Incorporating Tension Variation,” J. Aust. Inst. Met., 20, No. 1, pp. 59–67.
Thomson, W. T., 1988, Theory of Vibration with Applications, Allen & Unwin, London.
Cockerell, R. A., Edwards, W. J., Spooner, P. D. and Thomas, P. J., 1993, “A Dynamic Rolling Mill Simulator for all Reasons,” 12th IFAC Congress, Sydney, pp. 29–36.

Figures

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Four high rollstack, (a) dynamic model (b) mode shapes
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Simplified block diagram illustrating rollstack vibration and interstand tension interaction
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Critical speed ratios for third octave chatter as a function of the chatter model parameters
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Block diagram for one stand of the dynamic tandem mill simulator
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Simulation of the effect of mill speed on the occurrence of third octave chatter
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Top 7 chatter critical products

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