Control Scheme Using Forward Slip for a Multi-stand Hot Strip Rolling Mill

  • Moon, Young-Hoon (School of Mechanical Engineering/Engineering Research Center for Net Shape and Die Manufacturing, Pusan National University) ;
  • Jo, I-Seok (School of Mechanical Engineering/Engineering Research Center for Net Shape and Die Manufacturing, Pusan National University) ;
  • Chester J. Van Tyne (Department of Metallurgical and Materials Engineering, Colorado School of Mines)
  • 발행 : 2004.06.01

초록

Forward slip is an important parameter often used in rolling-speed control models for tandem hot strip rolling mills. In a hot strip mill, on-line measurement of strip speed is inherently very difficult. Therefore, for the set-up of the finishing mill, a forward slip model is used to calculate the strip speed from roll circumferential velocity at each mill stand. Due to its complexity, most previous researches have used semi-empirical methods in determining values for the forward slip. Although these investigations may be useful in process design and control, they do not have a theoretical basis. In the present study, a better forward slip model has been developed, which provides for a better set-up and more precise control of the mill. Factors such as neutral point, friction coefficient, width spread, shape of deformation zone in the roll bite are incorporated into the model. Implementation of the new forward slip model for the control of a 7-stand hot strip tandem rolling mill shows significant improvement in roll speed set-up accuracy.

키워드

참고문헌

  1. Bakhtinov, Yu. B., 1988, 'Forward and Backward Slip during Rolling,' Steel in the USSR, Vol. 18, pp. 364-367
  2. Hum, B., 1996, 'Measurements of Friction during Hot Rolling of Aluminum Strip,' Journal of Materials Processing Technology, Vol. 60, pp. 331-338 https://doi.org/10.1016/0924-0136(96)02350-3
  3. Koncewicz, S., 1991, 'Investigation on the Forward-slip and the Neutral Angle in Flat Rolling,' Archives of Metallurgy, Vol. 36, pp. 115-130
  4. Lee, W. H., 2002, 'Mathematical Model for Cold Rolling and Temper Rolling Process of Thin Steel Strip,' KSME International Journal, Vol. 10, pp. 1296-1302
  5. Lenard, J. G., 1997,' A Study of Friction during the Lubricated Cold Rolling of an Aluminum Alloy,' Journal of Materials Processing Technology, Vol. 72, pp. 293-301 https://doi.org/10.1016/S0924-0136(97)00183-0
  6. Seregin, S. A., 1989, 'Relation Between Forward Slip and Spread in Rolling,' Steel in the USSR, Vol. 19, pp. 438-440
  7. Zhang, W., 1995, 'Determination of Forward Slip in H-Beam Rolling,' Journal of Materials Processing Technology, Vol. 54, pp. 114-119 https://doi.org/10.1016/0924-0136(95)01929-4
  8. Zhang, Y., 1989, 'Research on the Forward Slip Model in a Universal H-Beam Mill,' Steel Iron, Vol. 11, pp. 39-41