Claims
- 1. A control method for a finishing train, arranged upstream of a cooling section, for rolling hot metal strip, comprising the steps of:
at the latest when the hot strip enters the finishing train, recording strip points and at least their starting temperatures, feeding the strip points and, as actual temperatures, the starting temperatures to a model for the finishing train, monitoring the displacement of the strip points as they pass through the finishing train, subjecting the hot strip to temperature influences in the finishing train, feeding the displacement monitorings and the temperature influences likewise to the model, using the actual temperatures by the model to determine actual temperatures that are expected in real time for the recorded strip points and assigning these temperatures to the recorded strip points as new actual temperatures.
- 2. The control method as claimed in claim 1, wherein after the strip points have left the finishing train, their final temperatures are recorded, in that the recorded final temperatures are compared with expected final temperatures determined on the basis of the model, and in that at least one correction factor for the model is determined on the basis of the comparison.
- 3. The control method as claimed in claim 2, wherein in addition to the expected actual temperatures, the model also determines functional relationships between the expected actual temperatures and the correction factor, and wherein the expected actual temperatures of the strip points which have already been recorded are corrected on the basis of the correction factor.
- 4. The control method as claimed in claim 1, wherein the recorded strip points are assigned desired values for a variable which describes the energy content and these desired values are fed to the model, in that the model uses the desired values assigned to the recorded strip points and the actual temperatures to determine control values for temperature-influencing devices, by means of which the actual temperature of the hot strip can be influenced without deformation, and wherein the control values are fed to the temperature-influencing devices.
- 5. The control method as claimed in claim 4, wherein at least one of the control values is compared with a desired control value, and a correction value for a strip velocity of the hot strip is determined on the basis of the comparison.
- 6. The control method as claimed in claim 4, wherein exclusively a change in a rolling velocity is used to regulate the deformation-free temperature influencing within the finishing train.
- 7. The control method as claimed in claim 4, wherein the control values are determined in such a manner that the deviation of the actual temperatures expected for the strip points from a predetermined location temperature at at least one location of the finishing train is minimized.
- 8. The control method as claimed in claim 7, wherein the location is between two rolling stands of the finishing train, and in that a phase transformation takes place in the hot strip at the location temperature.
- 9. The control method as claimed in claim 7, wherein there is no recording of the actual temperature of the hot strip at the location.
- 10. The control method as claimed in claim 4, wherein the desired values are individually assigned to the strip points.
- 11. The control method as claimed in claim 4, wherein the desired values are position- or time-specific.
- 12. The control method as claimed in claim 4, wherein the desired values form a desired value curve.
- 13. The control method as claimed in claim 1, wherein the model is also used to determine phase components of the respective strip points.
- 14. The control method as claimed in claim 1, wherein the method is carried out cyclically.
- 15. The control method as claimed in claim 1, wherein the method is also used to control at least one installation arranged upstream or downstream of the finishing train.
- 16. The control method as claimed in claim 15, wherein the installation is selected from one or more installations of the group of a roughing train, a furnace, a continuous casting installation and a cooling section.
- 17. The control method as claimed in claim 15, wherein the control method for the finishing train and for the installation arranged upstream or downstream of the finishing train are a common control method.
- 18. The control method as claimed in claim 15, wherein the model is designed to cover more than just the finishing train.
- 19. A model which can be implemented in a real time calculation device for carrying out a control method comprising the steps of:
at the latest when the hot strip enters the finishing train, recording strip points and at least their starting temperatures, feeding the strip points and, as actual temperatures, the starting temperatures to a model for the finishing train, monitoring the displacement of the strip points as they pass through the finishing train, subjecting the hot strip to temperature influences in the finishing train, feeding the displacement monitorings and the temperature influences likewise to the model, using the actual temperatures by the model to determine actual temperatures that are expected in real time for the recorded strip points and assigning these temperatures to the recorded strip points as new actual temperatures.
- 20. A finishing train, arranged upstream of a cooling section, for rolling hot metal strip, having a real-time calculation device, which is connected to the finishing train in terms of control technology and wherein the real time calculation device comprises:
means for recording strip points and at least their starting temperatures, means for feeding the strip points and, as actual temperatures, the starting temperatures to a model for the finishing train, means for monitoring the displacement of the strip points as they pass through the finishing train, means for subjecting the hot strip to temperature influences in the finishing train, means for feeding the displacement monitorings and the temperature influences likewise to the model, and means for using the actual temperatures by the model to determine actual temperatures that are expected in real time for the recorded strip points and for assigning these temperatures to the recorded strip points as new actual temperatures.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10156008.7 |
Nov 2001 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application No. PCT/DE02/04125 filed Nov. 7, 2002 which designates the United States, and claims priority to German application no. 101 56 008.7 filed Nov. 15, 2001.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE02/04125 |
Nov 2002 |
US |
Child |
10839105 |
May 2004 |
US |