CASTING-ROLLING INTEGRATED PLANT FOR PRODUCING A HOT-ROLLED FINISHED STRIP FROM A STEEL MELT
20230271247 · 2023-08-31
Inventors
- Simon Grosseiber (Leonding, AT)
- Thomas Lengauer (Weißkirchen a.d. Traun, AT)
- Bernd Linzer (Leombach, AT)
- Gero SCHWARZ (Attnang, AT)
- Roman Winkler (Altenberg, AT)
- Michael Zahedi (St. Marien, AT)
Cpc classification
B22D11/16
PERFORMING OPERATIONS; TRANSPORTING
B21B1/463
PERFORMING OPERATIONS; TRANSPORTING
B21B13/22
PERFORMING OPERATIONS; TRANSPORTING
B21B2001/081
PERFORMING OPERATIONS; TRANSPORTING
B21B37/28
PERFORMING OPERATIONS; TRANSPORTING
C21D9/52
CHEMISTRY; METALLURGY
International classification
B22D11/12
PERFORMING OPERATIONS; TRANSPORTING
B22D11/00
PERFORMING OPERATIONS; TRANSPORTING
B22D11/16
PERFORMING OPERATIONS; TRANSPORTING
B21B37/28
PERFORMING OPERATIONS; TRANSPORTING
B21B13/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A casting-rolling integrated plant that is capable of producing, from a steel melt, in a cost-effective manner and with high productivity, a hot-rolled finished strip having a thickness of ≤0.6 mm, an excellent flatness, and an excellent profile by dividing the thickness reduction into at least three stages (roughing, intermediate and finishing train), measuring the actual profile after the roughing, intermediate and finishing train, and equipping the stands in the roughing, intermediate and finishing train with actuators for influencing the strip profile and/or the strip flatness.
Claims
1. A casting-rolling integrated plant for producing a hot-rolled finished strip, having: a continuous casting plant having an arcuate strand guide for the continuous casting of a steel melt to form a continuous strand having a slab or thin slab cross section; a roughing train having a plurality of, preferably exactly three, roughing stands (R1 . . . R3) for roughing the continuous strand to form a roughed strip, wherein at least one, preferably each, roughing stand has at least one actuator for setting the profile and/or the flatness of the roughed strip; a first induction furnace for heating the roughed strip to a first rolling temperature; a first measuring device for measuring the actual profile of the roughed strip, wherein the first measuring device is arranged between the last roughing stand (R3) of the roughing train and the first induction furnace in the material flow direction; a first descaling device for descaling the heated roughed strip; an intermediate train having a plurality of, preferably exactly three, intermediate rolling stands (I1 . . . I3) for intermediate rolling of the continuous roughed strip to form an intermediate strip, wherein at least one, preferably each, intermediate rolling stand has at least one actuator for setting the profile and/or the flatness of the intermediate strip; a second measuring device for measuring the actual profile of the intermediate strip; a finishing train having a plurality of, preferably exactly three, finish rolling stands (F1 . . . F3) for finish rolling the continuous intermediate strip to form a finished strip, wherein at least one, preferably each, finish rolling stand has at least one actuator for setting the profile and/or the flatness of the finished strip; a third measuring device for measuring the actual profile of the finished strip; shears for transversely dividing the finished strip; and a coiling device having at least two coiler drums for coiling the finished strip into coils.
2. The casting-rolling integrated plant as claimed in claim 1, wherein a first profile controller can control at least one actuator in the roughing train as a function of the actual profile of the roughed strip in such a way that the actual profile of the roughed strip corresponds as far as possible to a setpoint profile.
3. The casting-rolling integrated plant as claimed in claim 1, wherein the second measuring device is arranged between the last intermediate rolling stand (I3) of the intermediate train and the first finish rolling stand (F1) of the finish rolling train, preferably between the last intermediate rolling stand (I3) of the intermediate train and the second induction furnace, in the material flow direction.
4. The casting-rolling integrated plant as claimed in claim 3, wherein characterized in that the second measuring device is designed not only to measure the actual profile but also to measure the actual flatness of the intermediate strip.
5. The casting-rolling integrated plant as claimed in claim 1, wherein a second profile controller can control at least one actuator in the intermediate train as a function of the actual profile of the intermediate strip in such a way that the actual profile of the intermediate strip corresponds as far as possible to a setpoint profile.
6. The casting-rolling integrated plant as claimed in claim 4, wherein a first flatness controller can control at least one actuator in the intermediate train as a function of the actual flatness of the intermediate strip in such a way that the actual flatness of the intermediate strip corresponds as far as possible to a setpoint flatness.
7. The casting-rolling integrated plant as claimed in claim 1, wherein at least one finish rolling stand (F1 . . . F3) of the finishing train, preferably each finish rolling stand of the finishing train, has two displacement devices for the axial displacement of the working rolls in opposite directions.
8. The casting-rolling integrated plant as claimed in claim 7, wherein the displacement devices allow an axial displacement of 200 mm, preferably 500 mm, particularly preferably 800 mm.
9. The casting-rolling integrated plant as claimed in claim 1, wherein the third measuring device is arranged between the last finish rolling stand (F3) of the finishing train and the coiling device, preferably between the last finish rolling stand (F3) of the finishing train and the cooling section, in the material flow direction.
10. The casting-rolling integrated plant as claimed in claim 9, wherein the third measuring device is designed not only to measure the actual profile but also to measure the actual flatness of the finished strip.
11. The casting-rolling integrated plant as claimed in claim 1, wherein a third profile controller can control at least one actuator in the finishing train as a function of the actual profile of the finished strip in such a way that the actual profile of the finished strip corresponds as far as possible to a setpoint profile.
12. The casting-rolling integrated plant as claimed in claim 10, wherein a second flatness controller can control at least one actuator in the finishing train as a function of the actual flatness of the finished strip in such a way that the actual flatness of the finished strip corresponds as far as possible to a setpoint flatness.
13. The casting-rolling integrated plant as claimed in claim 1, wherein a first temperature profile measuring device for measuring the temperature profile of the roughed strip is arranged between the end of the first induction furnace and the first descaling device, wherein a first temperature controller controls the inductors of the first induction furnace in such a way that the temperature profile corresponds as far as possible to a first setpoint profile.
14. The casting-rolling integrated plant as claimed in claim 1, wherein a second temperature profile measuring device for measuring the temperature profile of the intermediate strip is arranged between the end of the second induction furnace and the second descaling device, wherein a second temperature controller controls the inductors of the second induction furnace in such a way that the temperature profile corresponds as far as possible to a second setpoint profile.
15. The casting-rolling integrated plant as claimed in claim 1, further comprising a slab descaler for descaling the strand before roughing.
16. The casting-rolling integrated plant as claimed in claim 1, further comprising a second induction furnace for heating the intermediate strip to a second rolling temperature and a second descaling device for descaling the heated intermediate strip.
17. The casting-rolling integrated plant as claimed in claim 1, further comprising a cooling section for cooling the finished strip to a coiling temperature.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0053] The above-described properties, features and advantages of this invention and the manner in which these are achieved will become more clearly and distinctly understandable in conjunction with the following description of a number of exemplary embodiments, which are explained in greater detail in conjunction with the drawings. In the drawings:
[0054]
[0055]
[0056]
[0057]
[0058]
[0059]
[0060]
DESCRIPTION OF THE EMBODIMENTS
[0061]
[0062] The mode of operation of a first profile controller is explained with reference to
[0063] The mode of operation of a second profile controller is explained with reference to
[0064] The mode of operation of a third profile controller and a second flatness controller are explained with reference to
[0065] It is possible for there to be actuators for bending the working rolls, e.g. bending blocks, in the finish rolling stands of the finishing train 11 and additionally for there to be width-dependent multi-zone cooling of the working rolls or possibly even of the back-up rolls.
[0066]
[0067] Although the invention has been illustrated and described more specifically in detail by means of the preferred exemplary embodiments, the invention is not restricted by the examples disclosed, and other variations can be derived therefrom by a person skilled in the art without exceeding the scope of protection of the invention.
LIST OF REFERENCE SIGNS
[0068] 1, CCM continuous casting plant
[0069] 2 tundish
[0070] 3 mold
[0071] 4 strand
[0072] 5 roughing train
[0073] 6 first measuring device
[0074] 6a second measuring device
[0075] 6b third measuring device
[0076] 7 roller table
[0077] 8, IH1 first induction furnace
[0078] 8a, IH2 second induction furnace
[0079] 9, DESC first descaling device
[0080] 9a second descaling device
[0081] 10 intermediate train
[0082] 11 finishing train
[0083] 12 cooling section
[0084] 13 shears
[0085] 14, DC coiling device
[0086] 15 controller
[0087] m1 . . . m4 measured variables
[0088] u1 . . . u9 manipulated variables
[0089] R1 . . . R3 first to third roughing stand
[0090] I1 . . . I3 first to third intermediate rolling stand
[0091] F1 . . . F3 first to third finish rolling stand