Claims
- 1. Method for the controlled pre-rolling of thin slabs leaving a continuous casting plant, comprising pre-rolling a thin slab with a plurality of pairs of rolls grouped together in one or more pre-rolling assemblies, the first of the pre-rolling assemblies being positioned immediately downstream of foot rolls of a mold, at least one displaceable roll being included in the pairs of rolls, the pairs of rolls being associated with pressure transducer means and hydraulic capsule means, position transducer means being included, the pressure transducer means and position transducer means being associated with a data processing unit, at least the first of the pairs of rolls processing a slab which has just emerged from the mold with a thin solidified skin; monitoring the temperature of a liquid bath in a tundish; monitoring the casting speed; monitoring the temperature of the slab while the slab is leaving the mold and while the slab is within the pre-rolling assembly; sending signals concerning the temperature of the liquid bath in the tundish, the casting speed, the temperature of the slab while the slab is leaving the mold and while the slab is within the pre-rolling assembly to the data processing unit; and controlling, on the basis of a governing and control program, the reciprocal positions of the rolls of at least a part of the pairs of rolls so as to achieve a pre-rolling with a reduction of the thickness of the slab leaving the last pair of pre-rolling rolls by at least 10% so as to eliminate the liquid pool and to bring into contact the zones in a two-phase condition in order that the central solidification structure be refined and the central segregation and porosity be minimized.
- 2. Pre-rolling method as in claim 1, whereby the data processing unit performs a dynamic control of the pre-rolling method and optimizes the management of the transient periods of start-up and stopping of casting.
- 3. Pre-rolling method as in claim 1, whereby the reduction of thickness of the slab is achieved in a travel between 0.8 and 7 meters long starting from the outlet of the mold.
- 4. Pre-rolling method as in claim 1, whereby the reduction of thickness of the slab is progressive with constant values.
- 5. Pre-rolling method as in claim 1, whereby the reduction of thickness of the slab is achieved in steps with a final stage of progressive finishing reduction.
- 6. Pre-rolling method as in claim 1, whereby the slab undergoes a descaling step at least before entering the first pre-rolling assembly.
- 7. Pre-rolling method as in claim 1, whereby a kissing point of the liquid cone in the advancing slab is controlled with means that monitor the kissing point of the liquid pool, those means being associated with the control and data processing unit.
- 8. Pre-rolling method as in claim 1, whereby the rate of flow of sprayer nozzles is controlled by the control and data processing unit governed at least by means monitoring the temperature of the slab.
- 9. Pre-rolling method as in claim 1, whereby at least the pressure of sprayer nozzles is controlled by the control and data processing unit governed at least by means monitoring the temperature of the slab.
- 10. Pre-rolling method as in claim 1, wherein the thin slab is made of steel having a known carbon content, and wherein the step of controlling the reciprocal positions of the rolls of at least part of the pairs of rolls includes determining an optimum solid fraction at and end of pre-rolling reduction on the basis of the carbon content, and calculating, on the basis of at least the temperature of the liquid bath and the tunish, the casting speed, the temperature of the slab while the slab is leaving the mold and while the slab is within the pre-rolling assembly, a pre-rolling length which will provide the optimum solid fraction at a depth from a surface of the thin slab to a half-thickness of the thin slab to be produced, and the reciprocal positions of the rolls of at least part of the pairs of rolls so as to achieve the calculating pre-rolling length.
- 11. A pre-rolling method as in claim 10, wherein the optimum solid fraction is determined based on the carbon content as follows:
- ______________________________________C content (%) Optimum Solid Fraction (%)______________________________________<0.20 92.5-97.50.20-0.4 87.5-92.50.40-0.70 77.5-82.5>0.7 67.5-72.5______________________________________
- 12. Device suitable to carry out the controlled pre-rolling of thin slabs leaving a continuous casting plant, in which device the pre-rolling is carried out with a plurality of pairs of rolls grouped together in one or more pre-rolling assemblies, the first of the pre-rolling assemblies being positioned immediately downstream of foot rolls of a mold, at least one displaceable roll being included in the pairs of rolls, the pairs of rolls being associated with pressure transducer means and hydraulic capsule means, position transducer means being comprised, the pressure transducer means and position transducer means being associated with a control and data processing unit, at least the first of the pairs of rolls processing a slab which has just left the mold and has a thin solidified skin, the device being characterized in that it includes, associated with the control and data processing unit, means to monitor the temperature of a liquid bath in a tundish, means to monitor the temperature of the slab, and means to monitor the speed of the slab.
- 13. Pre-rolling device as in claim 12, further comprising means to monitor the presence of a liquid pool associated with the control and data processing unit.
- 14. Pre-rolling device as in claim 12, in which individual position transducer means are associated with each pair of rolls.
- 15. Pre-rolling device as in claim 12, in which transducer means monitoring the position of the pre-rolling assembly are associated with a plurality of pairs of rolls.
- 16. Pre-rolling device as in claim 12, in which the control and data processing unit regulates means that control at least a pressure of cooling water delivered by sprayer nozzles.
- 17. Pre-rolling device as in claim 12, in which the control and data processing unit regulates means that control at least a rate of flow of cooling water delivered by sprayer nozzles.
- 18. Pre-rolling device as in claim 12, which includes a unit which introduces and collects data.
- 19. Pre-rolling device as in claim 12, in which the pre-rolling rolls of the pairs of rolls are associated with internal cooling means.
- 20. A pre-rolling method as in claim 1, further comprising cooling the slab during the pre-rolling by secondary cooling means, monitoring secondary cooling parameters, and sending signals concerning the secondary cooling parameters to the data processing unit.
- 21. Pre-rolling device as in claim 12, further comprising secondary cooling means for cooling the slab during the pre-rolling; and, associated with the control and data processing unit, means to monitor secondary cooling parameters.
Priority Claims (2)
Number |
Date |
Country |
Kind |
UD91A0184 |
Oct 1991 |
ITX |
|
UD93A0083 |
May 1993 |
ITX |
|
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 07/963,734, filed Oct. 20, 1992 and now abandoned.
US Referenced Citations (8)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0353402 |
May 1989 |
EPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
963734 |
Oct 1992 |
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