Claims
- 1. A cast steel strip prepared by a process comprising the steps of:
supporting a casting pool of molten low carbon steel on a pair of chilled casting rolls forming a nip between them and continuously casting solidified strip of no more than 5 mm in thickness and including austenite grains by rotating the rolls in mutually opposite directions such that the solidified strip moves downwardly from the nip; passing the strip through a rolling mill in which it is hot rolled to produce a reduction in the strip thickness of at least 15%, and cooling the strip to transform the austenite to ferrite within a temperature range between 850° C. and 400° C. and at a cooling rate of more than about 100° C./sec.
- 2. The cast steel strip of claim 1, wherein the low carbon steel is a silicon/manganese killed steel, and the strip is hot rolled in the temperature range of 900° C. to 1100° C. and then is cooled at a cooling rate in the range of 100° C./sec to 300° C./sec to produce a final strip having a yield strength of at least 450 MPa.
- 3. The cast steel strip of claim 1, wherein the low carbon steel is a silicon/manganese killed steel, and the strip is cooled at a cooling rate in the range of 100° C./sec to 300° C./sec to produce a strip with a final yield strength of at least 450 MPa.
- 4. The cast steel strip of claim 3, wherein the final yield strength is between 450 MPa and 700 MPa.
- 5. The steel strip of claim 1, wherein the cooling rate is in the range of 100° C./sec to 300° C./sec and the strip has a yield strength of at least 450 MPa.
- 6. The cast steel strip of claim 5, wherein the yield strength is between 450 MPa and 700 MPa.
- 7. The cast steel strip of claim 1, wherein the low carbon steel is a silicon/manganese killed steel having the following composition by weight:
- 8. The cast steel strip of claim 1, wherein the low carbon steel is aluminum killed steel.
- 9. The cast steel strip of claim 1, wherein the aluminum killed steel has the following composition by weight:
- 10. The cast steel strip of claim 1, wherein the cooling rate is in the range of 100° C./sec to 300° C./sec.
- 11. The cast steel strip of claim 1, wherein the finished cast steel strip has a yield strength of greater than 450 MPa.
- 12. The cast steel strip of claim 2, wherein the final cast steel strip has a yield strength in the range of 450 MPa to 700 MPa.
- 13. The cast steel strip of claim 12, wherein the cast steel has the following composition by weight:
- 14. A cast steel strip prepared by a process comprising the steps of:
supporting a casting pool of molten low carbon steel on a pair of chilled casting rolls forming a nip between them and continuously casting solidified strip of no more than 5 mm in thickness and including austenite grains by rotating the rolls in mutually opposite directions such that the solidified strip moves downwardly from the nip; passing the strip through a rolling mill in which the strip is hot rolled to produce a reduction in the strip thickness of at least 15%; and continuously cooling the strip to transform the austenite to ferrite within a temperature range between 400° C. and 850° C. at a cooling rate of not less than 90° C./sec without inhibiting the cooling rate.
- 15. The cast steel strip of claim 14, wherein said cooling rate is in the range 100° C./sec to 300° C./sec.
- 16. The cast steel strip of claim 14, wherein the low carbon steel is a silicon/manganese killed steel having the following composition by weight:
- 17. The cast steel strip of claim 14, wherein the low carbon steel is aluminum killed steel.
- 18. The cast steel strip of claim 17, wherein the aluminum killed steel has the following composition by weight:
- 19. The cast steel strip of claim 14, wherein the finished strip has a yield strength of greater than 450 MPa.
- 20. The cast steel strip of claim 14, wherein said cooling rate is in the range 100° C./sec to 300° C./sec and the strip has a yield strength of at least 450 MPa.
- 21. The cast steel strip of claim 20, wherein the strip has a yield strength in the range of 450 MPa to 700 MPa.
- 22. The cast steel strip of claim 14, wherein the low carbon steel is a silicon/manganese killed steel, and the strip is cooled at a cooling rate in the range of 100° C./sec to 300° C./sec to produce a strip having a yield strength of at least 450 MPa.
- 23. The cast steel strip of claim 22, wherein the final strip has a yield strength in the range of 450 MPa to 700 MPa.
- 24. The cast steel strip of claim 14, wherein the low carbon steel is a silicon/manganese killed steel, and the strip is hot rolled in the temperature range of 900° C. to 1100° C. and then is cooled at a cooling rate in the range of 100° C./sec to 300° C./sec to produce a final strip having a yield strength of at least 450 MPa.
- 25. The cast steel strip of claim 24, wherein the final strip has a yield strength in the range of 450 MPa to 700 MPa.
- 26. The cast steel strip of claim 24, wherein the steel has the following composition by weight:
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a division of co-pending and co-owned U.S. patent application Ser. No. 09/967,166, filed 28 Sep. 2001, now U.S. Pat. No. ______, and claims benefit and priority therethrough to U.S. Provisional Application Serial No. 60/270,861, filed Feb. 26, 2001, and to U.S. Provisional Application Serial No. 60/236,389, filed Sep. 29, 2000.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60270861 |
Feb 2001 |
US |
|
60236389 |
Sep 2000 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09967166 |
Sep 2001 |
US |
Child |
10689284 |
Oct 2003 |
US |