Claims
- 1. A process for the production of aluminum alloy sheet, comprising the steps of:
- a) forming an aluminum alloy melt composition comprising from about 0.9 to about 1.6 weight percent manganese and from about 2.0 to about 2.8 weight percent magnesium;
- b) casting said aluminum alloy to form a cast strip;
- c) hot rolling said cast strip to reduce the thickness of said cast strip by at least about 70 percent and form a hot rolled strip wherein the exit temperature of the hot rolled strip is less than about 650.degree. F.;
- d) annealing said hot rolled strip to form an annealed strip; and
- e) cold rolling said annealed strip to form an aluminum alloy sheet.
- 2. A process as recited in claim 1, wherein said cast strip has a thickness from about 0.60 inches to about 0.80 inches.
- 3. A process as recited in claim 1, wherein said casting step comprises casting said aluminum alloy composition in a block caster.
- 4. A process as recited in claim 1, wherein said hot rolling reduces the thickness of said cast strip by at least about 75 percent.
- 5. A process as recited in claim 1, wherein said hot rolled strip has a thickness of less than about 0.080 inches.
- 6. A process as recited in claim 1, wherein said hot rolled strip has a thickness of less than about 0.070 inches.
- 7. A process as recited in claim 6, wherein the exit temperature of said hot rolled strip is less than about 600.degree. F.
- 8. A process as recited in claim 1, wherein the exit temperature of said hot rolled strip is from about 620.degree. F. to about 640.degree. F.
- 9. A process as recited in claim 1, wherein said annealing step comprises maintaining said hot rolled strip at a temperature from about 775.degree. F. to about 830.degree. F.
- 10. A process as recited in claim 1, wherein said annealing step comprises coiling said hot rolled strip into a coil and allowing said coil to cool to about room temperature.
- 11. A process as recited in claim 1, wherein said annealing step comprises annealing said hot rolled strip for less than about 3 hours.
- 12. A process as recited in claim 1, wherein said cold rolling step includes a first stage of cold rolling comprising the steps of:
- a) cold rolling said annealed strip to form a cold rolled strip having a first cold roll gauge; and
- b) cold rolling said cold rolled strip having a first cold roll gauge to form a cold rolled strip having a second cold roll gauge.
- 13. A process as recited in claim 12, wherein step a) reduces the thickness of the strip by less than about 40 percent and step b) further reduces the thickness of the strip from about 35 percent to about 70 percent.
- 14. A process as recited in claim further comprising the steps of:
- a) annealing the cold rolled strip; and
- b) further cold rolling said annealed strip to a final gauge.
- 15. A process as recited in claim 14, wherein said annealing step comprises heating said cold rolled strip to a temperature from about 650.degree. F. to about 700.degree. F.
- 16. A process recited in claim 1, wherein said cold rolling step comprises cold rolling said annealed strip to reduce the thickness of the annealed strip by at least about 35 percent.
- 17. A process as recited in claim 1, wherein said cold rolling step comprises the steps of:
- a) cold rolling said annealed strip to a strip having a first cold roll gauge;
- b) annealing said cold rolled strip having a first cold roll gauge; and
- c) further cold rolling said strip to an aluminum alloy sheet of final gauge;
- wherein the final gauge of the aluminum alloy sheet is from about 35 percent to about 70 percent of the first cold roll gauge.
- 18. A process as recited in claim 17, wherein said final gauge is less than about 0.0118 inches.
- 19. A process as recited in claim 1, wherein said aluminum alloy melt composition further comprises:
- a) from about 0.13 to about 0.20 weight percent silicon;
- b) from about 0.25 to about 0.35 weight percent iron; and
- c) from about 0.20 to about 0.25 weight percent copper.
- 20. A process as recited in claim 19, wherein said aluminum alloy melt composition comprises:
- a) from about 2.6 to about 2.8 weight percent magnesium; and
- b) from about 1.1 to about 1.5 weight percent manganese.
- 21. A process as recited in claim 17, wherein said aluminum alloy melt composition comprises:
- a) from about 2 to about 2.1 weight percent magnesium; and
- b) from about 1.4 to about 1.6 weight percent manganese.
- 22. A process as recited in claim 1, wherein said aluminum alloy melt composition comprises:
- a) from about 2.6 to about 2.8 weight percent magnesium; and
- b) from about 0.9 to about 1.0 weight percent manganese.
- 23. A process as recited in claim 1, further comprising the step of tension leveling said cold rolled strip.
- 24. A process as recited in claim 1, wherein said cold rolling step comprises cold rolling with water cooled rollers to stabilize said cold rolled strip.
- 25. A process as recited in claim 1, wherein said aluminum alloy sheet has a yield strength of at least about 38 ksi.
- 26. A process as recited in claim 1 wherein said aluminum alloy has an ultimate tensile strength of at least about 46 ksi.
- 27. A process for the production of aluminum alloy sheet having a yield strength of at least about 40 ksi and a 45.degree. earing percentage of less than about 2 percent, comprising the steps of:
- a) casting an aluminum alloy melt composition in a continuous caster to form a cast strip, said aluminum alloy melt composition comprising;
- i) from about 2.0 to about 2.8 weight percent magnesium,
- ii) from about 0.9 to about 1.6 weight percent manganese,
- iii) from about 0.13 to about 0.20 weight percent silicon,
- iv) from about 0.25 to about 0.35 weight percent iron, and
- v) from about 0.20 to about 0.25 weight percent copper;
- b) hot rolling said cast strip to reduce the thickness of said cast strip by at least about 70 percent and form a hot rolled strip, wherein the cast strip exits said hot rolling step at a temperature less than about 650.degree. F.
- c) annealing said hot rolled strip at a temperature of from about 820.degree. F. to about 830.degree. F. to form an annealed strip;
- d) cold rolling said annealed strip to a first cold rolled gauge;
- e) cold rolling said cold rolled strip of a first cold rolled gauge to a second cold rolled gauge;
- f) annealing said cold rolled strip of a second cold rolled gauge at a temperature from about 650.degree. F. to about 700.degree. F. to form an annealed cold rolled strip; and
- g) cold rolling said annealed cold rolled strip to reduce the thickness of the annealed cold rolled strip by at least about 35 percent.
- 28. A process as recited in claim 27, wherein said casting step comprises continuously casting said aluminum alloy in a block caster.
- 29. A process for the production of an aluminum alloy container body, comprising the steps of:
- a) forming an aluminum alloy melt composition comprising from about 0.9 to about 1.6 percent manganese and from about 2.0 to about 2.8 percent magnesium;
- b) casting said aluminum alloy to form a cast strip;
- c) hot rolling said cast strip to reduce the thickness of said cast strip by at least about 70 percent and form a hot rolled strip wherein the exit temperature of the hot rolled strip is less than about 650.degree. F.;
- d) annealing said hot rolled strip to form an annealed strip;
- e) cold rolling said strip to reduce the thickness of said annealed strip and form an aluminum alloy sheet having a thickness of less than about 0.018 inches;
- f) removing a portion of said aluminum alloy sheet to form a blank;
- g) cupping said blank on a cupping mold; and
- h) drawing and ironing said blank to form an aluminum alloy container body.
- 30. A process as recited in claim 29, wherein said container body has a dome strength of at least about 90 psi.
RELATED APPLICATION
This application is a continuation-in-part of co-pending and commonly assigned U.S. patent application Ser. No. 07/315,408 filed Feb. 24, 1989, now U.S. Pat. No. 4,976,790.
US Referenced Citations (22)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
315408 |
Feb 1989 |
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