Claims
- 1. A superplastically formed article of manufacture comprising a superplastically formed aluminum alloy comprising more than 50% aluminum and including some amount of up to 10% each of one or more elements from the group of yttrium, gadolinium, holminum, dysprosium, erbium, ytterbium, lutetium, and terbium, the grand total of said elements not exceeding 20%.
- 2. The article according to claim 1 wherein said aluminum alloy contains one or more of the following elements: 0.1 to 20% Mg, 0.1 to 4% Si, 0.1 to 10% Ag, 0.1 to 10% Cu, 0.1 to 5% Ge, and 0.1 to 7% Li and 0.1 to 49% Zn.
- 3. The article according to claim 1 wherein said aluminum alloy contains 0.1 to 5% Li.
- 4. The article according to claim 1 where in said alloy contains 0.01 to 5% Sc.
- 5. The article according to claim 1 wherein said aluminum alloy contains 0.01 to 1% Sc.
- 6. The article according to claim 1 wherein said alloy contains 0.01 to 1% Sc and 0.01 to 3% Gd.
- 7. The article according to claim 1 wherein said alloy contains 0.01 to 1% Sc and 0.01 to 2.5% Y.
- 8. The article according to claim 1 wherein said alloy contains 0.01 to 1% Sc and 0.01 to 3.5% Ho.
- 9. The article according to claim 1 wherein said article is substantially in the unrecrystallized condition.
- 10. The article according to claim 1 which contains two or more elements from said group.
- 11. A superplastically formed article of manufacture comprising a superplastically formed metal comprising aluminum and one or more phases that comprise an Ll.sub.2 crystallographic structure having a lattice parameter misfit with aluminum's lattice parameter of not more than 10% at superplastic forming temperature and contains one or more elements of the group of scandium, yttrium, gadolinium, holmium, dysprosium, erbium, ytterbium, lutetium, and terbium, said elements being present up to 10% each, up to 20% total, if scandium is present one or more of the other elements from said group also being present.
- 12. The article according to claim 11 that contains more than 50% aluminum.
- 13. The article according to claim 11 that contains more than 50% aluminum and contains up to 20% Mg, up to 5% Si, up to 10% Ag, up to 10% Cu, up to 5% Ge, up to 7% Li, up to 49% Zn and up to 0.3% Zr.
- 14. The article according to claim 11 wherein said article is substantially in the unrecrystallized condition.
- 15. A superplastically formed article of manufacture comprising a superplastically formed alloy containing (a) aluminum, (b) 0.1 to 1% scandium; (c) one or more of 0.01 to 3% Gd, 0.01 to 2.5% Y and 0.01 to 3.5% Ho; and (d) one or more from the group of 0.1 to 20% Mg, 0.1 to 5% Si, 0.1 to 10% Ag, 0.1 to 10% Cu, 0.1 to 5% Ge, 0.1 to 7% Li, 0.1 to 49% Zn and up to 0.3% Zr.
- 16. The article according to claim 15 wherein said alloy contains 0.1 to 5% Li.
- 17. The superplastically formed article of claim 15 which contains 0.01 to 3% gadolinium.
- 18. The superplastically formed article of claim 15 which contains 0.01 to 2.5% yttrium.
- 19. The superplastically formed article of claim 15 which contains 0.01 to 3.5% holmium.
- 20. The superplastically formed article of claim 15 which contains 0.01 to 5% lithium.
- 21. A superplastically formed article of manufacture comprising a superplastically formed alloy containing aluminum and up to 10% each of one or more of the elements from the group of scandium, yttrium, gadolinium, holmium, dysposium, erbium, ytterbium, lutetium, and terbium, if Sc is present one or more of the other elements from said group also being present, the grand total of said elements not exceeding 20% and additionally containing one or more of the following elements: 0.1 to 20% Mg, 0.1 to 5% Si, 0.1 to 10% Ag, 0.1 to 10% Cu, 0.1 to 5% Ge, 0.1 to 7% Li, 0.1 to 49% Zn and up to 0.3% Zr.
- 22. In a method of superplastic forming comprising superplastically forming aluminous metal stock at superplastic forming temperature, the improvement comprising providing said aluminous stock comprising aluminum and including some amount of up to 10% each of one or more of the elements from the group of yttrium, gadolinium, holmium, dysprosium, erbium, ytterbium, lutetium, and terbium, the grand total of said elements not exceeding 20%.
- 23. In the method according to claim 22 wherein said aluminous stock contains 0.05 to 5% of one or more of the group of yttrium, gadolinium, holmium, dysprosium, erbium, ytterbium, lutetium, and terbium.
- 24. In the method according to claim 1 wherein said aluminous stock contains 0.01 to 10% scandium.
- 25. In the method according to claim 24 wherein said aluminous stock contains one or more of the following elements: up to 20% Mg, up to 2% Si, up to 10% Ag, up to 10% Cu, up to 5% Ge, up to 7% Li, up to 49% Zn and up to 0.3% Zr.
- 26. In the method according to claim 22 wherein said aluminous stock contains one or more of the following elements: up to 20% Mg, up to 5% Si, up to 10% Ag, up to 10% Cu, up to 5% Ge, up to 7% Li, up to 49% Zn and up to 0.3% Zr.
- 27. In the method according to claim 22 wherein said aluminous stock contains 0.01 to 1% Sc.
- 28. In the method according to claim 22 wherein said aluminous stock contains 0.01 to 1% Sc and 0.01 to 3% Gd.
- 29. In the method according to claim 22 wherein said aluminous stock contains 0.01 to 1% Sc and 0.01 to 2.5% Y.
- 30. In the method according to claim 22 wherein said aluminous stock contains 0.01 to 1% Sc and 0.01 to 3.5% Ho.
- 31. In the method according to claim 22 wherein said aluminous stock contains 0.01 to 11% Sc and one or more of the elements up to 20% Mg, up to 5% Si, up to 10% Ag, up to 10% Cu, up to 5% Ge, up to 7% Li, up to 49% Zn and up to 0.3% Zr.
- 32. In the method according to claim 22 wherein said aluminous stock contains 50% or less aluminum.
- 33. In the method according to claim 22 wherein said stock is substantially unrecrystallized.
- 34. In the method according to claim 22 wherein two or more elements from said group are contained in said aluminous metal stock.
- 35. In a method of superplastic forming comprising superplastically forming aluminum alloy stock at superplastic forming temperature, the improvement comprising providing said aluminum alloy stock comprising more than 50% aluminum and including 0.01 to 10% each of one or more of the elements from the group of scandium, yttrium, gadolinium, holmium, dysprosium, erbium, ytterbium, lutetium, and terbium, the grand total of said elements not exceeding 20%, if scandium is present one or more of the other elements from said group also being present.
- 36. In the method according to claim 35 wherein said aluminum alloy contains 0.05 to 5% each of one or more of said elements of said group and the grand total thereof does not exceed 15%.
- 37. In the method according to claim 35 wherein said aluminum alloy contains one or more of the following elements: 0.1 to 10% Mg, 0.1 to 2% Si, 0.1 to 10% Ag, 0.1 to 5% Cu, 0.1 to 5% Ge, and 0.1 to 5% Li.
- 38. In the method according to claim 35 wherein said aluminous stock contains one or more of the following elements: up to 20% Mg, up to 5% Si, up to 10% Ag, up to 10% Cu, up to 5% Ge, up to 7% Li, up to 49% Zn and up to 0.3% Zr.
- 39. In the method according to claim 35 wherein said aluminum alloy contains 0.01 to 1% Sc.
- 40. In the method according to claim 35 wherein said aluminum alloy contains 0.01 to 1% Sc and 0.01 to 3% Gd.
- 41. In the method according to claim 35 wherein said aluminum alloy contains 0.01 to 1% Sc and 0.01 to 2.5% Y.
- 42. In the method according to claim 35 wherein said aluminum alloy contains 0.01 to 1% Sc and 0.01 to 3.5% Ho.
- 43. In the method according to claim 35 wherein said stock contains 0.01 to 10% Sc and one or more of the elements up to 20% Mg, up to 5% Si, up to 10% Ag, up to 10% Cu, up to 5% Ge, up to 7% Li, up to 49% Zn and up to 0.3% Zr.
- 44. In the method according to claim 35 wherein said stock is substantially unrecrystallized.
- 45. In a method of superplastic forming comprising superplastically forming aluminous stock at superplastic forming temperature, the improvement comprising providing said aluminous stock comprising aluminum and at least one phase that comprises an Ll.sub.2 crystallographic structure having a lattice parameter misfit with aluminum's lattice parameter of not more than 10% at superplastic forming temperature and contains one or more elements of the group of scandium, yttrium, gadolinium, holmium, dysprosium, erbium, ytterbium, lutetium, and terbium, said elements being present up to 10% each, up to 20% total, if scandium is present one or more of the other elements from said group also being present.
- 46. In the method according to claim 45 wherein the said misfit does not exceed 7%.
- 47. In the method according to claim 45 wherein the said misfit does not exceed 5%.
- 48. In the method according to claim 45 wherein at least one said phase includes aluminum.
- 49. In the method according to claim 45 wherein said stock is substantially unrecrystallized.
- 50. In a method of superplastic forming comprising superplastically forming aluminous metal stock at superplastic forming temperature, the improvement comprising providing said aluminous stock comprising aluminum and including (a) 0.1 to 5% each of one or more of the elements from the group of scandium, yttrium, gadolinium, holmium, dysprosium, erbium, ytterbium, lutetium, and terbium, the grand total of said elements not exceeding 20%, if scandium is present one or more of the other elements from said group also being present and (b) one or more from the second group of 0.1 to 20% Mg, 0.1 to 5% Si, 0.1 to 10% Ag, 0.1 to 10% Cu, 0.1 to 5% Ge, 0.1 to 7% Li, 0.1 to 49% Zn and up to 0.3% Zr.
- 51. In the method according to claim 50 wherein said aluminous stock contains 0.01 to 1% scandium.
- 52. In the method according to claim 51 wherein said stock is substantially unrecrystallized.
- 53. In the method according to claim 50 wherein two or more elements from said first group are contained in said aluminous metal stock.
- 54. In the method according to claim 50 wherein said stock is substantially unrecrystallized.
- 55. In a method of superplastic forming comprising superplastically forming aluminum alloy stock at superplastic forming temperature, the improvement comprising providing said aluminum alloy stock comprising more than 50% aluminum and including (a) 0.1 to 5% each of one or more of the elements from the first group of scandium, yttrium, gadolinium, holmium, dysprosium, erbium, ytterbium, lutetium, and terbium, the grand total of said elements not exceeding 20% if scandium is present one or more of the other elements from first said group also being present, and (b) one or more from the second group of 0.1 to 20% Mg, 0.1 to 5% Si, 0.1 to 10% Ag, 0.1 to 10% Cu, 0.1 to 5% Ge, 0.1 to 7% Li, 0.1 to 49% Zn and up to 0.3% Zr.
- 56. The article according to claim 55 wherein said alloy contains 0.1 to 5% Li.
- 57. The superplastically formed article of claim 55 which contains 0.01 to 3% gadolinium.
- 58. The superplastically formed article of claim 55 which contains 0.01 to 2.5% yttrium.
- 59. The superplastically formed article of claim 55 which contains 0.01 to 3.5% holmium.
- 60. In the method according to claim 55 wherein said stock is substantially unrecrystallized.
- 61. In a method of superplastic forming comprising superplastically forming aluminous metal stock at superplastic forming temperature, the improvement comprising providing said aluminous stock comprising (a) aluminum; (b) 0.01 to 1% scandium; (c) one or more of the elements from the group of 0.01 to 2.5% yttrium, 0.01 to 3% gadolinium and 0.01 to 3.5% holmium; and (d) one or more of the following elements: 0.1 to 20% Mg, 0.1 to 5% Si, 0.1 to 10% Ag, 0.1 to 10% Cu, 0.1 to 5% Ge, 0.1 to 7% Li, 0.1 to 49% Zn and up to 0.3% Zr.
- 62. In the method according to claim 61 wherein said aluminous stock contains 0.01 to 2.5% yttrium.
- 63. In the method according to claim 61 wherein said aluminous stock contains 0.01 to 3% gadolinium.
- 64. In the method according to claim 61 wherein said aluminous stock contains 0.01 to 3.5% holmium.
- 65. In the method according to claim 61 wherein said aluminous stock contains 0.01 to 5% lithium.
- 66. In the method according to claim 61 wherein said stock is substantially unrecrystallized.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. application Ser. No. 841,648, filed Mar. 20, 1986 now U.S. Pat. No. 4,689,090.
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
841648 |
Mar 1986 |
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