Claims
        
                - 1. An aluminum alloy composition comprising: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; and aluminum, wherein said composition has a tensile strength of at least 650 MPa with an elongation of at least 7% at room temperature.
- 2. A composition as claimed in claim 1, wherein said composition further comprises between about 0.00% by wt. and about 0.05% by wt. of titanium.
- 3. A composition as claimed in claim 1, wherein said composition further comprises between about 0.00% by wt. and about 0.25% by wt. of chromium.
- 4. A composition as claimed in claim 1, wherein said composition further comprises between about 0.00% by wt. and about 0.05% by wt. of vanadium.
- 5. A composition as claimed in claim 1, wherein said composition further comprises between about 0.00% by wt. and about 0.25% by wt. of hafnium.
- 6. A composition as claimed in claim 1, wherein said composition further comprises between about 0.00% by wt. and about 0.20% by wt. of cerium.
- 7. A composition as claimed in claim 1, wherein said composition further comprises between about 0.00% by wt. and about 0.20% by wt. of nickel.
- 8. A composition as claimed in claim 1, wherein said composition further comprises between about 0.00% by wt. and about 0.20% by wt. of silver.
- 9. An aluminum alloy composition comprising: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; and aluminum, wherein said aluminum alloy has a tensile strength of at least 790 MPa with an elongation of at least 6% at a cryogenic temperature.
- 10. A composition as claimed in claim 9, wherein said cryogenic temperature is about the temperature of liquid nitrogen.
- 11. A composition as claimed in claim 9, wherein said cryogenic temperature is about −196° C.
- 12. A composition as claimed in claim 9, wherein said composition further comprises between about 0.00% by wt. and about 0.05% by wt. of titanium.
- 13. A composition as claimed in claim 9, wherein said composition further comprises between about 0.00% by wt. and about 0.25% by wt. of chromium.
- 14. A composition as claimed in claim 9, wherein said composition further comprises between about 0.00% by wt. and about 0.05% by wt. of vanadium.
- 15. A composition as claimed in claim 9, wherein said composition further comprises between about 0.00% by wt. and about 0.25% by wt. of hafnium.
- 16. A composition as claimed in claim 9, wherein said composition further comprises between about 0.00% by wt. and about 0.20% by wt. of cerium.
- 17. A composition as claimed in claim 9, wherein said composition further comprises between about 0.00% by wt. and about 0.20% by wt. of nickel.
- 18. A composition as claimed in claim 9, wherein said composition further comprises between about 0.00% by wt. and about 0.20% by wt. of silver.
- 19. An aluminum alloy composition comprising: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum.
- 20. A composition as claimed in claim 19, wherein said aluminum alloy composition has a tensile strength of at least 650 MPa with an elongation of at least 7% at room temperature.
- 21. A composition as claimed in claim 19, wherein said aluminum alloy composition has a tensile strength of at least 790 MPa with an elongation of at least 6% at a cryogenic temperature.
- 22. A composition as claimed in claim 19, wherein said aluminum alloy composition has a tensile strength of at least 900 MPa at room temperature.
- 23. A composition as claimed in claim 19, wherein said aluminum alloy composition has a tensile strength of at least 900 MPa at cryogenic temperature.
- 24. A composition as claimed in claim 23, wherein said cryogenic temperature is about the temperature of liquid nitrogen.
- 25. A composition as claimed in claim 23, wherein said cryogenic temperature is about −196° C.
- 26. A composition as claimed in claim 19, wherein said composition comprises about 7.14% by wt. of zinc; 
about 2.30% by wt. of magnesium; about 1.61% by wt. of copper; about 0.27% by wt. of manganese; about 0.17% by wt. of zirconium; about 0.12% by wt. of iron; about 0.09% by wt. of silicon; about 0.05% by wt. of hafnium; and aluminum, wherein said composition has a tensile strength between about 810 MPa to about 905 MPa and an elongation between about 6.5% to about 11.0% at cryogenic temperatures.
- 27. A composition as claimed in claim 19, wherein said composition comprises about 7.14% by wt. of zinc; 
about 2.30% by wt. of magnesium; about 1.61% by wt. of copper; about 0.27% by wt. of manganese; about 0.17% by wt. of zirconium; about 0.12% by wt. of iron; about 0.09% by wt. of silicon; about 0.05% by wt. of hafnium; and aluminum, wherein said composition has a tensile strength between about 677 MPa to about 697 MPa and has an elongation between about 10% to about 14% at room temperature.
- 28. A composition as claimed in claim 19, wherein said composition comprises about 7.17% by wt. of zinc; 
about 2.2% by wt. of magnesium; about 1.58% by wt. of copper; about 0.30 by wt. of manganese; about 0.18% by wt. of zirconium; about 0.18% by wt. of scandium; about 0.13% by wt. of iron; about 0.088% by wt. of silicon; and aluminum, wherein said composition has a tensile strength between about 785 MPa to about 946 MPa and has an elongation between about 6.0% to about 11.5% at cryogenic temperatures.
- 29. A composition as claimed in claim 19, wherein said composition comprises about 7.17% by wt. of zinc; 
about 2.2% by wt. of magnesium; about 1.58% by wt. of copper; about 0.30 by wt. of manganese; about 0.18% by wt. of zirconium; about 0.18% by wt. of scandium; about 0.13% by wt. of iron; about 0.088% by wt. of silicon; and aluminum, wherein said composition has a tensile strength between about 690 MPa to about 710 MPa and an elongation between about 10% to about 17% at room temperature.
- 30. A composition as claimed in claim 19, wherein said composition comprises about 7.11% by wt. of zinc; 
about 2.14% by wt. magnesium, about 1.56% by wt. of copper; about 0.25% by wt. of manganese; about 0.17% by wt. of zirconium; about 0.38% by wt. of scandium; about 0.094% by wt. of iron; about 0.088% by wt. of silicon; and aluminum, wherein said composition has a tensile strength between about 760 MPa and about 926 MPa and an elongation between about 6.0% to about 11.5% at cryogenic temperatures.
- 31. A composition as claimed in claim 19, wherein said composition comprises about 7.11% by wt. of zinc; 
about 2.14% by wt. magnesium, about 1.56% by wt. of copper; about 0.25% by wt. of manganese; about 0.17% by wt. of zirconium; about 0.38% by wt. of scandium; about 0.094% by wt. of iron; about 0.088% by wt. of silicon; and aluminum, wherein said composition has a tensile strength between about 670 MPa to about 690 MPa and an elongation between about 8% to about 12% at room temperature.
- 32. A composition as claimed in claim 19, wherein said composition comprises about 7.05% by wt. of zinc; 
about 2.35% by wt. of magnesium; about 1.55% by wt. of copper; about 0.27% by wt. of manganese; about 0.14% by wt. of zirconium; about 0.49% by wt. of scandium; about 0.095% by wt. of iron; about 0.082% by wt. of silicon; and aluminum, wherein said composition has a tensile strength between about 847 MPa to about 907 MPa and an elongation between about 6.0% to about 7.0% at cryogenic temperatures.
- 33. A composition as claimed in claim 19, wherein said composition comprises: 
about 10.3% by wt. of zinc; about 2.7% by wt. of magnesium; about 1.3% by wt. of copper; about 0.38% by wt. of manganese; about 0.15% by wt. of zirconium; about 0.49% by wt. of scandium; about 0.08% by wt. of silicon; about 0.12% by wt. of iron; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength of about 780 MPa with an elongation of about 7% at room temperatures.
- 34. A composition as claimed in claim 19, wherein said composition comprises: 
about 12.0 by wt. % of zinc; about 3.3 by wt. % of magnesium; about 1.2 by wt. % of copper; about 0.38 by wt. % of manganese; about 0.13 by wt. % of zirconium; about 0.49 by wt. % of scandium; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength between about 805 MPa to about 1068 MPa with an elongation of about 8.5% at room temperature.
- 35. A composition as claimed in claim 19, wherein said composition comprises: 
between about 8.0% by wt. to about 10.0% by wt. zinc; between about 2.5% by wt. to about 3.5% by wt. magnesium; between about 2.0% by wt. to about 3.0% by wt. copper; between about 0.05% by wt. to about 0.15% by wt. chromium; between about 0.15% by wt. to about 0.20% by wt. cerium; between about 0.05% by wt. to about 0.20% by wt. nickel; between about 0.05% by wt. to about 0.1% by wt. vanadium; between about 0.1% by wt. to about 0.2% by wt. zirconium; between about 0.1% by wt. to about 0.4% by wt. scandium; between about 0.05% by wt. to about 0.15% by wt. iron; between about 0.05% by wt. to about 0.15% by wt. silicon; and aluminum.
- 36. A composition as claimed in claim 19, wherein said composition comprises: 
about 9.0% by wt. zinc; about 3.0% by wt. magnesium; about 2.6% by wt. copper; about 0.1% by wt. chromium; about 0.2% by wt. cerium; about 0.20% by wt. nickel; about 0.1% by wt. vanadium; about 0.2% by wt. zirconium; about 0.2% by wt. scandium; about 0.12% by wt. iron; about 0.09% by wt. silicon; and aluminum, wherein said composition exhibits a tensile strength of about 780 MPa with elongation of about 14% at room temperature.
- 37. A composition as claimed in claim 19, wherein said composition comprises: 
between about 8.0% by wt. to about 10.0% by wt. zinc; between about 2.0% by wt. to about 3.0% by wt. magnesium; between about 2.0% by wt. to about 3.0% by wt. copper; between about 0.15% by wt. to about 0.30% by wt. manganese; between about 0.05% by wt. to about 0.20% by wt. hafnium; between about 0.05% by wt. to about 0.15% by wt. zirconium; between about 0.1% by wt. to about 0.5% by wt. scandium; between about 0.05% by wt. to about 0.15% by wt. chromium; between about 0.05% by wt. to about 0.20% by wt. iron; between about 0.05% by wt. to about 0.15% by wt. silicon; between about 0.00% by wt. to about 0.05% by wt. nickel; between about 0.00% by wt. to about 0.05% by wt. titanium; between about 0.00% by wt. to about 0.05% by wt. vanadium; and aluminum.
- 38. A composition as claimed in claim 19, wherein said composition comprises about 8.9% by wt. zinc; 
about 2.7% by wt. magnesium; about 2.4% by wt. copper; about 0.2% by wt. manganese; about 0.1% by wt. hafnium; about 0.1% by wt. zirconium; about 0.46% by wt. scandium; about 0.05% by wt. chromium; about 0.16% by wt. iron; about 0.07% by wt. silicon; less than 0.05% by wt. nickel; less than 0.05% by wt. titanium; less than 0.05% by wt. vanadium; and aluminum, wherein said composition exhibits Vickers hardness of about 2100 MPa, tensile strength of about 810 MPa, and elongation of about 14% at room temperature.
- 39. A composition as claimed in claim 19, wherein said composition comprises about 8.9% by wt. zinc; 
about 2.7% by wt. magnesium; about 2.4% by wt. copper; about 0.2% by wt. manganese; about 0.1% by wt. hafnium; about 0.1% by wt. zirconium; about 0.46% by wt. scandium; about 0.05% by wt. chromium; about 0.16% by wt. iron; about 0.07% by wt. silicon; less than 0.05% by wt. nickel; less than 0.05% by wt. titanium; less than 0.05% by wt. vanadium; and aluminum, wherein said composition exhibits a tensile strength of about 1010 MPa at cryogenic temperature.
- 40. A composition as claimed in claim 19, wherein said composition comprises: 
between about 6.5% by wt. to about 8.0% by wt. zinc; between about 2.0% by wt. to about 2.35% by wt. magnesium; between about 1.50% by wt. to about 1.65% by wt. copper; between about 0.15% by wt. to about 0.3% by wt. manganese; between about 0.10% by wt. to about 0.20% by wt. zirconium; between about 0.00% by wt. to about 0.1% by wt. hafnium; between about 0.085% by wt. to about 0.10% by wt. iron; between about 0.08% by wt. to about 0.09% by wt. silicon; and aluminum.
- 41. A composition as claimed in claim 19, wherein said composition comprises: 
between about 10.0% by wt. to about 12.0% by wt. zinc; between about 2.5% by wt. to about 3.5% by wt. magnesium; between about 1.0% by wt. to about 1.5% by wt. copper; between about 0.35% by wt. to about 0.40% by wt. manganese; between about 0.12% by wt. to about 0.15% by wt. zirconium; between about 0.45% by wt. to about 0.5% by wt. scandium; between about 0.07% by wt. to about 0.15% by wt. silicon; between about 0.07% by wt. to about 0.15% by wt. iron; and aluminum.
- 42. A composition as claimed in claim 19, wherein said composition comprises: 
between about 8.0% by wt. to about 10.0% by wt. zinc; between about 2.0% by wt. to about 3.0% by wt. magnesium; between about 2.0% by wt. to about 3.0% by wt. copper; between about 0.15% by wt. to about 0.30% by wt. manganese; between about 0.05% by wt. to about 0.20% by wt. silver; between about 0.05% by wt. to about 0.15% by wt. zirconium; between about 0.1% by wt. to about 0.5% by wt. scandium; between about 0.05% by wt. to about 0.20% by wt. iron; between about 0.05% by wt. to about 0.15% by wt. silicon; and aluminum.
- 43. The composition as claimed in claim 19, wherein said composition comprises about 8.5% by wt. zinc; 
about 2.6% by wt. magnesium; about 2.2% by wt. copper; about 0.2% by wt. manganese; about 0.1% by wt. silver; about 0.1% by wt. zirconium; about 0.4% by wt. scandium; about 0.15% by wt. iron; about 0.10% by wt. silicon; and aluminum, wherein said composition exhibits Vickers hardness of about 2160 MPa, tensile strength of about 790 MPa, and elongation of about 12% at room temperature.
- 44. The composition as claimed in claim 19, wherein said composition comprises about 8.5% by wt. zinc; 
about 2.6% by wt. magnesium; about 2.2% by wt. copper; about 0.2% by wt. manganese; about 0.1% by wt. silver; about 0.1% by wt. zirconium; about 0.4% by wt. scandium; about 0.15% by wt. iron; about 0.10% by wt. silicon; and aluminum, wherein said composition exhibits a tensile strength of about 985 MPa and an elongation of about 6.5%.
- 45. A cryogenic structure comprising a housing and fluid handling components, wherein said fluid handling components comprise an aluminum alloy composition configured to maintain structural integrity at cryogenic temperatures, wherein said composition comprises: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum.
- 46. A cryogenic structure as claimed in claim 45, wherein said cryogenic structure comprises a pump.
- 47. A cryogenic structure as claimed in claim 45, wherein said fluid handling component comprises an impeller.
- 48. A cryogenic structure as claimed in claim 45, wherein said fluid handling component comprises an inducer.
- 49. A cryogenic structure comprising an aluminum alloy composition, wherein said aluminum alloy composition comprises: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength of at least 650 MPa with an elongation of at least 7% at a room temperature.
- 50. A cryogenic structure comprising an aluminum alloy composition, wherein said aluminum alloy composition comprises: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength of at least 790 MPa with an elongation of at least 6% at a cryogenic temperature.
- 51. An aerospace structure comprising an aluminum alloy composition, wherein said aluminum alloy composition comprises: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength of at least 650 MPa with an elongation of at least 7% at a room temperature.
- 52. An aerospace structure comprising an aluminum alloy composition, wherein said aluminum alloy composition comprises: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength of at least 790 MPa with an elongation of at least 6% at a cryogenic temperature.
- 53. A ground transportation structure comprising an aluminum alloy composition, wherein said aluminum alloy composition comprises: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength of at least 650 MPa with an elongation of at least 7% at a room temperature.
- 54. A ground transportation structure comprising an aluminum alloy composition, wherein said aluminum alloy composition comprises: 
between about 6.0% by wt. and about 12.0% by wt. of zinc; between about 2.0% by wt. and about 3.5% by wt. of magnesium; between about 0.01% by wt. and about 0.5% by wt. of scandium; between about 0.05% by wt. and about 0.20% by wt. of zirconium; between about 0.5% by wt. and about 3.0% by wt. of copper; between about 0.10% by wt. and about 0.45% by wt. of manganese; between about 0.02% by wt. and about 0.35% by wt. of iron; between about 0.02% by wt. and about 0.20% by wt. of silicon; between about 0.00% by wt. and about 0.05% by wt. of titanium; between about 0.00% by wt. and about 0.25% by wt. of chromium; between about 0.00% by wt. and about 0.05% by wt. of vanadium; between about 0.00% by wt. and about 0.25% by wt. of hafnium; between about 0.00% by wt. and about 0.20% by wt. of cerium; between about 0.00% by wt. and about 0.20% by wt. of nickel; between about 0.00% by wt. and about 0.20% by wt. of silver; and aluminum, wherein said aluminum alloy composition exhibits a tensile strength of at least 790 MPA with an elongation of at least 6% at a cryogenic temperature.
CROSS-REFERENCE TO RELATED APPLICATIONS
        [0001] This application is related to U.S. application Ser. No.______/______, filed Nov. 8, 2002, Attorney Docket No. UNI 0047 PA.
                        STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
        [0002] This invention was made with government support under Contract No. F04611-01-C0030 awarded by the Department of the Air Force and P-061 awarded by the European Office Aerospace Research and Development, a branch of the United States Air Force. The Government has certain rights in this invention.