IP Library › Granted Patent US 10,941,473
Granted Patent B2
US 10,941,473 · App. 15/757,163 · Granted Mar 9, 2021

Aluminum alloys

Inventors: David R. Snyder (Des Plaines, IL); James Saal (Chicago, IL); Jason T. Sebastian (Chicago, IL); Gregory B. Olson (Riverwoods, IL); Jiadong Gong (Evanston, IL)
Assignee: QUESTEK INNOVATIONS LLC
C22F1/053B22F10/20B33Y10/00B33Y70/00C22C21/02C22C21/06C22C21/10C22F1/047B22F2301/052B23K26/342C22C1/04
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Quick Facts
Patent No.
US 10,941,473
App. No.
15/757,163
Granted
Mar 9, 2021
Kind
B2
Abstract

Aluminum alloys are provided. The alloys can include one or more of zinc, magnesium, copper, zirconium, yttrium, erbium, ytterbium, scandium, silver, and the balance of aluminum and incidental elements and impurities. The alloys can be used for additive manufacturing of various articles, such as aircraft components.

Claims (80)

1. An aluminum alloy for additive manufacturing, the aluminum alloy consisting of, by weight,

about 3% to about 9% zinc,

3% to about 6% magnesium,

1% to about 2% copper,

0% to about 1% zirconium,

0% to about 2% yttrium,

0% to about 2% erbium,

0% to about 2% ytterbium,

0% to about 2% silver, and

0% to about 2% manganese,

the balance aluminum and incidental elements and impurities,

wherein the aluminum alloy can solidify with about 10% of non-equilibrium (soluble) eutectic constituents for improved resistance to hot tearing during additive manufacturing processing, and wherein the eutectic constituents can be dissolved during post-processing operations to restore a single-phase aluminum matrix, which can be free of coarse eutectic constituents that were used for hot tearing resistance.

2. The alloy of claim 1 , containing about 10% of soluble T-phase eutectic for hot tearing resistance during additive manufacturing processing, and greater than 6% η′-phase, precipitated at about 170° C., for high strength.

3. The alloy of claim 1 , containing about 10% of soluble T-phase eutectic for hot tearing resistance during additive manufacturing processing, and greater than 6% T-phase, precipitated at about 170° C., for high strength.

4. The alloy of claim 1 , containing above 4% η-phase, precipitated at a selected temperature for high strength.

5. An alloy, consisting of, by weight,

about 3% to about 9% zinc,

3% to about 6% magnesium,

1% to about 2% copper,

0% to about 1% zirconium,

0% to about 2% yttrium,

0% to about 2% erbium,

0% to about 2% ytterbium,

0% to about 2% silver, and

0% to about 2% manganese,

the balance aluminum and incidental elements and impurities.

6. The alloy of claim 5 , wherein zirconium is present at 0.1 weight %.

7. The alloy of claim 5 , consisting of, by weight, about 6.3% zinc, about 3.5% magnesium, about 1.1% copper, about 0.1% zirconium, and the balance of weight percent aluminum and incidental elements and impurities.

8. The alloy of claim 5 , consisting of, by weight, about 7.5% zinc, about 4.6% magnesium, about 1.5% copper, about 0.1% zirconium, and the balance of weight percent aluminum and incidental elements and impurities.

9. The alloy of claim 5 , consisting of, by weight, about 3% zinc, about 4.7% magnesium, about 1.3% copper, about 0.1% zirconium, and the balance of weight percent aluminum and incidental elements and impurities.

10. The alloy of claim 5 , consisting of, by weight, about 3.3% zinc, about 5.5% magnesium, about 1.4% copper, about 0.1% zirconium, and the balance of weight percent aluminum and incidental elements and impurities.

11. The alloy of claim 5 , wherein the disclosed alloys incorporate one or more Al 3 X precipitate phases, where X is Zr, Y, Er, Yb, or Sc.

12. An alloy, consisting of, by weight,

about 4% to about 9% zinc,

about 0.5% to 2% magnesium,

up to about 0.5% copper,

0.5% to about 1% zirconium,

and the balance of weight percent aluminum and incidental elements and impurities.

13. An alloy, consisting of, by weight,

about 3.1% magnesium,

about 2% silver,

about 0.5% copper,

about 0.1% zirconium,

about 0.4% ytterbium,

about 0.4% erbium,

and the balance of weight percent aluminum and incidental elements and impurities.

14. An alloy, consisting of, by weight,

about 3.1% magnesium,

about 2% silver,

about 0.5% copper,

about 0.1% zirconium,

about 0.4% yttrium,

and the balance of weight percent aluminum and incidental elements and impurities.

15. A method of preparing an article through additive manufacturing, comprising:

subjecting a powdered alloy composition to an additive manufacturing procedure and a subsequent post-processing operation, wherein the alloy comprises, by weight,

about 3% to about 9% zinc,

about 0.5% to about 2% magnesium,

less than about 0.5% copper,

0.5% to about 2% zirconium,

1% to about 2% erbium,

less than 0.01% scandium, and

0% to about 2% manganese,

the balance aluminum and incidental elements and impurities.

16. The method of claim 15 , wherein the alloy can solidify with about 10% of non-equilibrium (soluble) eutectic constituents for improved resistance to hot tearing during additive manufacturing processing.

17. The method of claim 16 , wherein the eutectic constituents can be dissolved during post-processing operations to restore a single-phase aluminum matrix, which can be free of coarse eutectic constituents that were used for hot tearing resistance.

18. The method of claim 15 , wherein the post-processing operation comprises a thermal treatment.

19. An alloy, comprising, by weight,

about 3% to about 9% zinc;

about 0.5% to about 2% magnesium;

0.5% to about 2% zirconium;

1% to about 2% erbium;

less than about 0.5% copper;

less than 0.01% scandium;

and the balance of weight percent comprising aluminum and incidental elements and impurities.

20. The alloy according to claim 19 , comprising, by weight, 0% copper.

21. The alloy according to claim 20 , comprising, by weight,

about 6% to about 8% zinc;

1% to 2% magnesium; and

0.5% to 1.5% zirconium.

22. A manufactured article comprising an alloy according to claim 19 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2018
From: SNYDER, DAVID R.; SAAL, JAMES; SEBASTIAN, JASON T.; OLSON, GREGORY B.; GONG, JIADONG
To: QUESTEK INNOVATIONS LLC
Reel/Frame 045902/0963 →
Continuity (2)
Provisional Application 62214056 · Sep 3, 2015
Related Publication 20180245190A1 · Aug 30, 2018
Cited By (4)
US 12,227,853 US 12,378,647 US 12,569,942 US 12,649,963