IP Library Granted Patent US 11,047,024
Granted Patent B2
US 11,047,024 · App. 15/949,436 · Granted Jun 29, 2021

High-strength aluminum alloy coatings, deformation layers and methods of making the same

Inventors: Xinghang Zhang (West Lafayette, IN); Qiang Li (West Lafayette, IN); Haiyan Wang (West Lafayette, IN); Sichuang Xue (West Lafayette, IN); Yifan Zhang (West Lafayette, IN)
Assignee: Purdue Research Foundation
C22C21/00B32B15/016C22F1/04B32B2307/536Y10T428/12764
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Quick Facts
Patent No.
US 11,047,024
App. No.
15/949,436
Granted
Jun 29, 2021
Kind
B2
Abstract

A high-strength aluminum alloy coating. The coating includes aluminum, 9R phase, fine grains, nanotwins, stacking faults, and a solute capable of stabilizing the 9R phase, the fine grains, and the stacking faults. A method of making a high-strength aluminum alloy coating on a substrate. The method includes, depositing the constituents of an aluminum alloy on a substrate such that the deposit forms a high-strength aluminum alloy coating containing 9R phase, fine grains, nanotwins, and stacking faults. A high-strength deformation layer in and on a casting of an aluminum alloy containing 9R phase, fine grains, nanotwins, stacking faults, and a solute capable of stabilizing the PR phase, the fine grains, and the stacking faults. A method of making a high-strength deformation layer in and on a casting of an aluminum alloy by deforming the alloy such that deformation layer contains 9R phase, fine grains, nanotwins, and stacking faults.

Claims (26)

1. A high-strength aluminum alloy coating comprising:

aluminum;

9R phase;

grains in the size range of 2 nm-10,000 nm;

nanotwins; and

a solute capable of stabilizing the 9R phase.

2. The high-strength aluminum alloy coating of claim 1 , wherein the grains in the size range of 2 nm-10,000 nm are equiaxed or columnar.

3. The high-strength aluminum alloy coating of claim 1 , wherein the coating has thickness in the range of 0.1-200 micrometers.

4. The high-strength aluminum alloy coating of claim 2 , wherein the grains are in the size range of 2 nm-120 nm.

5. The high-strength aluminum alloy coating of claim 1 , wherein inter-twin spacing of the nanotwins is in the range 1 nm-120 nm.

6. The high-strength aluminum alloy coating of claim 1 , wherein the solute is one of iron, cobalt, titanium, magnesium, and chromium.

7. The high-strength aluminum alloy coating of claim 6 , wherein the solute is iron and the iron content is in the range of 1-10 atomic percent.

8. The high-strength aluminum coating of claim 1 , wherein flow stress of the coating is in the range of 0.7-2.0 GPa and deformability of the coating is in the range of 5-50%.

9. The high-strength aluminum coating of claim 1 , wherein the hardness of the coating is in the range of 2.5-5.5 GPa and deformability of the coating is in the range of 5-50%.

10. A high-strength aluminum alloy coating comprising:

aluminum;

9R phase;

grains in the size range of 2 nm-10,000 nm;

nanotwins; and

a solute capable of increasing the ratio of unstable stacking fault energy and stable stacking fault energy to make the 9R phase stable.

11. The high-strength aluminum alloy coating of claim 10 , wherein the grains are equiaxed or columnar in the size range of 2 nm-10,000 nm.

12. The high-strength aluminum alloy coating of claim 10 , wherein the coating has thickness in the range of 0.1-200 micrometers.

13. The high-strength aluminum alloy coating of claim 11 , wherein the grains are in the size range of 2 nm-120 nm.

14. The high-strength aluminum alloy coating of claim 10 , wherein inter-twin spacing of the nanotwins is in the range 1 nm-120 nm.

15. The high-strength aluminum alloy coating of claim 10 , wherein the solute is one of iron, cobalt, titanium, magnesium, and chromium.

16. The high-strength aluminum alloy coating of claim 15 , wherein the solute is iron and the iron content is in the range of 1-10 atomic percent.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2021
From: ZHANG, XINGHANG; LI, QIANG; WANG, HAIYAN; XUE, SICHUANG; ZHANG, YIFAN
To: PURDUE RESEARCH FOUNDATION
Reel/Frame 056166/0397 →
CONFIRMATORY LICENSE Recorded Oct 23, 2020
From: PURDUE UNIVERSITY
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 054193/0371 →
Continuity (2)
Provisional Application 62484771 · Apr 12, 2017
Related Publication 20180298472A1 · Oct 18, 2018