IP Library Granted Patent US 12,018,394
Granted Patent B1
US 12,018,394 · App. 18/300,105 · Granted Jun 25, 2024

Thin-walled high temperature alloy structures via multi-material additive manufacturing

Inventors: Tobias A. Schaedler (Oak Park, CA); John H. Martin (Ventura, CA)
Assignee: HRL LABORATORIES, LLC
C25D1/02B32B3/12B32B15/01B32B15/043C22C19/002C22C19/03C22C19/058C22F1/10C23C10/38C23C10/48C23C28/023C25D3/12C25D3/56F02K9/97
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Quick Facts
Patent No.
US 12,018,394
App. No.
18/300,105
Granted
Jun 25, 2024
Kind
B1
Abstract

A thin-walled metal part, and a method to fabricate such a part out of various alloys. A plurality of layers are formed, each of the layers being formed on a polymer template or on a previously formed layer. A homogenizing heat treatment is used to cause chemical elements in the layers to interdiffuse, to form a single continuous layer with a substantially uniform alloy composition.

Claims (19)

1. A thin-walled structure, comprising:

a single continuous layer including at least 1% by weight of a first metal chemical element and at least 1% by weight of a second metal chemical element different than the first metal chemical element,

the thin-walled structure having a shape of a rocket nozzle, and

the thin-walled structure having a thickness less than 500 micrometers.

2. The thin-walled structure of claim 1 , wherein the single continuous layer comprises a Monel alloy comprising nickel, copper, aluminum, and titanium.

3. The thin-walled structure of claim 2 , wherein the Monel alloy comprises approximately 30.6% to approximately 37.4% by weight of the copper, approximately 0.9% to approximately 1.1% by weight of the aluminum, and approximately 0.45% to approximately 0.55% by weight of the titanium.

4. The thin-walled structure of claim 3 , wherein the Monel alloy comprises approximately 34% by weight of the copper, approximately 1% by weight of the aluminum, and approximately 0.5% by weight of the titanium.

5. The thin-walled structure of claim 2 , wherein the single continuous layer has a thickness of approximately 75 microns.

6. The thin-walled structure of claim 1 , wherein the single continuous layer comprises a nickel superalloy comprising nickel, chromium, and aluminum.

7. The thin-walled structure of claim 6 , wherein the nickel superalloy further comprises platinum.

8. The thin-walled structure of claim 6 , wherein the nickel superalloy further comprises titanium.

9. The thin-walled structure of claim 8 , wherein the nickel superalloy comprises approximately 15.2% to approximately 22.8% by weight of the chromium, approximately 5.6% to approximately 8.4% by weight of the aluminum, and approximately 0.8% to approximately 1.2% by weight of the titanium.

10. The thin-walled structure of claim 8 , wherein the nickel superalloy comprises approximately 19% by weight of the chromium, approximately 7% by weight of the aluminum, and approximately 1% by weight of the titanium.

11. The thin-walled structure of claim 6 , wherein the single continuous layer has a thickness of approximately 100 microns.

12. The thin-walled structure of claim 6 , wherein the nickel superalloy further comprises at least one element selected from the group consisting of boron, yttrium, zirconium, hafnium, and carbon.

13. The thin-walled structure of claim 1 , wherein the single continuous layer comprises a refractory rhenium alloy comprising rhenium and cobalt.

14. The thin-walled structure of claim 13 , wherein the refractory rhenium alloy comprises approximately 20% by weight of the rhenium and approximately 40% by weight of the cobalt.

15. The thin-walled structure of claim 13 , wherein the refractory rhenium alloy further comprises aluminum and chromium.

16. The thin-walled structure of claim 1 , wherein each chemical element of the single continuous layer has a molar concentration varying by less than 10% within the single continuous layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2023
From: SCHAEDLER, TOBIAS A.; MARTIN, JOHN H.
To: HRL LABORATORIES, LLC
Reel/Frame 063329/0124 →
Continuity (6)
Continuation 17036479 · Sep 29, 2020
Division 15655817 · Jul 20, 2017
Continuation In Part 14970521 · Dec 15, 2015
Provisional Application 62460283 · Feb 17, 2017
Provisional Application 62261492 · Dec 1, 2015
Provisional Application 62092750 · Dec 16, 2014