IP Library Granted Patent US 9,404,372
Granted Patent B2
US 9,404,372 · App. 13/694,124 · Granted Aug 2, 2016

Pt-Al-Hf/Zr coating and method

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,404,372
App. No.
13/694,124
Granted
Aug 2, 2016
Kind
B2
Abstract

A Pt—Al—Hf/Zr aluminide coating that can be used as a bond coat for TBC and improve TBC spallation life in service at elevated temperatures is provided. The aluminide coating can include a metastable ternary or higher X—Pt/Pd—Ni phase where the phase and other elements in the alloy system are present in a NiAl β phase of the coating. The metastable phase can be present and observable in the as-deposited condition of the bond coating; e.g. in an as-CVD deposited condition of the bond coating.

Claims (17)

1. An aluminide diffusion coating on a substrate wherein the coating includes a non-aluminide X—Pt/Pd—Ni phase, wherein the phase comprises X, which is at least one of Hf and Zr, Pt/Pd, which is at least one of Pt and Pd, and Ni, and wherein the X—Pt/Pd—Ni phase is present as a layer between an outer β (Ni,Pt/Pd)A1 phase region and an inner diffusion zone of the coating, wherein the outer β (Ni,Pt/Pd)A1 phase region and the non-aluminide X—Pt/Pd—Ni phase are disposed outboard of the diffusion zone of the coating.

2. The coating of claim 1 wherein the X—Pt/Pd—Ni phase is present and observable in the as-deposited condition of the coating.

3. The coating of claim 1 wherein the phase is present and observable in as-CVD deposited condition of the coating.

4. The coating of claim 1 wherein the phase comprises X 2 Pt 3 Ni z , where z is 5 or less.

5. The coating of claim 1 wherein the phase comprises XPdNi z where z is 4 or less.

6. The coating of claim 4 having a Pt concentration of about 18 atomic % in the outer β (Ni,Pt/Pd)A1 phase region of the coating adjacent to the X—Pt/Pd—Ni phase.

7. The coating of claim 6 having an Al concentration of 31 to 40 atomic % in the outer β (Ni,Pt/Pd)A1 phase region of the coating adjacent to the X—Pt/Pd—Ni phase.

8. The coating of claim 7 having an Al concentration of 35 to 40 atomic % in the outer β (Ni,Pt/Pd)A1 phase region of the coating adjacent to the X—Pt/Pd—Ni phase.

9. The coating of claim 4 having an Hf concentration of about 0.25 to about 1.0 atomic % in at a location of the outer β (Ni,Pt/Pd)A1 phase region that is adjacent to the X—Pt/Pd—Ni phase.

10. The coating of claim 9 having an Hf concentration of about 0.5 to about 1.0 atomic %.

11. A diffusion aluminized coating on a substrate wherein the coating includes an outer additive region having an outer coating surface where the Pt content is about 2 to about 16 atomic %, where the Al content is 31 to 40 atomic %, and where at least one of Hf and Zr is present, and wherein the coating has a highest concentration of at least one of Hf and Zr at a location adjacent to an inner diffusion zone of the coating, the coating having an overall coating tckness of about 25 to about 45 microns where the overall coating thickness includes the diffusion zone and the outer additive region.

12. The coating of claim 11 wherein the overall thickness is about 30 to about 40 microns.

13. The coating of claim 11 wherein the Pt content is about 10 to about 16 atomic %.

14. The coating of claim 11 wherein the Al content is 35 to 40 atomic %.

15. The coating of claim 11 including 0.25 to 1.0 atomic % of at least one of Hf and Zr at said location.

16. The coating of claim 11 wherein the outer additive region includes at least one of Hf and Zr diffused therein from an underlying precursor non-aluminide X—Pt/Pd—Ni phase layer, where X is at least one of Hf and Zr and Pt/Pd is at least one of Pt and Pd, that is located adjacent to the inner diffusion zone.

17. The coating of claim 11 wherein at least one of Hf and Zr are deposited from one coating gas species, and Al is deposited from another coating gas species, by diffusion aluminizing.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2019
From: MURPHY, KENNETH S.
To: HOWMET CORPORATION
Reel/Frame 048960/0672 →
CHANGE OF NAME Recorded Nov 11, 2016
From: ALCOA INC.
To: ARCONIC INC.
Reel/Frame 040599/0309 →