Alumina-forming cobalt-nickel base alloy and method of making an article therefrom

US9034247B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9034247-B2
Application numberUS-201113156614-A
CountryUS
Kind codeB2
Filing dateJun 9, 2011
Priority dateJun 9, 2011
Publication dateMay 19, 2015
Grant dateMay 19, 2015

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A cobalt-nickel base alloy is disclosed. The alloy includes, in weight percent: greater than about 4 % of Al, about 10 to about 20 % of W, about 10 to about 40 % Ni, about 5 to 20 % Cr and the balance Co and incidental impurities. The alloy has a microstructure that is substantially free of a CoAl phase having a B2 crystal structure and configured to form a continuous, adherent aluminum oxide layer on an alloy surface upon exposure to a high-temperature oxidizing environment. A method of making an article of the alloy includes: selecting the alloy; forming an article from the alloy; solution-treating the alloy; and aging the alloy to form an alloy microstructure that is substantially free of a CoAl phase having a B2 crystal structure, wherein the alloy is configured to form a continuous, adherent aluminum oxide layer on an alloy surface upon exposure to a high-temperature oxidizing environment.

First claim

Opening claim text (preview).

The invention claimed is: 1. A cobalt-nickel base alloy, comprising: greater than about 4% to about 6% by weight of Al, about 10 to about 20% by weight of W, about 10 to 32.5% by weight of Ni, about 5 to about 20% by weight of Cr, Si in an amount up to about 1% by weight, and the balance Co and incidental impurities, the alloy having a microstructure that is substantially free of a CoAl phase having a B2 crystal structure and configured to form a continuous, adherent aluminum oxide layer on an alloy surface upon exposure to a high-temperature oxidizing environment. 2. The cobalt-nickel base alloy of claim 1 , wherein Si comprises about 0.01 to about 1% by weight. 3. The cobalt-nickel base alloy of claim 1 , further comprising a predetermined amount of S. 4. The cobalt-nickel base alloy of claim 3 , wherein the predetermined amount of S comprises less than about 5 ppm by weight of the alloy. 5. The cobalt-nickel base alloy of claim 4 , wherein the predetermined amount of S comprises less than about 1 ppm by weight of the alloy. 6. The cobalt-nickel base alloy of claim 1 , further comprising up to about 5% of Ti by weight of the alloy. 7. The cobalt-nickel base alloy of claim 1 , wherein the alloy microstructure further comprises a solid-solution gamma phase matrix and a plurality of dispersed gamma prime precipitates. 8. The cobalt-nickel base alloy of claim 7 , wherein the gamma prime phase precipitates comprise [(Co,Ni) 3 (Al,W)] and have an L1 2 crystal structure. 9. The cobalt-nickel base alloy of claim 7 , wherein the alloy further comprises at least one element selected from a group consisting of Re, Ru, Mo, Ti, Nb, Zr, V, Ta, Hf, and combinations thereof. 10. The cobalt-nickel base alloy of claim 1 , further comprising about 0.001 to about 2.0%, by weight of the alloy, of an element selected from the group consisting of B, C, Y, Sc, a lanthanide, misch metal, and combinations thereof. 11. The cobalt-nickel base alloy of claim 1 , wherein the alloy comprises a turbine engine component. 12. The cobalt-nickel base alloy of claim 11 , wherein the turbine engine component comprises a protective coating disposed on the surface of the alloy. 13. The cobalt-nickel base alloy of claim 11 , wherein the turbine engine component further comprises the aluminum oxide layer on the surface of the alloy. 14. The cobalt-nickel base alloy of claim 1 , wherein the alloy comprises, in weight percent, about 10% to about 31% Ni. 15. A method of making an article having high-temperature strength, oxidation resistance and corrosion resistance, comprising: forming a cobalt-nickel base alloy, comprising, in weight percent: greater than about 4% to about 6% by weight of Al, about 10 to about 20% by weight of W, about 10 to 32.5% by weight of Ni, about 5 to 20% by weight of Cr, Si in an amount up to about 1% by weight, and the balance Co and incidental impurities, the alloy having a microstructure that is substantially free of a CoAl phase having a B2 crystal structure and configured to form a continuous, adherent aluminum oxide layer on an alloy surface upon exposure to a high-temperature oxidizing environment; forming an article from the cobalt-nickel base alloy; solution-treating the cobalt-nickel base alloy by a solution heat treatment at a solutionizing temperature that is above the gamma prime solvus temperature and below the solidus temperature for a predetermined solution-treatment time; and aging the cobalt-nickel base alloy by providing at least one aging heat treatment at an aging temperature that is less than the gamma-prime solvus temperature for a predetermined aging time to form an alloy microstructure that comprises a plurality of gamma prime precipitates comprising (Co,Ni) 3 (Al,W) and is substantially free of a CoAl phase having a B2 crystal structure, wherein the alloy is configured to form a continuous, adherent aluminum oxide layer on an alloy surface upon exposure to a high-temperature oxidizing environment. 16. The method of claim 15 , wherein Si comprises about 0.01 to about 1% by weight. 17. The method of claim 15 , wherein the alloy further comprises at least one element selected from a group consisting of Re, Ru, Mo, Ti, Nb, Zr, V, Ta, Hf, and combinations thereof. 18. The method of claim 15 , wherein the article comprises a component of a gas turbine engine, further comprising operating the component at a operating temperature in the oxidizing environment sufficient to form the continuous, adherent aluminum oxide layer on the alloy surface. 19. The method of claim 15 , wherein the article comprises a component of a gas turbine engine, the method further comprising disposing a protective coating material on the alloy surface. 20. The method of claim 19 , further comprising operating the component at an operating temperature in the oxidizing environment sufficient to form the continuous, adherent aluminum oxide layer on the alloy surface.

Assignees

Inventors

Classifications

  • with the maximum Cr content being less 10% · CPC title

  • C22C19/07Primary

    based on cobalt · CPC title

  • of nickel or cobalt or alloys based thereon · CPC title

  • Oxidising · CPC title

  • with the maximum Cr content being at least 10% but less than 20% · CPC title

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What does patent US9034247B2 cover?
A cobalt-nickel base alloy is disclosed. The alloy includes, in weight percent: greater than about 4 % of Al, about 10 to about 20 % of W, about 10 to about 40 % Ni, about 5 to 20 % Cr and the balance Co and incidental impurities. The alloy has a microstructure that is substantially free of a CoAl phase having a B2 crystal structure and configured to form a continuous, adherent aluminum oxide l…
Who is the assignee on this patent?
Suzuki Akane, Elliott Andrew John, Gigliotti Jr Michael Francis Xavier, and 4 more
What technology area does this patent fall under?
Primary CPC classification C22C19/07. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue May 19 2015 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).