Claims
- 1. An article of manufacture, comprising:
- a substrate formed of a nickel or cobalt-based superalloy;
- an intermediate layer disposed on said substrate, said intermediate layer comprising an anchoring layer formed of an oxide compound doped with an effective amount of nitrogen; and
- a ceramic coating disposed on said anchoring layer.
- 2. The article according to claim 1, wherein said intermediate layer further includes a bonding layer between said substrate and said anchoring layer.
- 3. The article according to claim 1, wherein said oxide compound comprises an oxide selected from the group consisting of alumina and chromium oxide.
- 4. The article according to claim 1, wherein said oxide compound consists essentially of alumina.
- 5. The article according to claim 1, which further comprises a diffusion active chemical element covered by said anchoring layer.
- 6. The article according to claim 5, wherein said diffusion active chemical element is an element selected from the group consisting of hafnium, titanium, tungsten, and silicon.
- 7. The article according to claim 1, wherein said ceramic coating includes ZrO.sub.2.
- 8. The article according to claim 1, wherein said ceramic coating consists essentially of ZrO.sub.2 and a stabilizer selected from the group consisting of Y.sub.2 O.sub.3, CeO.sub.2, LaO, and MgO.
- 9. The article according to claim 1 wherein said anchoring layer has a thickness ranging from a few atomic layers to less than 3 mm.
- 10. The article according to claim 1, wherein said anchoring layer contains from 2 to 5 atom percent of nitrogen.
- 11. The article according to claim 1, wherein said anchoring layer is doped with a further chemical element selected from the group consisting of the elements contained in said substrate and said bonding layer.
- 12. The article according to claim 11, wherein said further chemical element is chromium.
- 13. The article according to claim 11, wherein said anchoring layer is doped with a further chemical element, and said further chemical element is also present in the ceramic coating.
- 14. The article according to claim 2, wherein said bonding layer is formed of a metal aluminide.
- 15. The article according to claim 2, wherein said bonding layer is formed of an MCrAlY alloy.
- 16. The article according to claim 2, wherein said anchoring layer is doped with a further chemical element, and said further element is also present in said bonding layer.
- 17. The article according to claim 1, wherein said substrate, said anchoring layer, and said ceramic coating together form a gas turbine component.
- 18. The article according to claim 17, wherein said gas turbine component is a gas turbine airfoil component comprising a mounting portion and an airfoil portion, said mounting portion being adapted to fixedly hold the component in operation and said airfoil portion being adapted to be exposed in operation to a gas stream along said component, and wherein said anchoring layer and said ceramic layer are disposed on said airfoil portion.
- 19. The article according to claim 1, wherein said intermediate layer further comprises a bonding layer interposed between said substrate and said anchoring layer.
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation of international application serial No. PCT/EP96/01565, filed Apr. 12, 1996, which designated the United States, and which in turn is a continuation of U.S. application Ser. No. 08/428,449, filed Apr. 25, 1995 and now abandoned, and a continuation of U.S. application Ser. No. 08/428,452, filed Apr. 25, 1995 and now abandoned.
US Referenced Citations (15)
Non-Patent Literature Citations (4)
Entry |
"Dielectric Stability of Oxides formed on NiCrAIY-coated Substrates" (Trottier et al.), Thin Solid Films, Jul. 15, 1992, vol. 214, No. 2, pp. 253-259. |
"Overlay and Diffusion Coatings for Aero Gas Turbines" (Peichl et al.), Materials for Advanced Power Engineering, Part I, pp. 717-740; 1994. (no month). |
"Metallurgical Coatings and Thin Films 1994" (Sartwell et al. ), Surface and Coatings Technology 68/69, 1994, pp. 22-26; (no month). |
"PVD-(Physical Vapor Deposition) Coating developments for high temperature applications in thermal machines" (Beele), VDI, vol. 5, No. 345, 1994, pp. 1-3, 46-61, 69-121, 135-153; (no month). |
Related Publications (1)
|
Number |
Date |
Country |
|
428452 |
Apr 1995 |
|
Continuations (2)
|
Number |
Date |
Country |
Parent |
PCTEP9601565 |
Apr 1996 |
|
Parent |
428449 |
Apr 1995 |
|