Claims
- 1. A coating system on a superalloy substrate, the coating system comprising a beta-phase NiAl intermetallic overlay coating containing zirconium in solid solution and a dispersion of ceramic particles selected from the group consisting of oxides nitrides and carbides of zirconium the ceramic particles being present in an amount and size sufficient to be stable and unreactive at temperatures up to about 1300° C. and to increase the strength of the overlay coating by a dispersion strengthening mechanism.
- 2. A coating system according to claim 1, further comprising a thermal-insulating ceramic layer adhered to the overlay coating.
- 3. A coating system according to claim 1, wherein the overlay coating further contains chromium.
- 4. A coating system according to claim 1, wherein the overlay coating consists of nickel, aluminum, chromium, zirconium, and the dispersion of ceramic particles.
- 5. A coating system according to claim 1, wherein the overlay coating contains at least one reactive element selected from the group consisting of hafnium and yttrium.
- 6. A coating system according to claim 1, wherein the overlay coating further contains chromium and the ceramic particles comprise at least one compound selected from the group consisting of oxides, nitrides, and carbides of chromium.
- 7. A coating system according to claim 1, wherein the overlay coating contains zirconium and chromium in solid solution and the ceramic particles consist of oxides, carbides and/or nitrides of zirconium and chromium.
- 8. A coating system according to claim 1, wherein the overlay coating further contains at least one of tantalum and silicon.
- 9. A coating system according to claim 8, wherein the ceramic particles comprise at least one compound selected from the group consisting of oxides, nitrides, and carbides of tantalum and silicon.
- 10. A coating system according to claim 1, wherein the ceramic particles are present in an amount of about 0.5 to about 5.0 volume percent of the overlay coating.
- 11. A coating system according to claim 1, wherein the size of the ceramic particles is in a range of about 1 to about 2000 nanometers.
- 12. A coating system on a nickel-base superalloy substrate of a gas turbine engine component, the coating system comprising a ceramic layer on a beta-phase NiAlCr intermetallic overlay bond coat, the overlay bond coat consisting of nickel, aluminum, chromium, zirconium, and a dispersion of ceramic particles formed of at least one compound selected from the group consisting of oxides, nitrides, and carbides of chromium and zirconium, the ceramic particles being present in the overlay bond coat in an amount and size sufficient to be stable and unreactive at temperatures up to about 1300° C. and to increase the strength of the overlay bond coat by a dispersion strengthening mechanism.
- 13. A coating system according to claim 12, wherein the ceramic particles are present in an amount of 0.5 to less than 5.0 volume percent of the overlay coating.
- 14. A coating system according to claim 12, wherein the size of the ceramic particles is in a range of about 10 to about 1000 nanometers.
- 15. A coating system according to claim 12, wherein the chromium content of the overlay bond coat is about 2 to about 15 atomic percent, and some of the chromium content is in the ceramic particles.
- 16. A coating system according to claim 12, wherein the zirconium content of the overlay bond coat is about 0.05 to about 0.8 atomic percent, and some of the zirconium content is in the ceramic particles.
- 17-34. (canceled)
FEDERAL RESEARCH STATEMENT
[0001] This invention was made with Government support under Agreement No. F33615-98-C-2893 awarded by the U.S. Department of the Air Force. The Government has certain rights in the invention.