Claims
- 1. A turbine system having at least one turbine component, said turbine component comprising:
a) a molybdenum silicide-based composite substrate, said molybdenum silicide-based composite substrate comprising molybdenum, silicon, and at least one of boron and chromium; and b) an environmentally resistant coating disposed on a surface of said molybdenum silicide-based composite substrate, said environmentally resistant coating comprising silicon, titanium, chromium, niobium, and molybdenum.
- 2. The turbine system of claim 1, wherein said turbine component further comprises a thermal barrier coating disposed on an outer surface of said environmentally resistant coating.
- 3. The turbine system of claim 2, wherein said thermal barrier coating comprises at least one material selected from the group consisting of zirconia, stabilized zirconia, zircon, mullite, and combinations thereof.
- 4. The turbine system of claim 2, wherein said thermal barrier coating has a thickness of between about 50 microns and about 400 microns.
- 5. The turbine system of claim 4, wherein said turbine component is resistant to oxidation in the range from about 2000° F. to about 2600° F.
- 6. The turbine system of claim 4, wherein said turbine component is resistant to pesting in the range from about 1000° F. to about 180020 F.
- 7. The turbine system of claim 1, wherein said environmentally resistant coating comprises: between about 43 and 67 atomic percent silicon; between about 2 and about 25 atomic percent titanium; between about 1 and about 25 atomic percent chromium; and a balance of niobium and molybdenum.
- 8. The turbine system of claim 7, wherein said environmentally resistant coating comprises between about 50 and about 67 atomic percent silicon, between about 8 and about 16 atomic percent titanium, between about 4 and about 12 atomic percent chromium, and a balance of niobium and molybdenum.
- 9. The turbine system of claim 7, wherein said environmentally resistant coating comprises up to about 20 atomic percent molybdenum.
- 10. The turbine system of claim 7, wherein said environmentally resistant coating comprises about 66 atomic percent silicon, about 10 atomic percent titanium, about 5 atomic percent chromium, and a balance of niobium.
- 11. The turbine system of claim 7, wherein said environmentally resistant coating further comprises at least one element selected from the group consisting of boron, tin, and iron, wherein boron, tin, and iron together comprise up to about 5 atomic percent of said environmentally resistant coating.
- 12. The turbine system of claim 7, wherein said environmentally resistant coating further comprises up to about 20 atomic percent germanium, wherein germanium replaces silicon.
- 13. The turbine system of claim 12, wherein said environmentally resistant coating comprises up to about 20 atomic percent molybdenum.
- 14. The turbine system of claim 13, wherein said environmentally resistant coating further comprises up to about 10 atomic percent boron.
- 15. The turbine system of claim 7, wherein said environmentally resistant coating further comprises up to about 3 atomic percent of at least one element selected from the group consisting of hafnium, zirconium, tin, tantalum, rhenium, carbon, aluminum, and tungsten.
- 16. The turbine system of claim 1, wherein said environmentally resistant coating has a thickness of between about 10 microns and about 200 microns.
- 17. The turbine system of claim 1, wherein said turbine component is a component selected from the group consisting of rotating blades, vanes, shrouds, nozzles, and combustors.
- 18. The turbine system of claim 1, wherein said turbine system is an aircraft turbine system.
- 19. The turbine system of claim 1, wherein said turbine system is a land-based turbine system.
- 20. The turbine system of claim 1, wherein said turbine system is a marine turbine system.
- 21. The turbine system of claim 1, wherein said molybdenum silicide-based composite substrate comprises between about 2.5 and about 13.5 atomic percent silicon, between about 3.5 and about 26.5 atomic percent boron, and a balance of molybdenum.
- 22. The turbine system of claim 1, wherein said molybdenum silicide-based composite substrate comprises between about 13 and about 16 atomic percent silicon, between about 25 and about 40 atomic percent chromium, and a balance of molybdenum.
- 23. The turbine system of claim 1, wherein said molybdenum silicide-based composite substrate further comprises at least one element selected from the group consisting of titanium, rhenium, carbon, hafnium, germanium, and aluminum.
- 24. An environmentally resistant coating for a molybdenum silicide-based composite substrate, said environmentally resistant coating comprising between about 43 and 67 atomic percent silicon; between about 2 and about 25 atomic percent titanium; between about 1 and about 25 atomic percent chromium; and a balance of niobium and molybdenum.
- 25. The environmentally resistant coating of claim 24, further comprising up to about 20 atomic percent germanium, wherein germanium replaces silicon.
- 26. The environmentally resistant coating of claim 25, further comprising a Mo1−x−y−zNbxTiyCrzSi2−wGew phase, wherein 1>(x+y+z)≧0 and 2>w≧0, and wherein said environmentally resistant coating contains at least 10 volume percent of said Mo1−x−y−zNbxTiyCrzSi2−wGew phase.
- 27. The environmentally resistant coating of claim 26, further comprising at least one phase selected from the group consisting of a Mo5−t−u−vNbtTiuCrvSi3−sGes phase, a Mo11−p−q−rNbpTiqCrrSi8−nGen phase, a Mo6−k−l−mNbkTilCrmSi5−jGej phase, and a Mo5−g−h−iNbgTihCriSi4−fGef phase, wherein 5>(t+u+v)≧0; 3>s≧0; 11>(p+q+r)≧0; 8>n≧0; 6>(k+l+m)≧0; 5>j≧0; 5>(g+h+i)≧0; and 4>f≧0.
- 28. The environmentally resistant coating of claim 24, wherein said environmentally resistant coating comprises up to about 20 atomic percent molybdenum.
- 29. The environmentally resistant coating of claim 24, further comprising up to about 10 atomic percent boron.
- 30. The environmentally resistant coating of claim 24, wherein said environmentally resistant coating comprises between about 50 and about 67 atomic percent silicon, between about 8 and about 16 atomic percent titanium, between about 4 and about 12 atomic percent chromium, and a balance of niobium and molybdenum.
- 31. The environmentally resistant coating of claim 30, wherein said environmentally resistant coating comprises about 66 atomic percent silicon, about 10 atomic percent titanium, about 5 atomic percent chromium, and a balance of niobium.
- 32. The environmentally resistant coating of claim 24, wherein said environmentally resistant coating further comprises at least one element selected from the group consisting of boron, tin, and iron, wherein boron, tin, and iron together comprise up to about 5 atomic percent of said environmentally resistant coating.
- 33. The environmentally resistant coating of claim 32, wherein said environmentally resistant coating further comprises up to about 3 atomic percent of at least one element selected from the group consisting of hafnium, tantalum, rhenium, carbon, aluminum, and tungsten.
- 34. The environmentally resistant coating of claim 24, wherein said environmentally resistant coating has a thickness of between about 10 microns and about 200 microns.
- 35. The environmentally resistant coating of claim 24, wherein said molybdenum silicide-based composite substrate is a turbine component.
- 36. A turbine system having at least one turbine component, said turbine component comprising:
a) a molybdenum silicide-based composite substrate, said molybdenum silicide-based composite substrate comprising molybdenum, silicon, and at least one of boron and chromium; b) an environmentally resistant coating disposed on a surface of said molybdenum silicide-based composite substrate, said environmentally resistant coating comprising between about 43 and 67 atomic percent silicon; between about 2 and about 25 atomic percent titanium; between about 1 and about 25 atomic percent chromium; and a balance of niobium and molybdenum; and c) a thermal barrier coating disposed on an outer surface of said environmentally resistant coating.
- 37. The turbine system of claim 36, wherein said thermal barrier coating comprises at least one material selected from the group consisting of zirconia, stabilized zirconia, zircon, mullite, and combinations thereof.
- 38. The turbine system of claim 37, wherein said thermal barrier coating has a thickness of between about 50 microns and about 400 microns.
- 39. The turbine system of claim 38, wherein said turbine component is resistant to oxidation in the range from about 2000° F. to about 2600° F.
- 40. The turbine system of claim 38, wherein said turbine component is resistant to pesting in the range from about 1000° F. to about 1800° F.
- 41. The turbine system of claim 36, wherein said environmentally resistant coating comprises between about 50 and about 67 atomic percent silicon, between about 8 and about 16 atomic percent titanium, between about 4 and about 12 atomic percent chromium, and a balance of niobium and molybdenum.
- 42. The turbine system of claim 41, wherein said environmentally resistant coating comprises about 66 atomic percent silicon, about 10 atomic percent titanium, about 5 atomic percent chromium, and a balance of niobium.
- 43. The turbine system of claim 36, wherein said environmentally resistant coating comprises up to about 20 atomic percent molybdenum.
- 44. The turbine system of claim 43, wherein said environmentally resistant coating further comprises up to about 10 atomic percent boron.
- 45. The turbine system of claim 36, wherein said environmentally resistant coating further comprises at least one element selected from the group consisting of boron, tin, and iron, wherein boron, tin, and iron together comprise up to about 5 atomic percent of said environmentally resistant coating.
- 46. The turbine system of claim 36, wherein said environmentally resistant coating further comprises up to about 20 atomic percent germanium, wherein germanium replaces silicon.
- 47. The turbine system of claim 46, wherein said environmentally resistant coating comprises up to about 20 atomic percent molybdenum.
- 48. The turbine system of claim 47, wherein said environmentally resistant coating further comprises up to about 10 atomic percent boron.
- 49. The turbine system of claim 46, wherein said environmentally resistant coating further comprises a Mo1−x−y−zNbxTiyCrzSi2−wGew phase, wherein 1>(x+y+z)≧0 and 2>w≧0, wherein said Mo1−x−y−zNbxTiyCrzSi2−wGew phase comprises at least 10 volume percent of said environmentally resistant coating.
- 50. The turbine system of claim 49, wherein said environmentally resistant coating further comprises at least one phase selected from the group consisting of a Mo5−t−u−vNbtTiuCrvSi3−sGes phase, a Mo11−p−q−rNbpTiqCrrSi8−nGen phase, a Mo6−k−l−mNbkTilCrmSi5−jGej phase, and a Mo5−g−h−iNbgTihCriSi4−fGef phase, wherein 5>(t+u+v)≧0; 3>s≧0; 11>(p+q+r)≧0; 8>n≧0; 6>(k+l+m)≧0; 5>j≧0; 5>(g+h+i)≧0; and 4>f≧0.
- 51. The turbine system of claim 36, wherein said environmentally resistant coating further comprises up to about 3 atomic percent of at least one element selected from the group consisting of hafnium, tantalum, rhenium, carbon, aluminum, and tungsten.
- 52. The turbine system of claim 36, wherein said environmentally resistant coating has a thickness of between about 10 microns and about 200 microns.
- 53. The turbine system of claim 36, wherein said turbine component is a component selected from the group consisting of rotating blades, vanes, shrouds, nozzles, and combustors.
- 54. The turbine system of claim 36, wherein said turbine system is an aircraft turbine system.
- 55. The turbine system of claim 36, wherein said turbine system is a land-based turbine system.
- 56. The turbine system of claim 36, wherein said turbine system is a marine turbine system.
- 57. The turbine system of claim 36, wherein said molybdenum silicide-based composite substrate comprises between about 2.5 and about 13.5 atomic percent silicon, between about 3.5 and about 26.5 atomic percent boron, and a balance of molybdenum.
- 58. The turbine system of claim 36, wherein said molybdenum silicide-based composite substrate comprises between about 13 and about 16 atomic percent silicon, between about 25 and about 40 atomic percent chromium, and a balance of molybdenum.
- 59. The turbine system of claim 36, wherein said molybdenum silicide-based composite substrate further comprises at least one element selected from the group consisting of titanium, zirconium, tin, rhenium, carbon, hafnium, germanium, and aluminum.
- 60. A method of making a turbine component comprising a molybdenum silicide-based composite and having an environmentally resistant coating disposed on the surface of the turbine component, the environmentally resistant coating comprising silicon, titanium, chromium, niobium, and molybdenum, the method comprising the steps of:
a) providing a molybdenum silicide-based composite substrate formed into the turbine component; and b) depositing the environmentally resistant coating onto the surface of the turbine component.
- 61. The method of claim 60, wherein the step of depositing the environmentally resistant coating comprises:
a) depositing silicon, chromium, titanium, and niobium on the surface of the molybdenum silicide-based composite substrate using a deposition method selected from the group consisting of ion plasma deposition, vacuum plasma spraying, high velocity oxy-fuel spraying, physical vapor deposition, and chemical vapor deposition; and b) heat treating the molybdenum silicide-based composite substrate for at least about one hour at a temperature of at least about 1200° C.
- 62. The method of claim 60, further comprising the step of depositing a thermal barrier coating on an outer surface of the environmentally resistant coating.
- 63. The method of claim 60, wherein the environmentally resistant coating comprises between about 43 and 67 atomic percent silicon, between about 2 and about 25 atomic percent titanium, between about 1 and about 25 atomic percent chromium, and a balance of niobium and molybdenum.
- 64. A method of coating a molybdenum silicide-based composite substrate with an environmentally resistant coating, the environmentally resistant coating comprising silicon, titanium, chromium, niobium, and molybdenum, the method comprising the steps of:
a) providing a molybdenum silicide-based composite substrate; and b) depositing the environmentally resistant coating onto the surface of the molybdenum silicide-based composite substrate.
- 65. The method of claim 64, wherein the step of depositing the environmentally resistant coating comprises:
a) depositing silicon, chromium, titanium, and niobium on a surface of the molybdenum silicide-based composite substrate using a deposition method selected from the group consisting of ion plasma deposition, vacuum plasma spraying, high velocity oxy-fuel spraying, physical vapor deposition, and chemical vapor deposition; and b) heat treating the molybdenum silicide-based composite substrate for at least about one hour at a temperature of at least about 1200° C.
- 66. The method of claim 64, wherein the environmentally resistant coating comprises between about 43 and 67 atomic percent silicon, between about 2 and about 25 atomic percent titanium, between about 1 and about 25 atomic percent chromium, and a balance of niobium and molybdenum.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH & DEVELOPMENT
[0001] The United States Government may have certain rights in this invention pursuant to Contract No. F33615-98-C-5215, awarded by the United States Air Force, United States Department of Defense.