Claims
- 1. A gas diffusion method for aluminizing any surface of gas flow accessible interior and exterior surfaces of a structural component with a substantially uniform aluminized coating, comprising the following steps:
- a) providing an aluminum source comprising particles of at least one intermetallic phase of aluminum, at all times located separately and remotely from and not in contact with said structural component,
- (b) forming an initial gas mixture comprising a halogen-containing gas and hydrogen outside of and remotely from said aluminum source,
- (c) heating said aluminum source to a source temperature sufficient for forming aluminum monohalide gas,
- (d) causing a flow of said initial gas mixture through said aluminum source to form aluminum monohalide gas that enriches said initial gas mixture with aluminum to form an aluminum enriched gas mixture comprising a halogen-containing gas, hydrogen and aluminum monohalide gas,
- (e) causing said aluminum enriched gas mixture to flow from said source to said structural component, and
- (f) causing said aluminum enriched gas mixture to pass along said surface of said structural component so that said component is aluminized by gas diffusion deposition.
- 2. The method of claim 1 wherein said aluminum enriched gas mixture comprises 3 to 6 parts of said aluminum monohalide gas and 1 to 3 parts of said halogen-containing gas and hydrogen.
- 3. The method of claim 1, wherein said step (d) comprises establishing a first aluminum enriched gas flow for diffusion coating said exterior component surface and a second aluminum enriched gas flow for diffusion coating said interior component surface, wherein an aluminum monohalide concentration of said first gas flow is up to one hundred times smaller than an aluminum monohalide concentration of said second gas flow.
- 4. The method of claim 1, further comprising heating said structural component during said step (f) to a component temperature which is lower by up to 300.degree. C. than said source temperature.
- 5. The method of claim 1, wherein said particles comprise at least one intermetallic phase of aluminum and components of a base alloy of which said structural component is made, and wherein said at least one intermetallic phase comprises a stoichiometric composition with at least three aluminum atoms for one metal atom.
- 6. The method of claim 5, wherein said at least one intermetallic phase is selected from the group consisting of NiAl.sub.3, FeAl.sub.3, TiAl.sub.3, Co.sub.2 Al.sub.9, CrAl.sub.7, Cr.sub.2 Al.sub.11, CrAl.sub.4, CrAl.sub.3 and phase mixtures thereof.
- 7. The method of claim 1, wherein said interior component surface is gas diffusion aluminized by accelerating an aluminum enriched gas flow of said aluminum enriched gas mixture to a flow speed within the range of 10.sup.-1 to 10.sup.4 meter per hour.
- 8. The method of claim 1, wherein said heating step comprises a bake-out step followed by a diffusion heating step, and then a cooling step following said diffusion heating step, and further comprising causing an inert gas to flow through said aluminum source during said bake-out step and during said cooling step.
- 9. The method of claim 1, wherein a process pressure is within the range of about 10.sup.3 Pa to about 10.sup.5 Pa.
- 10. The method of claim 1, wherein said structural component is at a temperature within the range of about 800.degree. C. to about 1150.degree. C. during said diffusion deposition.
- 11. The method of claim 10, wherein said temperature of said structural component during said diffusion deposition is maintained for a duration within the range of about 0.5 hours to about 48 hours.
- 12. The method of claim 1, wherein said aluminum source further comprises particles of aluminum.
- 13. The method of claim 1, wherein said aluminum source further comprises particles of at least one metallic aluminum compound.
- 14. The method of claim 1, wherein said particles have a particle diameter within the range of 0.5 mm to 40 mm.
- 15. The method of claim 14, wherein said particles have a particle diameter within the range of 5 mm to 20 mm.
- 16. The method of claim 1, wherein said aluminum enriched gas mixture contains at most a negligible small amount of aluminum trihalide gas.
- 17. The method of claim 1, wherein said aluminum enriched gas mixture contains no aluminum trihalide gas.
- 18. The method of claim 1, wherein said source temperature is greater than 1100.degree. C. and not greater than 1450.degree. C.
- 19. The method of claim 1, wherein said step (b) comprises providing a first aluminum source and a second aluminum source, said step (c) comprises heating said first aluminum source to a first source temperature and heating said second aluminum source to a second source temperature wherein said first source temperature is lower than said second source temperature, and said step (d) comprises forming a first aluminum enriched gas flow in said first aluminum source for diffusion coating said exterior component surface and forming a second aluminum enriched gas flow in said second aluminum source for diffusion coating said interior component surface.
- 20. The method of claim 1, wherein said aluminized coating comprises a pure coating consisting of aluminum.
- 21. A gas diffusion method for aluminizing any surface of gas flow accessible interior and exterior surfaces of a structural component with a substantially uniform aluminized coating, comprising the following steps:
- (a) providing an aluminum source comprising particles of at least one intermetallic phase of aluminum, at all times located separately and remotely from and not in contact with said structural component,
- (b) forming an initial gas mixture comprising a halogen-containing gas and hydrogen outside of and remotely from said aluminum source,
- (c) heating said aluminum source to a source temperature sufficient for forming aluminum monohalide gas,
- (d) causing a flow of said initial gas mixture through said aluminum source to form aluminum monohalide gas that enriches said initial gas mixture with aluminum to form an aluminum enriched gas mixture comprising a halogen-containing gas, hydrogen and aluminum monohalide gas,
- (e) causing said aluminum enriched gas mixture to flow from said source to said structural component,
- (f) heating said structural component to a component temperature which is lower by up to 300.degree. C. than said source temperature, and
- (g) causing said aluminum enriched gas mixture to pass along said surface of said structural component so that said component is aluminized by gas diffusion deposition.
Priority Claims (1)
Number |
Date |
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41 19 967.7 |
Jun 1991 |
DEX |
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Parent Case Info
This application is a FILE WRAPPER CONTINUATION; of application Ser. No. 07/899,762, filed on Jun. 17, 1992, now abandoned.
US Referenced Citations (9)
Foreign Referenced Citations (2)
Number |
Date |
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1433497 |
Feb 1966 |
FRX |
2805370 |
Aug 1979 |
DEX |
Continuations (1)
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Parent |
899762 |
Jun 1992 |
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