Claims
- 1. A process for coating an article having fine bores or narrow cavities with a diffusion coating comprising the following steps:
- a. enclosing the article in a chamber together with a particulate pack including a coating material in elemental or chemically combined form, said coating material selected from the group consisting of aluminium, chromium, titanium, zirconium, tantalum, niobium, yttrium, rate earth metals, boron and silicon, together with a halide activator of low volatility,
- b. introducing an inert gas into the chamber, and
- c. cyclically varying the pressure of said gas within the range 0-100 torr at a rate of not less than 2 cycles per minute whilst maintaining said pack and article at a temperature sufficient to transfer said coating material on to the surface of said article to form a diffusion coating therewith.
- 2. A process as in claim 1 wherein the vapour, sublimation or dissociation pressure of the halide activator does not exceed atmospheric pressure at said temperature.
- 3. A process as in claim 1 wherein the vapour, sublimation or dissociation pressure of the halide activator does not exceed 15 torr at a temperature of 900.degree. C.
- 4. A process as in claim 1 wherein the maximum pressure of the gas does not exceed 100 torr.
- 5. A process as in claim 1 wherein the maximum pressure of the gas is about 50 torr and the minimum pressure is about 10 torr.
- 6. A process as in claim 1 wherein said coating material comprises aluminium and the halide activator comprises aluminium fluoride.
- 7. A process as in claim 1 wherein said coating material comprises aluminium and said halide activator comprises sodium chloride.
- 8. A process as in claim 1 wherein said coating material comprises aluminium and said halide activator comprises sodium fluoride.
- 9. A process as in claim 1 wherein the pack includes a filler for supporting the coating material.
- 10. A process in claim 9 wherein the filler comprises a refractory oxide.
- 11. A process as in claim 10 wherein the refractory oxide is aluminium oxide.
- 12. A process as in claim 1 wherein the article is held out of contact with said particulate pack in a cage permitting vapour to pass from the particulate pack to the inside of the cage but retarding flow to the outside of the cage.
- 13. A process for coating a metallic article having fine bores or narrow cavities with a diffusion coating comprising the following steps:
- a. surrounding the article by a particulate pack in a chamber, the pack including coating material in elemental or chemically combined form, said coating material selected from the group consisting of aluminium, chromium, titanium, zirconium, tantalum, nobium, yttrium, rate earth metals, boron and silicon,
- b. introducing an inert gas or a reducing gas or a mixture of said gases into the chamber,
- c. introducing a vapour comprising a halide activator of low volatility into the chamber, and
- d. cyclically varying the pressure of said gas or gases within the range of 0-100 torr at a rate of not less than 2 cycles per minute whilst maintaining said pack and article at a temperature sufficient to transfer said coating material on to said article and form a diffusion coating thereon.
- 14. A process as in claim 13 wherein the reducing gas comprises hydrogen.
Priority Claims (1)
Number |
Date |
Country |
Kind |
14011/75 |
Apr 1975 |
GBX |
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Parent Case Info
This application is a continuation-in-part of copending application Ser. No. 672,952 filed Apr. 2, 1976, abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
1147101 |
Apr 1963 |
DEX |
1070396 |
Jun 1967 |
GBX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
672952 |
Apr 1976 |
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