Claims
- 1. A method for coating a substrate with a metal coating, comprising
providing a substrate in a substantially closed heated chamber, providing a gas atmosphere in said chamber, introducing into said chamber, a vapor of the metal to be coated on said substrate, for contacting said substrate and depositing on said substrate so as to form a metal coating.
- 2. A method for coating a substrate with a metal coating according to claim 1, wherein said substrate is continuous strip steel and said metal for coating is selected from zinc, tin, aluminum, chromium, and alloys of those metals.
- 3. A method for coating a substrate with a metal coating according to claim 1, wherein said gas is selected from nitrogen, helium, hydrogen, and argon.
- 4. A method for coating a substrate with a metal coating according to claim 1, wherein said vapor of the metal for coating is introduced to the closed chamber by heating a source of the metal for coating which is in communication with the closed chamber, to the boiling point of said metal for coating.
- 5. A method for coating a substrate with a metal coating according to claim 4, wherein said chamber atmosphere and surfaces of said chamber which are exposed to said chamber atmosphere are at a temperature greater or equal to said temperature of said source of metal for coating.
- 6. A method for coating a substrate with a metal coating according to claim 5, wherein said chamber atmosphere and said exposed surfaces of said chamber are heated to a temperature above the temperature of said source of metal for coating.
- 7. A method for coating a substrate with a metal coating according to claim 5, wherein said substrate is at a temperature below the melting point of the coating metal and the vapor of the metal for coating sublimates on the substrate to form a solid metal coating.
- 8. A method for coating a substrate with a metal coating according to claim 5, wherein said substrate is at a temperature above the melting point of the coating metal and below the boiling point of the coating metal and the vapor of the metal for coating condenses on the substrate to form a molten metal coating.
- 9. A method for coating a substrate with a metal coating according to claim 7 or 8 further comprising,
forcefully directing said combination of gas atmosphere and vapor of the metal for coating toward said substrate so as to increase the quantity of said combination which contacts said substrate per unit time.
- 10. A method for coating a substrate with a metal coating according to claim 9, further including providing nozzles for use in providing said gas and utilizing said nozzles to forcefully direct said combination of gas atmosphere and vapor of the metal for coating toward said substrate.
- 11. A method for coating a substrate with a metal coating according to claim 1, wherein said method further comprises
capturing said gas atmosphere and vapor of the metal for coating which is escaping from said substantially closed chamber, and treating said captured gas atmosphere and coating metal vapor to remove components which are hazardous to the environment.
- 12. A method for coating a substrate with a metal coating according to claim 1, wherein said closed chamber is an elongated furnace and vapor seals are provided at each end of the furnace to enable entry and exit of said continuous steel strip with a minimal loss of the gas atmosphere and metal vapor.
- 13. A method for coating a substrate with a metal coating according to claim 11, wherein treating of said captured gas atmosphere and metal vapor is carried out with use of a water scrubber.
- 14. A method for coating a substrate with a metal coating according to claim 1, further comprising, following completion of said depositing step,
cooling said source of the metal for coating to below the metal's melting point, then holding the temperature of said source of the metal for coating below the metal's melting point until said source of the coating metal solidifies and said metal vapor in the closed chamber condenses on the solidified source of the metal for coating, then cooling the closed chamber and enclosed atmosphere to a temperature below the melting point of the source of metal for coating.
- 15. A method for coating a substrate with a metal coating according to claim 1, further comprising,
holding said substrate coated with metal at a selected temperature for a selected period of time so as to alloy at least a portion of said metal coating with the material of the substrate.
- 16. A method for coating a substrate with a metal coating according to claim 15, wherein said holding step is carried out in said closed chamber.
- 17. A method for coating a substrate with a metal coating according to claim 7, wherein said coating metal is zinc, said zinc source is heated to 917° C. and said substrate temperature is less than 420° C.
- 18. A method for coating a substrate with a metal coating according to claim 8, wherein said coating metal is zinc, said zinc source is heated to 917° C. and said substrate temperature is greater than 420° C. and less than 917° C.
- 19. A method for coating a substrate with a metal coating according to claim 7, wherein said coating metal is aluminum, said aluminum source is heated to 2467° C. and said substrate temperature is less than 660° C.
- 20. A method for coating a substrate with a metal coating according to claim 8, wherein said coating metal is aluminum, said aluminum source is heated to 2467° C. and said substrate temperature is greater than 660° C. and less than 2467° C.
- 21. A method for coating a substrate with a metal coating according to claim 7, wherein said coating metal is chromium, said chromium source is heated to 2482° C. and said substrate temperature is less than 1890° C.
- 22. A method for coating a substrate with a metal coating according to claim 8, wherein said coating metal is chromium, said chromium source is heated to 2482° C. and said substrate temperature is greater than 1890° C. and less than 2482° C.
- 23. A method for coating a substrate with a metal coating according to claim 7, wherein said coating metal is tin, said tin source is heated to 2270° C. and said substrate temperature is less than 232° C.
- 24. A method for coating a substrate with a metal coating according to claim 8, wherein said coating metal is tin, said tin source is heated to 2270° C. and said substrate temperature is greater than 232° C. and less than 2270° C.
- 25. A method for coating a substrate with a metal coating, comprising
passing continuous strip steel through an enclosed elongated furnace having strip entry and strip entry seals, providing a gas atmosphere in said furnace, introducing a vapor phase of a metal to be coated on the strip steel by heating a source of metal for coating, which is in communication with said furnace, to the boiling point of the metal source, forcefully directing said combined gas atmosphere and said metal vapor toward said continuous steel strip, and maintaining said gas atmosphere, metal vapor, and surfaces of said furnace exposed to said gas atmosphere and metal vapor at a temperature greater or equal to the metal source, wherein said continuous strip steel is passed through said furnace at a rate and at an entry temperature such that the continuous strip steel surface temperature is greater than the melting point of the metal for coating and less than the boiling point of the metal for coating, and said metal vapor condenses on the steel to form a molten metal coating.
- 26. A method for coating a substrate with a metal coating, comprising
passing continuous strip steel through an enclosed elongated furnace having strip entry and strip exit seals, providing a gas atmosphere in said furnace, introducing a vapor phase of a metal to be coated on the strip steel by heating a metal source of the metal for coating, which is in communication with said furnace, to the boiling point of the metal source, forcefully directing said combined gas atmosphere and metal vapor toward said continuous steel strip, and maintaining said gas atmosphere, metal vapor and surfaces of said furnace exposed to said gas atmosphere and metal vapor at a temperature greater or equal to the coating metal source temperature, wherein said continuous strip steel is passed through said furnace at a rate and at an entry temperature such that the continuous strip steel surface temperature is less than the melting point of the metal for coating and said metal vapor sublimates on the steel to form a solid metal coating.
- 27. Apparatus for coating a substrate with a metal coating, comprising
a substantially closed heated chamber for receiving a substrate to be coated with a metal coating, seal means for introducing and removing said substrate to and from said substantially closed chamber means for introducing a gas atmosphere into said chamber, means, in communication with said heated chamber, for heating a source of the metal for coating to the boiling point of the metal for coating.
- 28. Apparatus for coating a substrate with a metal coating according to claim 23, further comprising
means for forcibly directing a combination of said gas atmosphere and said metal vapor toward said substrate.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/309,460, filed Aug. 1, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US02/23789 |
7/25/2002 |
WO |
|