Claims
- 1. A method of counter gravity casting of molten metal with the exclusion of air in a gas-pervious mold sealed in an evacuable chamber with a fill pipe for the mold cavities having a free end projecting therefrom, comprising the steps of:
- providing a supply of the molten metal to be cast in a crucible in an enclosure under a substantially air free atmosphere of inert gas, said enclosure having an opening therein adapted to receive the free end of said fill pipe therethrough and said enclosure being exposed to a source of ambient atmosphere between said opening and said chamber;
- providing a flexible, reversibly compressible shield between said crucible enclosure and the opening in said evacuable chamber through which said fill pipe projects to space the upper surface of said metal at a distance from the source of ambient atmosphere sufficient to prevent circulating air currents from drawing air through said opening down to said metal and to maintain said surface at said distance except during the filling of said mold;
- relatively moving said fill pipe and said crucible enclosure to project the free end of said fill pipe through said crucible enclosure to a position below the surface of molten metal in said crucible while compressing and sealing said shield to said chamber, and evacuating said chamber to provide in the mold interior a pressure sufficiently lower than the pressure of said inert gas atmosphere in said crucible enclosure to cause molten metal to rise through said fill pipe to fill the cavities in said mold; and
- thereafter reversely relatively moving said mold fill pipe and crucible enclosure to withdraw said fill pipe through said opening and to restore said shield to its original shape.
- 2. A method of counter gravity casting of molten metal with the exclusion of air in a gas-pervious mold sealed in an evacuable chamber with a fill pipe for the mold cavities having a free end projecting therefrom, comprising the steps of:
- providing a supply of the molten metal to be cast in a crucible in an enclosure under a substantially air free atmosphere of inert gas, said enclosure having an opening therein adapted to receive the free end of said fill pipe therethrough and said enclosure being exposed to a source of ambient atmosphere between said opening and said chamber;
- providing said crucible enclosure with a movable member to space the upper surface of said metal at a distance from the source of ambient atmosphere sufficient to prevent circulating air currents from drawing air through said opening down to said metal and to maintain said surface at said distance except during the filling of said mold;
- relatively moving said fill pipe and said crucible enclosure to project the free end of said fill pipe through said crucible enclosure to a position below the surface of molten metal in said crucible while compressing and sealing said movable member to said chamber, and evacuating said chamber to provide in the mold interior a pressure sufficiently lower than the pressure of said inert gas atmosphere in said crucible enclosure to cause molten metal to rise through said fill pipe to fill the cavities in said mold; and
- thereafter reversely relatively moving said mold fill pipe and crucible enclosure to withdraw said fill pipe through said opening and to restore said movable member to its original position.
- 3. A method according to claim 2 wherein said movable member compresses when the top wall of said crucible enclosure contacts the bottom wall of said evacuable chamber through which said fill pipe projects.
- 4. A method of counter gravity casting of molten metal with the exclusion of air in a gas-pervious mold sealed in an evacuable chamber with a fill pipe for the mold cavities having a free end projecting therefrom, comprising the steps of:
- providing a supply of the molten metal to be cast in a crucible in an enclosure under a substantially air free atmosphere of inert gas, said enclosure being exposed to a source of ambient atmosphere, said enclosure having a first cover with an opening therein adapted to receive a metal charge and the free end of said fill pipe therethrough and a second, laterally movable cover placed atop said first cover with first and second openings spaced laterally from each other and an uninterrupted area greater than or equal to the diameter of said opening in said first cover, said first opening adapted to receive a metal charge and said second opening adapted to receive the free end of said fill pipe therethrough, said opening in said first cover and said first opening of said movable cover being aligned with and in communication with each other while providing said supply of molten metal to said crucible;
- arranging said movable cover to prevent air from contacting the molten metal in said crucible;
- inserting the free end of said fill pipe through said second opening in said movable cover and then moving said movable cover to align said free end of said fill pipe with said opening in said first cover;
- relatively moving said fill pipe and said crucible enclosure to project the free end of said fill pipe to a position below the surface of molten metal in said crucible, and evacuating said chamber to provide in the mold interior a pressure sufficiently lower than the pressure of said inert gas atmosphere in said crucible enclosure to cause molten metal to rise through said fill pipe to fill the cavities in said mold;
- reversely relatively moving said mold fill pipe and said crucible enclosure to withdraw said fill pipe from said molten metal; and
- arranging said movable cover to prevent air from contacting said molten metal.
- 5. The method of claim 4 wherein air is prevented from contacting said molten metal by
- establishing a substantially air free atmosphere of inert gas in said crucible enclosure;
- inserting into said first opening in said movable cover a pipe adapted to space the upper surface of the metal in said crucible at a distance from the ambient atmosphere sufficient to prevent circulating air currents from drawing air through said first opening and the opening in said first cover down to said metal when said first opening and the opening in said first cover are aligned and in communication with each other and the ambient atmosphere and;
- moving said movable cover to align said pipe, said first opening in said movable cover, and said opening in said first cover with each other while maintaining a flow of inert gas through said crucible enclosure.
- 6. A method according to claim 1, 2, or 5 wherein said distance between said upper surface of said metal and said ambient atmosphere is greater than 8 inches.
- 7. A method according to claim 5 further comprising charging metal to said crucible through said pipe, said first opening in said movable cover, and said opening in said first cover.
- 8. A method according to claim 4 wherein air is prevented from contacting the metal in said crucible by
- establishing a substantially air free atmosphere of inert gas in said crucible enclosure; and
- positioning said uninterrupted region of said movable cover over said opening in said first cover so as to block said opening in said first cover.
- 9. A method according to claim 1, 2, or 4 wherein said chamber is evacuated while said fill pipe and said crucible enclosure are being relatively moved towards each other to draw inert gas from said enclosure into said mold.
- 10. A method according to claim 1, 2, or 4 wherein the upper portion of said fill pipe is sealed between said chamber and said mold.
- 11. A method according to claim 1, 2, or 4, which includes providing a flow of inert gas into the chamber externally of said mold while said fill pipe free end is below the surface of molten metal in said crucible.
- 12. A method according to claim 11 which includes providing separate evacuating connectors to said chamber and to an upper part of a fill passage of said mold and thereby maintaining in said mold passage upper part a lower pressure than the pressure in the chamber externally of said mold during at least part of the time said fill pipe is below the surface of molten metal in said crucible.
- 13. A method according to claim 1, 2, or 4 wherein said fill pipe is impervious and which includes: exposing said fill pipe end and said crucible enclosure to atmosphere throughout said relatively moving steps and simultaneously maintaining a sufficient pressure of the inert gas in said crucible enclosure to prevent access of atmospheric air to the interior of said enclosure.
- 14. A method according to claim 13 wherein the pressure of inert gas maintained in said crucible enclosure is above atmospheric pressure.
- 15. A method according to claim 14 wherein said inert gas is at least approximately as dense as nitrogen.
- 16. A method according to claim 15 which includes thermally insulating said chamber from said crucible enclosure by atmospheric air or inert gas except for thermal communication by and through said fill pipe.
- 17. A method according to claim 1, or 2 which includes:
- providing a first removable cover for said opening in said crucible enclosure;
- removing said first cover from said opening;
- inserting an ingot of said metal through said opening in said crucible enclosure into said crucible;
- providing a second larger and imperforate removable cover for said opening, sealable pressure tight to said crucible enclosure about said opening, and of sufficient strength to withstand evacuation of said crucible enclosure to high vacuum;
- applying said second cover, evacuating said crucible enclosure and second cover to a substantially air-free low pressure and heating said ingot to a molten condition suitable for casting;
- providing a flow of inert gas into said crucible enclosure to produce said inert gas atmosphere therein, and;
- removing said second cover and replacing it with said first cover.
- 18. A method according to claim 4 which includes
- providing a removable vacuum lid having a charging lock and sealable to said crucible enclosure and capable of withstanding evacuation of said enclosure to high vacuum;
- inserting a metal ingot through said charging lock into said crucible and sealing said lock;
- evacuating said crucible enclosure and vacuum lid to a substantially air-free low pressure and heating said ingot in said crucible to reduce said ingot to a molten condition suitable for casting;
- providing a flow of inert gas into said crucible enclosure to produce said inert gas atmosphere therein;
- laterally moving said movable cover so that it blocks said opening in said first cover to prevent air from contaminating said melt when said vacuum lid is removed; and
- removing said vacuum lid.
- 19. In apparatus for casting molten metal with the exclusion of air in a gas pervious mold sealed in an evacuable chamber with a fill pipe for the mold cavities having a free end projecting therefrom having
- enclosed crucible means for providing a supply of molten casting metal in a crucible under a substantially air-free atmosphere of inert gas, said crucible enclosure having an opening for receiving said fill pipe free end therethrough;
- means for relatively moving said fill pipe and said crucible means to project said fill pipe free end into, and to withdraw it from, said crucible enclosure having an opening for receiving said fill pipe end therethrough: and
- means for evacuating said chamber to provide in the mold interior a pressure sufficiently below the pressure of said inert gas in said enclosure to cause molten metal to rise through said fill pipe to fill the cavities of said mold,
- the improvement wherein:
- a flexible, reversibly compressible shield is provided between said crucible enclosure opening and the opening in said evacuable chamber through which said fill pipe free end projects that compresses and seals to said chamber when said fill pipe free end is projected into said crucible enclosure and regains its original shape after said fill pipe free end is withdrawn from said crucible enclosure to space the upper surface of said metal at a distance from a source of ambient atmosphere beyond said opening sufficient to prevent circulating air currents from drawing air through said opening down to said metal and maintaining said metal surface at said distance except during filling of said mold.
- 20. In apparatus for casting molten metal with the exclusion of air in a gas pervious mold sealed in an evacuable chamber with a fill pipe for the mold cavities having a free end projecting therefrom having
- enclosed crucible means for providing a supply of molten casting metal in a crucible under a substantially air-free atmosphere of inert gas, said crucible enclosure having an opening for receiving said fill pipe free end therethrough;
- means for relatively moving said fill pipe and said crucible means to project said fill pipe free end into, and to withdraw it from, said crucible enclosure; and
- means for evacuating said chamber to provide in the mold interior a pressure sufficiently below the pressure of said inert gas in said enclosure to cause molten metal to rise through said fill pipe to fill the cavities of said mold,
- the improvement wherein:
- said crucible enclosure is provided with a movable member that compresses and seals to said chamber when said fill pipe free end is projected into said crucible enclosure and returns to its original position after said fill pipe free end is withdrawn from said crucible enclosure to space the upper surface of said metal at a distance from a source of ambient atmosphere beyond said opening sufficient to prevent circulating air currents from drawing air through said opening down to said metal and maintaining said metal surface at said distance except during filling of said mold.
- 21. Apparatus according to claim 20 wherein said movable member compresses when the top wall of said crucible enclosure contacts the bottom wall of said evacuable chamber through which said fill pipe projects.
- 22. In apparatus for casting molten metal with the exclusion of air in a gas pervious mold sealed in an evacuable chamber with a fill pipe for the mold cavities having a free end projecting therefrom having
- enclosed crucible means for providing a supply of molten casting metal in a crucible under a substantially air-free atmosphere of inert gas;
- means for relatively moving said fill pipe and said crucible means to project said fill pipe free end into, and to withdraw it from, said crucible enclosure having an opening for receiving said fill pipe free end therethrough; and
- means for evacuating said chamber to provide in the mold interior a pressure sufficiently below the pressure of said inert gas in said enclosure to cause molten metal to rise through said fill pipe to fill the cavities of said mold,
- the improvement wherein:
- said crucible enclosure is provided with
- a first cover with an opening therein adapted to receive a metal charge and the free end of said fill pipe therethrough and a laterally movable cover placed atop said first cover with first and second openings spaced laterally from each other and an uninterrupted area greater than or equal to the diameter of said opening in said first cover, said first opening adapted to receive a metal charge and said second opening adapted to receive the free end of said fill pipe therethrough.
- 23. Apparatus according to claim 22 further comprising a pipe placed within said first opening of said movable cover adapted to space the upper surface of the metal in said crucible at a distance from the ambient atmosphere sufficient to prevent circulating air currents from drawing air through said opening down to the metal in said crucible when said first opening of said movable cover and the opening in said first cover are aligned and in communication with each other and the ambient atmosphere when providing a supply of molten metal to said crucible.
- 24. Apparatus according to claim 19, 20, or 23 wherein said distance between said upper surface of said metal and said ambient atmosphere is greater than 8 inches.
- 25. Apparatus according to claim 19, 20, or 22 wherein the upper portion of said fill pipe is sealed between said chamber and said mold.
- 26. Apparatus according to claim 19, 20, or 22, which includes means for supplying inert gas to said chamber externally of said mold.
- 27. Apparatus according to claim 19, 20, or 22 wherein said means for evacuating said chamber includes an evacuating connector to an upper part of a fill passage of a mold therein, and means for providing a lower pressure in said connector than in said chamber outside the mold.
- 28. Apparatus according to claim 19, 20, or 22 wherein said fill pipe is impervious and means is provided for supplying inert gas to said crucible enclosure at a rate to maintain a pressure of said gas in said enclosure sufficient to prevent access of atmospheric air or inert gas to the interior thereof.
- 29. Apparatus according to claim 19, 20, or 22 wherein said chamber is spaced sufficiently from said crucible enclosure as to be thermally insulated therefrom by atmospheric air except for thermal communication by and through said fill pipe.
- 30. Apparatus according, to claim 19, or 20 which includes a removable vacuum lid having a charging lock and sealable to said crucible enclosure and capable of withstanding evacuation of said enclosure to high vacuum.
- 31. Apparatus according to claim 22 which includes a removable vacuum lid having a charging lock and sealable to said crucible enclosure and capable of withstanding evacuation of said enclosure to high vacuum.
Parent Case Info
This is a continuation-in-part of application U.S. Ser. No. 175,231 filed Mar. 30, 1988 entitled "Apparatus and Process for Countergravity Casting of Metal with Air Exclusion," now abandoned, and is related to an application of the same inventor U.S. Ser. No. 047,907, filed May 7, 1987, now U.S. Pat. No. 4,791,977, issued Dec. 20, 1988.
US Referenced Citations (28)
Foreign Referenced Citations (2)
Number |
Date |
Country |
58-20369 |
Feb 1983 |
JPX |
60-154861 |
Aug 1985 |
JPX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
175231 |
Mar 1988 |
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