Claims
- 1. A method of producing a metal casting in a mould assembly, comprising:
- filling liquid metal from a liquid metal source upwardly through at least one primary inlet into a mould cavity defined by a mould assembly, said mould assembly having at least one thermal extraction member comprising at least one large surface area region of a high thermally conductive material, said thermal extraction member being positioned in an upper part of said mould cavity;
- after filling said mould cavity with said liquid metal, inverting said mould assembly, such that said thermal extraction member is positioned in a lower part of said mould cavity;
- transferring said mould assembly to a cooling station; solidifying said metal in said mould cavity, said thermal extraction member remaining in said lower part of said mould cavity during said solidifying to cause rapid and positive extraction of heat from said metal during said solidifying, such that positive heat extraction from said metal is maintained substantially for the duration of said solidifying to thereby achieve directional solidification throughout substantially all of the metal.
- 2. A method of producing a metal casting in a mould assembly as recited in claim 1, wherein said thermal extraction member is adjacent the bottom of the mould cavity during said solidifying.
- 3. A method of producing a metal casting in a mould assembly as recited in claim 1, wherein said thermal extraction member is in the bottom of said mould cavity during said solidifying.
- 4. A method of producing a metal casting in a mould assembly as recited in claim 1, further comprising sealing and isolating said mould assembly from said liquid metal source after filling said mould cavity with said liquid metal and before inverting said mould assembly.
- 5. A method of producing a metal casting in a mould assembly as recited in claim 4, wherein said sealing is accomplished by at least one sliding element, at least one electromagnetic valve or a means for freezing metal.
- 6. A method of producing a metal casting in a mould assembly as recited in claim 1, further comprising feeding liquid metal to said mould cavity from a feeding system during said solidifying of said metal in said mould cavity to compensate for shrinkage of metal during said solidifying.
- 7. A method of producing a metal casting in a mould assembly as recited in claim 6, wherein during said filling, said liquid metal is filled from said liquid metal source upwardly through said primary inlet, then through said feeding system and then into said mould cavity.
- 8. A method of producing a metal casting in a mould assembly as recited in claim 6, wherein said feeding system is a secondary metal cavity formed within said mould assembly.
- 9. A method of producing a metal casting in a mould assembly as recited in claim 6, wherein said thermal extraction member is positioned opposite said feeding system.
- 10. A method of producing a metal casting in a mould assembly as recited in claim 6, wherein during said filling, said feeding system and said primary inlet are both positioned below said mould cavity.
- 11. A method of producing a metal casting in a mould assembly as recited in claim 1, wherein said thermal extraction member and mould cavity and metal contained in the mould cavity are transferred to said cooling station before significant solidification has occurred.
- 12. A method of producing a metal casting in a mould assembly as recited in claim 1, wherein an external heat transfer medium or heat sink is applied to said thermal extraction member to rapidly extract heat and solidify said metal while said mould assembly is positioned at said cooling station.
- 13. A method of producing a metal casting in a mould assembly as recited in claim 1, wherein said directional solidification is directed toward the upper part of said mould cavity.
- 14. A method of producing a metal casting in a mould assembly, comprising:
- filling liquid metal from a liquid metal source upwardly through at least one primary inlet into a mould cavity defined by a mould assembly, said mould assembly having at least one thermal extraction member comprising at least one large surface area region of a high thermally conductive material, said thermal extraction member being positioned in a lower part of said mould cavity;
- after filling said mould cavity with said liquid metal, transferring said mould assembly to a cooling station;
- solidifying said metal in said mould cavity, said thermal extraction member remaining in said lower part of said mould cavity during said solidifying to cause rapid and positive extraction of heat from said metal during said solidifying, such that positive heat extraction from said metal is maintained substantially for the duration of said solidifying to thereby achieve directional solidification throughout substantially all of the metal.
- 15. A method of producing a metal casting in a mould assembly as recited in claim 14, wherein said thermal extraction member is adjacent the bottom of the mould cavity during said solidifying.
- 16. A method of producing a metal casting in a mould assembly as recited in claim 14, wherein said thermal extraction member is in the bottom of said mould cavity during said solidifying.
- 17. A method of producing a metal casting in a mould assembly as recited in claim 14, further comprising sealing and isolating said mould assembly from said liquid metal source after filling said mould cavity with said liquid metal and before transferring said mould assembly to said cooling station.
- 18. A method of producing a metal casting in a mould assembly as recited in claim 17, wherein said sealing is accomplished by at least one sliding element, at least one electromagnetic valve or a means for freezing metal.
- 19. A method of producing a metal casting in a mould assembly as recited in claim 14, further comprising feeding liquid metal to said mould cavity from a feeding system during said solidifying of said metal in said mould cavity to compensate for shrinkage of metal during said solidifying.
- 20. A method of producing a metal casting in a mould assembly as recited in claim 19, wherein said feeding system is positioned opposite said primary inlet.
- 21. A method of producing a metal casting in a mould assembly as recited in claim 19, wherein said thermal extraction member is positioned opposite said feeding system.
- 22. A method of producing a metal casting in a mould assembly as recited in claim 19, wherein said feeding system is a secondary metal cavity formed within said mould assembly.
- 23. A method of producing a metal casting in a mould assembly as recited in claim 14, wherein said thermal extraction member and mould cavity and metal contained in the mould cavity are transferred to said cooling station before significant solidification has occurred.
- 24. A method of producing a metal casting in a mould assembly as recited in claim 14, wherein an external heat transfer medium or heat sink is applied to said thermal extraction member to rapidly extract heat and solidify said metal while said mould assembly is positioned at said cooling station.
- 25. A method of producing a metal casting in a mould assembly as recited in claim 14, wherein said directional solidification is directed toward the upper part of said mould cavity.
- 26. A method of producing a metal casting in a mould assembly comprising mould segments defining a mould cavity having at least one primary inlet below the top of the mould cavity for receiving liquid metal from a liquid metal source, said mould assembly having at least one thermal extraction member being at least one large surface area region of a high thermally conductive material positioned to cause rapid and positive extraction of heat from a solidifying casting in said mould assembly and a sealing means for sealing said mould cavity from the liquid metal source, said method comprising the steps of filling liquid metal from the liquid metal source into said mould assembly, sealing and isolating said mould assembly from said liquid metal source, removing heat from said thermal extraction member after sealing said mould cavity such that a shell of metal adjacent the thermal extraction member is solidified, and transferring at least the mould segments and metal contained therein to a cooling station, wherein said mould assembly is arranged such that positive heat extraction from said casting is maintained substantially for the duration of solidification of liquid metal in the casting to thereby achieve directional solidification throughout substantially all of the casting.
- 27. A method of producing a metal casting in a mould assembly as recited in claim 26, further comprising inverting said mould assembly after solidifying said shell.
- 28. A method of producing a metal casting in a mould assembly as recited in claim 27, wherein said thermal extraction member is in a top part of the mould cavity during said solidifying of said shell.
- 29. A method of producing a metal casting in a mould assembly as recited in claim 27, wherein said thermal extraction member is adjacent the top of the mould cavity during said solidifying of said shell.
- 30. A method of producing a metal casting in a mould assembly as recited in claim 27, wherein said thermal extraction member is in the top of said mould cavity during said solidifying of said shell.
- 31. A method of producing a metal casting in a mould assembly as recited in claim 27, further comprising feeding liquid metal to said mould cavity from a feeding system during said solidifying of said metal in said mould cavity to compensate for shrinkage of metal during said solidifying.
- 32. A method of producing a metal casting in a mould assembly as recited in claim 31 wherein during said filling, said liquid metal is filled from said liquid metal source upwardly through said primary inlet, then through said feeding system and then into said mould cavity.
- 33. A method of producing a metal casting in a mould assembly as recited in claim 31, wherein said thermal extraction member is positioned opposite said feeding system.
- 34. A method of producing a metal casting in a mould assembly as recited in claim 31, wherein during said filling, said feeding system and said primary inlet are both positioned below said mould cavity.
- 35. A method of producing a metal casting in a mould assembly as recited in claim 31, wherein said feeding system is a secondary metal cavity formed within said mould assembly.
- 36. A method of producing a metal casting in a mould assembly as recited in claim 27, wherein said thermal extraction member is positioned opposite said primary inlet.
- 37. A method of producing a metal casting in a mould assembly as recited in claim 26, wherein the orientation of said mould assembly when in said cooling station is the same as the orientation of said mould assembly during said filling.
- 38. A method of producing a metal casting in a mould assembly as recited in claim 37, wherein said thermal extraction member is in a bottom part of said mould cavity during said solidifying of said shell.
- 39. A method of producing a metal casting in a mould assembly as recited in claim 37, wherein said thermal extraction member is adjacent the bottom of the mould cavity during said solidifying of said shell.
- 40. A method of producing a metal casting in a mould assembly as recited in claim 37, wherein said thermal extraction member is in the bottom of said mould cavity during said solidifying of said shell.
- 41. A method of producing a metal casting in a mould assembly as recited in claim 37, further comprising feeding liquid metal to said mould cavity from a feeding system during said solidifying of said metal in said mould cavity to compensate for shrinkage of metal during said solidifying.
- 42. A method of producing a metal casting in a mould assembly as recited in claim 41, wherein said feeding system is positioned opposite said primary inlet.
- 43. A method of producing a metal casting in a mould assembly as recited in claim 41, wherein said thermal extraction member is positioned opposite said feeding system.
- 44. A method of producing a metal casting in a mould assembly as recited in claim 41, wherein said feeding system is a secondary metal cavity formed within said mould assembly.
- 45. A method of producing a metal casting in a mould assembly as recited in claim 26, wherein an external heat transfer medium or heat sink is applied to said shell to rapidly extract heat and solidify said metal while said mould assembly is positioned at said cooling station.
- 46. A method of producing a metal casting in a mould assembly as recited in claim 26, wherein said sealing is accomplished by at least one sliding element, at least one electromagnetic valve or a means for freezing metal.
- 47. A method of producing a metal casting in a mould assembly as recited in claim 26, wherein after said transferring at least the mould segments and metal contained therein to a cooling station, said directional solidification is directed upwardly.
Priority Claims (1)
Number |
Date |
Country |
Kind |
PK3198 |
Nov 1990 |
AUX |
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Parent Case Info
This is a division of application Ser. No. 08/114,242, filed Sep. 1, 1993, and now U.S. Pat. No. 5,297,611, which is a continuation of application Ser. No. 07/786,866, filed Nov. 4, 1991, and now abandoned.
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Divisions (1)
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Number |
Date |
Country |
Parent |
114242 |
Sep 1993 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
786866 |
Nov 1991 |
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