Claims
- 1. An apparatus for use in the continuous casting of molten metal, said apparatus comprising:
- a casting mold having an inlet and an outlet;
- a chamber located upstream of said mold and having an inlet for receiving molten metal and an outlet vertically aligned with said inlet of the mold;
- magnetic stirring means disposed around said chamber, for inducing, in molten metal contained in said chamber, a primary circulatory flow in a first rotational sense;
- said magnetic stirring means having an upstream end and a downstream end and having a linear dimension between its upstream and downstream ends substantially less than the linear distance between said inlet of the chamber and said outlet of the casting mold;
- and a plurality of means for substantially reducing secondary recirculating flows caused in said molten meal by said electromagnetic stirring means, to conserve the energy available from said primary circulatory flow;
- said plurality of means comprising one such means adjacent said upstream end of said magnetic stirring means and another such means adjacent said downstream end of the magnetic stirring means.
- 2. An apparatus as recited in claim 1 wherein said means for substantially reducing said secondary recirculating flows comprises:
- an upstream constriction in said chamber at a location not substantially further upstream than the upstream end of the magnetic stirring means;
- and a downstream constriction in said chamber at a location not substantially further downstream than the downstream end of the magnetic stirring means;
- each of said constrictions defining an opening for molten metal passage, each of said openings having a cross-sectional area substantially less than the cross-sectional area of the chamber between said upstream and downstream constrictions.
- 3. An apparatus as recited in claim 2 wherein:
- said downstream constriction is at said outlet of the chamber.
- 4. An apparatus as recited in claim 2 or 3 wherein:
- said upstream constriction is at said inlet of the chamber.
- 5. An apparatus as recited in claim 2 wherein:
- said cross-sectional area of the opening in said downstream constriction is between about one-fourth and about one-half of said cross-sectional area of said chamber.
- 6. An apparatus as recited in claim 5 wherein:
- said cross-sectional area of the opening in said upstream constriction is substantially the same as the cross-sectional area of the opening in said downstream constriction.
- 7. An apparatus as recited in claim 1 wherein said means for substantially reducing said secondary recirculating flows comprises:
- at least one additional magnetic means aligned with and spaced from said first-recited magnetic stirring means and comprising either (a) magnetic brake means or (b) another magnetic stirring means for inducing in molten metal a primary circulatory flow in a rotational sense opposite that induced by said first-recited magnetic stirring means.
- 8. An apparatus as recited in claim 7 wherein said additional magnetic means comprises:
- at least one additional magnetic means located upstream of said first-recited magnetic stirring means;
- and at least one additional magnetic means located downstream of said first-recited magnetic stirring means.
- 9. An apparatus as recited in claim 1 and comprising:
- an upstream end on said mold;
- a linear conduit composed of refractory material and extending between said outlet of the chamber and said inlet of the mold, for confining molten metal flowing from said chamber into said mold;
- means enclosing said upstream end of the mold from the atmosphere outside said mold;
- said mold comprising means for solidifying a solid peripheral skin around the molten metal in said mold;
- and means for preventing said solid peripheral skin in the mold from extending upstream, in the direction of said enclosed upstream end, beyond a predetermined location.
- 10. An apparatus as recited in claim 1 and comprising:
- magnetic stirring means disposed around the outside of said mold;
- said mold being cylindrical and having a diameter no more than about 150 mm (6 in.) and a wall thickness between about 1.6 and 4.8 mm (1.16-3/16 in.);
- said mold being composed of a metallic material having a conductivity no greater than about 0.29.times.10.sup.8 (ohm m).sup.-1.
- 11. An apparatus for use in the casting of molten metal, said apparatus comprising:
- a casting mold having an upstream end, an inlet at said upstream end and an outlet;
- means enclosing said upstream end of the mold from the atmosphere outside said mold;
- a chamber located upstream of said mold and having an inlet for receiving molten metal and an outlet linearly aligned with said inlet of the mold;
- magnetic stirring means disposed around said chamber;
- a conduit composed of refractory material and extending between said outlet of the chamber and said inlet of the mold, for confining molten metal flowing from said chamber into said mold;
- said mold comprising means for solidifying a solid peripheral skin around the molten metal in said mold;
- and first preventing means for preventing said solid peripheral skin in the mold from extending upstream, in the direction of said enclosed upstream end, beyond a predetermined location.
- 12. An apparatus as recited in claim 11 wherein:
- said conduit has a downstream end;
- said mold has an upstream end;
- and said first preventing means comprises a ceramic break ring sandwiched between the downstream end of said conduit and the upstream end of said mold.
- 13. An apparatus as recited in claim 11 wherein:
- said conduit includes a portion extending downstream into said mold and having an outer surface;
- said mold includes an upstream portion having an inner surface;
- said outer surface on the downstream portion of the conduit and said inner surface on the upstream portion of the mold define a substantially annular space therebetween;
- and said first preventing means comprises means for introducing a pressurized inert gas into said space to prevent molten metal in said mold from entering said space.
- 14. An apparatus as recited in claim 13 and comprising:
- magnetic stirring means disposed around said mold and which creates turbulence in the molten metal in said mold;
- and second preventing means for preventing said turbulence from splashing molten metal upstream into said space adjacent said interior surface of the mold's upstream portion.
- 15. An apparatus as recited in claim 14 wherein said second preventing means comprises:
- lip means composed of refractory material and extending inwardly from said interior surface, adjacent the downstream end of said space.
- 16. An apparatus as recited in claim 11 wherein:
- said chamber comprises heat-extracting means capable of forming a solid peripheral skin around the molten metal in said chamber;
- and said apparatus comprises additional preventing means for preventing any solid peripheral skin which forms in said chamber from growing downstream into said conduit.
- 17. An apparatus as recited in claim 16 wherein said additional preventing means comprises:
- a constriction at said outlet of the chamber.
- 18. An apparatus for use in the casting of molten metal, said apparatus comprising:
- means for confining a volume of molten metal flowing downstream;
- said confining means having upstream and downstream ends;
- magnetic stirring means, disposed around said confining means, for inducing, in said downstream-flowing volume of molten metal, primary circulatory flow in a first rotational sense;
- and a plurality of means for substantially reducing secondary recirculating flows caused in said volume of molten metal by said magnetic stirring means, to conserve the stirring energy available from said primary circulatory flow;
- said plurality of means comprising (a) additional magnetic means located upstream of said magnetic stirring means and (b) means, located downstream of said magnetic stirring means, which is at least as close to said stirring means as the downstream end of said confining means.
- 19. An apparatus as recited in claim 18 wherein said means for substantially reducing said secondary recirculating flows comprises:
- at least one additional magnetic means aligned with and spaced from said first-recited magnetic stirring means and comprising either (a) magnetic brake means or (b) another magnetic stirring means for inducing, in said downstream-flowing volume of molten metal, primary circulatory flow in a rotational sense opposite that induced by said first-recited magnetic stirring means.
- 20. An apparatus as recited in claim 19 wherein said additional magnetic means comprises:
- at least one additional magnetic means located upstream of said first-recited magnetic stirring means;
- and at least one additional magnetic means located downstream of said first-recited magnetic stirring means.
- 21. An apparatus as recited in claim 20 wherein said confining means is a casting mold.
- 22. An apparatus for use in the continuous casting of molten metal, said apparatus comprising:
- a cylindrical casting mold having an inlet and an outlet;
- magnetic stirring means disposed around the outside of said mold;
- said mold having a diameter no more than about 150 mm (6 in.) and a wall thickness between about 1.6 and 4.8 mm (1/16-3/16 in.);
- and said mold being composed of a metallic material having a conductivity no greater than about 0.29.times.10.sup.8 (ohm m).sup.-1.
- 23. An apparatus as recited in claim 22 wherein:
- said mold allows at least 50% of the magnetic field developed by said magnetic stirring means to penetrate to the interior of said mold when employing an electromagnetic frequency of about 60 Hertz.
- 24. An apparatus as recited in claim 23 and which provides a skin depth for the magnetic field in the mold of at least 12.7 mm (1/2 in.) when employing an electromagnetic frequency of about 60 Hertz.
- 25. An apparatus as recited in claim 22 wherein:
- said mold is composed of a metallic material consisting essentially of, in wt. %: ##EQU4##
- 26. A method for use in the casting of molten metal, said method comprising the steps of:
- providing a column of molten metal flowing downstream, and confining at least a portion of said column, said confined portion having upstream and downstream ends;
- magnetically stirring said column, at a first location between said ends of said confined column portion, to induce in the molten metal at said first location a primary circulatory flow in a first rotational sense;
- and a plurality of steps for substantially reducing secondary recirculating flow caused by said magnetic stirring;
- said plurality of steps comprising (a) magnetically affecting said column at a location upstream of said first location and (b) reducing said secondary recirculating flow at a location, downstream of said first location, which is at least as close to said first location as the downstream end of said confined column portion.
- 27. A method as recited in claim 26 wherein said step of substantially reducing secondary recirculating flows comprises performing at least one of the following procedures:
- (a) magnetically stirring the molten metal at a location spaced from said first location to induce in said molten metal at a second location, at which said secondary recirculating flow occurs, primary circulatory flow in a rotational sense opposite that of said primary circulatory flow at said first location; and
- (b) magnetically braking said first-recited secondary recirculating flow at said second location.
- 28. A method as recited in claim 27 wherein:
- one of said procedures is performed at a location upstream of said first location;
- and one of said procedures is performed at a location downstream of said first location.
- 29. A method for use in the casting of molten metal, said method comprising the steps of:
- providing a column of molten metal flowing downstream;
- magnetically stirring said column, at a magnetic stirring zone having upstream and downstream ends, to induce in the molten metal in said magnetic stirring zone a primary circulatory flow in a first rotational sense;
- and a plurality of steps for substantially reducing secondary recirculating flow caused by said magnetic stirring;
- said plurality of steps comprising constricting said column at a first constricting location not substantially further upstream than said upstream end of the magnetic stirring zone;
- and constricting said column at a second constricting location not substantially further downstream than said downstream end of the magnetic stirring zone.
- 30. A method as recited in claim 29 wherein:
- said column has a cross-sectional area at each of said constricting locations substantially less than the cross-sectional area of said column between said constricting locations.
- 31. A method as recited in claim 30 wherein:
- said cross-sectional area of the column at each of said constricting locations is between about one-fourth and about one-half of said cross-sectional area of said column between said constricting locations.
- 32. A method for rheocasting molten metal to produce a degenerate, dendritic microstructure comprising substantially spheroidal grains, said method comprising:
- providing a column of molten metal flowing downstream;
- confining said column to a substantially circular cross-section;
- subjecting said column of molten metal to electromagnetic agitation in a stirring zone;
- allowing said molten metal to cool as it flows downstream through said stirring zone;
- said method being conducted in accordance with the following equation-- ##EQU5## where: B is the magnetic field strength, in Tesla
- R is the radius, in meters, of the molten metal column undergoing stirring in the stirring zone
- .sigma. is the electrical conductivity of the molten metal, in (ohm meters).sup.-1
- .omega. is the angular frequency of the stirring in the stirring zone, in radians/second
- .rho. is the density of the molten metal, in kg/m.sup.3
- L is the latent heat of fusion of the molten metal, in Joules/m.sup.3
- Q is the rate of heat extraction from the molten metal in the stirring zone, in Watts/m.sup.2.
- 33. A method as recited in claim 32 wherein: ##EQU6##
- 34. A method as recited in claim 33 wherein: ##EQU7##
- 35. An apparatus for use in the continuous casting of molten metal, said apparatus comprising:
- a casting mold having an inlet and an outlet;
- a chamber located upstream of said mold and having an inlet for receiving molten metal and an outlet vertically aligned with said inlet of the mold;
- said casting mold having a constricted cross-section compared to the cross-section of said chamber;
- first magnetic means, disposed around said chamber in close proximity thereto, for stirring the molten metal in said chamber;
- and second magnetic means, disposed around said casting mold in close proximity thereto;
- said second magnetic means being separate and discrete from said first magnetic means.
Parent Case Info
This application is a continuation of application Ser. No. 07/624,647, filed Dec. 10, 1990, now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (2)
Number |
Date |
Country |
64-66053 |
Mar 1989 |
JPX |
2274345 |
Nov 1990 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
624647 |
Dec 1990 |
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