Claims
- 1. A discharge guide tube for a metal refining or melting apparatus, the discharge guide tube having a substantially right cylindrical outer configuration and comprising:a base plate forming a hearth of the melting apparatus and an extension through which a central orifice originating in the base plate and extending from a source of metal through the extension to an outlet for directing a stream of melt therethrough; a structure that generates an electromagnetic field in the discharge guide tube; and an interior discharge guide tube flux concentration configuration comprising an angled and stepped profile having a reduced diameter at its central portion that is capable of concentrating electromagnetic flux resulting from the generated electromagnetic field onto the stream of melt that flows through the central orifice, resulting in heating the stream, and the electromagnetic field being applied at a substantially constant level.
- 2. A discharge guide tube according to claim 1, further comprising at least one slot formed in the discharge guide tube, the at least one slot being capable of directing an electromagnetic field generated by the structure into the discharge guide tube.
- 3. A discharge guide tube according to claim 1, wherein the stepped and angled profile comprisesa first central orifice portion; a second central orifice portion; a reduced diameter central orifice portion; a first inclined central orifice ramp portion; and a second inclined central orifice ramp portion; wherein the first inclined central orifice ramp portion extends from the first central orifice portion to the reduced diameter central orifice portion, and the second inclined central orifice ramp portion extends from the reduced diameter central orifice portion to the second central orifice portion.
- 4. A discharge guide tube according to claim 3, wherein diameter of the reduced diameter central orifice portion is less that the diameter of each of the first central orifice portion and the second central orifice portion.
- 5. A discharge guide tube according to claim 3, wherein the diameters of the first central orifice portion and the second central orifice portion are equal.
- 6. A discharge guide tube according to claim 3, wherein the diameters of the first central orifice portion and the second central orifice portion are unequal.
- 7. A discharge guide tube according to claim 3, wherein the lengths of the first central orifice portion and the second central orifice portion are equal.
- 8. A discharge guide tube according to claim 3, wherein the lengths of the first central orifice portion and the second central orifice portion are unequal.
- 9. A discharge guide tube according to claim 3, wherein the lengths of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion are equal.
- 10. A discharge guide tube according to claim 3, wherein the lengths of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion are unequal.
- 11. A discharge guide tube according to claim 3, wherein each of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion define angles with the first central orifice portion and the second central orifice portions, respectively, the angles being equal.
- 12. A discharge guide tube according to claim 3, wherein each of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion define angles with the first central orifice portion and the second central orifice portions, respectively, the angles being unequal.
- 13. A discharge guide tube according to claim 1, further comprising an induction heater system disposed on the discharge guide tube with a gap therebetween.
- 14. A discharge guide tube according to claim 13, wherein the at least one of the heat, electromagnetic field, and electromagnetic flux that is concentrated onto the stream of melt that flows through the central orifice remains substantially constant with movement of the induction heater system on the discharge guide tube.
- 15. A discharge guide tube according to claim 1, wherein said structure is an induction heater system, the induction heater system being disposed about the extension and the central orifice.
- 16. A discharge guide tube according to claim 1, wherein the structure comprises at least two induction heater coils, a first induction heater coil being disposed proximate the base plate and a second induction heater coil being disposed proximate the extension so as to form a gap between the second induction heater coil and the extension.
- 17. A discharge guide tube according to claim 1, wherein the metal refining apparatus comprises an electroslag refining apparatus.
- 18. A discharge guide tube according to claim 17, wherein the electroslag refining apparatus further comprises a cold-walled induction guide tube, and the cold-walled induction guide tube comprises the discharge guide tube.
- 19. A method for refining metal, the method comprising passing metal through the discharge guide tube of claim 1.
- 20. A discharge guide tube for a cold-walled induction guide tube and an electroslag refining apparatus, the discharge guide tube comprising:a base plate; an extension; a central orifice that extends from a source of metal to an outlet in the discharge guide tube for directing a stream of melt therethrough; a structure that generates an electromagnetic field in the discharge guide tube, the electromagnetic field being applied at a substantially constant level; and an interior discharge guide tube flux concentration configuration that is capable of concentrating at least one of heat, electromagnetic field, and electromagnetic flux onto the stream of melt that flows through the central orifice, the interior discharge guide tube flux concentration configuration comprising an angled and stepped profile to concentrate at least one of heat, electromagnetic field, and electromagnetic flux onto the stream of-melt that flows through the central orifice, the stepped and angled profile comprises: a first central orifice portion; a second central orifice portion; a reduced diameter central orifice portion; a first inclined central orifice ramp portion; and a second inclined central orifice ramp portion; the first inclined central orifice ramp portion extends from the first central orifice portion to the reduced diameter central orifice portion, and the second inclined central orifice ramp portion extends from the reduced diameter central orifice portion to the second central orifice portion, the discharge guide tube further comprising an induction heater system disposed on the discharge guide tube with a gap therebetween, the at least one of the heat, electromagnetic field, and electromagnetic flux that is concentrated onto the stream of melt that flows through the central orifice remains substantially constant with movement of the induction heater system on the discharge guide tube, the induction heater system comprises at least two induction heater coils, a first induction heater coil being disposed proximate the base plate and a second induction heater coil being disposed proximate the extension so as to form a gap between the second induction heater coil and the extension.
- 21. A discharge guide tube according to claim 20, wherein diameter of the reduced diameter central orifice portion is less that the diameter of each of the first central orifice portion and the second central orifice portion.
- 22. A discharge guide tube according to claim 20, wherein the diameters of the first central orifice portion and the second central orifice portion are equal.
- 23. A discharge guide tube according to claim 20, wherein the diameters of the first central orifice portion and the second central orifice portion are unequal.
- 24. A discharge guide tube according to claim 20, wherein the lengths of the first central orifice portion and the second central orifice portion are equal.
- 25. A discharge guide tube according to claim 20, wherein the lengths of the first central orifice portion and the second central orifice portion are unequal.
- 26. A discharge guide tube according to claim 20, wherein the lengths of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion are equal.
- 27. A discharge guide tube according to claim 20, wherein the lengths of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion are unequal.
- 28. A discharge guide tube according to claim 20, wherein each of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion define angles with the first central orifice portion and the second central orifice portions, respectively, the angles being equal.
- 29. A discharge guide tube according to claim 20, wherein each of the first inclined central orifice ramp portion and the second inclined central orifice ramp portion define angles with the first central orifice portion and the second central orifice portions, respectively, the angles being unequal.
- 30. A method for refining metal, the method comprising passing metal through the discharge guide tube of claim 20.
Government Interests
The government may have rights in this invention pursuant to Contract No. 1457-96-01288 awarded by DARPA.
US Referenced Citations (15)