Claims
- 1. An apparatus for strip casting of molten metal using electromagnetic edge containment comprising:
(a) a pair of endless metal belts positioned adjacent each to the other to define a molding zone therebetween, with each belt passing over an entry pulley to define a curved surface adapted to receive molten metal thereon, (b) means for supplying molten metal to the curved surfaces of each of the belts to supply molten metal thereto, and (c) edge containment apparatus positioned on each side of the molding zone to contain the molten metal in the molding zone in contact with the curved surfaces, said apparatus including a magnetic member having an upper pole and a lower pole, an induction coil wound about a portion of the magnetic member to generate magnetic lines of force passing from one of the upper and lower poles to the other, with the magnetic member being positioned such that the upper and lower poles direct magnetic lines of force through the edges of each of the belts to establish containment forces at the edges of the belts to contain the molten metal therebetween.
- 2. An apparatus as defined in claim 1 which includes shield means positioned about the magnetic member to contain the magnetic lines of force within the magnetic member.
- 3. An apparatus as defined in claim 1 which includes an inner shield positioned within the magnetic member to contain the magnetic lines of force to the magnetic member.
- 4. An apparatus as defined in claim 1, wherein the magnetic member has a generally C-shaped configuration, including a core portion and parallel poles integral with and extending therefrom.
- 5. An apparatus as defined in claim 4, wherein the poles of the magnetic member terminate in pole faces positioned adjacent the endless belts whereby the magnetic lines of force pass from one of the pole faces through the belts and to the other of the pole face to thereby establish containment forces for molten metal maintained in the molding zone between the endless belts.
- 6. An apparatus as defined in claim 4, wherein the induction coil is wound about the core of the magnetic member.
- 7. An apparatus as defined in claim 1, wherein the magnetic member is formed of a ferromagnetic material from a series of laminated elements secured together.
- 8. An apparatus as defined in claim 1 which includes shield means positioned between the magnetic member and the entry pulleys to shield the entry pulleys from the magnetic lines of force.
- 9. An apparatus as defined in claim 5, wherein the pole faces are positioned adjacent to and at an angle with respect to the endless belts to ensure a gradient of magnetic flux at the lateral edges of the endless belts.
- 10. An apparatus as defined in claim 1, wherein the belts each have a lip formed by gradually increasing the thickness of the belts at their lateral edges adjacent the edge containment apparatus, said lips serving to modify the strength and distribution of the magnetic lines of force to confine liquid metal between the belts.
- 11. An apparatus as defined in claim 1, wherein the magnetic member is formed of a ferromagnetic material from a stack of bonded elements.
- 12. An apparatus as defined in claim 1, wherein the magnetic member is formed of a ferromagnetic material from a plurality of sections that are mechanically held together.
- 13. An apparatus as defined in claim 1, wherein the magnetic member is formed from a solid core of ferromagnetic material.
- 14. An apparatus as defined in claim 1, wherein the pole faces are parallel.
- 15. An apparatus as defined in claim 1, wherein the pole faces are not parallel.
- 16. An apparatus as defined in claim 1, wherein the pole faces have a first opposed surface parallel to each other and a second opposed surface not parallel to each other.
- 17. An apparatus as defined in claim 1, wherein a distance between the pole faces is greater at the outside edge of each pole face than at the inside edge of each pole face.
- 18. An apparatus as defined in claim 1, wherein a distance between the pole faces is greater at the inside edge of each pole face than at the outside edge of each pole face.
- 19. An apparatus as defined in claim 1, further comprising a mechanical edge dam that is positioned in a region along the belts where the magnetic lines of force are the weakest.
- 20. An apparatus as defined in claim 1, wherein either the upper or the lower half of the magnetic member is removable so as to facilitate replacement of the induction coil.
- 21. An electromagnetic edge containment device for a belt casting system for casting molten metal, the containment device comprising:
a magnetic member having a first pole, a first pole face, a second pole, and a second pole face; and a coil that generates magnetic lines of force in the magnetic member when current is supplied to the coil, the magnetic lines of force passing from the first pole face through an edge of the belt casting system to the second pole face.
- 22. An apparatus in accordance with claim 21, further comprising the belt casting system, the belt casting system having two belts that mold the molten metal.
- 23. An apparatus in accordance with claim 22, wherein the magnetic lines of force contain the molten metal in an edge region between the two belts.
- 24. An apparatus in accordance with claim 22, wherein the two belts have a curved region and a linear region.
- 25. An apparatus in accordance with claim 24, wherein the magnetic lines of force contain the molten metal in a region between the curved region of the two belts.
- 26. An apparatus in accordance with claim 22, wherein each belt has an edge that passes within a region between the first pole face and the second pole face.
- 27. An apparatus in accordance with claim 24, further comprising a pulley defining the curved region and a shield positioned between the magnetic member and the pulley to shield the pulley from the magnetic lines of force.
- 28. An apparatus in accordance with claim 26, wherein the belts have a curved region in a gap between the first pole face and the second pole face.
- 29. An apparatus in accordance with claim 28, wherein the first pole face and the second pole face become farther apart along the curved region.
- 30. An apparatus in accordance with claim 29, wherein a mechanical edge dam is located in a region along the belts where a gap between the first pole face and the second pole face is at a maximum.
- 31. An apparatus in accordance with claim 21, further comprising an outer shield surrounding the magnetic member so as to contain the magnetic lines of force within the magnetic member.
- 32. An apparatus in accordance with claim 21, further comprising an inner shield positioned within the magnetic member so as to contain the magnetic lines of force within the magnetic member.
- 33. An apparatus in accordance with claim 21, wherein the magnetic member includes a cooling passage for cooling the magnetic member.
- 34. An apparatus in accordance with claim 21, wherein the belts have a thickness which increases towards an outer edge thereof.
- 35. An apparatus in accordance with claim 23, wherein the first pole face is not parallel to the second pole face.
- 36. An apparatus in accordance with claim 23, wherein the first pole face is parallel to the second pole face.
- 37. An apparatus in accordance with claim 23, wherein the first pole face and the second pole face have a first opposed surface parallel to each other and a second opposed surface not parallel to each other.
- 38. An apparatus in accordance with claim 23, wherein a distance between the first pole face and the second pole face is greater at an outside edge of each pole face than at an inside edge of each pole face.
- 39. An apparatus in accordance with claim 23, wherein a distance between the first pole face and the second pole face is greater at the inside edge of each pole face than at an outside edge of each pole face.
- 40. An apparatus in accordance with claim 21, wherein the magnetic member is formed of a ferromagnetic material from a stack of bonded elements.
- 41. An apparatus in accordance with claim 21, wherein the magnetic member is formed of a ferromagnetic material from a plurality of sections that are mechanically held together.
- 42. An apparatus in accordance with claim 21, wherein the magnetic member is formed from a solid core of ferromagnetic material.
- 43. An apparatus in accordance with claim 21, wherein the first pole and/or the second pole is removably attached to the magnetic member so as to facilitate replacement of the coil.
- 44. A method of containing molten metal between two belts in a strip casting system, said method comprising the steps of:
delivering molten metal to a molding zone at an upstream end of the belts; solidifying the molten metal into a strip between the belts and conveying the strip between the belts in a downstream direction; containing molten metal at later edges of the belts in the molding zone by providing electrical current to a coil around a magnetic member to generate magnetic lines of force which contain the molten metal; winding a coil around a magnetic member having an upper pole face and a lower pole face; positioning the magnetic member so that the upper pole face and a lower pole face overlay a lateral edge of each belt; and, providing electrical current to the coil to generate magnetic lines of force.
- 45. An apparatus in accordance with claim 1 wherein the pole faces are not smooth.
- 46. An apparatus in accordance with claim 21 wherein the pole faces are not smooth.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/038,671, filed Feb. 20, 1997.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60038671 |
Feb 1997 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09015419 |
Jan 1998 |
US |
Child |
10461703 |
Jun 2003 |
US |