Claims
- 1. An apparatus for controlling slag in a tap discharge of molten metal and slag from a tap hole of a tilting furnace which is variably tiltable between an upright, non-tilted position and a fully-tilted position, said apparatus comprising:
- a trough extending outwardly from said tap hole and having a discharge outlet from which said molten metal can be discharged, said trough defining a lateral opening located inwardly of said discharge outlet and from which said slag can be discharged, said trough having a passage means for defining a generally Z-shaped flow path between said lateral opening and said discharge outlet.
- 2. An apparatus in accordance with claim 1 wherein said Z-shaped flow path defined by said passage means includes a lower passage outwardly of said lateral opening, an intermediate passage extending upwardly from said lower passage and inwardly toward said furnace, and an upper passage extending from said intermediate passage toward said discharge outlet.
- 3. An apparatus in accordance with claim 1 wherein said trough includes an inner trough portion and an outer trough portion, said inner trough portion being connected to said furnace and defining said lateral opening, said outer trough portion being connected to said inner trough portion and defining said passage means; and
- said apparatus further includes a slag chute mounted to, and extending laterally from, said inner trough portion at said lateral opening for directing said slag to a preselected deposit region.
- 4. An apparatus in accordance with claim 1 wherein said lateral opening is adjacent said passage means.
- 5. An apparatus for controlling slag in a tap discharge of molten metal and slag from a tap hole of a tilting furnace which is variably tiltable between an upright, non-tilted position and a fully-tilted position, said apparatus comprising:
- a trough extending outwardly from said tap hole and having a discharge outlet from which said molten metal can be discharged, said trough defining a lateral opening located inwardly of said discharge outlet and from which said slag can be discharged, said trough having a passage means for defining a lower passage outwardly of said lateral opening, an intermediate passage extending upwardly from said lower passage and inwardly toward said furnace, and an upper passage extending away from said intermediate passage and toward said discharge outlet.
- 6. An apparatus in accordance with claim 5 wherein said passage means defines a generally Z-shaped flow path.
- 7. An apparatus in accordance with claim 5 wherein said trough includes an inner trough portion and an outer trough portion, said inner trough portion being connected to said furnace and defining said lateral opening, said outer trough portion being connected to said inner trough portion and defining said passage means; and
- said apparatus further includes a slag chute mounted to, and extending laterally from, said inner trough portion at said lateral opening for directing said slag to a preselected deposit region.
- 8. An apparatus in accordance with claim 5 wherein said lateral opening is adjacent said passage means.
- 9. An apparatus in accordance with claim 5 wherein said intermediate passage is defined at least in part by an outer wall wherein said outer wall functions as a weir.
- 10. An apparatus in accordance with claim 9 wherein the bottom of said lateral opening is at a level which is located between, about 6 inches above to about 10 inches below the top of said outer wall when said furnace is in said upright, non-tilted position.
- 11. An apparatus in accordance with claim 9 wherein the bottom of said lateral opening is at a level which is at least as high as the top of said outer wall when said furnace is in said upright, non-tilted position.
- 12. An apparatus in accordance with claim 9 wherein the bottom of said lateral opening is at substantially the same level as the top of said outer wall when said furnace is in said upright, non-tilted position.
- 13. An apparatus in accordance with claim 9 wherein the bottom of said lateral opening is below the level of the top of said outer wall when said furnace is in said upright, non-tilted position.
- 14. An apparatus in accordance with claim 9 wherein the bottom of said lateral opening is at a level which is approximately 3 inches below the level of the top of said outer wall when said furnace is in said upright, non-tilted position.
- 15. An apparatus in accordance with claim 5 wherein the longitudinal axes of said lower passage and said upper passage are substantially horizontal when said furnace is in said upright, non-tilted position.
- 16. An apparatus in accordance with claim 5 wherein said lower passage is defined at least in part by a lower passage bottom wall, said bottom wall defining a depression for retaining molten metal when said furnace is in said upright, non-tilted position.
- 17. An apparatus in accordance with claim 5 wherein said lower passage has an inlet and a downstream end, said lower passage having a cross-sectional area at said inlet which is greater than the cross-sectional area at said downstream end.
- 18. An apparatus in accordance with claim 5 wherein said upper passage is defined at least in part by an upper passage top wall and an upper passage bottom wall, said upper passage top wall being sufficiently spaced from said upper passage bottom wall to permit the entry of outside air from said discharge outlet into said upper passage while said molten metal is flowing out of said discharge outlet.
- 19. An apparatus in accordance with claim 5 wherein said discharge outlet is defined in part by a discharge outlet top wall and a discharge outlet bottom wall, said discharge outlet top wall being sufficiently spaced from said discharge outlet bottom wall to permit entry of outside air into said upper passage while molten metal is flowing out of said discharge outlet.
- 20. An apparatus in accordance with claim 5 wherein said intermediate passage has a generally straight length which is substantially vertical when said furnace is in said fully tilted position.
- 21. An apparatus in accordance with claim 5 wherein said intermediate passage has a generally straight length which is oriented at an angle of between approximately 15.degree. and approximately 60.degree. from the horizontal when said furnace is in said upright, nontilted position.
- 22. An apparatus in accordance with claim 21 wherein said angle is approximately 23.degree..
- 23. An apparatus in accordance with claim 5 wherein said intermediate passage is approximately 45 inches long.
- 24. An apparatus in accordance with claim 5 wherein said intermediate passage has a rectangular cross-section which is approximately 6 inches high and 22 inches wide.
- 25. An apparatus in accordance with claim 5 wherein at least a portion of said upper passage has a rectangular cross-section which is approximately 10 inches high and 22 inches wide.
- 26. An apparatus in accordance with claim 5 wherein said upper passage is defined at least in part by an upper passage top wall, said upper passage top wall being pivotally moveable between an operative position and an access position.
- 27. An apparatus in accordance with claim 5 wherein said inlet of said lower passage has a square cross-section of approximately 22 inches on a side.
- 28. An apparatus in accordance with claim 1 including a lip extending outwardly from the bottom of said discharge outlet.
- 29. An apparatus for controlling slag in a tap discharge of molten metal and slag from a tap hole of a tilting furnace which is variably tiltable between an upright, non-tilted position and a fully-tilted position, said apparatus comprising:
- an inner trough portion mounted to said furnace and extending outwardly from said tap hole, said inner trough portion having a distal end and defining a lateral opening inwardly of said distal end;
- a slag chute mounted to, and extending laterally from, said inner trough portion at said lateral opening for directing said slag to a preselected deposit region; and
- an outer trough portion mounted to, and extending outwardly from, said distal end of said inner trough portion, said outer trough portion including refractory defining an inlet, a discharge outlet, and a passage means communicating between said inlet and said discharge outlet for permitting the flow of said molten metal along a substantially Z-shaped path through said outer trough portion from said inlet to said discharge outlet.
- 30. A method for controlling slag in a tap discharge of molten metal and floating slag from a tap hole of a tilting furnace which is variably tiltable between an upright, non-tilted position and a fully tilted position, said furnace having a trough extending outwardly from said tap hole to a discharge outlet, said trough defining a lateral opening located inwardly of said discharge outlet and from which said slag can be discharged, said method comprising the steps of:
- (a) sufficiently tilting said furnace and trough to discharge said molten metal and slag from said tap hole into said trough whereby said molten metal can flow under the influence of gravity out of said discharge outlet;
- (b) directing said flow of molten metal through a generally Z-shaped flow path in said trough;
- (c) damming and retaining said slag in said trough while permitting said molten metal to flow out of said discharge outlet; and
- (d) discharging said retained slag through said lateral opening to a location remote from said discharge outlet.
- 31. The method in accordance with claim 30 wherein step (a) includes increasing the angle of tilt during said discharge of said molten metal and slag in step (a).
- 32. The method in accordance with claim 30 wherein said Z-shaped flow path is defined in said trough by a lower passage outwardly of said lateral opening, an intermediate passage extending upwardly from said lower passage and inwardly toward said furnace, and an upper passage extending away from said intermediate passage toward said discharge outlet;
- said step (c) includes:
- maintaining the level of said molten metal below the bottom of said lateral opening; and
- said step (d) includes:
- maintaining the level of the top of said floating slag above at least a portion of the bottom of said lateral opening.
- 33. A method for controlling slag in a tap discharge of molten metal and floating slag from a tap hole of a tilting furnace which is variably tiltable between an upright, nontilted position and a fully tilted position, said furnace having a trough extending outwardly from said tap hole to a discharge outlet, said trough defining a lateral opening located inwardly of said discharge outlet and from which said slag can be discharged, said method comprising the steps of:
- (a) sufficiently tilting said furnace and trough to discharge said molten metal and slag from said tap hole into said trough whereby said molten metal can flow under the influence of gravity out of said discharge outlet;
- (b) directing said flow of molten metal through a lower passage outwardly of said lateral opening, an intermediate passage extending upwardly from said lower passage and inwardly toward said furnace, and an upper passage extending away from said intermediate passage toward said discharge outlet;
- (c) damming and retaining said slag in said trough while permitting said molten metal to flow out of said discharge outlet; and
- (d) discharging said retained slag through said lateral opening to a location remote from said discharge outlet.
- 34. The method in accordance with claim 33 wherein step (a) includes increasing the angle of tilt during said discharge of said molten metal and slag in step (a).
- 35. The method in accordance with claim 33 wherein
- said step (c) includes:
- maintaining the level of said molten metal below the bottom of said lateral opening; and
- said step (d) includes:
- maintaining the level of the top of said floating slag in the trough above at least a portion of the bottom of said lateral opening.
- 36. An apparatus in accordance with claim 5 including a lip extending outwardly from the bottom of said discharge outlet.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of the copending U.S.A. patent application Ser. No. 07/560,598, filed on Jul. 31, 1990 by William S. Laszlo.
US Referenced Citations (10)
Continuation in Parts (1)
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Number |
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560598 |
Jul 1990 |
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