Claims
- 1. A method for separating molten metal and slag comprising the steps of:
- (a) providing a free-falling flow of molten metal and slag; and
- (b) providing a movable vessel having a reservoir including a flow path therethrough, said reservoir having a molten metal outlet, a slag opening, and a drain hole, said flow path including a first portion having an open top for receiving said flow of molten metal and slag, said first portion being configured to eliminate turbulence caused by said free-falling flow of molten metal and slag into said reservoir and to permit separation of said molten metal from said slag wherein said slag floats on top of said molten metal, said first portion of said flow path being configured to direct flow rearwardly, said flow path including a second downstream portion being configured to direct flow forwardly.
- 2. A method for separating molten metal and slag in accordance with claim 1 wherein said flow path is configured to reduce said turbulent flow to a substantially laminar flow therethrough.
- 3. A method for separating molten metal and slag in accordance with claim 1 wherein said step (a) includes providing a free-falling flow of molten metal and slag from a source, said source varying in position with respect to said vessel as said flow progresses.
- 4. A method for separating molten metal and slag in accordance with claim 1 including step (c) moving said vessel to a first position for accumulating said slag within said reservoir and discharging said molten metal out of said molten metal outlet.
- 5. A method for separating molten metal and slag in accordance with claim 4 including step (d) moving said vessel to a second position for discharging said molten metal out of said molten metal outlet and for discharging said slag out of said slag opening while continuing to receive said free-falling flow of molten metal and slag.
- 6. A method for separating molten metal and slag in accordance with claim 5 including step (e) moving said vessel to a third position after said free-falling flow of molten metal and slag has ceased wherein said discharge of molten metal and slag ceases and a minimal amount of slag is retained within said reservoir.
- 7. A method for separating molten metal and slag in accordance with claim 6 including step (f) discharging said molten metal and slag through said drain hole.
- 8. A method for separating molten metal and slag in accordance with claim 7 wherein said step (f) includes moving said vessel in at least one of a horizontal and vertical direction.
- 9. A method for separating molten metal and slag comprising the steps of:
- (a) providing a flow of molten metal and slag;
- (b) providing a movable vessel having a reservoir, said reservoir having a flow path therethrough, said flow path including a first chamber for receiving said flow and being configured for separating said molten metal and slag, said first chamber of said flow path being configured to direct flow rearwardly, said flow path including a second downstream chamber being configured to direct flow forwardly, said reservoir including a slag opening for discharge of said slag and a dam positioned at the end of said flow path, said dam including an opening proximate a bottom of said reservoir in operable communication with a passage, said passage including a weir and an outlet for said molten metal;
- (c) locating said vessel in a first position which (1) accepts said flow within said first chamber of said flow path, (2) separates said molten metal from said slag, and (3) enables said molten metal to flow under the influence of gravity along said flow path, through said dam opening, into said passage, generally upward along said weir and out of said molten metal outlet while said slag accumulates in said reservoir; and
- (d) collecting said molten metal from said molten metal outlet.
- 10. A method for separating molten metal and slag in accordance with claim 9 wherein step (c) includes positioning said slag opening at a first elevation above said molten metal outlet.
- 11. A method for separating molten metal and slag in accordance with claim 9 including step (e) moving said vessel to a second heavy slag discharge position after collection of a substantial amount of molten metal and accumulation of a desired amount of slag in said reservoir, said second position providing a substantially rapid discharge of said slag out of said slag opening while continuing to receive said flow of molten metal and slag and continuing to discharge said molten metal from said molten metal outlet.
- 12. A method for separating molten metal and slag in accordance with claim 11 wherein step (e) includes positioning said slag opening in a second elevation above said molten metal outlet, said second elevation being less than said first elevation.
- 13. A method for separating molten metal and slag in accordance with claim 11 including step (f) moving said vessel to a third position after said flow of molten metal and slag into said vessel has ceased and after the majority of molten metal and slag has been discharged from said vessel, said third position retaining a minimal amount of molten metal and slag in said vessel.
- 14. A method for separating molten metal and slag in accordance with claim 13 including step (g) moving said vessel to a fourth position for enabling draining of said molten metal and slag remaining in said vessel.
- 15. A method for separating molten metal and slag in accordance with claim 9 wherein said flow is provided directly from a tap hole of a detached rotating furnace positioned above said vessel, said furnace being rotated to empty molten metal and slag contained therein, said furnace rotation providing said variable flow position with respect to said vessel.
- 16. A method for separating molten metal and slag comprising the steps of:
- (a) providing a tiltable vessel having a reservoir; said reservoir including a flow path therethrough, said flow path including a first portion being configured to direct flow rearwardly, said flow path including a second downstream portion being configured to direct flow forwardly, a slag opening for discharge of said slag, and a dam positioned at the end of said flow path; said dam including an opening proximate a bottom of said reservoir in operable communication with a passage, said passage including a weir and an outlet for said molten metal;
- (b) locating said vessel in a first position which enables said molten metal to flow under the influence of gravity along said flow path, through said dam opening, into said passage, generally upward along said weir and out of said outlet while enabling said slag to accumulate in said reservoir;
- (c) providing a flow of molten metal and slag into said reservoir; and
- (d) moving said vessel to a second heavy slag discharge position upon accumulation of a desired amount of said slag in said reservoir where said slag rapidly can be discharged through said slag opening while said molten metal continues to flow out of said outlet.
- 17. A method for separating molten metal and slag in accordance with claim 16 including step (e) moving said vessel to a third position after said flow into said reservoir has ceased and after a majority of said molten metal and said slag have been discharged from said vessel where any residual molten metal and slag are retained within said vessel.
- 18. A method for separating molten metal and slag in accordance with claim 17 including step (f) moving said vessel to a fourth position for enabling draining of said molten metal and slag retained in said vessel.
- 19. An apparatus for separating molten metal and slag comprising:
- a vessel having a reservoir including a flow path therethrough, said flow path including a first portion for receiving a free-falling, turbulent flow of molten metal and slag, said first portion being configured to eliminate said turbulence in said flow and to permit separation of said molten metal and slag wherein said slag floats on top of said molten metal, said flow path including a second downstream portion, said second portion including a dam at a downstream end thereof for retaining said floating slag while permitting said molten metal to flow thereunder and out of said vessel, said vessel having a flow constriction located between said first portion and said second portion, said vessel having a slag opening adjacent said first and second portions of said flow path to permit discharge of said floating slag.
- 20. An apparatus for separating molten metal and slag in accordance with claim 19 wherein said flow path is configured to reduce said turbulent flow to a substantially laminar flow therethrough.
- 21. An apparatus for separating molten metal and slag in accordance with claim 20 wherein said first portion includes a narrow section and a wide section, said wide section being located downstream of said narrow section.
- 22. An apparatus for separating molten metal and slag in accordance with claim 21 wherein said first portion of said reservoir is tapered between said narrow section and said wide section.
- 23. An apparatus for separating molten metal and slag in accordance with claim 19 wherein said first portion of said reservoir has an elongated receiving zone for receiving said free-falling flow.
- 24. An apparatus for separating molten metal and slag in accordance with claim 19 wherein said second downstream portion of said reservoir includes a narrow section and a wide section, said wide section being located downstream of said narrow section.
- 25. An apparatus for separating molten metal and slag in accordance with claim 24 wherein said second portion of said reservoir is tapered between said narrow section and said wide section.
- 26. An apparatus for melting molten metal and slag in accordance with claim 19 wherein said flow path is generally U-shaped.
- 27. An apparatus for separating molten metal and slag in accordance with claim 19 wherein said flow path includes at least one substantially abrupt change in the flow direction to assist in separating said molten metal and slag and accumulating said slag in said reservoir.
- 28. An apparatus for separating molten metal and slag in accordance with claim 19 wherein said vessel is tiltable to an operating position wherein said first portion of said flow path includes an upward slope when said vessel is in said operating position.
- 29. An apparatus for separating molten metal and slag in accordance with claim 28 wherein said second portion of said flow path includes a downward slope when said vessel is in said operating position.
- 30. An apparatus for separating molten metal and slag in accordance with claim 19 wherein said flow path includes a passage located downstream of said second portion for discharge of said molten metal out of said vessel, said vessel having a channel distinct from said flow path and interconnecting said first portion of said flow path to said passage for charging said passage with molten metal.
- 31. A method for separating molten metal and slag comprising the steps of:
- (a) receiving a flow of molten metal and slag into a vessel;
- (b) directing said molten metal and slag in the vessel from a relatively narrow portion of said vessel into a relatively wide portion of said vessel so as to slow the velocity of said flow and permit pooling of said molten metal and slag, said vessel defining a flow path, said flow path including a first portion being configured to direct flow rearwardly, said flow path including a second downstream portion being configured to direct flow forwardly;
- (c) providing a slag opening adjacent said wide portion for discharge of floating slag; and
- (d) providing a dam downstream of said wide portion for retaining said slag in said wide portion and permitting discharge of molten metal under said dam and out of said vessel.
- 32. A method for separating molten metal and slag in accordance with claim 31 including step (e) directing said flow in said wide portion around a bend.
- 33. A method for separating molten metal and slag in accordance with claim 32 wherein said bend is at least 90 degrees.
- 34. A method for separating molten metal in accordance with claim 32 wherein said bend has a flow restriction.
- 35. A method for separating molten metal and slag in accordance with claim 31, wherein said vessel includes a discharge outlet for discharge of said molten metal, said outlet being located on a side of said vessel opposite said slag opening, said method including the following steps:
- (e) tilting said vessel toward said discharge outlet for discharge of said molten metal; and
- (f) tilting said vessel toward said slag opening for discharge of said slag.
- 36. A method for separating molten metal and slag in accordance with claim 31 including further step (e) directing said molten metal over a weir after it passes under said dam.
- 37. A method for separating molten metal and slag in accordance with claim 31 wherein step (d) includes maintaining a minimum depth of molten metal in said vessel.
- 38. A method for separating molten metal and slag comprising the steps of:
- (a) receiving a turbulent flow of molten metal and slag into tiltable vessel, said vessel defining a flow path, said flow path including a first portion being configured to direct flow rearwardly, said flow path including a second downstream portion being configured to direct flow forwardly;
- (b) reducing said turbulent flow to a non-turbulent flow in said vessel so as to permit separation of said molten metal and slag wherein said slag floats on top of said molten metal while said vessel tilts for discharge of said molten metal;
- (c) providing a slag opening in the perimeter of said vessel adjacent said non-turbulent flow for discharge of floating slag; and
- (d) providing a dam in said vessel for retaining said slag in said vessel and permitting discharge of molten metal under said dam and out of said vessel.
- 39. A method for separating molten metal and slag in accordance with claim 38 including further step:
- (e) maintaining a minimum depth of molten metal in said vessel.
- 40. A method for separating molten metal and slag in accordance with claim 38 wherein step (d) includes providing a weir downstream of said dam for directing said flow of molten metal over said weir.
- 41. A method for separating molten metal and slag comprising the steps of:
- (a) receiving a flow of molten metal and slag into a tilting vessel;
- (b) directing said flow of molten metal and slag through a U-shaped reservoir having an upstream chamber and a downstream chamber, said upstream chamber being configured to permit pooling of said molten metal and slag so as permit separation of said molten metal and slag wherein said slag floats on top of said molten metal while said vessel is tilted;
- (c) providing a slag opening adjacent said upstream chamber for discharge of floating slag; and
- (d) providing a dam in said downstream chamber for retaining said slag in said vessel and permitting discharge of molten metal under said dam and out of said vessel.
- 42. A method for separating molten metal and slag in accordance with claim 41 wherein step (b) includes reducing said flow of molten metal and slag from turbulent flow to non-turbulent flow.
- 43. A method for separating molten metal and slag in accordance with claim 41 wherein step (b) includes reducing the velocity of said flow within said upstream chamber.
- 44. A method for separating molten metal and slag in accordance with claim 50 wherein step (b) includes directing said flow around a baffle in said upstream chamber.
- 45. A method for separating molten metal in accordance with claim 41 wherein step (b) includes reducing the velocity of said flow within said downstream chamber.
- 46. A method for separating molten metal in accordance with claim 41 including further step:
- (e) providing a narrow flow constriction between the upstream chamber and the downstream chamber.
- 47. An apparatus for separating molten metal and slag comprising:
- a tilting vessel having an open top, said vessel having a first chamber and a second chamber, said first chamber being configured for receiving a flow of molten metal and slag, said first chamber having a relatively narrow section and a relatively wide section, said second chamber being adjacent said wide section;
- a slag opening defined in said vessel and adjacent said wide section for discharge of floating slag; and
- a dam at a downstream end of said second chamber for retaining said slag in said vessel and permitting discharge of molten metal under said dam and out of said vessel.
- 48. An apparatus for separating molten metal and slag in accordance with claim 47 wherein said first chamber is tapered between said narrow section and said wide section.
- 49. An apparatus for separating molten metal and slag in accordance with claim 47 wherein said vessel includes a metal discharge opening, said discharge opening and said slag opening being located at opposite ends of said vessel.
- 50. An apparatus for separating molten metal and slag in accordance with claim 49 wherein said vessel is tiltable in the direction of said discharge opening.
- 51. An apparatus for separating molten metal and slag in accordance with claim 49 wherein said vessel is tiltable in the direction of said slag opening.
- 52. An apparatus for separating molten metal and slag in accordance with claim 47 wherein said first and second chambers define a U-shaped flow path.
- 53. An apparatus for separating molten metal and slag in accordance with claim 52 wherein said vessel is tiltable to a metal discharging position, said first chamber being oriented at an angle rearwardly and upwardly and said flow path in said first chamber being uphill when said vessel is in said metal discharging position.
- 54. An apparatus for separating molten metal and slag in accordance with claim 53 wherein said second chamber is oriented at an angle forwardly and downwardly and said flow path in said second chamber is downhill when said vessel is in said metal discharging position.
- 55. An apparatus for separating molten metal and slag in accordance with claim 47 including a weir downstream of said dam for maintaining a minimum depth of flow in said vessel.
- 56. An apparatus for separating molten metal and slag in accordance with claim 47 including a drain hole in the bottom of said vessel.
- 57. An apparatus for separating molten metal and slag comprising:
- a tilting vessel having an open top, said vessel having a first chamber and a second chamber connected to each other, said first chamber and said second chamber defining a U-shaped flow path, said first chamber being configured to receive a flow of molten metal and slag and to permit pooling and separation of said molten metal and slag wherein said slag floats on top of said molten metal;
- a slag opening defined in a side of said vessel for discharge of floating slag; and
- a dam adjacent the downstream end of said second chamber for retaining said slag in said vessel and permitting discharge of molten metal under said dam and out of said vessel.
- 58. An apparatus for separating molten metal and slag in accordance with claim 57 wherein said first chamber has a narrow section and a wide section, said wide section being adjacent to said second chamber.
- 59. An apparatus for separating molten metal and slag in accordance with claim 58 wherein said first chamber is tapered.
- 60. An apparatus for separating molten metal and slag in accordance with claim 59 including a weir located downstream of said dam for maintaining a minimum depth of flow in said vessel.
- 61. An apparatus for separating molten metal and slag comprising:
- a tilting vessel having an open top, said vessel having a first chamber and a second chamber, said chambers being laterally offset and being separated by an intermediate wall, said intermediate wall being oriented at an angle whereby each chamber has a relatively narrow section and a relatively wide section and each of said chambers is tapered, said vessel defining a flow path from said first chamber to said second chamber;
- a slag opening defined in a side of said vessel for discharge of floating slag; and
- a dam adjacent said second chamber for retaining said slag in said vessel and permitting discharge of molten metal under said dam and out of said vessel.
- 62. An apparatus for separating molten metal and slag in accordance with claim 61 including a flow constriction between said first chamber and said second chamber.
- 63. An apparatus for separating molten metal and slag in accordance with claim 62 wherein said flow constriction is defined in part by the proximity of the end of said intermediate wall and the perimeter of said vessel.
- 64. An apparatus for separating molten metal and slag in accordance with claim 62 wherein said flow constriction includes a 180.degree. change in flow direction.
- 65. An apparatus for separating molten metal and slag in accordance with claim 61 wherein said flow moves from said narrow section to said wide section in each of said chambers.
- 66. An apparatus for separating molten metal and slag in accordance with claim 61 wherein said intermediate wall is relatively planar and wherein each of said chambers has a smooth taper from said wide section to said narrow section.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application Ser. No. 08/178,911, filed Jan. 7, 1994, now abandoned, which is a continuation-in-part of U.S. patent application Ser. No. 08/084,348, filed Jun. 28, 1993 issued as U.S. Pat. No. 5,375,818, which is a continuation-in-part of U.S. patent application Ser. No. 07/832,719, filed Feb. 7, 1992 and issued as U.S. Pat. No. 5,240,231, and U.S. patent application Ser. No. 07/912,844, filed Aug. 7, 1992 and now abandoned. Ser. No. 07/832,719 is a continuation-in-part of Ser. No. 07/722,524, filed Jun. 27, 1991 and issued as U.S. Pat. No. 5,173,244, which is a continuation-in-part of Ser. No. 07/560,598, filed Jul. 31, 1990 and issued as U.S. Pat. No. 5,173,243. Ser. No. 07/912,844 is a continuation of Ser. No. 07/560,598. The specifications of Ser. Nos. 08/178,911, 08/084,348, 07/832,719, 07/912,844, 07/722,524, and 07/560,598 are incorporated herein by reference.
US Referenced Citations (4)
Foreign Referenced Citations (1)
Number |
Date |
Country |
4354811 |
Dec 1992 |
JPX |
Non-Patent Literature Citations (1)
Entry |
Laszlo et al. "A Device To Separate Slag From Liquid Metal" Article Presented at the Meeting of the American Institute of Metallurgical Engineers, Nov. 1993, pp. 1-7. |
Continuation in Parts (6)
|
Number |
Date |
Country |
Parent |
178911 |
Jan 1994 |
|
Parent |
84348 |
Jun 1993 |
|
Parent |
832719 |
Feb 1992 |
|
Parent |
560598 |
Jul 1990 |
|
Parent |
722524 |
Jun 1991 |
|
Parent |
560598 |
|
|