Claims
- 1. An electric steel-making furnace including the combination of:
a furnace roof carried by an upper furnace shell on a lower furnace shell to substantially envelop an atmosphere above liquid steel and slag floating thereon in said lower furnace shell, said lower furnace shell having a refractory lining with a deslagging passageway in a sidewall thereof; a transfer car supporting said lower furnace shell for transport from a furnace operating site to a remote exchange site for exchanging one or more of said furnace roof, said upper furnace shell and said lower furnace shell; and a support including an actuator to tilt said lower furnace shell at said furnace operating site on said transfer car in a direction to increase the depth of slag at said deslagging passageway for decanting slag floating on liquid steel in said lower furnace shell.
- 2. The electric steel-making furnace according to claim 1 wherein said transfer car further includes a furnace support frame supported by wheel assemblies, and wherein said actuator includes spaced apart link arms pivotally interconnecting said furnace support frame with said wheel assemblies and wherein said transfer car further includes a drive to control pivotal displacement of said furnace support frame about said link arms.
- 3. The electric steel-making furnace according to claim 2 wherein said transfer car further includes frame stabilizers operatively interconnecting said furnace support frame and said wheel assemblies.
- 4. The electric steel-making furnace according to claim 3 wherein said frame stabilizers include a guide bar secured to said wheel assemblies and a guide supported by said furnace support frame for slidably receiving said guide bar.
- 5. The electric steel-making furnace according to claim 4 wherein said guide comprises guide plates spaced vertically on said furnace support frame.
- 6. The electric steel-making furnace according to claim 5 wherein said spaced apart link arms extend along opposite sides of said furnace support frame at a non slagging end thereof which is opposite to an end containing said deslagging passageway in said lower furnace shell for pivoting said lower furnace shell by operation of said actuator in a direction which elevates said non slagging end relative to said wheel assemblies to decant slag floating on said liquid steel.
- 7. The electric steel-making furnace according to claim 6 wherein said actuator comprises a piston and cylinder assembly for each of said link arms, each piston cylinder and assembly having a rod end secured to one of said wheel assembly and said furnace support frame and a cylinder end secured to the other end of said wheel assembly and said furnace support frame, each of said piston and cylinder assembly having the rod end extendable from the cylinder end to pivot said lower furnace shell from a horizontal orientation for refining liquid steel therein to an angled position to the horizontal to decant slag floating on said liquid steel.
- 8. The electric steel-making furnace according to claim 5 wherein said spaced apart link arms extend along opposite sides of said furnace support frame at an end thereof containing said deslagging passageway in said lower furnace shell for pivoting said lower furnace shell by operation of said actuator in a direction which lowers said deslagging passageway toward said wheel assemblies to decant slag floating on said liquid steel.
- 9. The electric steel-making furnace according to claim 8 wherein said actuator comprises a piston and cylinder assembly for each of said link arms, each piston cylinder and assembly having a rod end secured to one of said wheel assembly and said furnace support frame and a cylinder end secured to the other end of said wheel assembly and said furnace support frame, each of said piston and cylinder assembly having the rod end extended from the cylinder end to establish a horizontal orientation of said lower furnace shell for refining liquid steel therein, a lock having an operative position preventing tilting of said lower furnace shell by said transfer car, and a lock actuator for displacing said lock into an inoperative position from said operative position to allow tilting of said lower furnace shell.
- 10. The electric steel-making furnace according to claim 9 wherein said lock comprises an elongated lock bar slidably supported between spaced apart guides.
- 11. The electric steel-making furnace according to claim 10 wherein said spaced apart guides are supported by said furnace support frame at opposite lateral sides of each of said frame stabilizers, said frame stabilizers having apertures aligned with guide ways of said pair of guides for establishing interlocking engagement by a resident of said elongated lock in said apertures and said pair of guides.
- 12. The electric steel-making furnace according to claim 2 wherein said lower said furnace shell includes a tap hole in said refractory lining at a side thereof opposite to the site of said deslagging passageway, said spaced apart link arms extend along opposite sides of said furnace support frame at each of the ends thereof containing said tap hole and said deslagging passageway for tilting said lower furnace shell in opposite directions one direction for slag decanting and one direction for tapping a heat of liquid steel.
- 13. The electric steel-making furnace according to claim 2 wherein said lower said furnace shell includes a tap hole in said refractory lining at a side thereof opposite to the site of said deslagging passageway, said link arms extend along opposite sides of said furnace frame at each of the ends thereof containing said deslagging passageway and said tap hole and wherein said actuator tilts said furnace support frame at different times for lowering said deslagging passageway toward said wheel assembly for slag decanting and for lowering said tap hole toward said wheel assemblies for tapping a heat of liquid steel.
- 14. The electric steel-making furnace according to claim 12 wherein said actuator includes actuators at the opposite ends of said furnace support frame where said deslagging passageway and said tap hole reside, said actuators extending between said furnace support frame and wheel assemblies for raising said tap hole relative to said wheel assemblies for decanting slag from said deslagging passageway and at other times for raising said deslagging passageway relative to said wheel assemblies for tapping a heat of liquid steel.
- 15. The electric steel-making furnace according to claim 1 wherein said transfer car includes a wheeled carriage supporting a furnace support frame for tilting movement of the furnace support frame in a direction to alter the elevation of said deslagging passageway relative to said wheel carriage.
- 16. The electric steel-making furnace according to claim 15 wherein said transfer car further includes spaced apart rocker rails secured to said furnace support frame and engaged between spaced apart support rollers rotatably mounted on said wheeled carriage.
- 17. The electric steel-making furnace according to claim 16 wherein said actuator includes a piston and cylinder assembly interconnecting said wheeled carriage and said furnace support frame.
- 18. The electric steel-making furnace according to claim 16 wherein said transfer car further includes weighing sensors responsive to a load imposed by said furnace support frame along said spaced apart rollers for deriving an electronic signal responsive to the weight of the liquid steel in said furnace.
- 19. The electric steel-making furnace according to claim 1 further including rails supporting said transfer car for movement between said furnace operating site and said exchange site.
- 20. The electric steel-making furnace according to claim 19 further including weighing sensors responsive to a load imposed by said furnace support frame along said rails for deriving an electronic signal responsive to the weight of the liquid steel in said furnace.
- 21. A method for producing steel in an electric furnace, said method of including the steps of:
providing an electric furnace including a transfer car supporting a lower furnace shell having a sidewall containing a deslagging passageway at an end of a floor wall opposite to a tap hole; refining consecutively steel heats in said electric furnace while residing on said transfer car at an operating site for the furnace; decanting slag floating on consecutively refined steel heats by using said transfer cat to tilt said lower furnace shell in a direction to increase the slag depth at said deslagging passageway; tapping liquid steel from consecutive steel heats after decanting slag there from by using said transfer cat to tilt said lower furnace shell in a direction to increase the liquid steel depth at said tap hole; transporting said lower furnace shell on said transfer car from said furnace operating site to a remote lower furnace exchange site; using said transfer car to transport a replacement lower furnace shell to said furnace operating site; and thereafter repeating said steps of refining, decanting, and tapping.
- 22. The method according to claim 21 wherein said step of decanting slag includes tilting said lower furnace shell to increase the slag depth at said deslagging passageway.
- 23. The method according to claim 22 wherein said tilting said lower furnace shell to increase the slag depth consists of lowering said furnace shell at said deslagging passageway.
- 24. The method according to claim 22 wherein said tilting said lower furnace shell to increase the slag depth consists of raising said furnace shell at said tap hole.
- 25. The method according to claim 21 wherein said step of tapping liquid steel includes tilting said lower furnace shell to increase the liquid steel depth at said tap hole.
- 26. The method according to claim 25 wherein said tilting said lower furnace shell to increase the liquid steel depth consists of lowering said furnace shell at said tap hole.
- 27. The method according to claim 25 wherein said tilting said lower furnace shell to increase the liquid steel depth consists of raising said furnace shell at said deslagging passageway.
- 28. The method according to claim 21 wherein said step of decanting slag includes rocking said lower furnace shell about a radius extending from a central axis of said lower furnace shell to increase the slag depth at said deslagging passageway.
- 29. The method according to claim 28 wherein said step of said step of tapping liquid steel includes rocking said lower furnace shell about a radius extending from a central axis of said lower furnace shell to increase the liquid steel depth at said tap hole.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation in part of application Ser. No. 09/738,095 filed Dec. 15, 2000 and related to applications Ser. No. 09/737,440 filed Dec. 13, 2000; Ser. No. 09/739,851 filed Dec. 18, 2000; and Ser. No. 10/039,672 filed Nov. 07, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09738095 |
Dec 2000 |
US |
Child |
10122030 |
Apr 2002 |
US |