Claims
- 1. A hoist apparatus for positioning the anode relative to the cathode of a smelting furnace, the cathode having an upwardly facing surface, and the anode having a downwardly facing surface, said apparatus comprising
- a pair of channel members which are adapted to be supported by a crane and which define opposed, generally vertical channels,
- a cylinder/piston assembly including a vertically extending cylinder located between said channel members, and a piston rod extending downwardly from said cylinder,
- a carrier fixed to said piston rod for movement therewith, said carrier having thereon rollers guided in said channels,
- means for releasably securing the anode to said carrier such that the anode moves vertically with said carrier, and
- a control system which is connected to said cylinder/piston assembly and which includes means for causing extension of said piston rod until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and means for thereafter causing retraction of said piston rod a set distance to provide a gap between the anode and the cathode.
- 2. Smelting apparatus comprising
- a smelting furnace including a cathode having an upwardly facing surface,
- a horizontal bus bar extending above said furnace,
- an anode having a downwardly facing surface,
- a vertical bus bar having a lower end fixed to said anode,
- an overhead crane including horizontal, parallel, spaced-apart runways supported above said furnace, horizontal, parallel, spaced-apart bridge girders extending between and perpendicular to said runways, means for moving said bridge girders along said runways, a trolley extending between and supported by said bridge girders, means for moving said trolley along said bridge girders, and a frame supported by said trolley for rotation relative thereto about a generally vertical axis,
- an anode positioning hoist including a pair of channel members which are supported by said frame and which define opposed, generally vertical channels, a cylinder/piston assembly including a vertically extending cylinder supported by said frame and located between said channel members, and a piston rod extending downwardly from said cylinder, a carrier fixed to said piston rod for movement therewith, said carrier having thereon rollers guided in said channels, means for releasably securing said vertical bus bar to said carrier such that said vertical bus bar and said anode move vertically with said carrier, and a control system which is connected to said cylinder/piston assembly and which includes means for causing extension of said piston rod until said downwardly facing surface of said anode engages said upwardly facing surface of said cathode, and means for thereafter causing retraction of said piston rod a set distance to provide a gap between said anode and said cathode, and
- means for releasably securing said vertical bus bar to said horizontal bus bar so as to fix said gap.
- 3. Apparatus as set forth in claim 2 wherein said means for releasably securing said vertical bus bar to said horizontal bus bar includes a locking mechanism fixed to said horizontal bus bar.
- 4. Apparatus as set forth in claim 3 and further comprising means mounted on said frame for automatically operating said locking mechanism.
- 5. A method for positioning an anode relative to a cathode of a smelting furnace, the cathode having an upwardly facing surface, and the anode having a downwardly facing surface, said method comprising the steps of
- (a) moving the anode downwardly until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and
- (b) thereafter moving the anode upwardly a set distance to provide a gap between the anode and the cathode,
- wherein steps (a) and (b) include providing a cylinder/piston assembly including a vertically extending cylinder and a piston rod extending downwardly from the cylinder, releasably securing the anode to the piston rod, extending the piston rod until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and thereafter retracting the piston rod the set distance to provide the gap between the anode and the cathode,
- wherein steps (a) and (b) also include providing a carrier fixed to the piston rod for movement therewith, and releasably securing the anode to the carrier such that the anode moves vertically with the carrier, and
- wherein steps (a) and (b) also include providing a pair of channel members which are adapted to be supported by a crane and which define opposed, generally vertical channels, and providing the carrier with rollers guided in the vertical channels.
- 6. A method as set forth in claim 5 wherein step (a) includes providing a hoist apparatus and using the hoist apparatus to move the anode downwardly until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode.
- 7. A method as set forth in claim 6 wherein step (b) includes using the hoist apparatus to move the anode upwardly the set distance to provide the gap between the anode and the cathode.
- 8. A method as set forth in claim 5 wherein steps (a) and (b) also include providing a control system which is connected to the cylinder/piston assembly, and using the control system to cause extension of the piston rod until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and to thereafter cause retraction of the piston rod the set distance to provide the gap between the anode and the cathode.
- 9. A method for positioning an anode relative to a cathode of a smelting furnace, the cathode having an upwardly facing surface, and the anode having a downwardly facing surface, said method comprising the steps of
- (a) providing a hoist apparatus,
- (b) using the hoist apparatus to move the anode downwardly until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and
- (c) thereafter using the hoist apparatus to move the anode upwardly a set distance to provide a gap between the anode and the cathode,
- wherein steps (b) and (c) include providing a cylinder/piston assembly including a vertically extending cylinder and a piston rod extending downwardly from the cylinder, releasably securing the anode to the piston rod, extending the piston rod until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and thereafter retracting the piston rod the set distance to provide the gap between the anode and the cathode,
- wherein steps (b) and (c) also include providing a carrier fixed to the piston rod for movement therewith, and releasably securing the anode to the carrier such that the anode moves vertically with the carrier, and
- wherein steps (b) and (c) also include providing a pair of channel members which are adapted to be supported by a crane and which define opposed, generally vertical channels, and providing the carrier with rollers guided in the vertical channels.
- 10. A method as set forth in claim 9 wherein steps (b) and (c) also include providing a control system which is connected to the cylinder/piston assembly, and using the control system to cause extension of the piston rod until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and to thereafter cause retraction of the piston rod the set distance to provide the gap between the anode and the cathode.
- 11. Apparatus for positioning an anode relative to a cathode of a smelting furnace, the cathode having an upwardly facing surface, and the anode having a downwardly facing surface, said apparatus comprising
- a hoist apparatus for moving the anode upwardly and downwardly, and
- a control system for causing said hoist apparatus to move the anode downwardly, for sensing when the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and for thereafter causing the hoist apparatus to move the anode upwardly a set distance to provide a gap between the anode and the cathode.
- 12. Apparatus as set forth in claim 11 wherein said hoist apparatus includes a cylinder/piston assembly including a vertically extending cylinder and a piston rod extending downwardly from said cylinder, and securing means for releasably securing the anode to said piston rod.
- 13. Apparatus as set forth in claim 12 wherein said control system is connected to said cylinder/piston assembly and causes extension of said piston rod until the downwardly facing surface of the anode engages the upwardly facing surface of the cathode, and thereafter causes retraction of said piston rod said set distance to provide said gap between the anode and the cathode.
- 14. Apparatus as set forth in claim 12 wherein said securing means includes a carrier fixed to said piston rod for movement therewith, and means for releasably securing the anode to said carrier such that the anode moves vertically with said carrier.
- 15. Apparatus as set forth in claim 14 wherein said hoist apparatus also includes a pair of channel members which are adapted to be supported by a crane and which define opposed, generally vertical channels, and wherein said carrier has thereon rollers guided in said vertical channels.
Parent Case Info
This is a continuation of application Ser. No. 07/999,608, filed Dec. 31, 1992, now U.S. Pat. No. 5,549,799 entitled "Hoist Apparatus For Positioning Anode In Smelting Furnace".
US Referenced Citations (11)
Continuations (1)
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Number |
Date |
Country |
Parent |
999608 |
Dec 1992 |
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