Claims
- 1. Apparatus for cooling from an annealing temperature a mass of steel that includes at least one coil of sheet steel having a generally cylindrical outer surface and opposed, substantially flat sides, that is supported atop a base of an annealing furnace with the opposed sides of the coil extending substantially horizontally, comprising:
- a) inner cover means for surrounding the mass of steel and for cooperating with the base of the annealing furnace to define a generally cylindrical treatment chamber sealed from ambient atmosphere within which gases of a nonoxidizing atmosphere may be circulated;
- b) cooling conduit means connected to the inner cover means for being positioned within the treatment chamber to encircle at least one circumferentially extending portion of the cylindrical outer surface of said at least one coil at a distance separated therefrom by a space that also encircles said at least one portion, and with the cooling conduit means having inlet means and outlet means for the flow of coolant fluid through the cooling conduit means for cooling the cooling conduit means for cooling gases of the nonoxidizing atmosphere that circulate within the treatment chamber and through said space; and,
- c) protective means for minimizing damage to the cooling conduit means by minimizing contact of the cooling conduit means with the mass of steel when the inner cover means is positioned to extend about, and is withdrawn from extending about, the mass of steel.
- 2. The apparatus of claim 1 wherein the cooling conduit means includes at least one continuous helix coil of tubing with the inlet means and outlet means being connected to opposite ends thereof for ducting coolant fluid flow through the coil.
- 3. The apparatus of claim 1 wherein the protective means includes recess defining means for defining a circumferentially extending recess that extends about and faces toward the at least one portion of the cylindrical outer surface of said at least one coil for protectively enclosing at least portions of the cooling conduit means therein.
- 4. The apparatus of claim 3 wherein the inner cover means includes a substantially cylindrical central wall portion of the inner cover means that defines a back wall of the recess and has a first diameter, a substantially cylindrical upper wall portion of the inner cover means that extends upwardly from the recess and has a diameter less than the first diameter, a substantially cylindrical lower wall portion of the inner cover means that extends downwardly from the recess and has a diameter less than the first diameter, and end wall portions that provide transitions between the central wall portion and the upper and lower wall portions.
- 5. The apparatus of claim 4 wherein the end wall portions that provide transitions include oppositely tapered upper and lower truncated conical rings, with the upper ring being connected to the central wall portion and to the upper wall portion of the inner cover, and with the lower ring being connected to the central wall portion and the lower wall portion of the inner cover.
- 6. The apparatus of claim 3 additionally including conduit support means connected to the inner cover means for supporting the cooling conduit means to extend within said recess.
- 7. The apparatus of claim 6 wherein the conduit support means includes a plurality of vertically extending support bars circumferentially spaced within the circumferentially extending recess and connected to the cooling conduit means.
- 8. The apparatus of claim 6 wherein the cooling conduit means includes at least one continuous helix coil of tubing with the inlet means and outlet means being connected to opposite ends thereof for ducting coolant fluid flow through the coil.
- 9. The apparatus of claim 8 wherein the conduit support structure includes upstanding support means for extending substantially vertically at locations spaced along the circumferentially extending length of the recess for engaging the continuous helix coil of tubing at a plurality of spaced locations along the length of the helix coil to securely support the helix coil.
- 10. The apparatus of claim 1 wherein the inner cover means includes an upstanding, generally cylindrical steel structure, and the protective means includes an inwardly facing recess defined by an enlarged diameter mid-height portion of the generally cylindrical steel structure.
- 11. The apparatus of claim 1 wherein the mass of steel includes a plurality of coils of sheet steel arranged substantially concentrically one atop another with opposed, substantially flat sides of the coils extending substantially horizontally, wherein the cooling conduit means is positioned by the inner cover means to surround mid-height portions of the stack, and wherein the protective means includes inwardly facing recess means defined by the inner cover means for protectively receiving at least portions of the cooling conduit means therein.
- 12. The apparatus of claim 11 wherein the cooling conduit means includes heat exchange fin means for extending about a fluid circulation conduit that is contained within an inwardly facing recess defined by the recess means.
- 13. Apparatus for cooling from an annealing temperature a generally cylindrical stack of coils of sheet steel that each have a generally cylindrical outer surface and opposed, substantially flat sides, that are supported atop a base of an annealing furnace with opposed sides of each of the coils extending substantially horizontally, and with the coils of the stack extending substantially coaxially one atop another with an uppermost portion of the highest coil in the stack defining the height of the stack, comprising:
- a) inner cover means for surrounding the stack of coils and for cooperating with the base of the annealing furnace to define a generally cylindrical treatment chamber sealed from ambient atmosphere within which gases of a nonoxidizing atmosphere may be circulated;
- b) cooling conduit means connected to the inner cover means for being positioned within the treatment chamber to encircle at least one circumferentially extending portion of the cylindrical outer surface of at least one coil of the stack at a location mid-way along the height of the stack and at a distance separated from said at least one portion by a space that also encircles said at least one portion, and with the cooling conduit means having inlet means and outlet means for the flow of coolant fluid through the cooling conduit means for cooling the cooling conduit means for cooling gases of the nonoxidizing atmosphere that circulate within the treatment chamber and through said space; and,
- c) protective means for minimizing damage to the cooling conduit means by minimizing contact of the cooling contact means with the stack when the inner cover means is positioned to extend about, and is withdrawn from extending about, the stack.
- 14. The apparatus of claim 13 wherein the cooling conduit means includes at least one continuous helix coil of tubing with the inlet means and outlet means being connected to opposite ends thereof for ducting coolant fluid flow through the coil.
- 15. The apparatus of claim 13 wherein the protective means includes recess defining means for defining a circumferentially extending recess that extends about and faces toward the at least one portion of the cylindrical outer surface of said at least one coil for protectively enclosing at least portions of the cooling conduit means therein.
- 16. The apparatus of claim 15 wherein the inner cover means includes a substantially cylindrical central wall portion of the inner cover means that defines a back wall of the recess and has a first diameter, a substantially cylindrical upper wall portion of the inner cover means that extends upwardly from the recess and has a diameter less than the first diameter, a substantially cylindrical lower wall portion of the inner cover means that extends downwardly from the recess and has a diameter less than the first diameter, and end wall portions that provide transitions between the central wall portion and the upper and lower wall portions.
- 17. The apparatus of claim 15 additionally including conduit support structure connected to the inner cover means for supporting the cooling conduit means to extend within said recess.
- 18. The apparatus of claim 17 wherein the cooling conduit means includes at least one continuous helix coil of tubing with the inlet means and outlet means being connected to opposite ends thereof for ducting coolant fluid flow through the coil.
- 19. The apparatus of claim 18 wherein the conduit support structure includes upstanding support means for extending substantially vertically at locations spaced along the circumferentially extending length of the recess for engaging the continuous helix coil of tubing at a plurality of spaced locations along the length of the helix coil to securely support the helix coil.
- 20. The apparatus of claim 13 wherein the inner cover means includes an upstanding, generally cylindrical steel structure, and the protective means includes an inwardly facing recess defined by an enlarged diameter mid-height portion of the generally cylindrical steel structure.
- 21. The apparatus of claim 13 wherein the protective means includes inwardly facing recess means defined by the inner cover means for protectively receiving at least portions of the cooling conduit means therein.
- 22. The apparatus of claim 21 wherein the cooling conduit means includes heat exchange fin means for extending about a fluid circulation conduit that is contained within an inwardly facing recess defined by the recess means.
- 23. An annealing furnace for heating to an annealing temperature and for cooling from an annealing temperature a mass of steel that includes at least one coil of sheet steel having a generally cylindrical outer surface and opposed, substantially flat sides, that is supported atop a base of an annealing furnace with the opposed sides of the coil extending substantially horizontally, comprising:
- a) generally cylindrical inner cover means for surrounding the mass of steel and for cooperating with the base of the annealing furnace to define a generally cylindrical treatment chamber sealed from ambient atmosphere within which gases of a nonoxidizing atmosphere may be circulated;
- b) heating means for heating the mass of steel within the treatment chamber to a selected annealing temperature;
- c) cooling means for cooling the mass of steel from the selected annealing temperature including cooling conduit means connected to the inner cover means for being positioned within the treatment chamber to encircle at least one circumferentially extending portion of the cylindrical outer surface of said at least one coil at a distance separated therefrom by a space that also encircles said at least one portion, and with the cooling conduit means having inlet means and outlet means for the flow of coolant fluid through the cooling conduit means for cooling the cooling conduit means for cooling gases of the nonoxidizing atmosphere that circulate within the treatment chamber and through said space; and,
- d) protective means for minimizing damage to the cooling conduit means by minimizing contact of the cooling conduit means with the mass of steel when the inner cover means is positioned to extend about, and is withdrawn from extending about, the mass of steel including an enlarged diameter mid-height region of the inner cover wherein the cooling means is protectively nested.
- 24. The annealing furnace of claim 23 wherein the cooling conduit means includes at least one continuous helix coil of tubing with the inlet means and outlet means being connected to opposite ends thereof for ducting coolant fluid flow through the coil.
- 25. The annealing furnace of claim 24 additionally including conduit support structure connected to the inner cover means for supporting the cooling conduit means to extend within said recess.
- 26. The annealing furnace of claim 25 wherein the conduit support structure includes upstanding support means for extending substantially vertically at locations spaced along the circumferentially extending length of the recess for engaging the continuous helix coil of tubing at a plurality of spaced locations along the length of the helix coil to securely support the helix coil.
- 27. The apparatus of claim 26 wherein the cooling conduit means includes heat exchange fin means for extending about a fluid circulation conduit that is contained within an inwardly facing recess defined by the recess means.
- 28. A method for cooling from an annealing temperature a mass of steel that includes at least one coil of sheet steel having a generally cylindrical outer surface and opposed, substantially flat sides, that is supported atop a base of an annealing furnace with the opposed sides of the coil extending substantially horizontally, comprising the steps of:
- a) providing inner cover means for surrounding the mass of steel and for cooperating with the base of the annealing furnace to define a generally cylindrical treatment chamber sealed from ambient atmosphere within which gases of a nonoxidizing atmosphere may be circulated, with the inner cover means including recess defining means for defining a circumferentially extending recess that extends about and faces toward the at least one portion of the cylindrical outer surface of said at least one coil;
- b) providing cooling conduit means connected to the inner cover means for being positioned within the treatment chamber, with at least portions of the cooling conduit means extending into the recess for being protectively enclosed therein, to encircle at least one circumferentially extending portion of the cylindrical outer surface of said at least one coil at a distance separated therefrom by a space that also encircles said at least one portion, and with the cooling conduit means having inlet means and outlet means for the flow of coolant fluid through the cooling conduit means for cooling the cooling conduit means for cooling gases of the nonoxidizing atmosphere that circulate within the treatment chamber and through said space; and,
- c) circulating coolant fluid through the cooling conduit means to cool cooling gases circulating within the treatment chamber to assist in cooling the mass of steel after the mass of steel has been heated to an annealing temperature.
- 29. The method of claim 28 wherein the step of providing cooling conduit means includes the step of providing at least one continuous helix coil of tubing with the inlet means and outlet means being connected to opposite ends thereof for ducting coolant fluid flow through the coil, and the step of circulating coolant fluid through the cooling conduit means includes introducing coolant fluid into the continuous helix coil of tubing through the inlet means and withdrawing coolant fluid from the helix coil of tubing through the outlet means.
- 30. The method of claim 29 wherein the step of providing cooling conduit means includes the steps of providing conduit support structure connected to the inner cover means for supporting the cooling conduit means to extend within said recess, and connecting the cooling conduit to the conduit support structure to securely support the cooling conduit means in the presence of thermal shock which occurs when coolant fluid is introduced into the coolant conduit means at the initiation of the step of circulating coolant fluid through the cooling conduit means.
REFERENCE TO PROVISIONAL APPLICATION
This application claims the benefit of U.S. Provisional Application Ser. No. 60/046,556 entitled WATER COOLED INNER COVER FOR ANNEALING FURNACE filed May 15, 1997 by Gary L. Coble, the disclosure of which is incorporated herein by reference.
US Referenced Citations (31)