Claims
- 1. A continuous casting apparatus for cooling a belt used in continuous casting, comprising:
- two or more pulleys to hold and move a belt, comprising an entry and exit pulley;
- the belt comprises an inner and outer surface;
- the exit and/or entrance pulley comprises at least one channel which is in open contact with the inner surface of the belt, the channel runs on the exterior surface of the pulley; and
- the channel contains at least one liquid feed tube and at least one collection tube for liquid passage, so that the liquid flows in the channel from the feed tube to the collection tube while directly contacting and cooling the inner surface of the belt.
- 2. A continuous casting apparatus in accordance with claim 1 wherein there are a plurality of channels.
- 3. A continuous casting apparatus in accordance with claim 2 wherein there is a feed and collection tube for every channel requiring cooling.
- 4. A continuous casting apparatus in accordance with claim 1 wherein a vacuum is operably connected to the collection tube.
- 5. A continuous casting apparatus in accordance with claim 4 wherein the vacuum pulls between 15 and 3 psia.
- 6. A continuous casting apparatus in accordance with claim 2 wherein the channels extend circumferentially around the surface of the pulley.
- 7. A continuous casting apparatus in accordance with claim 2 wherein the feed tubes are located at a lower position on the pulley than the collection tubes.
- 8. A continuous casting apparatus in accordance with claim 1 wherein the pulley has an outer channel which has an outer shoulder that is higher and optionally wider than the portions of the pulley which define the channels.
- 9. A continuous casting apparatus in accordance with claim 1 wherein the section of belt that is cooled is a circumferential section which extends between 180.degree. and 30.degree. of the pulley circumference.
- 10. A continuous casting apparatus in accordance with claim 1 wherein the belt is cooled to a temperature between 300.degree. F. and 160.degree. F. and the belt is under tension of at least 20,000 psi.
- 11. A continuous casting apparatus in accordance with claim 1 wherein the belt is cooled to a temperature between 260.degree. F. and 230.degree. F.
- 12. A continuous casting apparatus in accordance with claim 2 wherein the cooling channels are provided only on the exit pulley.
- 13. A continuous casting apparatus in accordance with claim 2 wherein the channels have uniform widths and the channels are separated by uniform distances.
- 14. A continuous casting apparatus in accordance with claim 2 wherein the inlets and outlets of the feed and collection tubes are separated by distances which vary across the width of the pulley.
- 15. A continuous casting apparatus in accordance with claim 1 wherein fittings are attached to the feed tube and the collection tube, each of the fittings providing a sliding fit in the groove which minimizes leakage of liquid from the groove.
- 16. A continuous casting apparatus for cooling belts used in a twin belt horizontal continuous caster, comprising;
- two or more pulleys to hold and move an upper belt, comprising an entry and exit pulley,
- two of more pulleys to hold and move a lower belt, comprising an entry and exit pulley;
- the upper and lower belts having inner and outer surfaces;
- the exit pulleys include a plurality of circumferential channels which are in open contact with the inner surface of the upper and lower belts, the channels run on the exterior surface of the exit pulley;
- each channel comprises a liquid feed and a collection tube for liquid passage, the feed tube releases liquid, the collection tube takes up liquid, so that the liquid flows from the feed to the collection tube while contacting and cooling the inner surface of the belt;
- a vacuum source operably connected to the collection tubes, pulling between 5 and 15 psia, to assist in the collection of liquid, and
- an optional cleaning device removing excess liquid not taken up by the collection tube from the inner surfaces of the upper and lower belts.
- 17. A method for cooling a belt used in continuous casting, comprising:
- operating a belt caster, having entrance and exit pulleys carrying at least one belt;
- flowing liquid through at least one feed tube located in at least one channel in the entrance and/or exit pulleys, each feed tube being confined by one channel;
- cooling the belt, that has been heated by continuous casting, by contacting an inner surface of the belt with the liquid in the channel; and
- removing the liquid from the channel by vacuum assist through a collection tube.
- 18. A method in accordance with claim 17 wherein the pulley has an outer channel which has an outer shoulder that is higher and optionally wider than the portions the pulley which define the channels.
- 19. A method in accordance with claim 17 wherein a plurality of channels extend circumferentially around the surface of the pulley.
- 20. A method in accordance with claim 17 wherein the section of belt that is cooled is a circumferential section which extends between 180.degree. and 30.degree. of the pulley circumference.
- 21. A method in accordance with claim 17 wherein the belt is cooled to a temperature between 300.degree. and 160.degree. F. and the belt is under tension of at least 20,000 psi.
- 22. A method in accordance with claim 21 wherein the belt is cooled to a temperature between 280.degree. and 230.degree. F.
- 23. A method in accordance with claim 19 wherein the liquid is supplied only in channels in the exit pulley.
- 24. A method in accordance with claim 19 wherein the liquid in the channels minimizes hot spots on the belt and a strip of aluminum is cast by the belt caster.
- 25. A method in accordance with claim 19 wherein fittings on the feed tubes and collection tubes slidingly engage surfaces of the pulley and belt so as to minimize leakage of liquid from the grooves.
- 26. A method for cooling belts used in twin belt continuous casting, comprising:
- operating a horizontal, twin belt caster, having entrance and exit pulleys carrying upper and lower belts;
- flowing liquid through a plurality of feed tubes which are located in channels in the entrance and/or exit pulleys, each feed tube being confined by one channel;
- cooling each belt, that has been heated by continuous casting, by openly contacting an inner surface of the belt with the liquid in the channel;
- removing the liquid from the channel by vacuum assist through a collection tube; and
- optionally removing any remaining liquid on the belt by a cleaning device after the belt has left the pulley.
Parent Case Info
This application claims priority under 35 U.S.C. .sctn..sctn.119 and/or 365 to U.S. Provisional Application Ser. No. 60/065,250 filed on Nov. 20, 1997; the entire content of which is hereby incorporated by reference.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0 583 867 |
Feb 1994 |
EPX |
Non-Patent Literature Citations (2)
Entry |
D. Reed Von Gal, "Twin-Belt Aluminum Casting- A technology Which Has Come of Age", Light Metal Age, (Apr. 8, 1989). |
"Progress Report on the Use of the Hazelett Process for Aluminum Alloy Strip-Casting", C.J. Petry et al., Hazelett Strip-Casting Corporation, Colchester, Vermont. |