Claims
- 1. Batch coil annealing apparatus comprising:
- a stationary base upon which coils of metal strip are stacked, said base having an annular seating surface circumscribing said coils and first and second circumscribing, generally concentric, sealing grooves formed within said seating surface;
- a removable, thin-walled, cylindrical, inner cover receiving said coils, said inner cover having a closed axial end, an open axial end and an annular flange extending radially outwardly from said open end, said flange having first and second circumscribing, generally concentric sealing grooves, said first and second flange sealing grooves having the same diameter as said first and second base sealing grooves, respectively;
- a removable outer cover surrounding said inner cover, means for removably sealing said outer cover to said base;
- first and second elastomer seals, said fire, elastomer seal disposed in said first base groove and said first flange groove, and said second elastomer seal disposed in said second base groove and said second flange groove to define a sealing space therebetween; and
- means to draw a sealing vacuum in said annular seal space between said first and second elastomer seals.
- 2. Apparatus of claim 1 further including said means to draw a sealing vacuum further including means outside said base to analyze the gas withdrawn from said annular sealing space.
- 3. Apparatus of claim 2 further including means to supply an inert gas to said inner cover and interlock means effective when said analyzing means records the presence of a specific gas to flood the inner cover with an inert gas.
- 4. Apparatus of claim 1 further including
- said means for drawing a sealing vacuum in said annular space also effective to draw a vacuum within said inner cover and microprocessor control means effective to maintain the vacuum within said vacuum annular sealing space at a higher vacuum level than the vacuum drawn in said inner cover.
- 5. Apparatus of claim 4 further including treatment gas means for introducing a treatment gas through said base into said inner cover,
- said microprocessor control means effective to control said treatment gas means to periodically backfill said inner cover followed by controlling said vacuum means to periodically draw a vacuum at predetermined vacuum levels within said cover during the annealing cycle.
- 6. Apparatus of claim 1 further including means to admit and mix an inert gas with said gas withdrawn from said annular seal space, and microprocessor control means sufficient to control the vacuum level within said annular seal space and the withdrawn quantity of inert gas fixed with gas withdrawn from said annular seal space to prevent formation of any gas mixture sufficient to sustain combustion when exposed to oxygen.
- 7. Apparatus of claim 1 further including means to heat said inner cover to in turn heat said coil,
- said microprocessor control means effective to heat said inner cover to in turn heat said work to temperatures of about 500.degree. to 600.degree. F. while drawing a vacuum within said inner cover whereby oil and other hydrocarbons are withdrawn as vapors from said inner cover.
- 8. Apparatus of claim 7 wherein said vacuum drawing means includes a vacuum pump and further including means to effect heat exchange with said hydrocarbon vapors outside of said inner cover whereby said hydrocarbon vapors are condensed to liquid form.
- 9. In a batch coil annealing furnace comprising a base, a removable inner cover having a generally annular flange extending from its base and adapted to be situated over work annealed in said furnace with said flange resting on said base, a removable outer cover adapted to be situated over said inner cover and containing means to heat the outside of said inner cover, the improvement comprising:
- a. a vacuum pump; and
- b. seal means in fluid communication with said vacuum pump for drawing a vacuum from said pump between said flange and said base to seal said inner cover to said base.
- 10. The improvement of claim 9 wherein said seal means includes inner and outer generally concentric, circumscribing grooves formed in at least one of said annular flange and said base, an elastomer seal disposed in each groove to define a sealing space therebetween, said pump in fluid communication with said annular space.
- 11. The improvement of claim 10 wherein said flange and said base each have generally concentric inner and outer grooves with the inner and outer grooves of said base and said inner cover aligned with one another and said elastomer seals disposed in said grooves.
- 12. The improvement of claim 11 further including conduit means to place said vacuum pump in valved fluid communication with said inner cover; means to introduce a treatment gas to said inner cover; microprocessor control means regulating said treatment gas means to periodically draw a vacuum in said inner cover and backfill said inner cover with said treatment gas; said microprocessor control means always maintaining the vacuum level within said annular space higher than the vacuum within said inner cover to maintain said inner cover sealed to said base.
- 13. The improvement of claim 12 wherein said treatment gas is hydrogen, said furnace further includes a valved condensate trap containing a heat exchanger in fluid communication with said sealing space, said inert gas in valved fluid communication with said condensate trap; sensor means effective to detect the gas composition in said sealing space and said microprocessor means effective to maintain any gas withdrawn from said sealing space under a vacuum to minimize explosion and dilute the gas withdrawn from said sealing space with said inert gas in said condensate trap to prevent explosion.
Parent Case Info
This is a division of application Ser. No. 051,702, filed Apr. 23, 1993.
US Referenced Citations (21)
Divisions (1)
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Number |
Date |
Country |
Parent |
51702 |
Apr 1993 |
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