Claims
- 1. An alkaline electrochemical cell having a sealing means comprised of a sealant disposed between a metallic container, which functions as a positive current collector, and a plastic seal member, wherein said metal container is provided with a hard, tackless conductive alkali-resistant plastic coating, said sealant contacting said plastic seal member and said plastic coating.
- 2. An alkaline electrochemical cell as in claim 1, wherein said sealant is bitumen.
- 3. An alkaline electrochemical cell as in claim 1, wherein said seal member is from the group consisting of polysulfone, polypropylene and nylon.
- 4. An alkaline electrochemical cell as in claim 1, wherein said metal container is unplated steel.
- 5. An alkaline electrochemical cell as in claim 1, wherein said hard, tackless conductive alkali-resistant plastic coating contains conductive fillers.
- 6. An alkaline electrochemical cell as in claim 5, wherein said conductive fillers are carbon.
- 7. An alkaline electrochemical cell as in claim 6, wherein the carbon weight percent of said hard, conductive alkali-resistant plastic coating ranges up to 40.
- 8. An alkaline electrochemical cell as in claim 6, wherein said conductive fillers are carbon particles selected from the group consisting of acetylene black, carbon black and graphite.
- 9. An alkaline electrochemical cell as in claim 1, wherein said hard, tackless conductive alkali-resistant plastic coating does not dissolve in the alkaline electrolyte.
- 10. An alkaline electrochemical cell as in claim 1, wherein said plastic coating is not oxided or hydolyzed in the alkaline electrolyte.
- 11. An alkaline electrochemical cell as in claim 1, wherein the hard, conductive alkali-resistant plastic coating is 0.0001 inches to 0.002 inches thick.
- 12. An alkaline electrochemical cell as in claim 11, wherein the hard, conductive alkali-resistant plastic coating is 0.0006 inches to 0.0008 inches thick.
- 13. A method of manufacture of an alkaline electrochemical cell which comprises:
- (a) coating the interior surface of the metallic container serving as the positive current collector with a conductive alkali-resistant polymeric resin;
- (b) drying the polymeric resin coating, thereby forming a hard, conductive alkali-resistant plastic film on the surface of said metallic container;
- (c) placing alkaline battery components within said metallic container;
- (d) providing a plastic seal member; and
- (e) sealing said alkaline cell by disposing a sealant between said plastic seal member and said hard, conductive alkali-resistant plastic film, and crimping the heretofore open end of said metal container.
- 14. A method as recited in claim 13, wherein said conductive alkaline-resistant polymeric resin comprises a polymeric binder dissolved in a solvent.
- 15. A method as recited in claim 14, wherein said solvent is evaporated from said alkaline-resistant polymeric resin at elevated temperatures.
- 16. A method as recited in claim 14, wherein said polymeric binder does not dissolve in alkaline electrolyte.
- 17. A method as recited in claim 14, wherein said polymeric binder is not hydrolyzed or oxidized by alkaline electrolyte.
- 18. A method as recited in claim 14, wherein said solvent wets the surface of said metallic container.
- 19. A method as recited in claim 13, wherein said sealant is bitumen.
- 20. A method as recited in claim 13, wherein said seal member is polypropylene or nylon.
- 21. A method as recited in claim 13, wherein said metal container is unplated steel.
- 22. A method as recited in claim 13, wherein said hard plastic film is 0.0001 inches to 0.002 inches thick.
- 23. A method as recited in claim 22, wherein said hard plastic film is 0.0006 inches to 0.0008 inches thick.
Parent Case Info
This application is continuation-in-part of Ser. No. 039,788, filed Apr. 16, 1987, which was a continuation of Ser. No. 893,535, filed Aug. 5, 1986, which was a continuation of Ser. No. 641,739, filed Aug. 17, 1984, all now abandoned.
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Continuations (2)
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Number |
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893535 |
Aug 1986 |
|
Parent |
641739 |
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Continuation in Parts (1)
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Number |
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39788 |
Apr 1987 |
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