Claims
- 1. A primary alkaline cell comprising a negative and a positive terminal, and an outer housing; said housing having a closed end and opposing open end; said cell further comprising an anode and a cathode within said housing, a separator between said anode and cathode, and an end cap assembly sealing the open end of said housing;
wherein said cell comprises a vent mechanism which activates to release gas pressure from within the cell as said gas pressure rises, said vent mechanism comprising a plug seatable in a cavity within said end cap assembly wherein said cavity houses said plug.
- 2. The alkaline cell of claim 1 wherein said cavity is located within a hollow metal member within said end cap assembly, said cavity being closed to the cell interior when said plug is seated therein and said cavity being in open communication with the cell interior when said plug is unseated.
- 3. The alkaline cell of claim 1 wherein said plug becomes unseated when gas pressure within the cell interior rises, thereby opening said cavity to the cell interior and releasing gap pressure therethrough.
- 4. The alkaline cell of claim 3 wherein said plug becomes unseated when gas pressure within the cell rises to a level of between about between about 100 and 300 psig (6.895×105 and 20.69×105 pascal gage).
- 5. The alkaline cell of claim 3 wherein said plug is of a compressible and resilient rubber material.
- 6. The alkaline cell of claim 3 wherein said plug is compressed within said cavity.
- 7. The alkaline cell of claim 3 wherein said plug has solid cylindrical base and an integral solid cylindrical body extending from said base, wherein said cylindrical body is of diameter less than the diameter of said base.
- 8. The alkaline cell of claim 7 wherein said plug body is compressed within said cavity and the base of said plug is seated within said cavity to block physical communication between said cavity and the cell interior until gas pressure within the cell rises thereby unseating said plug base and allowing gas to escape from the cell interior through said cavity and to the external environment.
- 9. The alkaline cell of claim 7 wherein said plug occupies between about 60 and 90 percent of the available space within said cavity thereby allowing between about 10 and 40 percent free space within said cavity.
- 10. The alkaline cell of claim 9 wherein said free space facilitates effective operation of said plug as it unseats as gas pressure within the cell rises and then reseates within said cavity when gas pressure is released.
- 11. The alkaline cell of claim 2 wherein said metal member is a hollow rivet being in electrical communication with said negative terminal, said rivet having a hollow head portion and an elongated hollow body portion extending therefrom towards the cell interior, wherein said cavity housing said plug is located within the rivet head.
- 12. A primary alkaline cell comprising a negative and a positive terminal, and an outer housing of cuboid shape, said housing having a closed end and opposing open end, said cell further comprising an anode comprising zinc and a cathode comprising MnO2 within said housing, a separator between said anode and cathode, and an end cap assembly sealing the open end of said housing;
wherein the cathode comprises a plurality of rectangular shaped cathode slabs; wherein each of said slabs has a central opening devoid of cathode material; wherein said cathode slabs are stacked within the housing along the cell's central longitudinal axis so that said openings devoid of cathode material are in alignment forming a central core along said longitudinal axis, with the outer surface of said cathode contacting the inside surface of said housing; wherein said cell comprises a vent mechanism which activates to release gas pressure from within the cell as said gas pressure rises, said vent mechanism comprising a plug seatable in a cavity within said end cap assembly.
- 13. The alkaline cell of claim 12 wherein said cavity is located within a hollow metal member within said end cap assembly, said cavity being closed to the cell interior when said plug is seated therein and said cavity being in open communication with the cell interior when said plug is unseated.
- 14. The alkaline cell of claim 12 wherein said plug becomes unseated when gas pressure within the cell interior rises, thereby opening said cavity to the cell interior and releasing gas pressure therethrough.
- 15. The alkaline cell of claim 14 wherein said plug becomes unseated when gas pressure within the cell rises to a level of between about between about 100 and 300 psig (6.895×105 and 20.69×105 pascal gage), thereby releasing gas pressure from within the cell interior.
- 16. The alkaline cell of claim 14 wherein said plug is of a compressible rubber material.
- 17. The alkaline cell of claim 12 wherein said plug is compressed within said cavity.
- 18. The alkaline cell of claim 14 wherein said plug has solid cylindrical base and an integral solid cylindrical body extending from said base, wherein said cylindrical body is of diameter less than the diameter of said base.
- 19. The alkaline cell of claim 18 wherein said plug body is compressed within said cavity and the base of said plug is seated within said cavity to block physical communication between said cavity and the cell interior until gas pressure within the cell rises thereby unseating said plug base and allowing gas to escape from the cell interior through said cavity.
- 20. The alkaline cell of claim 18 wherein said plug occupies between about 60 and 90 percent of the available space within said cavity thereby allowing between about 10 and 40 percent free space within said cavity.
- 21. The alkaline cell of claim 20 wherein said free space facilitates effective operation of said plug as it unseats as gas pressure within the cell rises and then reseats within said cavity when gas pressure is released.
- 22. The alkaline cell of claim 13 wherein said metal member is a hollow rivet being in electrical communication with said negative terminal, said rivet having a hollow head portion and an elongated hollow body portion extending therefrom towards the cell interior, thereby forming a continuous channel connecting the hollow head portion of said rivet to the cell interior, wherein said cavity housing said plug is located within the rivet head.
- 23. The alkaline cell of claim 22 wherein said plug is seated within said cavity within said rivet head portion thereby blocking said channel leading to the cell interior until gas pressure within the cell interior rises thereby unseating said plug and opening said channel allowing gas from the cell interior to escape through said channel.
- 24. The alkaline cell of claim 12 wherein at least a portion of said central opening within said cathode slabs forms a cavity for housing said anode.
- 25. The alkaline cell of claim 23 wherein said anode cavity has an oblong configuration when viewed in plan view upon taking a cross section along a plane perpendicular to the cell's central longitudinal axis.
- 26. The alkaline cell of claim 12 wherein the cell comprises alkaline electrolyte comprising an aqueous solution of potassium hydroxide.
- 27. The alkaline cell of claim 12 wherein the cell is balanced so that the cathode is in excess such that the ratio of theoretical capacity of the MnO2 based on a theoretical specific value of 370 mAmp-hr per gram MnO2, divided by the mAmp-hr capacity of zinc based on a theoretical specific value of 820 mAmp-hr per gram zinc, is between about 1.2 and 2.0.
- 28. The alkaline cell of claim 12 wherein the cell is balanced so that the cathode is in excess such that the ratio of theoretical capacity of the MnO2 based on a theoretical specific value of 370 mAmp-hr per gram MnO2, divided by the mAmp-hr capacity of zinc based on a theoretical specific value of 820 mamp-hr per gram zinc, is between about 1.4 and 1.8.
- 29. The alkaline cell of claim 12 wherein said cell has an overall thickness of between about 5 and 10 mm, wherein said overall thickness is defined as the distance between the outside surface of opposing sides of said housing defining the short dimension of said housing.
- 30. The alkaline cell of claim 12 wherein the housing comprises metal having a wall thickness of between about 0.30 mm and 0.45 mm.
- 31. The alkaline cell of claim 12 wherein the housing comprises metal having a wall thickness of between about 0.30 mm and 0.40 mm.
- 32. The alkaline cell of claim 12 wherein said housing comprises steel.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation in part of application Ser. No. 10/336,261 filed Jan. 3, 2003.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10336261 |
Jan 2003 |
US |
Child |
10414667 |
Apr 2003 |
US |