Claims
- 1. A method of making an anode-cathode assembly for a solid cathode non-aqueous liquid electrolyte alkali metal cell for delivering high current pulses comprising the steps of:
- (a) providing a cathode mix comprising cathode active material;
- (b) providing a cathode conductor comprising a body portion and a lead portion;
- (c) pressing said cathode mix on said conductor body portion to form a pellet;
- (d) encapsulating said pellet with separator material;
- (e) providing a plurality of cathode elements according to the foregoing steps;
- (f) providing an elongated alkali metal anode comprising an elongated ribbon-like anode conductor, a pair of elongated ribbon-like alkali metal elements pressed together against opposite sides of said conductor to form an anode structure and separator material encapsulating said anode structure; and
- (g) folding said anode along the length thereof to form a serpentine structure; and
- (h) placing said plurality of cathode elements between corresponding ones of the folds of said serpentine anode structure.
- 2. A method according to claim 1, wherein said step of providing a cathode mix is followed by drop-wise addition of a quantity of said electrolyte to said mix prior to said step of pressing.
- 3. A method according to claim 1, further including the step of heat treating said pellet after said step of pressing.
- 4. A method of making an anode-cathode assembly for a solid non-aqueous liquid electrolyte alkali metal cell for delivering high current pulses comprising the steps of:
- (a) providing an elongated ribbon-like anode conductor element;
- (b) providing a pair of elongated ribbon-like alkali metal elements;
- (c) pressing said alkali metal elements against said conductor element to form an elongated ribbon-like anode structure;
- (d) encapsulating said anode structure with separator material;
- (d) folding said anode structure at spaced intervals along the length thereof to form a serpentine structure;
- (f) providing a plurality of separate cathode elements; and
- (g) placing said plurality of cathode elements between corresponding ones of the folds of said serpentine anode structure.
- 5. A method according to claim 4 wherein said alkali metal elements are of lithium.
- 6. A method of making an anode-cathode assembly for a solid cathode non-aqueous liquid electrolyte alkali metal cell for delivering high current pulses comprising the steps of:
- (a) providing a cathode conductor comprising a plurality of individual sections joined in end-to-end relation;
- (b) providing a cathode mix comprising cathode active material and binder;
- (c) pressing said cathode mix on said conductor sections to provide a corresponding plurality of individual pellets;
- (d) encapsulating said pellets with separator material;
- (e) providing an elongated alkali metal anode comprising an elongated ribbon-like anode conductor, a pair of elongated ribbon-like alkali metal elements pressed together against opposite sides of said conductor to form an anode structure and separator material encapsulating said anode structure; and
- (f) placing said cathode and anode in flat and in overlapping condition and folding said anode and cathode one over the other to form an anode-cathode assembly.
- 7. A method of making an anode-cathode assembly for a solid cathode non-aqueous liquid electrolyte alkali metal cell comprising the steps of:
- (a) providing an elongated cathode comprising a cathode conductor comprising a plurality of individual sections joined in end-to-end relation, a corresponding plurality of individual pellets of cathode active material pressed onto said conductor section and separator material encapsulating said pellets;
- (b) providing an elongated alkali metal anode comprising an elongated ribbon-like anode conductor, a pair of elongated ribbon-like alkali metal elements pressed together against opposite sides of said conductor to form an anode structure and separator material encapsulating said anode structure; and
- (c) placing said cathode and anode in flat and in overlapping condition and folding said anode and cathode one over the other to form an anode-cathode assembly.
- 8. A method according to claim 7, wherein said cathode and anode are placed endwise in said overlapping condition and at right angles ot each other and then folded alternately one over the other to form an interwoven anode-cathode assembly.
- 9. A method according to claim 6, wherein said cathode and anode are placed coincident in said overlapping condition with the ends thereof in spaced relation prior to folding.
Parent Case Info
This is a divisional of co-pending application Ser. No. 06/818,879 filed on Jan. 14, 1986 now U.S. Pat. No. 4,830,940.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2088119 |
Jun 1982 |
GBX |
Divisions (1)
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Number |
Date |
Country |
Parent |
818879 |
Jan 1986 |
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