Claims
- 1. A method of manufacturing a flat cell comprising the steps of:forming a first electrode by depositing an active material on a core material, forming a fold line on said active material, forming a recessed portion on and extending to either side of said fold line; winding said first electrode with a second electrode wherein said electrodes are separated to form an electrode group; pressing and deforming said electrode group between a pair of flat plates which are parallel to a major axis of said electrode group to obtain an electrode group having an oval cross-section, housing said electrode group in a cell container; pouring an electrolyte into said housing to impregnate the contents therein, and sealing said housing.
- 2. The method of manufacturing a flat cell of claim 1 wherein a width of the recessed portion is in the range 0.5 mm to 3.0 mm each to the left and right from the line of folding.
- 3. The method of manufacturing a flat cell of claim 1 wherein a depth of the recessed portion is in the range 20% to 70% of a thickness of the active material layer.
- 4. The method of manufacturing a flat cell of claim 1 wherein the recessed portion is a stripe having a V-shaped cross section with an angle in the range 30° to 120°.
- 5. The method of manufacturing a flat cell of claim 1 wherein the recessed portion is a striped recessed portion having an inter-stripe pitch in the range 0.5 mm to 5.0 mm.
- 6. The method of manufacturing a flat cell of claim 1 wherein said recessed portion is formed on not only a positive plate but also a negative plate.
- 7. The method of manufacturing a flat cell of claim 1 wherein said first electrode and/or said second electrode comprises a core material of metal foil, an active material layer on at least one side of the core material, and the active layer is formed by a step of paste coating or a step of electrolyte deposition.
- 8. The method of manufacturing of claim 1 wherein said active material layer is a lithium-containing double oxide, a spinel type lithium manganate is formed on at least one side of the core material and the core material consists of an aluminum foil, and a non-aqueous electrolyte.
- 9. The method of manufacturing a flat cell of claim 1 further comprising:forming said recessed portion by pressing said first electrode with a roller, said roller having a convex portion.
- 10. The method of manufacturing a flat cell of claim 1 wherein said first electrode and said second electrode are spirally wound with a lozenge-shaped mandrel.
- 11. A method of manufacturing a flat cell comprising the steps of:forming a first electrode by depositing an active material on a core material, forming a fold line on said active material, forming a recessed portion on and extending to either side of said fold line; and winding said first electrode with a second electrode wherein said electrodes are separated.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10-204656 |
Jul 1998 |
JP |
|
Parent Case Info
This application is a division of U.S. patent application Ser. No. 09/357,790, filed Jul. 21, 1999, now U.S. Pat. No. 6,203,938.
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Number |
Name |
Date |
Kind |
5487961 |
Strangways et al. |
Jan 1996 |
A |
5911947 |
Mitchell |
Jun 1999 |
A |
Foreign Referenced Citations (2)
Number |
Date |
Country |
60-133655 |
Jul 1985 |
JP |
5-41211 |
Feb 1993 |
JP |