Claims
- 1. A method of manufacturing an electrode plate unit for a battery comprising:
stacking a plurality of positive electrode plates and a plurality of negative electrode plates alternately upon one another with intervening separators therebetween; bringing a collector plate .in tight contact with lateral edges on one lateral side of the positive or negative electrode plates; and applying heat to the collector plate on an opposite surface of the electrode plates from a non-contact type heat source at several locations in lines along a direction in which the electrode plates are stacked.
- 2. The method of manufacturing an electrode plate unit for a battery according to claim 1, wherein a solder material is attached on the collector plate on a surface which is contacted with the electrode plates along a plurality of lines in the direction in which the electrode plates are stacked, and heat is applied upon said solder material.
- 3. The method of manufacturing an electrode plate unit for a battery according to claim 1, wherein the positive or negative electrode plates are pressed against a locating means so that the lateral edges on one lateral side of the positive or negative electrode plates are aligned, and heat is applied to the collector plate in a state wherein the collector plate is tightly pressed against the lateral edges of the positive or negative electrode plates.
- 4. The method of manufacturing an electrode plate unit for a battery according to claim 1, wherein heat is applied to the collector plate by irradiating an electronic beam within a vacuum.
- 5. The method of manufacturing an electrode plate unit for a battery according to claim 4, wherein the collector plate, together with the electrode plates in contact therewith, is demagnetized before the application of heat.
- 6. A method of manufacturing an electrode plate unit for a battery comprising:
stacking a plurality of positive electrode plates and a plurality of negative electrode plates alternately upon one another with intervening separators therebetween, such that lateral edges of the positive electrode plates protrude beyond the negative electrode plates on one side, and lateral edges of the negative electrode plates protrude beyond the group of positive electrode plates on the opposite side; and welding a collector plate to the lateral edges of at least one of the positive electrode plates and the negative electrode plates, wherein a solder material is arranged in advance to the collector plate at locations to be bonded to the lateral edges of the positive or negative electrode plates.
- 7. The method of manufacturing an electrode plate unit for a battery according to claim 6, wherein the solder material is applied on the collector plate by electrolytic or non-electrolytic plating.
- 8. The method of manufacturing an electrode plate unit for a battery according to claim 6, wherein the solder material is attached on the collector plate by welding a sheet-like solder material to the collector plate.
- 9. The method of manufacturing an electrode plate unit for a battery according to claim 6, wherein the solder material is attached on the collector plate on a surface which is contacted with the electrode plates along a plurality of lines in the direction in which the electrode plates are stacked, and heat is applied upon said solder material.
- 10. A method of manufacturing an electrode plate unit for a battery comprising:
stacking a plurality of positive electrode plates and a plurality of negative electrode plates alternately upon one another with intervening separators therebetween, such that lateral edges of the positive electrode plates protrude beyond the negative electrode plates on one side, and lateral edges of the negative electrode plates protrude beyond the group of positive electrode plates on the opposite side; pressing the positive or negative electrode plates against a locating means so that the lateral edges on one lateral side of the positive or negative electrode plates are aligned; bringing a collector plate in tight contact with said aligned lateral edges on one lateral side of the positive or negative electrode plates; and applying heat to the collector plate on an opposite surface of the electrode plates from a non-contact type heat source at several locations in lines along a direction in which the electrode plates are stacked.
- 11. The method of manufacturing an electrode plate unit for a battery according to claim 10, wherein heat is applied to the collector plate by irradiating an electronic beam within a vacuum.
- 12. The method of manufacturing an electrode plate unit for a battery according to claim 11, wherein the collector plate, together with the electrode plates in contact therewith, is demagnetized before the application of heat.
Priority Claims (1)
Number |
Date |
Country |
Kind |
11-267001 |
Sep 1999 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present disclosure relates to subject matter contained in Japanese Patent Application No. HEI 11-267001, filed on Sep. 21, 1999, the contents of which are expressly incorporated herein by reference in their entirety. Further, the present application is a divisional of U.S. patent application Ser. No. 09/664,323, filed on Sep. 18, 2000, the contents of which are expressly incorporated herein by reference in their entirety.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09664323 |
Sep 2000 |
US |
Child |
10842450 |
May 2004 |
US |