IP Library › Granted Patent US 9,281,511
Granted Patent B2
US 9,281,511 · App. 13/576,686 · Granted Mar 8, 2016

Battery cell and device provided with the battery cell

Inventor: Takeshi Sasaki (Kyoto, JP)
Assignee: GS Yuasa International Ltd.
H01M2/263H01M2/206H01M6/10H01M10/0431H01M10/0587H01M2006/106
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Quick Facts
Patent No.
US 9,281,511
App. No.
13/576,686
Granted
Mar 8, 2016
Kind
B2
Abstract

The battery cell have a first and a second current collector, wherein the first current collector is connected to part of both of, part of any one of, or the whole of any one of a pair of positive-electrode layer stack sections of an electrode assembly, the second current collector is connected to part of both of, part of any one of, or the whole of any one of a pair of negative-electrode layer stack sections, and a connecting location between the first current collector and the positive-electrode layer stack sections and a connecting location between the second current collector and the negative-electrode layer stack sections are set so as to be asymmetrical to each other with respect to a second virtual plane.

Claims (51)

1. A battery cell comprising:

at least one electrode assembly formed by flatly winding a band-shaped positive electrode and a band-shaped negative electrode stacked with a separator therebetween;

a cell case in which the electrode assembly is housed;

a positive-electrode external terminal structure arranged outside the cell case;

a negative-electrode external terminal structure arranged outside the cell case;

a first current collector electrically connected to a layer stack composed only of the band-shaped positive electrode and located on one end side of the electrode assembly in a width direction thereof, and electrically connected to the positive-electrode external terminal structure, the width direction being parallel to a winding axis of the electrode assembly; and

a second current collector electrically connected to a layer stack composed only of the band-shaped negative electrode and located on the other end side of the electrode assembly in the width direction, and electrically connected to the negative-electrode external terminal structure, wherein

a cross-section of the electrode assembly orthogonal to the winding axis has a short axis and a long axis,

the first current collector is connected to any one of: part of both of a pair of positive-electrode layer stack sections; part of any one of the pair of positive-electrode layer stack sections; and the whole of any one of the pair of the positive-electrode layer stack sections, of the layer stack composed only of the band-shaped positive electrode, the pair of the positive-electrode layer sections extending in a direction of the long axis respectively in two regions bounded by a first virtual plane passing through the winding axis and the long axis of the electrode assembly, the second current collector is connected to any one of: part of both of a pair of negative-electrode layer stack sections; part of any one of the pair of negative-electrode layer stack sections; and the whole of any one of the pair of the negative-electrode layer stack sections, of the layer stack composed only of the band-shaped negative electrode, the pair of the negative-electrode layer stack sections extending in the direction of the long axis respectively in the two regions,

a connecting location between the first current collector and the positive-electrode layer stack section and a connecting location between the second current collector and the negative-electrode layer stack section are set so as to be asymmetrical to each other with respect to a second virtual plane passing through a center of a width of the electrode assembly and being orthogonal to the first virtual plane and the winding axis, the width being a length of the electrode assembly in the width direction,

a portion of the negative-electrode layer stack section located in a position symmetrical to the connecting location between the first current collector and the positive-electrode layer stack section with respect to the second virtual plane is held in an open state from one end to the other end in a direction of the short axis, and

a portion of the positive-electrode layer stack section located in a position symmetrical to the connecting location between the second current collector and the negative-electrode layer stack section with respect to the second virtual plane is held in an open state from one end to the other end in a direction of the short axis.

2. The battery cell according to claim 1 , wherein:

the first current collector is connected to part or the whole of one positive-electrode layer stack section located in one region of the two regions, and the second current collector is connected to part or the whole of the other negative-electrode layer stack section located in the other region on the opposite side of the one region of the two regions.

3. The battery cell according to claim 1 , wherein:

the first current collector is connected to a side lower than an upper portion of the positive-electrode layer stack section in the direction of the long axis, and the second current collector is connected to a side lower than an upper portion of the negative-electrode layer stack section in the direction of the long axis.

4. The battery cell according to claim 1 , wherein:

the first current collector is connected to part of one positive-electrode layer stack section located in any one region of the two regions, and the second current collector is connected to part of one negative-electrode layer stack section located in any one region of the two regions.

5. The battery cell according to claim 1 , wherein:

the first current collector is connected to part of both of the pair of positive-electrode layer stack sections located in the two regions, and the second current collector is connected to part of both of the pair of negative-electrode layer stack sections located in the two regions.

6. The battery cell according to claim 1 , wherein:

the electrode assembly comprises two or more electrode assemblies;

the two or more electrode assemblies are arranged in parallel with each other, so that the respective positive-electrode layer stack sections and the respective negative-electrode layer stack sections thereof are aligned to each other and the respective first virtual planes thereof are parallel or substantially parallel to each other; and

the first current collector is connected to part of one positive-electrode layer stack section located in any one region of the two regions of each of the electrode assemblies, and the second current collector is connected to part of one negative-electrode layer stack section located in any one region of the two regions of each of the electrode assemblies.

7. The battery cell according to claim 1 , wherein:

the electrode assembly comprises two or more electrode assemblies;

the two or more electrode assemblies are arranged in parallel with each other, so that the respective positive-electrode layer stack sections and the respective negative-electrode layer stack sections thereof are aligned to each other and the respective first virtual planes thereof are parallel or substantially parallel to each other; and

the first current collector is connected to part of one positive-electrode layer stack section located in one region of the two regions of one of adjacent two electrode assemblies and to part of the other positive-electrode layer stack section located in the other region on the opposite side of the one region of the two regions of the other of the adjacent two electrode assemblies, and a second current collector is connected to part of the other negative-electrode layer stack section located in the other region on the opposite side of the one region of the two regions of one of the adjacent two electrode assemblies and to part of one negative-electrode layer stack section located in the one region of the two regions of the other of the adjacent two electrode assemblies.

8. The battery cell according to claim 1 , configured to be installable with the winding axis of an electrode assembly extending laterally.

9. A device comprising a battery cell as a power supply source for supplying power to an electrical load, wherein:

the battery cell is configured using the battery cell according to claim 1 , and is installed with the winding axis of an electrode assembly extending laterally.

10. The battery cell according to claim 1 , wherein:

the first current collector is connected to a side lower than an upper portion of one positive-electrode layer stack section in the direction of the long axis located in one region of the two regions, and the second current collector is connected to the side lower than the other upper portion of the negative-electrode layer stack section in the direction of the long axis located in the other region on the opposite side of the one region of the two regions.

11. The battery cell according to claim 1 , wherein:

the first current collector is connected to the whole of one positive-electrode layer stack section located in one region of the two regions, and the second current collector is connected to the whole of the other negative-electrode layer stack section located in the other region on the opposite side of the one region of the two regions.

12. The battery cell according to claim 1 , wherein:

the first current collector is connected to a side upper than a lower portion of the positive-electrode layer stack section in the direction of the long axis, and the second current collector is connected to a side upper than a lower portion of the negative-electrode layer stack section in the direction of the long axis.

13. The battery cell according to claim 1 , wherein:

the first current collector is connected to a side upper than a lower portion of one positive-electrode layer stack section in the direction of the long axis located in one region of the two regions, and the second current collector is connected to a side upper than a lower portion of the other negative-electrode layer stack section in the direction of the long axis located in the other region on the opposite side of the one region of the two regions.

14. The battery cell according to claim 1 , wherein:

the first current collector is connected to one of an upper portion and a lower portion of the positive-electrode layer stack section in the direction of the long axis, and the second current collector is connected to the other of the upper portion and the lower portion of the negative-electrode layer stack section in the direction of the long axis.

15. The battery cell according to claim 1 , wherein:

the first current collector is connected to one of an upper portion and a lower portion of one positive-electrode layer stack section in the direction of the long axis located in one region of the two regions, and the second current collector is connected to the other of the upper portion and the lower portion of the other negative-electrode layer stack section in the direction of the long axis located in the other region on the opposite side of the one region of the two regions.

16. The battery cell according to claim 1 , wherein:

the first current collector is connected to one of an upper portion and a lower portion of one positive-electrode layer stack section in the direction of the long axis located in one region of the two regions, and the second current collector is connected to the other of the upper portion and the lower portion of the other negative-electrode layer stack section in the direction of the long axis located in the one region of the two regions.

17. The battery cell according to claim 1 , wherein:

the first current collector is connected to one of an upper portion and a lower portion of one positive-electrode layer stack section in the direction of the long axis located in one region of the two regions, and to the other of the upper portion and the lower portion of the other positive-electrode layer stack section in the direction of the long axis located in the other region on the opposite side of the one region of the two regions; and

the second current collector is connected to one of an upper portion and a lower portion of the other negative-electrode layer stack section in the direction of the long axis located in the other region of the two regions, and to the other of the upper portion and the lower portion of one negative-electrode layer stack section in the direction of the long axis located in the one region of the two regions.

18. The battery cell according to claim 1 , wherein:

the first current collector is connected to one of an upper portion and a lower portion of one positive-electrode layer stack section in the direction of the long axis located in one region of the two regions, and to one of the upper portion and the lower portion of the other positive-electrode layer stack section in the direction of the long axis located in the other region on the opposite side of the one region of the two regions; and

the second current collector is connected to the other of an upper portion and a lower portion of the other negative-electrode layer stack section in the direction of the long axis located in the other region of the two regions, and to the other of the upper portion and the lower portion of one negative-electrode layer stack section in the direction of the long axis located in the one region of the two regions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2012
From: SASAKI, TASKESHI
To: GS YUASA INTERNATIONAL LTD.
Reel/Frame 028705/0939 →
Priority Claims (1)
JP 2010-096239 · Apr 19, 2010 · national
Continuity (1)
Related Publication 20120301761A1 · Nov 29, 2012