Electric storage device and method for manufacturing the same
US-2017330696-A1 · Nov 16, 2017 · US
US12040508B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12040508-B2 |
| Application number | US-201917274830-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 25, 2019 |
| Priority date | Sep 25, 2018 |
| Publication date | Jul 16, 2024 |
| Grant date | Jul 16, 2024 |
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A power storage module comprises: an electrode stacked body including a stacked body in which a plurality of bipolar electrodes are stacked, a pair of terminal electrodes located on an outer side of the stacked body in a stacking direction of the bipolar electrodes, and a plurality of metal plates which constitute the stacked body and the pair of terminal electrodes; and a sealing body provided to surround a side surface of the electrode stacked body. The sealing body includes a plurality of first sealing portions coupled to edge portions of the plurality of metal plates, and a second sealing portion that couples the first sealing portions to each other. A thickness adjustment member that adjusts the thickness of the electrode stacked body in the stacking direction is disposed in the electrode stacked body at a position of overlapping the first sealing portions when viewed from the stacking direction.
Opening claim text (preview).
The invention claimed is: 1. A bipolar battery comprising: an electrode stacked body that includes a stacked body in which a plurality of bipolar electrodes are stacked, a pair of terminal electrodes located on an outer side of the stacked body in a stacking direction of the bipolar electrodes, and a plurality of metal plates which constitute the stacked body and the pair of terminal electrodes; and a sealing body that is provided to surround a side surface of the electrode stacked body, wherein the sealing body includes a plurality of first sealing portions coupled to edge portions of the plurality of metal plates, and a second sealing portion that couples the first sealing portions to each other, a thickness adjustment member that is configured to adjust the thickness of the electrode stacked body and the plurality of first sealing portions in the stacking direction is disposed in the electrode stacked body at a position of overlapping the first sealing portions when viewed from the stacking direction. 2. The bipolar battery according to claim 1 , wherein the thickness adjustment member is formed from the same material as in the first sealing portions, and is configured separately from the first sealing portions. 3. The bipolar battery module according to claim 1 , wherein an outermost first sealing portion of the plurality of first sealing portions functions as the thickness adjustment member. 4. The bipolar battery according to claim 1 , wherein one of the pair of terminal electrodes is a negative terminal electrode, the other of the pair of terminal electrodes is a positive terminal electrode, and the thickness adjustment member is disposed at least one of between the stacked body and the negative terminal electrode and between the stacked body and the positive terminal electrode in the stacking direction. 5. The bipolar battery according to claim 4 , wherein the thickness adjustment member is disposed between the stacked body and the negative terminal electrode, and at an edge portion of an inner surface of the metal plate of the negative terminal electrode in the stacking direction. 6. The bipolar battery according to claim 4 , wherein the thickness adjustment member is disposed between the stacked body and the positive terminal electrode, and at the first sealing portion coupled to an edge portion of an inner surface of the metal plate of the positive terminal electrode in the stacking direction. 7. The bipolar battery according to claim 4 , wherein the thickness adjustment member is disposed both between the stacked body and the negative terminal electrode and between the stacked body and the positive terminal electrode in the stacking direction. 8. The bipolar battery according to claim 7 , wherein the thickness of the thickness adjustment member disposed between the stacked body and the negative terminal electrode, and the thickness of the thickness adjustment member disposed between the stacked body and the positive terminal electrode are the same as each other. 9. The bipolar battery according to claim 1 , wherein the electrode stacked body further includes an outermost metal plate that is located directly on an outer side surface of one of the pair of terminal electrodes in the stacking direction, the stacked body further includes separators stacked alternately with the bipolar electrodes along the stacking direction, the first sealing portions are coupled to edge portions of the metal plates and the outermost metal plate, the second sealing portion covers side surfaces of the plurality of first sealing portions, and the thickness adjustment member is located between the one of the pair of terminal electrodes and the outermost metal plate, and adjusts the thickness of the electrode stacked body in the stacking direction. 10. The bipolar battery according to claim 9 , wherein the one of the pair of terminal electrodes is a negative terminal electrode, the thickness adjustment member is in contact with the outermost metal plate and the first sealing portion that is coupled to the metal plate of the negative terminal electrode, and the thickness adjustment member is spaced apart from the negative terminal electrode. 11. The bipolar battery according to claim 9 , wherein the one of the pair of terminal electrodes is a negative terminal electrode, and the thickness adjustment member is in contact with the negative terminal electrode and the outermost metal plate. 12. The bipolar battery according to claim 9 , wherein the one of the pair of terminal electrodes is a positive terminal electrode, and the thickness adjustment member is in contact with the positive terminal electrode and the outermost metal plate. 13. The bipolar battery according to claim 9 , wherein the electrode stacked body further includes an additional outermost metal plate that is located on an outer side of the other of the pair of terminal electrodes in the stacking direction, and an additional thickness adjustment member that adjusts the thickness of the electrode stacked body in the stacking direction is located between the other of the pair of terminal electrodes and the additional outermost metal plate and at a site overlapping the first sealing portions in the stacking direction. 14. The bipolar battery according to claim 9 , wherein the other of the pair of terminal electrodes is a negative terminal electrode, the electrode stacked body further includes an additional outermost metal plate that is located on an outer side of the negative terminal electrode in the stacking direction, an alkali electrolytic solution is stored in an inner space made by the electrode stacked body and the sealing body, and a first surplus space is formed by the negative terminal electrode, the first sealing portion coupled to the metal plate of the negative terminal electrode, and the additional outermost metal plate. 15. The bipolar battery according to claim 13 , wherein a distance from the one of the pair of terminal electrodes to the edge portion of the outermost metal plate along the stacking direction is different from a distance from the other of the pair of terminal electrode to an edge portion of the additional outermost metal plate along the stacking direction. 16. The bipolar battery according to claim 13 , wherein the outermost metal plate includes a first contact portion that is in contact with the one of the pair of terminal electrodes, the additional outermost metal plate includes a second contact portion that is in contact with the other of the pair of terminal electrodes, and an area of the first contact portion is different from an area of the second contact portion when viewed from the stacking direction. 17. The bipolar battery according to claim 9 , wherein the thickness adjustment member includes a plurality of layered members stacked along the stacking direction. 18. The bipolar battery according to claim 9 , wherein each of the thickness adjustment member and the plurality of first sealing portions contains an alkali-resistant thermoplastic resin. 19. The bipolar battery according to claim 1 , wherein said power storage module is manufactured according to a method comprising: forming the electrode stacked body by alternately stacking said bipolar electrodes to which the first sealing portions are respectively coupled and separators along the stacking direction; measuring the thickness of the stacked body along the stacking direction; calculating a difference between the thickness of
with bipolar electrodes · CPC title
characterised by the disposition of the sealing members · CPC title
characterised by the disposition of the terminals on the cells · CPC title
on the same side of the cell · CPC title
Primary casings; Jackets or wrappings · CPC title
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