Nonaqueous electrolyte secondary battery and method for manufacturing the same
US-2016380303-A1 · Dec 29, 2016 · US
US10424809B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10424809-B2 |
| Application number | US-201715637076-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 29, 2017 |
| Priority date | Jul 28, 2016 |
| Publication date | Sep 24, 2019 |
| Grant date | Sep 24, 2019 |
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A secondary battery including an electrode body that includes a positive electrode plate and a negative electrode plate, an outer body that houses the electrode body, a metal sealing plate that seals an opening of the outer body, a positive electrode collector electrically connected to the positive electrode plate and the sealing plate, a negative electrode external terminal connected to the negative electrode plate through a negative electrode collector. In the secondary battery, a first projection and a second projection are formed on a surface of the sealing plate on a battery inner side, the positive electrode collector includes a first opening and a cut-out, the first projection is disposed in the first opening, the first projection and an edge portion of the first opening is welded and connected to each other, and the second projection is disposed in the cut-out.
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What is claimed is: 1. A secondary battery comprising: an electrode body that includes a first electrode plate and a second electrode plate; an outer body that includes an opening, the outer body housing the electrode body; a metal sealing plate that seals the opening; a first electrode collector electrically connected to the first electrode plate; and a second electrode external terminal electrically connected to the second electrode plate, the second electrode external terminal being attached to the sealing plate while in an insulated state with respect to the sealing plate, wherein the sealing plate includes a first projection and a second projection on a surface on a battery inner side, wherein the first electrode collector includes a first opening, and a second opening or a cut-out, wherein the first projection is disposed in the first opening, and the first projection and an edge portion of the first opening are welded and connected to each other, and wherein the second projection is disposed in the second opening or the cut-out. 2. The secondary battery according to claim 1 , wherein a recess is formed in a distal end of the first projection. 3. The secondary battery according to claim 1 , wherein a thin wall portion is formed around the first opening. 4. The secondary battery according to claim 1 , wherein a collector projection that protrudes towards an electrode body side is formed in the edge portion of the first opening. 5. The secondary battery according to claim 1 , wherein, in a surface of the sealing plate on a battery outer side, a first recess is formed at a position corresponding to the first projection, and a second recess is formed at a position corresponding to the second projection. 6. The secondary battery according to claim 1 , wherein a gap is formed between an end portion of the second projection on a first projection side, and an edge of the second opening or the cut-out. 7. The secondary battery according to claim 1 , wherein the first electrode collector includes the cut-out, and the second projection is disposed in the cut-out. 8. The secondary battery according to claim 1 , wherein a tapered portion is formed in an end portion of the fiust opening on a sealing plate side. 9. A battery pack comprising: a plurality of the secondary batteries according to claim 1 , wherein between two adjacent secondary batteries, the negative electrode external terminal of one secondary battery, and an outer surface of the sealing plate of the other secondary battery are connected to each other with a bus bar. 10. The battery pack according to claim 9 , wherein in each secondary battery, the electrode body is fixed to the outer body by being pressed from both sides by a pair of side walls of the outer body. 11. A battery pack comprising: a plurality of the secondary batteries according to claim 5 , wherein between two adjacent secondary batteries, the negative electrode external terminal of one secondary battery, and an outer surface of the sealing plate of the other secondary battery are connected to each other with a bus bar, and wherein the bus bar is welded and connected to the outer surface of the sealing plate between the first recess and the second recess. 12. A method for manufacturing a secondary battery that includes an electrode body that includes a first electrode plate and a second electrode plate, an outer body that includes an opening, the outer body housing the electrode body, a metal sealing plate that seals the opening, a first electrode collector electrically connected to the first electrode plate, and a second electrode external terminal electrically connected to the second electrode plate, the second electrode external terminal being attached to the sealing plate while in an insulated state with respect to the sealing plate, in which the sealing plate includes a first projection and a second projection on a surface on a battery inner side, the first electrode collector includes a first opening, and a second opening or a cut-out, the first projection is disposed in the first opening, and the first projection and an edge portion of the first opening are welded and connected to each other, and the second projection is disposed in the second opening or the cut-out, the method comprising: welding the first projection and the edge portion of the first opening to each other by projecting an energy ray. 13. The method for manufacturing a secondary battery according to claim 12 further including a second electrode collector connected to the second electrode external terminal and the second electrode plate, the method further comprising: fixing the first electrode collector and the second electrode collector to the sealing plate; bending, after the fixing, the first electrode collector and the second electrode collector; and welding and connecting, after the bending, the first electrode collector to the first electrode plate, and the second electrode collector to the second electrode plate. 14. The method for manufacturing a secondary battery according to claim 12 , wherein a pair of cut-out portions are formed in the first electrode collector at a portion where the bending is performed. 15. The method for manufacturing a secondary battery according to claim 12 , wherein a tapered portion is formed in an end portion of the first opening on a sealing plate side.
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