Method of forming a package
US-2018123092-A1 · May 3, 2018 · US
US10109826B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10109826-B2 |
| Application number | US-201615265202-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 14, 2016 |
| Priority date | Mar 19, 2014 |
| Publication date | Oct 23, 2018 |
| Grant date | Oct 23, 2018 |
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A secondary battery of the present invention includes a battery element that includes a positive electrode and a negative electrode, a plurality of metal terminals that are connected to the positive electrode and the negative electrode, the metal terminals each having an outer peripheral surface provided with a resin film, and includes a lamination of at least a metal foil layer and a heat-sealable resin layer made of a polyolefin resin. A first package sealed portion, a second package sealed portion and a film sealed portion are each formed by pressing and heat sealing so as to have a thickness smaller than that of the peripheral region. The film sealed portion has a specific heat of fusion measured according to JIS K 7122 greater than that of a portion of the resin film other than the film sealed portion.
Opening claim text (preview).
What is claimed is: 1. A secondary battery comprising: a battery element that includes a positive electrode and a negative electrode; a plurality of metal terminals that are respectively connected to the positive electrode and the negative electrode, the metal terminals each having an outer peripheral surface provided with a resin film; a first packaging material and a second packaging material each of which includes a lamination of at least a metal foil layer and a heat-sealable resin layer made of a polyolefin resin, the first packaging material and the second packaging material sandwiching the battery element therebetween so that the heat-sealable resin layer is located inside; a first package sealed portion that is formed in the first packaging material between a first peripheral region and a first edge portion so as to be smaller in thickness than in the first peripheral region of the first packaging material, by sandwiching the resin film between the first edge portion of the first packaging material and a second edge portion of the second packaging material, and pressing and heat sealing the first packaging material and the second packaging material sandwiching the resin film therebetween, in a manner of clamping the first and second packaging materials from outside; a second package sealed portion that is formed in the second packaging material between a second peripheral region and the second edge region so as to be smaller in thickness than in the second peripheral region of the second packaging material, by sandwiching the resin film between the first edge portion of the first packaging material and the second edge portion of the second packaging material, and pressing and heat sealing the first packaging material and the second packaging material sandwiching the resin film therebetween, in a manner of clamping the first and second packaging materials from outside; and a film sealed portion that is formed in the resin film adjacent to a third peripheral portion so as to be smaller in thickness than in the third peripheral region of the resin film, by sandwiching the resin film between the first edge portion of the first packaging material and the second edge portion of the second packaging material, and pressing and heat sealing the first packaging material and the second packaging material sandwiching the resin film therebetween, in a manner of clamping the first and second packaging materials from outside, the film sealed portion being in intimate contact with the first packaging material and being in intimate contact with the second packaging material, wherein positions at which the first package sealed portion, the second package sealed portion, and the film sealed portion are formed in a perpendicular direction to an end face of the first edge portion are within a range where the resin film is arranged in the perpendicular direction to the end face of the first end portion, and a specific heat of fusion of the film sealed portion measured according to JIS K 7122 is greater than a specific heat of fusion of a portion of the resin film other than the film sealed portion, wherein the resin film is configured by laminating a plurality of layered bodies; wherein at least one of the plurality of layered bodies has the film sealed portion where a specific heat of fusion measured according to JIS K 7122, is 65 mJ/mg or more; and wherein of the plurality of layered bodies, an innermost layer and an outermost layer have a specific heat of fusion, in the film sealed portion, in a range of 30 mJ/mg to 100 mJ/mg, inclusive, when a layer nearest to the metal terminal is the innermost layer and a layer farthest from the metal terminal is the outermost layer. 2. The secondary battery of claim 1 , wherein the film sealed portion has a length in a range of 3 mm to 20 mm, inclusive, in the perpendicular direction. 3. The secondary battery according to claim 1 , wherein for at least one of the plurality of layered bodies, a specific heat of fusion of a portion other than the film sealed portion measured according to JIS K 7122 is 55 mJ/mg or more; and wherein for the innermost layer and the outermost layer, a specific heat of fusion of a portion other than the film sealed portion measured according to JIS K 7122 is in a range of 25 mJ/mg to 90 mJ/mg, inclusive. 4. The secondary battery of claim 1 , wherein, in the film sealed portion of the plurality of layered bodies, a sum-total thickness of the layered bodies having a specific heat of fusion of 40 mJ/mg or more measured according to JIS K 7122 is in a range of 20% to 80%, inclusive, relative to an overall thickness of the resin film. 5. The secondary battery of claim 1 , wherein in the resin film, the film sealed portion has a thickness in a range of 50% to 90%, inclusive, relative to a thickness of the film in the third peripheral region. 6. The secondary battery of claim 1 , wherein the metal terminal has a cross section in a rectangular shape, the cross section being taken parallel to a reference plane that is perpendicular to the perpendicular direction; wherein the rectangular shape has a first side that is arranged parallel to a sandwiching direction in which the first edge portion of the first packaging material and the second edge portion of the second packaging material sandwich the resin film therebetween; and wherein, in the cross section taken parallel to the reference plane, when a length of the resin film in a perpendicular direction that is perpendicular to the first side is L, a length of the first side is L 1 , and a length of a second side orthogonal to the first side is L 2 , Expression (1) is satisfied: L 1 +2 L 2 ≤L≤ 2 L 1 +2 L 2 (1). 7. The secondary battery of claim 1 , wherein the innermost layer contains a polyolefin resin that has been acid-modified; and wherein the layered bodies in the plurality of layered bodies other than the innermost layer do not contain any polyolefin resin that has been acid-modified. 8. The secondary battery of claim 1 , wherein the first packaging material and the second packaging material are each formed into the same shape that is a polygon and overlap each other, when viewed from the sandwiching direction; and wherein the first packaging material has a plurality of edge portions in which third edge portions other than the first edge portion are bent.
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