Rechargeable battery
US-9225043-B2 · Dec 29, 2015 · US
US10128471B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10128471-B2 |
| Application number | US-201415100888-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 1, 2014 |
| Priority date | Dec 2, 2013 |
| Publication date | Nov 13, 2018 |
| Grant date | Nov 13, 2018 |
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Official abstract text for this publication.
To provide a technique for a battery-packaging material made of a film-form laminate in which at least a base material layer, an adhesive layer, a metal layer, and a sealant layer are laminated successively, wherein: electrolytic solution resistance is further improved by including a polyester film in the base material layer; cracks and pinholes are less likely to be created at the time of forming the polyester-film-including base material layer; and formability is improved. This battery-packaging material is made of a laminate in which at least a base material layer, an adhesive layer, a metal layer, and a sealant layer are laminated successively, wherein: the base material layer includes a polyester film; and the metal layer is an aluminum foil in which the 0.2% proof stress at the time of performing a tensile test in a direction parallel to the rolling direction is from 55 to 140 N/mm2.
Opening claim text (preview).
The invention claimed is: 1. A battery packaging material comprising a laminate in which at least a base material layer, an adhesive layer, a metal layer and a sealant layer are laminated in this order, wherein the base material layer includes a polyester film, and the metal layer is an aluminum foil having a 0.2% yield strength of 55 to 140 N/mm 2 when a tensile test is conducted in a direction parallel to a rolling direction. 2. The battery packaging material according to claim 1 , wherein the base material layer includes a laminate of a polyester film and a polyamide film. 3. The battery packaging material according to claim 2 , wherein the laminate of a polyester film and a polyamide film is a laminate of a biaxially stretched polyester film and a biaxially stretched polyamide film. 4. The battery packaging material according to claim 2 , wherein the laminate of a polyester film and a polyamide film is a co-extruded laminate of a polyester resin and a polyamide resin. 5. The battery packaging material according to claim 1 , wherein the aluminum foil has a 0.2% yield strength of 65 to 90 N/mm 2 when a tensile test is conducted in a direction parallel to a rolling direction. 6. The battery packaging material according to claim 1 , wherein the aluminum foil has a thickness of 20 to 55 μm. 7. A battery packaging material comprising a laminate in which at least a base material layer, an adhesive layer, a metal layer and a sealant layer are laminated in this order, wherein the base material layer is formed of a biaxially stretched film including at least a polyester resin layer and a polyamide resin layer, the tensile rupture elongation of the base material layer in each of the MD direction and the TD direction is in the range of 85 to 130%, and the ratio of the tensile rupture elongation of the base material layer in the MD direction to the tensile rupture elongation of the base material layer in the TD direction (MD/TD) is in the range of 1.0 to 1.4. 8. The battery packaging material according to claim 7 , wherein the base material layer is formed of a biaxially stretched film formed by co-extruding at least a polyester resin and a polyamide resin. 9. The battery packaging material according to claim 7 , wherein the base material layer is formed of a biaxially stretched film in which a polyester resin layer, an adhesive resin layer and a polyamide resin layer are laminated in this order. 10. The battery packaging material according to claim 7 , wherein in the base material layer, the polyester resin layer is situated at an outermost layer on a side opposite to the sealant layer. 11. The battery packaging material according to claim 7 , wherein the tensile rupture strength of the base material layer in each of the MD direction and the TD direction is 250 MPa or more. 12. The battery packaging material according to claim 7 , wherein the ratio of the tensile rupture strength of the base material layer in the MD direction to the tensile rupture strength of the base material layer in the TD direction (MD/TD) is in the range of 0.8 to 1.1. 13. The battery packaging material according to claim 7 , wherein the metal layer is an aluminum foil in which the 0.2% yield strength when a tensile test is conducted in a direction parallel to the MD direction and the 0.2% yield strength when a tensile test is conducted in a direction parallel to the TD direction are each in the range of 55 to 140 N/mm 2 . 14. The battery packaging material according to claim 1 , wherein at least one surface of the metal layer is subjected to a chemical conversion treatment. 15. The battery packaging material according to claim 1 , wherein the battery packaging material is a packaging material for a secondary battery. 16. A battery comprising a battery element which includes at least a positive electrode, a negative electrode and an electrolyte, the battery element being stored in the battery packaging material according to claim 1 . 17. The battery packaging material according to claim 7 , wherein at least one surface of the metal layer is subjected to a chemical conversion treatment. 18. The battery packaging material according to claim 7 , wherein the battery packaging material is a packaging material for a secondary battery. 19. A battery comprising a battery element which includes at least a positive electrode, a negative electrode and an electrolyte, the battery element being stored in the battery packaging material according to claim 7 .
Conductive · CPC title
using interposed adhesives or interposed materials with bonding properties · CPC title
on metal layer · CPC title
Batteries · CPC title
Polymeric coating · CPC title
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