BATTERY CELL
20210367299 · 2021-11-25
Inventors
Cpc classification
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M50/14
ELECTRICITY
International classification
Abstract
To enhance stiffness of a battery ceil and avoid cracking of an electrode without a reinforcement member in the battery cell configured such that a battery is covered with an exterior body including a laminated film. A battery cell includes a battery and an exterior body housing the battery. The exterior body includes a film in which a plurality of layers is stacked on each other, and the plurality of layers includes a surface layer to be a stiffness reinforcing layer, an air blocking layer, and an inner layer to be an adhesive layer. A buffer layer made of polyethylene terephthalate may be interposed between the air blocking layer and the inner layer. Moreover, an adhesive layer may be interposed between the air blocking layer and the surface layer. Further, a waterproof layer made of polypropylene or polyethylene terephthalate may be provided outside the air blocking layer.
Claims
1. A battery cell comprising: a battery; and an exterior body housing the battery, wherein the exterior body includes a film in which a plurality of layers is stacked on each other, and the plurality of layers includes a surface layer to be a stiffness reinforcing layer, an air blocking layer, and an inner layer to be an adhesive layer.
2. The battery cell according to claim 1, wherein a thickness of the surface layer is 0.1 to 1 mm.
3. The battery cell according to claim 1, wherein a thickness of the surface layer is 0.25 to 0.6 mm.
4. The battery cell according to claim 1, wherein the surface layer is made of cellulose.
5. The battery cell according to claim 1, wherein the air blocking layer is made of aluminum foil.
6. The battery cell according to claim 1, wherein the inner layer is made of polypropylene.
7. The battery ceil according to claim 1, wherein a buffer layer is interposed between the air blocking layer and the inner layer.
8. The battery cell according to claim 7, wherein the buffer layer is made of polyethylene terephthalate.
9. The battery cell according to claim 1, wherein an adhesive layer is interposed between the air blocking layer and the surface layer.
10. The battery ceil according to claim 1, wherein a waterproof layer is provided outside the air blocking layer.
11. The battery cell according to claim 10, wherein the waterproof layer is made of polypropylene or polyethylene terephthalate.
12. The battery cell according to claim 1, wherein the exterior body includes a portion covering in contact with a top surface, a bottom surface, and two side surfaces of the battery perpendicular to an end surface from which a collection tab lead of the battery extends, a portion covering the end surface from which the collection tab lead of the battery protrudes, folded in from each short side of the end surface to form a triangular pyramid-shaped space on each side, and folded from each long side of the end surface to cover the end surface, and a portion further extending in an axial direction from the portion covering the end surface such that both opposing upper and lower surfaces are joined to each other to sandwich the collection tab lead.
13. The battery cell according to claim 1, wherein the battery is an all-solid-state battery including a stack with a solid electrolyte.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF THE INVENTION Hereinafter, one embodiment of the present invention will be described in detail with reference to the drawings.
[0027] A battery 1 of the present invention is an all-solid-state battery in the embodiment, and is in a rectangular parallelepiped shape as shown in
[0028]
[0029] In the battery cell 2, a top surface 21a, a bottom surface 21b, and side surfaces 22a, 22b are defined corresponding to the battery 1. Portions corresponding to the end surfaces 13a, 13b of the battery 1 are end surface folding portions 23a-1, 23a-2, 23b-1, 23b-2 in such a form that the exterior body 3 is folded, and have appearances in a triangular prism shape. At the end surface folding portions 23a-1, 23a-2, 23b-1, 23b-2, the total of four triangular pyramid-shaped spaces 25a-1, 25a-2, 25b-1, 25b-2 formed by folding-in of the portions 23a-1, 23a-2, 23b-1, 23b-2 from side surface 22a, 22b sides are formed two on each side. Collection tab lead housing portions 24a-1, 24a-2, 24b-1, 24b-2 vertically sandwiching and housing the collection tab leads 14a, 14b are provided to extend in the direction of the center axis 15 from the end surface folding portions 23a-1, 23a-2, 23b-1, 23b-2.
[0030]
[0031] As portions covering the end surfaces 13a, 13b of the battery 1, end surface covering portions 33a-1, 33a-2, 33b-1, 33b-2 forming the triangular prism-shaped end surface folding portions 23a-1, 23a-2, 23b-1, 23b-2 of the battery cell 2 in the form that the exterior body 3 is folded are provided corresponding to an upper-lower, direction of the end surface on each side. As extensions of the end surface covering portions 33a-1, 33a-2, 33b-1, 33b-2 in the center axis 15 direction, collection tab lead sandwiching portions 34a-1, 34a-2, 34b-1, 34b-2 vertically sandwiching the collection tab leads on both sides are provided. As portions forming the triangular pyramid-shaped spaces 25a-1, 25a-2, 25b-1, 25b-2 formed folded in from the side surface 22a, 22b sides, triangular pyramid-shaped space formation portions 35a-1, 35a-21, 35a-22, 35b-1, 35b-21, 35b-22 are formed. The triangular pyramid-shaped space formation portions 35a-21, 35a-22 overlap with each other to form the triangular pyramid-shaped space, and the triangular pyramid-shaped space formation portions 35b-21, 35b-22 overlap with each other to form the triangular pyramid-shaped space.
[0032] Part of the section of a film of the exterior body 3 cut along an IV-IV line of
[0033] The surface layer 0 is a layer forming an outermost layer of the film of the exterior body 3, and as a waterproof layer, is made of a resin material such as polypropylene (PP) or polyethylene terephthalate (PET). The surface layer 1 is a stiffness reinforcing layer for ensuring stiffness of the film of the exterior body 3, and is made of cellulose paper. In the battery cell 2 of the present invention, the exterior body 3 has such a shape that the battery 1 is packaged in the exterior body 3 with the battery 1 being covered with the exterior body 3, and such a shape is formed by the process of folding the film of the exterior body 3. Thus, e.g., the cellulose paper which is easily foldable, is lightweight, and has a sufficiently-high strength is most suitable as the material of the exterior body 3. Note that the cellulose paper exhibits a small water repellent effect, and for this reason, in a case where the cellulose paper is used for the surface layer 1 as the stiffness reinforcing layer, the waterproof layer of the surface layer 0 needs to be used as a layer for waterproofing on the surface layer 1.
[0034] As described above, in the battery cell 2 of the present invention, the shape of the exterior body 3 for packaging the battery 1 in the exterior body 3 with the battery 1 being covered with the exterior body 3 is formed by the folding process. Thus, the thickness of the exterior foody 3 can be greater than that In a case where the exterior foody 3 is formed using a technique such as deep drawing. Specifically, the thickness of the surface layer 1 as the stiffness reinforcing layer is 0.1 to 1 mm and preferably 0.25 to 0.6 mm. In a case where the thickness of the surface layer 1 is less than 0.1 mm, the surface layer 1 cannot ensure strength as the stiffness reinforcing layer. In a case where the thickness exceeds 1 mm, a problem in reducing weight of the battery cell 2 is caused, and a difficulty in folding of the exterior body 3 for packaging the battery 1 in the exterior body 3 with the battery 1 being covered with the exterior body 3 is caused.
[0035] The surface layer 2 fulfills a role as an adhesive layer between the surface layer 1 and the air blocking layer. The inner layer 2 made of polyethylene terephthalate (PET) is provided as a buffer layer inside the air blocking layer. The inner layer 1 made of polypropylene (PP) is provided as an adhesive layer below (inside) the inner layer 2. Polypropylene (PP) starts melting at about 140° C. Thus, an inner surface of the inner layer 2 is coated with polypropylene (PP) as the inner layer 1, and upon bonding for forming the shape of a package for covering the battery 1 with the exterior body 3, polypropylene (PP) is heated and thermally welded at a temperature of equal to or higher than 140° C. In this manner, the shape of the package can be formed. Polypropylene is most suitable as the material of the inner layer 1 to be the adhesive layer because necessary portions can be bonded by a simple step.
[0036] Of the six layers of the surface layer 0, the surface layer 1, the surface layer 2, the air blocking layer, the inner layer 1, and the inner layer 2 forming the stack of the film of the exterior body 3, the stiffness reinforcing layer of the surface .layer 1, the air blocking layer, and the adhesive layer of the inner layer 2 are, in the present invention, essential basic constituent layers, and the other layers are layers added as necessary.
[0037] The embodiment of the present invention has been described above with reference to the example, but the present invention is not limited to such an example. Needless to say, various forms can be made without departing from the gist of the present invention.
EXPLANATION OF REFERENCE NUMERALS
[0038] 1 Battery [0039] 11a Top Surface [0040] 11b Bottom Surface [0041] 12a, 12b Side Surface [0042] 13a, 13b End Surface [0043] 14a, 14b Collection Tab Lead [0044] 15 Center Axis [0045] 2 Battery Cell [0046] 21a Top Surface [0047] 21b Bottom Surface [0048] 22a, 22b Side Surface [0049] 23a-1, 23a-2, 23b-1, 23b-2 End Surface Folding Portion [0050] 24a-1, 24a-2, 24b-1, 24b-2 Collection Tab Lead Housing Portion [0051] 25a-1, 25a-2, 25b-1, 25b-2 Triangular Pyramid-Shaped Space [0052] 3 Exterior Body [0053] 31a Top Surface Covering Portion [0054] 31b Bottom Surface Covering Portion [0055] 32a, 32b-1, 32b-2 Side Surface Covering Portion [0056] 33a-1, 33a-2, 33b-1, 33b-2 End Surface Covering Portion [0057] 34a-1, 34a-2, 34b-1, 34b-2 Collection Tab Lead Sandwiching Portion [0058] 35a-1, 35a-21, 35a-22, 35b-1, 35b-21, 35b-22 Triangular Pyramid-Shaped Space Formation Portion