LITHIUM-ION CELL, BATTERY AND POWER DEVICE
20230207969 · 2023-06-29
Inventors
Cpc classification
H01M10/0587
ELECTRICITY
Y02P70/50
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
H01M50/463
ELECTRICITY
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
H01M50/489
ELECTRICITY
H01M50/538
ELECTRICITY
H01M10/0525
ELECTRICITY
International classification
H01M10/0525
ELECTRICITY
H01M50/538
ELECTRICITY
Abstract
The application discloses a lithium-ion cell, a battery and a power device, which belongs to the technical field of lithium-ion battery structure. A side surface of an end portion of a cell body of the lithium-ion cell has a thin area relative to a middle portion of the cell body, and the lithium-ion cell further includes adhesive paper attached to the thin area. In this application, a special adhesive paper is designed and attached to the thin area formed due to thinning processing at the edge of the end portion of the lithium-ion cell body, and is suitable for compensating for the thin area of the lithium-ion cell, so that the cell has a flat surface, is stressed uniformly during hot-pressing formation and has a good bonding.
Claims
1. A lithium-ion cell, a side face of an end portion of a cell body of the lithium-ion cell having a thin area relative to a middle portion of the cell body, wherein the lithium-ion cell further comprises an adhesive paper attached to the thin area.
2. The lithium-ion cell according to claim 1, wherein when the adhesive paper is attached to the thin area, a height difference between an outer plane of a substrate layer of the adhesive paper and a side face of the middle portion of the cell body on a side where the adhesive paper is located is less than 0.5 mm.
3. The lithium-ion cell according to claim 1, wherein the thin area is at least one inclined plane formed by a decreasing thickness of the end portion of the cell body in a direction from the middle portion of the cell body to an end surface of the cell body; the adhesive paper is an adhesive paper whose thickness increases in a direction from the middle portion of the cell body to the end surface of the cell body.
4. The lithium-ion cell according to claim 3, wherein the adhesive paper comprises a substrate layer and an adhesive layer, and the substrate layer has an outer plane and an inner inclined plane having an included angle α relative to the outer plane, and the adhesive layer is disposed on the inner inclined plane.
5. The lithium-ion cell according to claim 4, wherein one layer of the adhesive paper is attached to one thin area, and the one layer of the adhesive paper has an included angle α of 0-20 degrees.
6. The lithium-ion cell according to claim 4, wherein at least two layers of the adhesive paper are attached to one thin area, and each layer of the adhesive paper in the at least two layers of the adhesive paper has an included angle α of 1-7 degrees.
7. The lithium-ion cell according to claim 1, wherein the adhesive paper has a maximum thickness of 0.2-2 mm.
8. The lithium-ion cell according to claim 2, wherein the adhesive paper has a maximum thickness of 0.2-2 mm.
9. The lithium-ion cell according to claim 3, wherein the adhesive paper has a maximum thickness of 0.2-2 mm.
10. The lithium-ion cell according to claim 4, wherein the adhesive paper has a maximum thickness of 0.2-2 mm.
11. The lithium-ion cell according to claim 5, wherein the adhesive paper has a maximum thickness of 0.2-2 mm.
12. The lithium-ion cell according to claim 1, wherein the adhesive paper has a length of 2-15 mm.
13. The lithium-ion cell according to claim 1, wherein the lithium-ion cell comprises the cell body formed by winding or laminating mode, and a tab extending out from an end surface of the end portion of the cell body.
14. The lithium-ion cell according to claim 13, wherein the thin area is located at one end portion of the cell body from which the tab protrudes.
15. The lithium-ion cell according to claim 3, wherein the thin area comprises two inclined planes formed on opposite two sides of the end portion of the lithium-ion cell by a decreasing thickness in a direction from the middle portion of the cell body to the end surface of the cell body.
16. A battery, comprising a cell, a shell that encapsulates the cell and an electrolyte, wherein the cell is the lithium-ion cell according to claim 1.
17. The battery according to claim 16, wherein the shell is a soft shell made of laminated aluminum film.
18. The battery according to claim 16, wherein the shell is a hard metal shell.
19. The battery according to claim 18, wherein the hard metal shell is a hard aluminum shell or a hard steel shell.
20. A power device, wherein the power device comprises the battery according to claim 16.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DESCRIPTION OF EMBODIMENTS
[0026] The specific embodiments of this application will be further described below with the reference to accompanying drawings; for the convenience of explanation, the definitions of orientations such as up, down, left, and right in this application are only for the convenience of clearly describing the structure of the device, and are not used for limitation on the actual orientation of the device in the process of production, use, and sales. Combinations between various examples or between features of various examples may be combined to form new examples without conflict. The specific embodiments of this application will be further described below with reference to the accompanying drawings.
Example 1
[0027] Referring to
[0028] In order to compensate for the thin area 11, the cell body 10 is made to have a flat outer edge, which facilitates performing the subsequent hot-pressing formation on the cell. The shape and thickness of the adhesive paper 31 provided in this example are designed to be suitable for compensating for the thin area 11 of the lithium-ion cell. Specifically, as shown in
[0029] It can be understood that during processing of the positive and negative electrodes, it is not excluded to use other processing means similar to the thinning means, nor is it excluded that thin areas with other shapes are formed on the cell body 10. Correspondingly, the shape and thickness of the adhesive paper 31 can be designed and processed in advance according to the specific thin area. In this example, the preparation and attachment manners of the adhesive paper are as follows:
[0030] (1) measuring a thickness of respective edge of the rolled positive and negative electrode sheets, and recording the thickness change value of the electrode sheets from the edge to the main body thereof;
[0031] (2) calculating the thickness change of the cell from the end portion to the main body thereof by the fold number or number of the electrode sheets of the wound cell/laminated cell and the thickness change of the electrode sheets;
[0032] (3) designing the thickness change of the adhesive paper according to the thickness change of the cell from the end portion to the main body thereof; the thickness change trend of the adhesive paper is opposite to that of the end portion of the cell; after the adhesive layer is attached to the cell, the thickness and shape are compensated, such that the entire surface of the cell becomes flat; the substrate material of the adhesive paper may be PI (Polyimide), PET (Poly(Ethylene Terephthalare)), BOPP (Biaxial Oriented Polypropylene), PE (Polyethylene), etc., and the material of the adhesive layer may be acrylic glue, silica gel, rubber, etc.;
[0033] (4) when the cell with a flat thickness is formed by hot pressing, the cell has a uniform surface pressure, and has a uniform internal bonding.
Example 2
[0034] As shown in
Example 3
[0035] As shown in
Example 4
[0036] As shown in
[0037] The specific structure of each adhesive paper used in the above examples and its optional parameters in different application scenarios are described as follows.
[0038] Referring to
[0039] Referring to
Example 5
[0040] Referring to
[0041] When the cell is sealed using the laminated aluminum film or steel material, any existing technical methods known in the art may be used, and then the qualified battery can be obtained after quality tests.
[0042] The above examples are only to fully disclose rather than limit this application. Any replacement of equivalent technical features that can be obtained without creative work based on the creating spirit of this application should be regarded as the scope of the disclosure of this application.