IP Library Granted Patent US 10,290,848
Granted Patent B2
US 10,290,848 · App. 14/944,140 · Granted May 14, 2019

Lithium secondary battery

Inventors: Minmin Zou (Ningde, CN); Song Li (Ningde, CN); Dengjun Ai (Ningde, CN)
Assignees: DONGGUAN AMPEREX TECHNOLOGY LIMITED; NINGDE AMPEREX TECHNOLOGY LIMITED
H01M2/1686H01M2/1646H01M2/1653H01M2/18H01M2/26H01M10/052H01M10/0587
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Quick Facts
Patent No.
US 10,290,848
App. No.
14/944,140
Granted
May 14, 2019
Kind
B2
Abstract

The present application relates to the field of energy storage devices, in particular to a lithium secondary battery. The battery comprises a shell having a bottom, a cap assembly, a positive terminal, a negative terminal, an electrode assembly and electrolyte, wherein a side wall of the shell comprises a pair of main planes and a pair of side faces, and the opening is arranged opposite to the bottom; the electrode assembly is formed by winding a positive plate, a negative plate and a composite separation film comprising a polymer microporous film layer and a ceramic composite material layer; a first extension portion extends from one end of the positive plate facing the cap assembly and is electrically connected with the positive terminal; a second extension portion extends from one end of the positive plate facing the cap assembly and is electrically connected with the negative terminal; and the air permeability of the composite separation film and the thickness of the side faces satisfy the relationship of 0.05 s/(100 mL·μm)≤A/B≤1.0 s/(100 mL·μm). The present application provides a lithium secondary battery capable of improving the safety performance of the battery effectively.

Claims (28)

1. A lithium secondary battery, comprising a shell having a bottom, a side wall and an opening; a cap assembly covering the opening; a positive terminal and a negative terminal arranged on the cap assembly; an electrode assembly and electrolyte arranged in a cavity surrounded by the shell and the cap assembly; wherein:

the side wall comprises a pair of main planes and a pair of side faces, the main planes and the side faces are arranged alternatively around the edge of the bottom, and the opening is arranged opposite to the bottom, wherein the side faces are in a curved arc surface configuration;

the electrode assembly is formed by winding a positive plate, a negative plate and a composite separation film arranged between the positive plate and the negative plate, wherein a surface of the electrode assembly comprises an arc surface, the arc surface has a shape matching one of the side faces of the shell; wherein the composite separation film comprises at least one polymer microporous film layer and at least one ceramic composite material layer;

a plurality of first extension portions extend from one end of the positive plate facing the cap assembly and are electrically connected with the positive terminal;

a plurality of second extension portions extend from one end of the negative plate facing the cap assembly and are electrically connected with the negative terminal;

the plurality of first extension portions and the plurality of second extension portions are led out from a same end of the electrode assembly facing the cap assembly, rather than from both sides of the electrode assembly; and

an air permeability A of the composite separation film and a thickness B of the side face satisfy the following relationship:

0.05 s/(100 mL·μm)≤ A/B≤ 1.0 s/(100 mL·μm), wherein the thickness B of the side faces is 400-1200 μm.

2. The lithium secondary battery according to claim 1 , wherein, the air permeability A of the composite separation film and the thickness B of the side faces satisfy the following relationship:

0.2 s/(100 mL·μm)≤ A/B≤ 0.75 s/(100 mL·μm).

3. The lithium secondary battery according to claim 1 , wherein, the air permeability A of the composite separation film is 50-500 s/100 mL.

4. The lithium secondary battery according to claim 1 , wherein, a ratio of a size L of the main planes in a direction from one side face to the other to a size W of the main planes in a direction from the bottom to the opening is 1.2-2.5.

5. The lithium secondary battery according to claim 1 , wherein,

the positive plate comprises a positive current collector and a positive active material layer coated on the surface of the positive current collector, and the plurality of first extension portions extend from the positive current collector; and

the negative plate comprises a negative current collector and a negative electrode active material layer coated on the surface of the negative current collector, and the plurality of second extension portions extend from the negative current collector.

6. The lithium secondary battery according to claim 5 , wherein the plurality of first extension portions and the plurality of second extension portions are in the form of a trapezoid, and an upper base of the trapezoid extends away from the electrode assembly.

7. The lithium secondary battery according to claim 5 , wherein, a joint of each of the plurality of first extension portions and the positive current collector has a circular arc transition edge, the bottom of each of the plurality of second extension portions and the negative current collector also have a circular arc transition edge, and the circular arcs both have a radius of 0.5 mm-20 mm.

8. The lithium secondary battery according to claim 5 , wherein, top portions of the plurality of first extension portions and the plurality of second extension portions are both provided with a rounded chamfer with a radius of 0.5 mm-20 mm.

9. The lithium secondary battery according to claim 1 , wherein, the ceramic composite material layer comprises inorganic particles and matrix materials.

10. The lithium secondary battery according to claim 2 , wherein, the air permeability A of the composite separation film is 50-500 s/100 mL, and the thickness B of the side faces is 400-1200 μm.

11. The lithium secondary battery according to claim 2 , wherein, a ratio of a size L of the main planes in a direction from one side face to the other to a size W of the main planes in a direction from the bottom to the opening is 1.2-2.5.

12. The lithium secondary battery according to claim 2 , wherein,

the positive plate comprises a positive current collector and a positive active material layer coated on the surface of the positive current collector, and the plurality of first extension portions extend from the positive current collector; and

the negative plate comprises a negative current collector and a negative electrode active material layer coated on the surface of the negative current collector, and the plurality of second extension portions extend from the negative current collector.

13. The lithium secondary battery according to claim 12 , wherein the plurality of first extension portions and the plurality of second extension portions are in the form of a trapezoid, and an upper base of the trapezoid extends away from the electrode assembly.

14. The lithium secondary battery according to claim 12 , wherein, a joint of each of the plurality of first extension portions and the positive current collector has a circular arc transition edge, the bottom of each of the plurality of second extension portions and the negative current collector also have a circular arc transition edge, and the circular arcs both have a radius of 0.5 mm-20 mm.

15. The lithium secondary battery according to claim 12 , wherein, top portions of the plurality of first extension portions and the plurality of second extension portions are both provided with a rounded chamfer with a radius of 0.5 mm-20 mm.

16. The lithium secondary battery according to claim 2 , wherein, the ceramic composite material layer comprises inorganic particles and matrix materials.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2016
From: ZOU, MINMIN; LI, SONG; AI, DENGJUN
To: DONGGUAN AMPEREX TECHNOLOGY LIMITED; NINGDE AMPEREX TECHNOLOGY LIMITED
Reel/Frame 037431/0580 →
Priority Claims (1)
CN 2014 1 0664445 · Nov 19, 2014 · national
Continuity (1)
Related Publication 20160141563A1 · May 19, 2016
Cited By (1)
US 12,512,539