STRUCTURES OF LITHIUM BATTERY CELL AND MANUFACTURING PROCESS THEREOF
20170250382 · 2017-08-31
Inventors
Cpc classification
H01M50/528
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
H01M10/0525
ELECTRICITY
International classification
H01M10/0525
ELECTRICITY
Abstract
A flexible lithium battery includes a flexible pouch and two conductive tabs. The flexible pouch has an accommodating space and a being sealed side, and the two conductive tabs are inserted in the being sealed side and extended to the accommodating space. The being sealed side includes a first sealing area and a second sealing area, the first sealing area and the second sealing area are sealed to form a side seal through a combination means. The first sealing area has a first binding force, and the second sealing area has a second binding force. The second binding force is smaller than the first binding force, and gas accumulated in the accommodating space is discharged from the second sealing area.
Claims
1. Structures of a lithium battery cell, comprising a flexible pouch and two conductive tabs, the flexible pouch having an accommodating space and a being sealed side located at a periphery of the accommodating space; the two conductive tabs being inserted in the being sealed side and extended to the accommodating space, the being sealed side including a first sealing area and a second sealing area, the first sealing area and the second sealing area being sealed to form a side seal through a combination means; the first sealing area having a first binding force, and the second sealing area having a second binding force, wherein the second binding force is smaller than the first binding force, and gas accumulated in the accommodating space is discharged from the second sealing area.
2. The structures of a lithium battery cell according to claim 1, wherein the flexible pouch is an aluminum foil bag.
3. The structures of a lithium battery cell according to claim 1, wherein the flexible pouch is folded and has a fold-edge located at a side of the accommodating space, the side seal includes two side-sealing edges located at the right and left sides of the fold-edge and an upper-sealing edge located at the opposite side of the fold-edge, and the two conductive tabs are inserted in the first sealing area of the upper-sealing edge.
4. The structures of a lithium battery cell according to claim 1, wherein the combination means include hot melt, ultrasonic-welding or adhesion.
5. The structures of a lithium battery cell according to claim 1, wherein the first sealing area and the second sealing area have different binding forces through different combination means.
6. The structures of a lithium battery cell according to claim 1, further including a first adhesive and a second adhesive, wherein the first sealing area is sealed through the first adhesive, the second sealing area is sealed through the second adhesive, and the adhesive force of the second adhesive is smaller than that of the first adhesive.
7. The structures of a lithium battery cell according to claim 1, further including an additive, wherein the second sealing area is disposed with the additive; the first sealing area and the second sealing area are provided with the same combination means; the binding force of the second sealing area is smaller than that of the first sealing area through deposing an additive.
8. The structures of a lithium battery cell according to claim 1, wherein the side seal includes an inner-sealing edge neighboring the accommodating space and an outer-sealing edge in parallel with the inner-sealing edge; the second sealing area is extended from the inner-sealing edge to the outer-sealing edge.
9. The structures of a lithium battery cell according to claim 1, further including a sealing clamp, the sealing clamp being clamped at the second sealing area.
10. The structures of a lithium battery cell according to claim 1, further including a sealing clamp, the sealing clamp being a U-shaped clamp including two clamping clips opposite to each other and a bent plate connecting the two clamping clips; the two clamping clips are clipped at two sides of the second sealing area correspondingly, and the bent plate is located at an outer side of the fold-edge.
11. A manufacturing process of a lithium battery cell, comprising: a) providing a flexible pouch and two conductive tabs; b) folding the flexible pouch to form a bag body with a being sealed side, the being sealed side of the bag body including a first sealing area and a second sealing area; c) inserting the two conductive tabs in the being sealed side; and d) sealing the being sealed side with a combination means, and making a binding force of the seconding area smaller than that of the first sealing area.
12. The manufacturing process of a lithium battery cell according to claim 11, further including providing an additive, wherein the additive is disposed in the second sealing area; a binding force of the second sealing area is smaller than that of the first sealing area through deposing an additive.
Description
BRIEF DESCRIPTION OF DRAWING
[0011] The features of the invention believed to be novel are set forth with particularity in the appended claims. The invention itself, however, may be best understood by reference to the following detailed description of the invention, which describes a number of exemplary embodiments of the invention, taken in conjunction with the accompanying drawings, in which:
[0012]
[0013]
[0014]
[0015]
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[0018]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0019] In cooperation with attached drawings, the technical contents and detailed description of the invention are described thereinafter according to a number of preferable embodiments, being not used to limit its executing scope. Any equivalent variation and modification made according to appended claims is all covered by the claims claimed by the present invention.
[0020] Please refer to
[0021] Please refer to
[0022] Moreover, the two conductive tabs 20 are inserted in the being sealed side 11′ and extended to the accommodating space 100. The being sealed side 11′ includes a first sealing area 111 and a second sealing area 112; besides, the first sealing area 111 and the second sealing area 112 are sealed to form a side seal 11 through a combination means. In further, the first sealing area 111 has a first binding force, and the second sealing area 112 has a second binding force, wherein the second binding force is smaller than the first binding force.
[0023] More specifically, the flexible pouch 10 is folded and has a fold-edge 12 located at a side of the accommodating space 100. The side seal 11 includes two side-sealing edges 11a located at the right and left sides of the fold-edge 12 and an upper-sealing edge 11b located at the opposite side of the fold-edge 12, and the two conductive tabs 20 are inserted in the first sealing area 111 of the upper-sealing edge 11b. In addition, the side seal 11 includes an inner-sealing edge 11c neighboring the accommodating space 100 and an outer-sealing edge 11d in parallel with the inner-sealing edge 11c; preferably, the second sealing area 112 is extended from the inner-sealing edge 11c to the outer-sealing edge lid. Whereas the electrolyte filled in the lithium battery cell 1 and manufacturing processes thereof are well known in the art and will not be described further.
[0024] It is worth of noticing that the combination means can be implemented by combining processes such as hot melt, ultrasonic-welding or adhesion etc. In real practice, the first sealing area 111 and the second sealing area 112 have different combination forces through different combination means.
[0025] For example, when the combination means is provided with adhesion, the lithium battery cell 1 further includes a first adhesive and a second adhesive (not shown). The first sealing area 111 is sealed through the first adhesive, and the second sealing area 112 is sealed through the second adhesive, wherein the adhesive force of the second adhesive is smaller than that of first adhesive. Therefore, the second binding force of the second sealing area 112 is smaller than the first binding force of the first sealing area 111.
[0026] With referring to
[0027] In the present embodiment, the additive 13 is disposed at the second sealing area 112. In addition, the first sealing area 111 and the second sealing area 112 are provided with the same combination means; the binding force of the second sealing area 112 is smaller than that of the first sealing area 111 by providing the additive 13.
[0028] Please further refer to
[0029] Please refer to
[0030] As shown in
[0031] In summary, the supporting spacer of the present invention can achieve the expected objective and overcome the disadvantages of the prior art. Also it is indeed novel, useful, and non-obvious to be patentable. Please examine the application carefully and grant it as a formal patent for protecting the rights of the inventor.