Degassing method for lithium battery cell
10355324 ยท 2019-07-16
Assignee
Inventors
- Jing-Yih Cherng (Taoyuan, TW)
- Chih-Tsung Hu (Taoyuan, TW)
- Wen-Chang Chiang (Taoyuan, TW)
- Nai-Yuan Liu (Taoyuan, TW)
Cpc classification
H01M10/52
ELECTRICITY
H01M10/42
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
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
H01M6/50
ELECTRICITY
International classification
H01M10/52
ELECTRICITY
H01M6/50
ELECTRICITY
Abstract
A degassing method for a lithium battery cell includes the following steps: providing a lithium battery cell including a sealed bag, a degassing tube is arranged on the sealed bag and an end of the degassing tube is communicated with a space in the sealed bag, the sealed bag is filled with electrolyte solution and a remnant gas is contained therein; providing a negative pressure on an external surface of the sealed bag to inflate the sealed bag and therefore decompress the sealed bag to vaporize a part of the electrolyte solution, and the remnant gas is separated from the liquid electrolyte solution and mixed with the vaporized electrolyte solution to form a mixed gas; extracting the mixed gas via the degassing tube, therefore the vaporized electrolyte is pressurized to be liquefied in the degassing tube, and the remnant gas is discharged through the degassing tube.
Claims
1. A degassing method for lithium battery cell, comprising the following steps: a) providing a lithium battery cell comprising a sealed bag, a degassing tube being arranged on an external surface of the sealed bag, an end of the degassing tube communicating with a space in the sealed bag, an electrolyte solution being filled in the sealed bag and a remnant gas being contained in the sealed bag; b) providing a negative pressure on the external surface of the sealed bag to inflate the sealed bag and to decompress the sealed bag and a part of the electrolyte solution being thereby vaporized, the remnant gas being separated from the liquid electrolyte solution and mixed with the vaporized electrolyte solution to form a mixed gas; and c) extracting the mixed gas via the degassing tube, thereby the vaporized electrolyte solution being pressurized to be liquefied in the degassing tube, and the remnant gas meanwhile being discharged via the degassing tube, wherein the other end of the degassing tube provided in the step a is sealed, the degassing tube is cut in the step c, and the mixed gas is thereby allowed to flow into the degassing tube.
2. The degassing method for lithium battery cell according to claim 1, further comprises a step d following the step c: injecting the liquid electrolyte solution in the degassing tube back into the sealed bag.
3. The degassing method for lithium battery cell according to claim 1, wherein the lithium battery cell is arranged in a pressure chamber in the step a, and a negative pressure is provided in the pressure chamber in the step b and the negative pressure is thereby provided on the external surface of the sealed bag.
4. The degassing method for lithium battery cell according to claim 1, wherein a positive pressure is provided on the external surface of the sealed bag in the step c to drive the mixed gas to flow into the degassing tube.
5. The degassing method for lithium battery cell according to claim 4, wherein the lithium battery cell is arranged in a pressure chamber in the step a, and a positive pressure is thereby provided in the pressure chamber in the step c and the positive pressure is thereby provided on the external surface of the sealed bag.
6. The degassing method for lithium battery cell according to claim 1, wherein a negative pressure is provided on the other end of the degassing tube in the step c to drive the mixed gas to flow into the degassing tube.
7. The degassing method for lithium battery cell according to claim 2, further comprises a step e following the step d: sealing a seal position on the degassing tube.
8. A degassing method for lithium battery cell, comprising the following steps: a) providing a lithium battery cell comprising a sealed bag, a degassing tube being arranged on an external surface of the sealed bag, an end of the degassing tube communicating with a space in the sealed bag, an electrolyte solution being filled in the sealed bag and a remnant gas being contained in the sealed bag; b) providing a negative pressure on the external surface of the sealed bag to inflate the sealed bag and to decompress the sealed bag and a part of the electrolyte solution being thereby vaporized, the remnant gas being separated from the liquid electrolyte solution and mixed with the vaporized electrolyte solution to form a mixed gas; c) extracting the mixed gas via the degassing tube, thereby the vaporized electrolyte solution being pressurized to be liquefied in the degassing tube, and the remnant gas meanwhile being discharged via the degassing tube; d) injecting the liquid electrolyte solution in the degassing tube back into the sealed bag; and e) sealing a seal position on the degassing tube, wherein, in the step e, a portion of the degassing tube between the seal position and the sealed bag is remained and the other portion of degassing tube is removed.
9. The degassing method for lithium battery cell according to claim 1, wherein a plurality of electrodes is contained in the sealed bag and the electrodes are immersed in the electrolyte solution.
Description
BRIEF DESCRIPTION OF DRAWING
(1) The present disclosure can be more fully understood by reading the following detailed description of the embodiment, with reference made to the accompanying drawings as follows:
(2)
(3)
DETAILED DESCRIPTION
(4) According to
(5) According to
(6) According to
(7) According to
(8) According to
(9) According to
(10) According to the degassing method for lithium battery cell of the present disclosure, the electrolyte solution 130 is vaporized by vacuum and thereby easy to move in the electrolyte solution 130 to be separated. The present disclosure is able to completely remove bubbles from the electrolyte solution 130 and spend less time in contrast to conventional technologies, and the present disclosure further avoids loss of electrolyte solution 130 during a degassing process. Accordingly, the degassing method for lithium battery cell 100 of the present disclosure decreases costs and manufacturing time of the lithium battery cell 100, and increases performance of the lithium battery cell 100.
(11) The electrode 140 discolors after a chemical reaction with the electrolyte solution 130, electrode 140. Therefore, the reacted electrode 140 of the lithium battery cell 100 degassed by the degassing method for lithium battery cell of the present disclosure is in a uniform color; and the remnant gas generated spots on the reacted electrode 140 of a conventional lithium battery cell electrode 140 in contrast. The lithium battery cell 100 processed by the method of the present disclosure cloud be thereby told from the conventional lithium battery cell.
(12) Although the present disclosure has been described with reference to the foregoing preferred embodiment, it will be understood that the disclosure is not limited to the details thereof. Various equivalent variations and modifications can still occur to those skilled in this art in view of the teachings of the present disclosure. Thus, all such variations and equivalent modifications are also embraced within the scope of the present disclosure as defined in the appended claims.