LITHIUM BATTERY WITH EXHAUST STRUCTURE
20170331088 ยท 2017-11-16
Inventors
- Jing-Yih CHERNG (Taoyuan City, TW)
- Pin-Shiuan LI (Taoyuan City, TW)
- Tsung-Tien CHENG (Taoyuan City, TW)
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
H01M50/308
ELECTRICITY
H02J7/0068
ELECTRICITY
H01M10/0525
ELECTRICITY
International classification
H01M10/0525
ELECTRICITY
Abstract
A lithium battery cell capable of exhausting a gas includes a battery cell with an opening for discharging the gas, and an exhaust structure combined to the battery cell and having a tube sleeve, a stop portion and a plug. The tube sleeve is installed to the opening of the battery cell; the stop portion is disposed at an end of the tube sleeve and has an exhaust end communicated with the tube sleeve and the outside; the plug is installed into the tube sleeve to block a side opening of the tube sleeve, blocked by the stop portion to prevent it from separating from the tube sleeve, and pushed by the gas to release its connection with the tube sleeve; and a gap is formed between the plug and the tube sleeve to allow the gas to flow through and exit from the exhaust vent to the outside.
Claims
1. A lithium battery with an exhaust structure, comprising: a battery cell, having an opening for discharging a gas; and an exhaust structure, combined with the battery cell, and comprising: a tube sleeve, passed and installed to the opening of the battery cell; a stop portion, disposed at an end of the tube sleeve, and having an exhaust vent communicating with the tube sleeve and an external environment; and a plug, pressed and installed into the tube sleeve, for plugging and blocking a side opening of the tube sleeve, and blocked by the stop portion to prevent the plug from separating from the tube sleeve, and being pushed by the gas and released from the connection with the tube sleeve, and a gap being formed between the plug and an inner wall face of the tube sleeve, and the gas flowing out from the gap and flowing from the exhaust vent to the external environment.
2. The lithium battery with an exhaust structure according to claim 1, wherein the tube sleeve comprises a valve tube and an exhaust tube, and the exhaust tube is passed and inserted into the opening, and the valve tube is sheathed on the exhaust tube.
3. The lithium battery with an exhaust structure according to claim 1, wherein the plug is in a conical shape, and the plug has a bottom surface and a half conical surface formed on the bottom surface, and the half conical surface has a plurality of grooves extended to the bottom surface.
4. The lithium battery with an exhaust structure according to claim 1, wherein the stop portion is extended from an outer periphery of the tube sleeve towards the inner side of the tube sleeve to form a ring plate.
5. The lithium battery with an exhaust structure according to claim 2, wherein the plug has a side abutting a port of the exhaust tube and the other side maintaining a moving space from the stop portion.
6. The lithium battery with an exhaust structure according to claim 1, wherein the plug is a sphere.
7. The lithium battery with an exhaust structure according to claim 1, wherein the stop portion is integrally formed with the tube sleeve, and the stop portion includes a plurality of support ribs arranged into a Y-shape.
8. The lithium battery with an exhaust structure according to claim 2, further comprising a frame installed with the battery cell, and the frame having a through hole for passing the exhaust tube, and the exhaust structure being disposed in the through hole.
9. The lithium battery with an exhaust structure according to claim 8, further comprising a holder including a pair of clamping boards and a plurality of rods, and the frame and the battery cell coming with a plural quantity, and the frames and the battery cells being stacked and arranged between the pair of clamping boards, and the rods being passed and coupled to the battery cells and the pair of clamping boards.
10. The lithium battery with an exhaust structure according to claim 9, further comprising a plurality of spacers inserted between adjacent battery cells respectively.
11. The lithium battery with an exhaust structure according to claim 1, further comprising a circuit board module electrically coupled to the battery cell for controlling the charge and discharge operations of the lithium battery.
12. The lithium battery with an exhaust structure according to claim 1, wherein the tube sleeve has an inner wall surface formed to be an oblique conical surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0016] The technical contents of this disclosure will become apparent with the detailed description of preferred embodiments accompanied with the illustration of related drawings as follows. It is intended that the embodiments and figures disclosed herein are to be considered illustrative rather than restrictive.
[0017] With reference to
[0018] In this embodiment, the battery cell 20 has an opening communicated with the interior of the battery cell 20 and capable of discharging a gas. Preferably, the battery cell 20 is a lithium battery cell with an aluminum foil bag package. In addition, the exhaust structure 30 includes a tube sleeve 31, a stop portion 33 and a plug 32. The tube sleeve 31 is passed and installed into an opening of the battery cell 20, and the stop portion 33 is disposed at an outer end of the tube sleeve 31, and the plug 32 is pressed and installed into the tube sleeve 31. The exhaust structure 30 will be described in details below.
[0019] With reference to
[0020] In this embodiment, the plug 32 is in a conical shape, and the plug 32 has a bottom surface 321 and a half conical surface 322 formed on the bottom surface 321, and the half conical surface 322 has a plurality of grooves 320 formed thereon and extended to the bottom surface 321. In addition, the stop portion 33 is extended from an outer periphery of the tube sleeve 31 (or the valve tube 311) towards an inner side of the tube sleeve 31 to form a ring plate. In addition, the plug 32 has a side pressing and plugging a port of the exhaust tube 312 and the other side maintaining a moving space 300 from the stop portion 33.
[0021] With reference to
[0022] Further, the holder 40 comprises a pair of clamping boards 41 and a plurality of rods 42. In addition, the frame 10 and the battery cell 20 come with a plural quantity, and the frames 10 and the battery cells 20 are stacked and arranged between the pair of clamping boards 41, and the pair of clamping boards 41 are provided for supporting the battery cells 20, and the rods 42 are passed and connected to the battery cells 20 and the pair of clamping boards 41 to form a lithium battery 1.
[0023] Preferably, the lithium battery 1 further comprises a plurality of spacers 50 and a circuit board module 60. The spacers 50 are inserted and installed between adjacent battery cells 20 to separate and position the battery cells 20. The circuit board module 60 is electrically coupled to the battery cell 20 for controlling the charge and discharge operations of the lithium battery 1.
[0024] With reference to
[0025] Therefore, the gas 2 produced by the battery cell 20 can be timely discharged to the outside through the exhaust tube 312 and the exhaust structure 30, so that the gas 2 will not be accumulated in the battery cell 20, so as to maintain the internal pressure of the battery cell 20 and prevent explosion.
[0026] With reference to
[0027] In this embodiment, the plug 32a is a sphere, and the stop portion 33a is integrally formed with the tube sleeve 31a (or the valve tube 311a). The stop portion 33a comprises a plurality of support ribs 331a arranged into a Y-shape and formed at an external port of the tube sleeve 31a.
[0028] Similarly, the plug 32a is pushed by the gas to release from the connection with the exhaust tube 312a, and the gas flows between the plug 32a and the exhaust tube 312a. Finally, the gas is discharged from the exhaust vent 330a of the stop portion 33a and dispersed to the external environment.
[0029] With reference to
[0030] In this embodiment, the tube sleeve 31b omits the exhaust tube and the inner wall surface of the tube sleeve 31 is formed into an oblique conical surface 311b, and the plug 32b is a cone. In addition, the plug 32b is pressed and installed into the tube sleeve 31b to block a side opening of the tube sleeve 31b. Preferably, the plug 32b is pressed and installed to the oblique conical surface 311b. Other operations and structures are the same as those of the previous embodiment and thus will not be repeated.
[0031] While this disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of this disclosure set forth in the claims.