Battery pack capable of discharging gases in pouch type battery cell
09806311 ยท 2017-10-31
Assignee
Inventors
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
H01M50/3425
ELECTRICITY
International classification
Abstract
The present invention relates to a battery pack capable of discharging gases in a pouch type battery cell when a gas pressure inside the pouch type battery cell is increased over a reference pressure, the battery pack including: a plurality of pouch type battery cells; a case comprising partitions suppressing the pouch type battery cells from expanding in a thickness direction thereof, wherein the pouch type battery cells are respectively held in spaces defined by the partitions; and a punching unit installed on the case to pierce a portion of surfaces of the pouch type battery cells, which is not supported by the partition, and having pin members of which number is equal to that of the pouch type battery cells.
Claims
1. A battery pack, comprising: a plurality of pouch type battery cells; a case comprising partitions suppressing the pouch type battery cells from expanding in a thickness direction thereof, wherein the pouch type battery cells are respectively held in spaces defined by the partitions; a punching unit installed on the case to pierce a portion of surfaces of the pouch type battery cells, which is not supported by the partition, and having pin members of which number is equal to that of the pouch type battery cells, the pin members being installed on the case so that a distance between each pin member and a surface of the pouch type battery cells is adjustable; an adjusting lever configured to simultaneously adjust a position of each of the pin members; wherein the adjusting lever is rotatably installed on the case, the screw thread is formed on an end portion of the adjusting lever, a bore is formed at the center of the pin member, a female screw is formed in the bore, and the screw thread is inserted into the female screw, and wherein each pin member has a key on a surface thereof and the case has a key groove at a position corresponding the key.
2. The battery pack of claim 1, wherein the pouch type batter cell comprises a protruding part at a surface thereof to protrude toward a region where the pin member is installed.
3. The battery pack of claim 1, wherein the case has a space which allows the plurality of pouch type battery cells to expand in a width direction thereof.
4. A battery pack comprising: a plurality of pouch type battery cells; a case comprising partitions suppressing the pouch type battery cells from expanding in a thickness direction thereof, wherein the pouch type battery cells are respectively held in spaces defined by the partitions; and a punching unit installed on the case to pierce a portion of surfaces of the pouch type battery cells, which is not supported by the partition, and having pin members of which number is equal to that of the pouch type battery cells, wherein the pin members are installed on the case so that a distance between each pin member and a surface of the pouch type battery cells is adjustable, wherein the battery pack comprises an adjusting lever configured to simultaneously adjust positions of the pin members, a first gear interlocked with each of the pin members to convert a rotational movement to a linear movement in a longitudinal direction of the pin member; and an adjusting shaft having a plurality of second gears engaged with a plurality of first gears, and rotating along with rotation of the adjusting lever.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other aspects, features and other advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE INVENTION
(6) Exemplary embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
(7) Terms or words used in this specification and claims should not be restrictively interpreted as ordinary meanings or dictionary-based meanings, but should be interpreted as meanings and concepts conforming to the scope of the present invention on the basis of the principle that an inventor can properly define the concept of a term to describe and explain his or her invention in the best ways. Accordingly, it should be considered that embodiments set forth herein and configurations illustrated in drawings are merely preferred embodiments of the invention and do not represent the technical spirit of the present invention. Therefore, it will be understood that, at the time of filing of the present application, they can be replaced with a variety of these equivalents and modifications.
(8) Each component in the drawing or the size of the components that make up a specific part may be exaggerated, omitted or schematically illustrated for clarity and convenience of description. Thus, the size of each component does not utterly reflect an actual size. In the following description of the present invention, a detailed description of known functions or configurations incorporated herein will be omitted to avoid making the subject matter of the present invention unclear.
(9) [First Embodiment]
(10)
(11) It should be noted that
(12) Referring to
(13) The pouch type battery cells 20 hold an electrode assembly therein, which has a cathode plate, an anode plate, and a separator, and electrode leads are connected to electrode taps extending from each of the cathode and anode plates. It is noted that the above structure is a typical structure of the pouch type battery cells 20, and thus is not specifically illustrated in drawings. The electrode assembly is held in an area indicated by a dotted line of the pouch type battery cells in
(14) The case 10 includes partitions 12 suppressing the pouch type battery cells 20 from expanding in a thickness direction thereof, and the pouch type battery cells 20 are respectively held in spaces defined by the partitions 12.
(15) Each of the pouch type battery cells 20 is disposed between two partitions 12 or between the partition 12 and an inner side of the case 10. In addition, either side of the pouch type battery cell 20 is in contact with the partition 12 or the inner side of the case 10.
(16) When gas is excessively generated in the pouch type battery cell 20 to increase pressure due to overcharging, internal short, and the like, the pouch type battery cell 20 is expanded. Since the pouch type battery cell 20 is suppressed from expanding in the thickness direction thereof by means of the partition 12 or the inner side of the case 10, both ends of the pouch type battery cell 20 is expanded when viewed from
(17) Accordingly, suppressing the pouch type battery cell 20 from expanding in the thickness direction thereof by the partition 12 does not means suppressing the entire region of the pouch type battery cell 20 from expanding in the thickness direction thereof; but rather means suppressing the pouch type battery cell 20 from expanding in the thickness direction thereof in a region where the pouch type battery cell 20 is in contact with the partition 12.
(18) Meanwhile, the case 10 has spaces 14 and 15 to allow the pouch type battery cells 20 to expand in the width direction thereof.
(19) The pin member 32 of the punching unit 30 is installed on the case 10 to pierce a portion of surfaces of the pouch type battery cells 20, which is not supported by the partition 12. Also, the pin member 32 may be installed on the case 10 to adjust a distance from the surface of the pouch type battery cell 20.
(20) For example, a position of the pin member 32 may be adjusted by using an adjusting lever 36 and a screw thread 34.
(21) The pin member 32 may have a key on a surface thereof such that the pin member 32 only linearly moves toward or away from the pouch type battery cell 20 without rotating with reference to the case 10, and the case 10 may have a key groove at a position corresponding to the key. Alternatively, the pin member 32 may be designed to have a polygonal section such as rectangular and hexagonal sections, thereby preventing rotation of the pin member 32.
(22) When the adjusting lever 36 is rotated, the screw thread 34 rotates and the pin member 32 does not rotate. Thus, the female screw formed on the bore of the pin member 32 moves relative TO the screw thread 34 to allow the pin member 32 to linearly move toward or away from the pouch type battery cells 20.
(23) The adjusting lever 36 is configured to adjust the position of the pin member 32 and installed on each of the pin members 32, and therefore, the number of pin members 32 is equal to the number of the adjusting levers 36.
(24) The pouch type battery cell 20 may have a protruding part 22 formed at the surface thereof to protrude toward a region where the pin member 32 is installed. A width W and depth D of the protruding part 22 may be variously designed. When the protruding part 22 is designed to have great width W and depth D, it is advantageous in that the pouch type battery cell 20 is not easily punched although the pouch type battery cell 20 is brought into contact with the pin member 32 due to careless handling.
(25) The position of the pin member 32 may be adjusted from a configuration in
(26) In comparison with the configuration in
(27) When a reference pressure for discharging internal gases of the pouch type battery cell 20 to the outside is high, the pin member 32 may be adjusted to approach toward the pouch type battery cell 20 as illustrated in
(28) In other word, it is possible to meet various gas discharge standards of the pouch type battery cell 20 by only adjusting the position of the pin member 32, without changing a design of the pouch type battery cell itself each time.
(29) Furthermore, in the case where a pouch type battery cell 20 included in the battery pack 100 which has been already installed on electronic/mechanical devices needs to change a gas discharge reference pressure, it is advantageous in that such a change may be achieved by only adjusting the adjusting lever 36, without replacing the battery pack 100 itself.
(30) [Second Embodiment]
(31)
(32) Contents common to the first embodiment will be omitted to avoid duplicate explanation and a description will be focused on contents different from those of the first embodiment.
(33) A battery pack 100A according to the second embodiment of the present invention has a different configuration of a punching unit 30.
(34) Referring to
(35) The first gear 38 is interlocked with each of pin members 32 to convert a rotational movement to a linear movement in a longitudinal direction of the pin member 32, and engaged with a second gear 48 which will be described later.
(36) A plurality of second gears 48 are provided, of which number is equal to number of the first gears 38, and the plurality of second gears 48 are disposed along a plurality of thin and long adjusting shafts 42. Bearings 43 and 44 may be installed on a case 10 for smooth rotation of the adjusting shaft 42.
(37) An adjusting lever 46 of which a position is relatively fixed to the adjusting shaft 42 is formed on an end portion of the adjusting shaft 42. Although the first gear 38 and the second gear 48 are illustrated as a bevel gear, the first and second gears 38 and 48 are not limited to the bevel gear only, and thus various configurations having the same function as the bevel gear may be used.
(38) When the adjusting lever 46 rotates, the adjusting shaft 42 rotates along with the adjusting lever 46. Then, the plurality of second gears 48 fixed to the adjusting shaft 42 rotate, and the first gears 38 also rotate because the first gears 38 and the second gears are engaged with each other.
(39) When the first gear 38 rotates, the screw thread 34 rotates and the pin member 32 does not rotate. Thus, a female screw formed on a bore of the pin member 32 moves relative to the screw thread 34, so that the pin member 32 linearly moves toward or away from the pouch type battery cell 20.
(40) In the second embodiment, each of the pin members 32 may be simultaneously adjusted by using one adjusting lever 46.
(41) [Modified Embodiment]
(42) In the first and the second embodiments, the pin member 32 may be adjusted by moving toward or away from the pouch type battery cell 20.
(43) However, a modified embodiment may be presumed in which components of the punching unit 30 other than the pin members 32 are excluded.
(44) In this modified embodiment, while having pin members 32 with various lengths, a relatively shorter pin member 32 is installed in the case 10 when the gas discharge reference pressure of the pouch type batter cell 20 is high; and a relatively long pin member 32 is installed in the case 10 when the reference pressure of discharging gas of the pouch type batter cell 20 is low. Thus, the battery pack of the modified embodiment can be applied to gas discharge various reference pressures without changing a structure of the pouch type battery cell 20 as illustrated in the first and the second embodiments.
(45) While the present invention has been shown and described in connection with the exemplary embodiments, it will be apparent to those skilled in the art that modifications and variations can be made without departing from the spirit and scope of the invention as defined by the appended claims.
(46) This application claims the priority of Korean Patent Application No. 10-2013-0049351 filed on May 2, 2013 in the Korean Intellectual Property Office, the disclosures of which are expressly incorporated herein by reference in their entireties.