Battery module and battery pack including same
11677115 ยท 2023-06-13
Assignee
Inventors
- Kyung-Mo Kim (Daejeon, KR)
- Jeong-O Mun (Daejeon, KR)
- Ho-June Chi (Daejeon, KR)
- Jin-Yong Park (Daejeon, KR)
- Jung-Hoon LEE (Daejeon, KR)
Cpc classification
H01M50/1535
ELECTRICITY
H01M50/242
ELECTRICITY
H01M50/28
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
H01M50/204
ELECTRICITY
H01M50/26
ELECTRICITY
H01M50/229
ELECTRICITY
International classification
H01M50/202
ELECTRICITY
H01M50/204
ELECTRICITY
H01M50/229
ELECTRICITY
H01M50/242
ELECTRICITY
H01M50/26
ELECTRICITY
Abstract
A battery module, which includes at least one battery cell and a module case for packaging the at least one battery cell, wherein the module case includes: a top cover configured to cover an upper side of the at least one battery cell; and a side plate configured to cover all of opposing side surfaces of the top cover and opposing side surfaces of the at least one battery cell and configured to be coupled to the top cover by fitting.
Claims
1. A battery module, which includes at least one battery cell and a module case for packaging the at least one battery cell, wherein the module case includes: a top cover configured to cover an upper side of the at least one battery cell, the top cover having opposing side surfaces, wherein a plurality of side-facing fitting ribs is formed at each of the opposing side surfaces of the top cover; and a side plate configured to cover all of the opposing side surfaces of the top cover, all of the plurality of side-facing fitting ribs formed at each of the opposing side surfaces of the top cover, and opposing side surfaces of the at least one battery cell, and configured to be coupled to the top cover by fitting, wherein the plurality of side-facing fitting ribs formed at each of the opposing side surfaces of the top cover is configured to be fitted with the side plate when the top cover is coupled to the side plate, wherein on each of the opposing side surfaces of the top cover, adjacent fitting ribs of the plurality of fitting ribs are disposed to be spaced apart from each other by a predetermined distance to form a predetermined gap between the adjacent fitting ribs, wherein the predetermined gap is exposed to an outside of the module case from a viewpoint extending from the top cover toward the side plate when the top cover is coupled to the side plate with the plurality of side-facing fitting ribs fitted with and covered by the side plate so that the plurality of fitting ribs and the predetermined gap are visible for observation.
2. The battery module according to claim 1, wherein the top cover and the side plate are welded to each other after being fitted.
3. The battery module according to claim 2, wherein the plurality of fitting ribs are melted and deformed due to the welding to fill the predetermined gap.
4. The battery module according to claim 1, wherein at least one anti-deformation rib is formed at a lower surface of the top cover to prevent the side plate from being deformed when the at least one battery cell swells.
5. The battery module according to claim 4, wherein at least one anti-deformation rib insert groove is formed in the side plate so that the at least one anti-deformation rib is inserted therein when the top cover is coupled to the side plate.
6. The battery module according to claim 1, wherein the top cover is made of a plastic composite material, and wherein the side plate is made of a metal material.
7. The battery module according to claim 6, wherein the plastic composite material is Glass Fiber Reinforced Plastic.
8. The battery module according to claim 6, wherein the metal material is aluminum.
9. A battery pack, comprising: at least one battery module defined in claim 1; and a pack case configured to package the at least one battery module.
Description
DESCRIPTION OF DRAWINGS
(1) The accompanying drawings illustrate a preferred embodiment of the present disclosure and together with the foregoing disclosure, serve to provide further understanding of the technical features of the present disclosure, and thus, the present disclosure is not construed as being limited to the drawing.
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BEST MODE
(9) The present disclosure will become more apparent by describing in detail the embodiments of the present disclosure with reference to the accompanying drawings. It should be understood that the embodiments disclosed herein are illustrative only for better understanding of the present disclosure, and that the present disclosure may be modified in various ways. In addition, for ease understanding of the present disclosure, the accompanying drawings are not drawn to real scale, but the dimensions of some components may be exaggerated.
(10)
(11) Referring to
(12) The battery cell 100 may be provided solely or in plural. The battery cell 100 may be a secondary battery, for example a pouch-type secondary battery.
(13) The module case 200 is for packaging the battery cell 100 and may have an accommodation space for accommodating the battery cell 100. The module case 200 may include a top cover 220 and a side plate 260.
(14) The top cover 220 may cover an upper side of the battery cell 100. The top cover 220 may be made of a plastic material to meet the need for a lightweight product according to the recent slimmer trend. As an example, the top cover 220 may be made of a reinforced plastic, for example GFRP (Glass Fiber Reinforced Plastic).
(15) The top cover 220 may have a fitting rib 222 and an anti-deformation rib 226.
(16) The fitting rib 222 is provided at both side surfaces of the top cover 220 and may be coupled to the side plate 260, explained later, by fitting. The fitting rib 222 may be provided solely or in plural.
(17) The plurality of fitting ribs 222 may be spaced apart from each other by a predetermined distance to form a predetermined gap G (see
(18) The anti-deformation ribs 226 may be provided at a lower surface of the top cover 220 to prevent the side plate 260, explained later, from being deformed due to the swelling, when the battery cell 100 swells.
(19) The side plate 260 may cover all of both opposing side surfaces of the top cover 220 and both opposing side surfaces of the battery cell 100. Also, the side plate 260 may cover a bottom portion of the battery cell 100. That is, the module case 200 may cover the bottom portion of the battery cell 100 by means of the side plate 260 instead of a separate bottom cover.
(20) The side plate 260 may be made of a metal material, for example an aluminum material. The side plate 260 may be coupled to the top cover 220 by fitting and welding. Specifically, the side plate 260 and the top cover 220 may be coupled to each other by being fitted and then welded to each other.
(21) Laser patterning P may be performed on a welding interface of the side plate 260, which is welded with the top plate 220. At this time, since there is no structure capable of disturbing the laser patterning P in front of the welding interface of the side plate 260, any problem such as interfering with the laser patterning P may not occur.
(22) The side plate 260 may have an anti-deformation rib insert groove 265.
(23) The anti-deformation rib insert groove 265 is provided at an upper side of the side plate 260, and the anti-deformation rib 226 may be inserted into the anti-deformation rib insert groove 265. As the anti-deformation rib 226 is inserted, it is possible to minimize the risk that the side plate 260 is deformed due to compression caused by expansion of the battery cell 100 when the battery cell 100 swells.
(24) Hereinafter, the assembling process of the module case 200 of the battery module 10 according to this embodiment will be described in more detail.
(25)
(26) Referring to
(27) At this time, due to the plurality of fitting ribs 222 of the top cover 220, the top cover 220 and the side plate 260 may be fitted with each other.
(28) Accordingly, a pressing force F caused by the fitting, namely a restoring force F, is generated at the side plate 260 so that the side plate 260 presses the top cover 220 in a horizontal direction of the top cover 220.
(29) Meanwhile, predetermined gaps G may be formed between the plurality of fitting ribs 222 and at upper and lower sides of the plurality of fitting ribs 22, respectively. The predetermined gap G may have a width of approximately 0.5 mm, and the predetermined gap G may be exposed, i.e. visible, to an outside of the module case 200 to be observed by a user.
(30) The worker or the like may easily confirm whether the fitting is properly performed by checking the width of the predetermined gap G by the naked eye and comparing the shape and size of the width.
(31)
(32) Referring to
(33) When the welding S is performed, since the side plate 260 presses the top cover 220 due to the restoring force F of the side plate 260, a closely-adhering guide jig for welding may not be separately required, and the welding strength may be secured sufficiently at the welding S.
(34) Meanwhile, the worker and the like should secure a predetermined welding bead width so that the welding S is performed smoothly. In this embodiment, since a structure or a pressing jig capable of obstructing the welding S outside the side plate 260 is not disposed, it may be easy to secure the welding bead width W. Here, the welding bead width W may be about 6 mm or more.
(35)
(36) Referring to
(37) In addition, the worker or the like may easily confirm the quality of the welding S by visually checking the degree to which the predetermined gap G is filled. In case of normal welding, the worker or the like may visually confirm whether all of the predetermined gaps G are filled. In addition, if the welding is not performed sufficiently, namely if the welding is weak, the worker or the like will see that the predetermined gap G does not disappear. Moreover, if the welding is more than necessary, namely in case of over-welding, the worker or the like will judge this phenomenon from boiling of bubbles or the like at the welding interface.
(38) As described above, in this embodiment, it is possible to simply check the quality of the welding S through the predetermined gap G, which may be observed by the naked eye of the user when the welding S is performed.
(39)
(40) Referring to
(41) The battery pack 1 may be provided to a vehicle as a fuel source of the vehicle. As an example, the battery pack 1 may be provided to an electric vehicle, a hybrid vehicle, and various other-type vehicles capable of using the battery pack 1 as a fuel source. In addition, the battery pack 1 may be provided in other devices, instruments or facilities such as an energy storage system using a secondary battery, in addition to the vehicle.
(42) As described above, the battery pack 1 of this embodiment and devices, instruments or facilities such as a vehicle, which have the battery pack 1, include the battery module 10 as described above, and thus it is possible to implement a battery pack 1 having all the advantages of the battery module 10 described above, or devices, instruments, facilities or the like such as a vehicle, which have the battery pack 1.
(43) According to various embodiments as above, it is possible to provide a battery module 10, which may secure the coupling strength of the top cover 220 and the side plate 260 of the module case 200 when welding, and a battery pack 1 including the battery module 10.
(44) In addition, according to various embodiments of the present disclosure, it is possible to provide the battery module 10, which may allow each inspection of welding quality when the top cover 220 and the side plate 260 of the module case 200 are welded, and a battery pack 1 including the battery module 10.
(45) Moreover, according to various embodiments of the present disclosure, it is possible to provide a battery module 10, which may allow a welding process to be performed without a closely-adhering guide jig when the top cover 220 and the side plate 260 of the module case 200 are welded, and a battery pack 1 including the battery module 10.
(46) While the embodiments of the present disclosure have been shown and described, it should be understood that the present disclosure is not limited to the specific embodiments described, and that various changes and modifications can be made within the scope of the present disclosure by those skilled in the art, and these modifications should not be understood individually from the technical ideas and views of the present disclosure.