BATTERY PACK
20250226506 ยท 2025-07-10
Assignee
Inventors
Cpc classification
A63B24/0087
HUMAN NECESSITIES
A63B2230/305
HUMAN NECESSITIES
H01M50/242
ELECTRICITY
A63B2225/50
HUMAN NECESSITIES
H01M50/249
ELECTRICITY
H01M2220/20
ELECTRICITY
H01M50/204
ELECTRICITY
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
International classification
H01M50/242
ELECTRICITY
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
H01M50/249
ELECTRICITY
Abstract
A battery pack adapted to suppress the possibility that a crash stroke cannot be ensured. The battery pack according to the present disclosure is mounted on a vehicle. The battery pack includes a storage case, a plurality of first cross members extending in a width direction of the vehicle, a second cross member extending in a longitudinal direction of the vehicle, a battery module, and a bracket. The battery module, the second cross member, and the bracket are arranged between the plurality of the first cross members, and the second cross member is arranged at a position separated from the battery module in a width direction of the vehicle. The bracket is arranged between the second cross member and the battery module. The battery module is attached to the storage case via the bracket. The bracket includes a bead protruding outward in a width direction of the vehicle.
Claims
1. A battery pack mounted on a vehicle, comprising: a storage case; a plurality of first cross members extending in a width direction of the vehicle; a second cross member extending in a longitudinal direction of the vehicle; a battery module; and a bracket, wherein the battery module, the second cross member, and the bracket are arranged between the plurality of the first cross members, the second cross member is arranged at a position separated from the battery module in a width direction of the vehicle, the bracket is arranged between the second cross member and the battery module, the battery module is attached to the storage case via the bracket, the bracket includes a bead protruding outward in a width direction of the vehicle, the second cross member includes a bead protruding inward in the width direction of the vehicle, and the bead of the bracket and the bead of the second cross member are arranged oppositely to and spaced apart from a central point between the plurality of the first cross members.
2. The battery pack according to claim 1, wherein the bracket includes a recessed part recessed in the width direction of the vehicle, and the recessed part of the bracket is arranged at the central point between the plurality of the first cross members of the bracket.
3. The battery pack according to claim 1, wherein the second cross member comprises a recessed part recessed in the width direction of the vehicle, and the recessed part of the second cross member is arranged at the central point between the plurality of the first cross members of the second cross member.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0025]
[0026]
[0027]
DESCRIPTION OF EMBODIMENTS
[0028] Hereinafter, specific embodiments to which present disclosure is applied will be described in detail with reference to the drawings. However, present disclosure is not limited to the following embodiments. For clarity of explanation, the following description and drawings have been simplified as appropriate.
First Embodiment
[0029] A first embodiment will be described with reference to
[0030] It should be noted that the three-dimensional coordinates shown in
[0031] As shown in
[0032] The storage case 1 houses the battery module 2, a plurality of the first cross members 3, the bracket 4, and the second cross member 5.
[0033] The battery module 2, a plurality of the first cross members 3, the bracket 4, and the second cross member 5 are arranged on a bottom surface 1a of the storage case 1 shown in
[0034] The plurality of first cross members 3 extend in the width direction of the vehicle. In an example shown in
[0035] As shown in
[0036] The second cross member 5 extends in the longitudinal direction of the vehicle. The second cross member 5 is arranged at a position separated from the battery module 2 in the width direction of the vehicle. The second cross member 5 includes a bead 5a which projects inward in the width direction of the vehicle. In the example shown in
[0037] The bead 4a of the bracket 4 and the bead 5a of the second cross member 5 are arranged oppositely to each other. The bead 4a of the bracket 4 and the bead 5a of the second cross member 5 are spaced apart from the central point between the plurality of the first cross members 3.
[0038] The bracket 4 includes a recessed part 4b recessed in the width direction of the vehicle. The recessed part 4b is arranged at the center point between the plurality of the first cross members 3 in the bracket 4. In the example shown in
[0039] The second cross member 5 includes a recessed part 5b recessed in the width direction of the vehicle. The recessed part 5b is arranged at the center point between the plurality of the first cross members 3 of the second cross member 5. In an example shown in
[0040] Here, the battery pack 10 is mounted on the vehicle, and the battery pack 10 receives an impact (i.e., shock) from the side thereof. Then, the second cross member 5 receives a load and distributes the load to the plurality of the first cross members 3. The second cross member 5 bends toward the battery module 2. The bead 5a of the second cross member 5 abuts against the bead 4a of the bracket 4. The bead 5a and the bead 4a are compressed and deformed in the width direction of the vehicle. The battery pack 10 can ensure a crash stroke for the length of the bead 5a and the bead 4a in the width direction of the vehicle. Accordingly, a certain crash stroke can be imparted to the battery pack 10. That is, it is possible to suppress the possibility that a crash stroke cannot be ensured.
[0041] The load received by the second cross member 5 tends to be largest at the center between the plurality of first cross members 3 of the second cross member 5. The bracket 4 according to the present embodiment includes the recessed part 4b recessed in width direction of the vehicle. The recessed part 4b is arranged at the center between the plurality of first cross members 3 in the bracket 4. Thus, a gap between the bracket 4 and the second cross member 5 can be secured at the center point between the plurality of the first cross members 3 of the second cross member 5 where the load received by the second cross member 5 is apt to be largest. Thus, it is possible to contribute to ensuring a stable crash stroke.
[0042] Also, the second cross member 5 according to this embodiment includes the recessed part 5b recessed in width direction of the vehicle. The recessed part 5b is arranged at the center point between the plurality of the first cross members 3 of the second cross member 5. Thus, the gap between the bracket 4 and the second cross member 5 can be secured at the center point between the plurality of the first cross members 3 of the second cross member 5, where the load received by the second cross member 5 is apt to be the largest. Thus, it is possible to contribute to ensuring a stable crash stroke.
[0043] It should be noted that present disclosure is not limited to the above embodiments and may be changed as appropriate to the extent that it does not deviate from the gist of the present disclosure. Further, the present disclosure may be implemented by combining the aforementioned embodiments or one of the examples thereof as appropriate.
[0044] From the disclosure thus described, it will be obvious that the embodiments of the disclosure may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the disclosure, and all such modifications as would be obvious to one skilled in the art are intended for inclusion within the scope of the following claims.