Battery module
11189857 · 2021-11-30
Assignee
Inventors
- Zhi Wang (Ningde, CN)
- Lin MA (Ningde, CN)
- Feng Qin (Ningde, CN)
- Liangyi WANG (Ningde, CN)
- Liangmei Chen (Ningde, CN)
- Xiaofan Wang (Ningde, CN)
Cpc classification
H01M10/281
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
H01M2220/20
ELECTRICITY
H01M10/0413
ELECTRICITY
H01M50/242
ELECTRICITY
H01M50/204
ELECTRICITY
H01M10/482
ELECTRICITY
International classification
H01M10/48
ELECTRICITY
H01M50/242
ELECTRICITY
H01M50/204
ELECTRICITY
Abstract
The present disclosure relates to the technical field of battery, and particularly to a battery module. The battery module includes a case body having a cavity, a plurality of battery units accommodated in the cavity of the case body, an output electrode assembly disposed on the case body and electrically connected to output terminals of the plurality of battery units, and an end cap connected to the case body and arranged to press and cover at least a part of the output electrode assembly. The battery module according to the present disclosure has a sound design, through which the airtightness of the output electrode assembly is not liable to be broken during the running of the vehicle.
Claims
1. A battery module, comprising: a case body having a cavity; a plurality of battery units accommodated in the cavity of the case body; an output electrode assembly disposed on the case body and electrically connected to output terminals of the plurality of battery units; and an end cap connected to the case body, wherein the end cap presses and covers at least a part of the output electrode assembly; wherein the output electrode assembly comprises: an output electrode body electrically connected to the output terminals of the plurality of battery units; an electrode insulator disposed on the case body, wherein the electrode insulator wraps the output electrode body; and a connecting portion connected to the electrode insulator; wherein a surface of the end cap to be matched with the electrode insulator is recessed to form a first groove, and the first groove accommodates the electrode insulator; and wherein a bottom of the first groove is recessed to form a second groove, the second groove fits and limits the connecting portion, and the connecting portion is in contact with a side wall of the second groove.
2. The battery module according to claim 1, wherein a part of the electrode insulator contacting the first groove is in contact with a side wall of the first groove.
3. The battery module according to claim 1, wherein the connecting portion is a flared protrusion structure.
4. The battery module according to claim 1, wherein the case body comprises: two side plates; and two end plates, wherein the cavity of the case body is enclosed by the two side plates and the two end plates, and the output electrode assembly is arranged on any one of the two end plates, and wherein a locating piece is provided on an end of each of the two side plates close to the end cap, and the locating piece fits and limits the end cap.
5. The battery module according to claim 4, wherein the locating piece comprises: a connecting arm connected to each of the two side plates; and a fixed arm connected to the connecting arm in a non-zero angle with respect to the connecting arm, wherein the end cap is clamped by the fixed arms corresponding to the two side plates.
6. The battery module according to claim 5, wherein the fixed arm is connected to the connecting arm via an arc transition.
7. The battery module according to claim 6, wherein a surface of the end cap to be matched with the fixed arm is an arc surface.
8. The battery module according to claim 1, wherein the end cap is provided with a plurality of through-holes.
9. A battery module, comprising: a case body having a cavity; a plurality of battery units accommodated in the cavity of the case body; an output electrode assembly disposed on the case body and electrically connected to output terminals of the plurality of battery units; and an end cap connected to the case body, wherein the end cap presses and covers at least a part of the output electrode assembly, wherein the case body comprises two side plates and two end plates, the cavity of the case body is enclosed by the two side plates and the two end plates, and the output electrode assembly is arranged on any one of the two end plates; and wherein a locating piece is provided on an end of each of the two side plates close to the end cap, and the locating piece fits and limits the end cap.
10. The battery module according to claim 9, wherein the locating piece comprises: a connecting arm connected to each of the two side plates; and a fixed arm connected to the connecting arm in a non-zero angle with respect to the connecting arm, wherein the end cap is clamped by the fixed arms corresponding to the two side plates.
11. The battery module according to claim 10, wherein the fixed arm is connected to the connecting arm via an arc transition.
12. The battery module according to claim 11, wherein a surface of the end cap to be matched with the fixed arm is an arc surface.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) In order to more clearly illustrate embodiments of the present disclosure and technical solution of the related art, the accompanying drawings used in the embodiments or the description of the related art are briefly described below. The drawings described below are merely a part of the embodiments of the present disclosure. Based on these drawings, those skilled in the art can obtain other drawings without any creative efforts.
(2)
(3)
(4)
(5)
(6)
(7)
REFERENCE SIGNS
(8) 1—case body; 11—side plate; 12—end plate;
(9) 2—output electrode assembly; 21—output electrode body; 22—electrode insulator; 23—connecting portion;
(10) 3—end cap; 31—first groove; 32—second groove; 33—through-hole;
(11) 4—locating piece; 41—connecting arm; 42—fixed arm.
DESCRIPTION OF EMBODIMENTS
(12) The embodiments of the present disclosure will be clearly, comprehensively described in combination with the drawings. The embodiments described below are merely a part of the embodiments of the present disclosure. Based on these embodiments described in the present disclosure, other embodiments obtained by those skilled in the art without any creative efforts shall fall within the protection scope of the present disclosure.
(13) It should be understood that terms indicating orientations or positions, such as “inside”, “outside”, etc., generally are used to describe the orientations or positions with reference to the drawings. These terms are merely intended to facilitate and simplify the description of the present disclosure, rather than indicate or imply that a device or element is disposed at a fixed position or is operated in a fixed orientation or configuration. That is, these terms should not be construed as limitations of the present disclosure.
(14) It should be noted that terms used in the present disclosure such as “mounted”, “assembled”, and “connected”, etc. shall be understood in a broad extent, unless otherwise specified or limited. For example, the term “connected” includes various connection manners, such as fixed connection, detachable connection, integrated connection; mechanical connection, electrical connection; direct connection, indirect connection via an intermediate medium, or internal connection of two elements. These skilled in the art are able to understand specific meanings of the above terms in accordance with specific circumstances.
(15) As shown in
(16) The end cap 3 is connected to the case body 1 by bonding, snap-in, or the like. In order to improve the connection strength between the end cap 3 and the case body 1, the end cap 3 is preferably fixed to the case body 1 by bolts in the present embodiment.
(17) As shown in
(18) As shown in
(19) As shown in
(20) In order to achieve a good insulation effect of the electrode insulator 22, the electrode insulator 22 can be made of one or more of polyethylene, polypropylene or polyimide, and the electrode insulator 22 wraps the output electrode body 21 by injection molding with rubber.
(21) In addition, the electrode insulator 22 may also be not in contact with a side wall of the first groove 31. In order to ensure that the end cap 3 can be tightly pressed against the electrode insulator 22a while reducing a pulling force applied on the electrode insulator 22 by the metal connecting member in any direction, the part of the electrode insulator 22 contacting the first groove 31 is in contact with the side wall of the first groove 31.
(22) Further referring to
(23) The part of the electrode insulator 22 contacting the first groove 31 is in contact with the side wall of the first groove 31, and the connecting portion 23 is in contact with the side wall of the second groove 32. The contact can be a partial contact or complete contact, which is not specified in the present disclosure.
(24) The connecting portion 23 and the electrode insulator 22 can be connected together by bonding, snap-in or screwing, etc., in order to improve the connection strength between the connecting portion 23 and the electrode insulator 22. For example, the connecting portion 23 and the electrode insulator 22 may be formed into one piece.
(25) As shown in
(26) As shown in
(27) The locating piece 4 includes a connecting arm 41 connected to the side plate 11, and a fixed arm 42 connected to the connecting arm 41. A non-zero angle is enclosed by the connecting arm 41 and the fixed arm 42. The end cap 3 is clamped between the fixed arms 42 corresponding to different side plates 11. With such structure, the clamping force of the two fixed arm 42 can primarily connect the end cap 3 to the case body 1, which facilitates the further fixing of the end cap 3, and can further improve the stability of the connection between the end cap 3 and the case body 1.
(28) The connecting arm 41 and the side plate 11 can be connected together by bonding, or snap-in, etc., and the fixed arm 42 and the connecting arm 41 can be connected together by bonding, or snap-in, etc. In order to improve the connection strength between the connecting arm 41 and the end plate 12 and the connection strength between the fixed arm 42 and connecting arm 41, the connecting arm 41 and the end plate 12 may be formed into one piece, and the fixed arm 42 and the connecting arm 41 may be formed into one piece.
(29) The fixed arm 42 can be connected to the connecting arm 41 via a sharp corner transition. In the present embodiment, for example, the fixed arm 42 may be connected to the connecting arm 41 via an arc transition. By connecting the connecting arm 41 and the fixed arm 42 with the arc transition, a stress at the connection between the fixed arm 42 and the connecting arm 41 can be uniformly distributed along a normal of the arc. In this way, a product failure, which is caused by the occurrence of cracks at the connection structure, can be reduced or even avoided, thereby further increasing the clamping force of the fixed arm 42 against the end cap 3.
(30) As shown in
(31) As shown in
(32) It should be noted that the embodiments discussed above are merely intended to illustrate the technical solutions of the present disclosure, rather than limit the present disclosure. Although the above embodiments describe the present disclosure in detail, those skilled in the art can understand that the technical solution of the present disclosure can be modified, and parts or all of the technical features can be equivalently replaced. Any modifications or equivalent replacements within the spirit and principles of the present disclosure should be included in the scope of protection of the present disclosure.