BATTERY MODULE
20190260102 ยท 2019-08-22
Inventors
Cpc classification
H01M10/6565
ELECTRICITY
B60L50/60
PERFORMING OPERATIONS; TRANSPORTING
H01M10/6556
ELECTRICITY
H01M10/6568
ELECTRICITY
Y02T10/70
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
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
H01M2220/20
ELECTRICITY
B60K6/28
PERFORMING OPERATIONS; TRANSPORTING
International classification
H01M10/6556
ELECTRICITY
Abstract
One aspect of the present invention relates to a battery module including a plurality of rechargeable battery cells arranged in a row, a first cooling channel and a second cooling channel that are arranged in one side of the row, and a fluid path plate that is provided between neighboring battery cells, and forms a cooling passage through which a coolant flows from the first cooling channel to the second cooling channel, wherein the fluid path plate includes a guide member that guides the coolant flow from an inlet of the fluid path plate, is communicated with the first cooling channel to an outlet of the fluid path plate, is communicated with the second cooling channel. The guide member includes a plurality of curved ribs and a plurality of circular members connected in a network connection structure. According to the present invention, the cooling passage that generates turbulence with a long cooling route is shared by two neighboring battery cells. Accordingly, a battery module having improved cooling efficiency can be provided.
Claims
1. A battery module comprising: a plurality of rechargeable battery cells arranged in a row; a first cooling channel and a second cooling channel that are arranged in one side of the row; and a fluid path plate that is provided between adjacent ones of the battery cells, and forms a cooling passage through which a coolant flows from the first cooling channel to the second cooling channel, wherein the fluid path plate comprises a guide member configured to guide the coolant flow from an inlet of the fluid path plate, is communicated with the first cooling channel to an outlet of the fluid path plate, is communicated with the second cooling channel, and the guide member comprises a plurality of curved ribs and a plurality of circular members connected in a network connection structure.
2. The battery module of claim 1, wherein the guide member further comprises a center pin that extends toward a center of the fluid path plate from a part of the fluid path plate, which is disposed between the inlet and the outlet of the fluid path plate.
3. The battery module of claim 2, wherein the center pin comprises a rounded tip.
4. The battery module of claim 2, wherein the center pin has a first length, the fluid path plate extends toward the outlet from the inlet while having a second length, and a ratio of the first length to the second length has a range of 1:2 to 1:3.
5. The battery module of claim 1, wherein the circular member is disposed close to the inlet and/or outlet.
6. The battery module of claim 1, wherein the inlet and the outlet of the fluid path plate are disposed on a long side of the fluid path plate.
7. The battery module of claim 1, comprising a housing in which the first cooling channel and the second cooling channel are disposed in a bottom thereof.
8. The battery module of claim 1, wherein the battery cell and the fluid path plate are formed in the shape of a prism.
9. The battery module of claim 8, wherein the guide member is divided into two parts having the same contour of the fluid path plate, and the two pars are disposed to be symmetrical to each other with respect to an axis extended from the side where the inlet and the outlet are disposed.
10. The battery module of claim 1, further comprising a frame that surrounds the fluid path plate.
11. The battery module of claim 1, wherein an upper portion of the fluid path plate is sealed by a sealing member.
12. The battery module of claim 11, wherein the sealing member comprises a non-conductive resin member or a steel plate.
13. The battery module of claim 11, further comprising an exhaust gas area on the sealing member.
14. A vehicle comprising the battery module of claim 1.
Description
DESCRIPTION OF THE DRAWINGS
[0023] In the following detailed description, only certain exemplary embodiments of the present invention have been shown and described, simply by way of illustration.
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
MODE FOR INVENTION
[0031] Hereinafter, basic features of the present invention and a method for achieving the present invention can be more easily understood by referring to the detailed description of exemplary embodiments and accompanying drawings. Hereinafter, effects and features according to exemplary embodiments of the present invention will be described with reference to the accompanying drawings. The drawings and description are to be regarded as illustrative in nature and not restrictive. Like reference numerals designate like elements throughout the specification. In addition, the expression including may is used to describe exemplary embodiments of the present invention, and this implies at least one or more exemplary embodiments of the present invention.
[0032] Terms such as first, second, etc., can be used to describe various elements, but the elements are not construed as being limited to the terms. The terms are only used to differentiate one element from other elements. For example, the first element may be called the second element without departing from the scope of the present disclosure, and similarly, the second element may also be called the first element.
[0033] In description of exemplary embodiments of the present invention, a singular expression includes plural expressions as long as the expression does not have apparently different contextual meaning.
[0034] In addition, terms such as comprise or include are used to designate areas, fixed numbers, steps, operations, components, elements, or combinations thereof, but they are not restrictive.
[0035] In addition, when referring to one film, region, or element as being on or above another film, region, or element, it is to be understood that the film, region, or element is disposed directly on the other film, region, or element, or disposed with another film, region, or element therebetween.
[0036] When a component or layer is referred to as being connected or coupled to another component or layer, it may be directly connected to another component or layer, or at least one another component or layer may exist between the components. In addition, a component or layer may solely exist between two different components or layers, and at least one intermediate component or layer may be disposed between the components.
[0037] Although not specifically defined, all of the terms including the technical and scientific terms used herein have meanings understood by ordinarily skilled persons in the art. The terms have specific meanings coinciding with related technical references and the present specification as well as lexical meanings. That is, the terms are not construed as ideal or formal meanings.
[0038] Referring to
[0039] Referring to
[0040]
[0041] The plurality of aligned battery cells 10 are arranged along one row, and a fluid path plate 50 is disposed between adjacent (e.g., neighboring) battery cells 10. The battery module 100 further includes a first cooling channel 20 and a second cooling channel 40 that are arranged at the same side in one row. As shown in
[0042] The battery module 100 may further include the housing 30 that surrounds the battery module 100, and the support plate 31. As shown in
[0043]
[0044] The fluid path plate 50 of the present invention may further include side protrusions 53 and lower supports 54 that are connected with the battery cell 10. The side protrusions 53 may be connected to the battery cell 10 with a hinge structure, and the lower supports 54 may be welded to the support plate 31 of the housing 30. However, the present invention is not limited thereto.
[0045] According to the exemplary embodiment of the present invention, the inlet 51 and the outlet 52 of the fluid path plate 50 may be disposed on a long side of a prism-shaped fluid path plate 50. Here, a length of the long sides of the fluid path plate 50 is longer than a length of the other two sides of the fluid path plate. However, the present invention is not limited thereto. The inlet port 51 and the outlet port 52 of the fluid path plate 50 may be disposed at any positions that can be communicated with the first cooling channel 20 and the second cooling channel 40, respectively.
[0046] As shown in
[0047] As shown in
[0048] As shown in
[0049] The guide member is divided into two parts, each having the same contour as the fluid path plate 50, and the two parts may be arranged to be symmetrical to each other with respect to an axis extended from a side where the inlet 51 and the outlet 52 are disposed.
[0050] Due the symmetrical alignment of the guide member, a length of a cooling passage of one of the two parts of the fluid path plate 50 is the same as a length of a cooling passage of the other part of the fluid path plate 50. Accordingly, uniform dispersion of the coolant can be assured on the surface of the fluid path plate 50, thereby improving cooling efficiency.
[0051]
[0052]
[0053] According to the present invention, a cooling passage that has a long cooling route and generates turbulence is equally shared by two adjacent (e.g., neighboring) battery cells. Thus, a battery module having improved cooling efficiency can be provided. Further, coolant flow can be evenly dispersed to the fluid path plate 50 by the cooling passages that are symmetrically arranged on the fluid path plate.
[0054] While this invention has been described in connection with what is presently considered to be practical exemplary embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
TABLE-US-00001 -Description of symbols- 10: battery cell 53: side protrusion 100: battery module 54: lower support 13: vent 55: frame 15: bus bar 61: net-shape support 20, 40: first and second cooling channel 62: rib 30: housing 63: circular member 31: support plate 64: center pin 50: fluid path plate 65: rounded tip 51: inlet 70: sealing member 52: outlet 80: exhaust gas area