Battery module, and battery pack including the same
11757148 · 2023-09-12
Assignee
Inventors
Cpc classification
H01M10/6556
ELECTRICITY
H01M10/653
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
H01M2220/20
ELECTRICITY
H01M50/204
ELECTRICITY
International classification
H01M10/653
ELECTRICITY
H01M50/204
ELECTRICITY
Abstract
A battery module according to one embodiment of the present disclosure comprises: a plurality of battery cells, a housing accommodating the plurality of battery cells, a cooling part disposed on an outer surface of the housing, and a first heat transfer part disposed on an inner surface of the housing in contact with an end of each of the plurality of battery cells, wherein the housing may have a curved portion having a curved shape conforming to a curved shape of the ends of the plurality of battery cells.
Claims
1. A battery module comprising: a plurality of battery cells; a housing accommodating the plurality of battery cells, the housing extending completely around an outer periphery of the plurality of battery cells, such that the plurality of battery cells is disposed within an interior space defined within the housing; a cooling part disposed at an outer surface of the housing; and a first heat transfer part disposed on an inner surface of the housing in contact with a surface of an end of each of the plurality of battery cells, wherein an inner surface of the housing has a curved portion having a curved shape conforming to a curved shape of the ends of each of the plurality of battery cells, wherein an inner surface of the first heat transfer part has a curved shape that is the same as the curved shape of the ends of each of the plurality of battery cells, wherein an outer surface of the first heat transfer part has a curved shape that is the same as the curved shape of the inner surface of the housing.
2. The battery module of claim 1, wherein the first heat transfer part contacts the curved portion of the housing.
3. The battery module of claim 1, wherein the battery module further comprises a second heat transfer part disposed between the outer surface of the housing and the cooling part in contact with the outer surface of the housing.
4. The battery module of claim 3, wherein the second heat transfer part has a planar shape.
5. The battery module of claim 3, wherein the outer surface of the housing has a curved shape, and the second heat transfer part is disposed inside a groove formed by the curved shape.
6. The battery module of claim 5, wherein the second heat transfer part has a rod shape.
7. The battery module of claim 3, wherein the second heat transfer part is composed of a plurality of parts, the outer surface of the housing has a curved shape, and the plurality of parts are spaced apart from each other and are inserted into a plurality of grooves formed by the curved shape, respectively.
8. The battery module of claim 3, wherein the outer surface of the housing has a curved shape conforming to the curved shape of the ends of the plurality of battery cells.
9. The battery module of claim 1, wherein the first heat transfer part has a curved shape conforming to the curved shape of the housing.
10. The battery module of claim 1, wherein the first heat transfer part is a conductive adhesive.
11. The battery module of claim 1, wherein the second heat transfer part is one of a heat dissipating grease, a conductive adhesive, and a heat dissipating pad.
12. A battery pack comprising the battery module according to claim 1.
13. A battery module comprising: a plurality of battery cells; a housing accommodating the plurality of battery cells, the housing extending completely around an outer periphery of the plurality of battery cells, such that the plurality of battery cells is disposed within an interior space defined within the housing; a cooling part disposed at an outer surface of the housing; and a first heat transfer part disposed on an inner surface of the housing in contact with a surface of an end of each of the plurality of battery cells, wherein an inner surface of the housing has a curved portion having a curved shape conforming to a curved shape of the ends of each of the plurality of battery cells, wherein an inner surface of the first heat transfer part has a curved shape that is the same as the curved shape of the ends of each of the plurality of battery cells, wherein an outer surface of the first heat transfer part has a curved shape that is the same as the curved shape of the inner surface of the housing, and wherein an outer surface of the housing has a curved shape conforming to the curved shape of the ends of each of the plurality of battery cells.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(8) Hereinafter, various embodiments of the present disclosure will be described in detail with reference to the accompanying drawings so that those skilled in the art can easily implement them. The present disclosure may be modified in various different ways, and is not limited to the embodiments set forth herein.
(9) Parts that are irrelevant to the description will be omitted to clearly describe the present disclosure, and like reference numerals designate like elements throughout the specification.
(10) Further, in the drawings, the size and thickness of each element are arbitrarily illustrated for convenience of description, and the present disclosure is not necessarily limited to those illustrated in the drawings. In the drawings, the thickness of layers, regions, etc. are exaggerated for clarity. In the drawings, for convenience of description, the thicknesses of some layers and regions are exaggerated.
(11) Further, throughout the specification, when a part is referred to as “including” a certain component, it means that it can further include other components, without excluding the other components, unless otherwise stated.
(12)
(13) As shown in
(14) In
(15) This will be described below in detail with reference to
(16)
(17) As shown in
(18)
(19) As the first heat transfer part 400 is formed in a thin and curved shape in this way, a thermal resistance becomes low when the heat generated in the battery cell 100 is transferred to the outside of the housing 200 through the first heat transfer part 400. That is, as compared with the battery module shown in
(20)
(21) Referring to
(22) In
(23)
(24)
(25) Meanwhile,
(26) In the housing 200 in
(27) As shown in
(28) That is, it can be said that through the structure as above, a thermal resistance (K/W) in the process of heat transfer from the battery cell 100 to the cooling part 300 is lowered, thereby increasing the cooling efficiency through the cooling part 300. The thermal resistance (K/W) is proportional to a length (m) of the heat transfer path and inversely proportional to a thermal conductivity (W/m/K] and an area (m.sup.2) of heat transfer. Accordingly, the present disclosure aims to reduce the length of the heat transfer path and increase the area of heat transfer as much as possible through the structures of
(29)
(30) As shown in
(31) First, the cooling part 300 shown in
(32) That is, there is a difference in that the second heat transfer part 500 in
(33) The first heat transfer part 400 in the present disclosure is made of a material capable of fixing the battery cell 100 and conducting heat, and may be made of a conductive adhesive; and the second heat transfer part 500 may be made of a heat dissipating grease, a conductive adhesive or a heat dissipating pad, but is not limited thereto.
(34) In addition, a battery pack according to one embodiment of the present disclosure may include a battery module 10, wherein the battery module 10 includes: a plurality of battery cells 100, a housing 200 accommodating the plurality of battery cells 100, and a cooling part 300 disposed on an outer surface of the housing 200, wherein the battery module includes a first heat transfer part 400 formed on an inner surface of the housing 200 so as to make contact with one side of the plurality of battery cells 100, and wherein the housing 200 may have a curved portion in accordance with a curved shape of the plurality of battery cells 100.
(35) As described above, the technical significance of the present disclosure resides in that in the process of heat transfer between an inside of the secondary battery and a cooling part disposed outside the secondary battery, the thermal resistance is lowered by increasing a heat transfer area of the contacted portion and reducing a heat transfer path, thereby improving a cooling performance of a battery module and thus, efficiently dissipate heat inside the secondary battery.
(36) The battery module described above may be included in the battery pack. The battery pack may have a structure in which one or more battery modules according to the present embodiment are collected, and then packed by adding a battery management system (BMS) and a cooling device to manage the temperature or voltage of the battery.
(37) The battery pack can be applied to various devices. Such a device may be applied to vehicles such as an electric bicycle, an electric vehicle, or a hybrid vehicle, but the present disclosure is not limited thereto, and can be applied to various devices capable of using a battery module, which also belongs to the scope of the present disclosure.
(38) Although the preferred embodiments of the present disclosure have been described in detail above, the scope of the present disclosure is not limited thereto, and various modifications and improvements of those skilled in the art using the basic concepts of the present disclosure defined in the following claims also belong to the scope of rights.
DESCRIPTION OF REFERENCE NUMERALS
(39) 10: battery module 100: battery cell 200: housing 210: groove 300: cooling part 310: refrigerant 400: first heat transfer part 500: second heat transfer part