COOLING DEVICE FOR POWER BATTERY SYSTEM, POWER BATTERY SYSTEM AND VEHICLE
20220149453 ยท 2022-05-12
Inventors
Cpc classification
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
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
H01M10/6556
ELECTRICITY
H01M10/6568
ELECTRICITY
Abstract
The present disclosure relates to a cooling device for a power battery system, a power battery system for a vehicle comprising the cooling device, and a vehicle. The cooling device is disposed at a bottom of the power battery system and includes a chamber defined by a casing. The chamber includes: a first region where a liquid cooling plate assembly is disposed; and a second region sealingly separated from the first region and accommodating a piping system for coolant communication. The liquid cooling plate assembly extends from a bottom of the first region to a bottom of the second region, and the piping system is in fluid communication with a flow passage of the liquid cooling plate assembly. In the cooling device of the present disclosure, the piping system is all disposed outside the battery system. Thus, battery cells or high-voltage devices inside the battery system would not be affected even if the coolant leaks at the piping system, which greatly improves safety of the battery system.
Claims
1. A cooling device for a power battery system, wherein the cooling device is disposed at a bottom of the power battery system and comprises a chamber defined by a casing, and the chamber comprises: a first region where a liquid cooling plate assembly is disposed; and a second region sealingly separated from the first region and accommodating a piping system for coolant communication; wherein the liquid cooling plate assembly extends from a bottom of the first region to a bottom of the second region, and the piping system is in fluid communication with a flow passage of the liquid cooling plate assembly.
2. The cooling device for a power battery system according to claim 1, wherein the liquid cooling plate assembly comprises a plurality of liquid cooling plates arranged side by side and sealingly connected with each other, and one or more adjacent liquid cooling plates are in fluid communication to form a cooling circuit.
3. The cooling device for a power battery system according to claim 2, wherein sides of the one or more liquid cooling plates constituting the cooling circuit are provided with slots to achieve a fluid communication between the liquid cooling plates, and the slots are disposed at the second region.
4. The cooling device for a power battery system according to claim 2, wherein the piping system comprises a liquid inlet pipe and a liquid outlet pipe; the liquid inlet pipe is in fluid communication with the one or more liquid cooling plates and connected to a liquid supply pipe via a liquid inlet joint; and the liquid outlet pipe is in fluid communication with the one or more liquid cooling plates and connected to a liquid discharge pipe via a liquid outlet joint.
5. The cooling device for a power battery system according to claim 1, wherein the first region is defined by a plurality of vertical plates perpendicular to the liquid cooling plate assembly; the plurality of vertical plates are sealingly connected to the liquid cooling plate assembly; and the power battery system is disposed in the first region and supported by the liquid cooling plate assembly.
6. The cooling device for a power battery system according to claim 5, wherein the second region is sealingly separated from the first region by the plurality of vertical plates, and the second region further comprises an enclosure side plate through which the piping system extends.
7. The cooling device for a power battery system according to claim 2, wherein the plurality of liquid cooling plates are sealingly connected by friction stir welding.
8. A power battery system for a vehicle, wherein the power battery system comprises at least one cooling device for a power battery system, wherein the least one cooling device is disposed at a bottom of the power battery system and comprises a chamber defined by a casing, and the chamber comprises: a first region where a liquid cooling plate assembly is disposed; and a second region sealingly separated from the first region and accommodating a piping system for coolant communication; wherein the liquid cooling plate assembly extends from a bottom of the first region to a bottom of the second region, and the piping system is in fluid communication with a flow passage of the liquid cooling plate assembly.
9. A vehicle comprising a power battery system, wherein the power battery system comprises at least one cooling device for a power battery system, wherein the least one cooling device is disposed at a bottom of the power battery system and comprises a chamber defined by a casing, and the chamber comprises: a first region where a liquid cooling plate assembly is disposed; and a second region sealingly separated from the first region and accommodating a piping system for coolant communication; wherein the liquid cooling plate assembly extends from a bottom of the first region to a bottom of the second region, and the piping system is in fluid communication with a flow passage of the liquid cooling plate assembly.
10. The cooling device for a power battery system according to claim 5, wherein the second region is sealingly separated from the first region by the plurality of vertical plates, and the second region further comprises a cover plate.
11. The cooling device for a power battery system according to claim 2, wherein the plurality of liquid cooling plates are sealingly connected by metal inert-gas welding.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Other features and advantages of the present disclosure will be better understood from the following detailed description of optional embodiments with reference to the drawings, wherein same reference numerals in the drawings identify the same or similar parts. In the drawings:
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
[0023] The implementation and application of the embodiments are discussed in detail below. It should be understood, however, that the specific embodiments of the present disclosure are only illustrative of specific ways to implement and apply the present disclosure without limiting the scope of the present disclosure. The representations of structural positions of various components, such as up, down, top, bottom, etc., in the description are not absolute, but rather relative. These orientation representations are appropriate when the various components are arranged as shown in the figures, but when the positions of the various components in the figures change, these orientation representations also change accordingly.
[0024] Generally, a power battery system for a vehicle includes a battery pack composed of a plurality of battery cells, and a cooling device is disposed at a bottom of the power battery system to help to quickly and evenly dissipate heat from the battery pack. To avoid the risk of coolant leakage, the cooling device according to the present disclosure is advantageously configured to have a chamber defined by a casing. The chamber includes: a first region where a liquid cooling plate assembly is disposed; and a second region which is sealingly separated from the first region and accommodates a piping system for coolant communication.
[0025] In the embodiment shown in
[0026] As shown in
[0027] Advantageously, one or more adjacent liquid cooling plates are in fluid communication with each other to form a cooling circuit. In certain embodiments, sides of the one or more liquid cooling plates constituting the cooling circuit are provided with slots to achieve fluid communication between the liquid cooling plates. The slots are preferably provided at the second region 20. As shown in
[0028] As described above, the liquid cooling plates are connected by welding. When slots are provided to fluidly communicate two or more liquid cooling plates, welding penetration needs to be controlled during the welding process to prevent welds from blocking the flow passages. As shown in
[0029] Returning to
[0030] During the cooling process of the cooling device, the coolant flows as indicated by arrows in
[0031] In the cooling device for the power battery system of the present disclosure, a sealing range of the casing is composed of the vertical plates constituting the first region 10 and the liquid cooling plate assembly 30, and the piping system 40, 50 is disposed in the second region 20 outside the sealing range. Thus, battery cells, high-voltage devices and the like in the battery casing would not be affected even if a coolant leakage accident occurs. In some embodiments, flow passages between the liquid cooling plates connected in series are also arranged outside the sealing range of the casing, so that even if the coolant leaks due to welding defects or extrusion tests, components in the casing would not be affected, thereby improving the safety and reliability of the system.
[0032] It should be understood that the embodiment shown in
[0033] Technical contents and technical features of the present disclosure have been disclosed above. However, it should be understood that those skilled in the art can make various changes and improvements to the above disclosed concepts under the creative idea of the present disclosure, and all the changes and improvements belong to the scope of protection of the present disclosure. The description of the above embodiments is illustrative and not restrictive, and the scope of the present disclosure is defined by the claims.