Multi-section communication high-efficiency heat conduction type liquid cooling plate

CN224789724UActive Publication Date: 2026-09-22JIANGSU HANPENG ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522174508.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2026-09-22
Estimated Expiration
2035-10-15

AI Technical Summary

Technical Problem

[0003]但是现有的多组液冷板其不便于进行快速稳定的对接连通,进而降低了液冷板后续对不同面积储能模组进行散热的效率,所以急需一种多段连通高效导热型液冷板来解决上述存在的问题

Benefits of technology

1.本实用新型在对液冷板进行连通对接时,对接卡板能通过限位卡座和对接导座对液冷板的中部和两端进行限位,进而提高了后续液冷板对接加固的稳定性和便捷性,同时连通导管能与两组导液管进行密封限位,进而连通两组液冷板,有效增大液冷板对外部储能模组散热的面积,进而提高散热的效率,同时也提高了对冷却液的循环导热效率。

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Abstract

The utility model discloses a multi -section intercommunication high -efficient heat conduction type liquid cooling board, including the heat conduction bottom plate for heat exchange, the inner end face of heat conduction bottom plate is close to the equidistance setting of outside and is provided with the positioning sleeve, liquid cooling guide plate, liquid cooling guide plate through positioning sleeve and fixedly connected in the upper end surface of heat conduction bottom plate, and the inner end face of liquid cooling guide plate is integrally formed and is provided with liquid cooling runner. The utility model discloses when carrying out intercommunication butt joint to liquid cooling board, butt joint clamping plate can be through the limiting clamp and butt joint guide base and carry out the limiting to the middle part and both ends of liquid cooling board, and then improve the stability and convenience of subsequent liquid cooling board butt joint reinforcement, and simultaneously intercommunication pipe can carry out sealed limiting with two sets of liquid guide pipe, and then intercommunication two sets of liquid cooling board, effectively increase the area that liquid cooling board radiates to external energy storage module, and then improve the efficiency of heat dissipation, and also improve the circulating heat conduction efficiency of cooling liquid.
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Description

Technical Field

[0001] This utility model relates to the technical field of liquid cooling plate equipment, specifically a multi-segment connected high-efficiency heat-conducting liquid cooling plate. Background Technology

[0002] Liquid cooling plates are the core components of liquid cooling systems in energy storage devices. Their core function is to efficiently remove the heat generated by the energy storage device through forced convection heat exchange, thereby maintaining the operating temperature of electronic equipment within a safe and efficient range.

[0003] However, the existing multi-stage liquid cooling plates are not easy to connect quickly and stably, which reduces the efficiency of the liquid cooling plates in dissipating heat from energy storage modules of different areas. Therefore, there is an urgent need for a multi-stage, interconnected, high-efficiency thermally conductive liquid cooling plate to solve the above problems. Utility Model Content

[0004] The purpose of this invention is to provide a multi-segment connected high-efficiency thermally conductive liquid cooling plate to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a multi-segment interconnected high-efficiency thermally conductive liquid cooling plate, comprising a thermally conductive base plate for heat exchange, wherein positioning sleeves are equidistantly arranged on the inner end face of the thermally conductive base plate near the outer side. A liquid-cooled guide plate is fixedly attached to the upper end face of the heat-conducting base plate by the positioning sleeve, and a liquid-cooled flow channel is integrally formed on the inner end face of the liquid-cooled guide plate. The liquid guiding tube is provided in two sets, and the two sets of liquid guiding tubes are respectively located at the bottom end of the heat-conducting base plate.

[0006] Preferably, a first positioning bracket is fixedly provided on both sides of the upper end face of the liquid cooling guide plate, and the liquid guide pipe is connected to the liquid cooling flow channel to facilitate the rapid conduction of coolant and improve heat exchange efficiency.

[0007] Preferably, positioning plates are equidistantly arranged on the upper surfaces of the two sets of first positioning brackets. The positioning plates press and connect the upper surface of the liquid cooling guide plate, which can effectively improve the stability of the subsequent fitting and limiting of the liquid cooling guide plate and the heat-conducting base plate, thereby improving the stability of the subsequent guiding of the coolant.

[0008] Preferably, a second positioning bracket is provided at the middle of the lower end face of the heat-conducting base plate, which can facilitate positioning and limiting when docking the liquid cooling plate.

[0009] Preferably, the lower end face of the heat-conducting base plate is provided with limiting bases at both ends, which facilitates the subsequent installation and positioning of the energy storage device, and also provides sufficient limiting space during the subsequent alignment and assembly of the liquid cooling plate.

[0010] Preferably, both the liquid cooling guide plate and the heat-conducting base plate are made of aluminum, which can effectively improve the efficiency of liquid cooling plate introduction.

[0011] Preferably, the upper surfaces of two adjacent sets of heat-conducting base plates are fixedly connected by two sets of docking plates, and the two adjacent sets of liquid guiding pipes are connected through a connecting conduit. A limiting seat is provided at the middle of the upper surface of the docking plate, and a docking guide is provided at the rear end of the upper surface of the docking plate. A limiting rear plate is provided at the center of the rear surface of the docking plate. The limiting seat and the second positioning seat are directly opposite each other and are in contact with each other. The docking guide is directly opposite each other and is in contact with the limiting base.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. When connecting and docking liquid cooling plates, the docking plate can limit the middle and both ends of the liquid cooling plate through the limiting card seat and docking guide seat, thereby improving the stability and convenience of subsequent liquid cooling plate docking and reinforcement. At the same time, the connecting conduit can seal and limit the two sets of liquid guiding pipes, thereby connecting the two sets of liquid cooling plates, effectively increasing the heat dissipation area of ​​the liquid cooling plate to the external energy storage module, thereby improving the heat dissipation efficiency, and also improving the circulation heat conduction efficiency of the coolant. Attached Figure Description

[0013] Figure 1 This is an exploded view of the main body of this utility model; Figure 2 For the present utility model Figure 1 A magnified view of a section at point I; Figure 3 This is a schematic diagram of the main structure of the present utility model; Figure 4 This is a side view of the main body of this utility model; Figure 5 This is an exploded view of the second embodiment of the main body of this utility model; Figure 6 This is a schematic diagram of the structure of the second embodiment of the main body of this utility model; Figure 7 For the present utility model Figure 6 A magnified view of a portion of seed II.

[0014] In the diagram: 1-Positioning plate, 2-Liquid cooling guide plate, 3-Heat-conducting base plate, 4-Liquid guide tube, 5-First positioning seat, 6-Positioning sleeve, 7-Liquid cooling channel, 8-Limiting base, 9-Second positioning seat, 10-Limiting seat, 11-Dating plate, 12-Dating guide, 13-Limiting rear plate, 14-Connecting conduit. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0016] Please see Figure 1-4 One embodiment of this utility model provides a multi-segment interconnected high-efficiency thermally conductive liquid cooling plate, including a thermally conductive base plate 3 for heat exchange, wherein positioning sleeves 6 are equidistantly arranged on the inner end face of the thermally conductive base plate 3 near the outer side. The liquid cooling guide plate 2 is fixedly attached to the upper end face of the heat-conducting base plate 3 by the positioning sleeve 6, and the liquid cooling channel 7 is integrally formed on the inner end face of the liquid cooling guide plate 2. Liquid guiding pipe 4, there are two sets of liquid guiding pipe 4, and the two sets of liquid guiding pipe 4 are respectively set at the bottom end of the heat-conducting base plate 3.

[0017] The upper end face of the liquid-cooled guide plate 2 is fixedly provided with a first positioning bracket 5 on both sides. The liquid guide pipe 4 is connected to the liquid-cooled flow channel 7 to facilitate the rapid conduction of coolant and improve heat exchange efficiency.

[0018] Positioning plates 1 are equidistantly arranged on the upper surfaces of the two sets of first positioning brackets 5. The positioning plates 1 press and connect the upper surface of the liquid cooling guide plate 2, which can effectively improve the stability of the subsequent contact and limiting of the liquid cooling guide plate 2 and the heat conduction base plate 3, thereby improving the stability of the subsequent guiding of the coolant.

[0019] A second positioning bracket 9 is provided at the middle of the lower end face of the heat-conducting base plate 3, which can facilitate positioning and limiting when docking the liquid cooling plate.

[0020] Limiting bases 8 are provided at both ends of the lower end face of the heat-conducting base plate 3 to facilitate the subsequent installation and positioning of the energy storage device, and also to provide sufficient limiting space during the subsequent alignment and assembly of the liquid cooling plate.

[0021] Both the liquid cooling guide plate 2 and the heat-conducting base plate 3 are made of aluminum, which can effectively improve the efficiency of liquid cooling plate introduction.

[0022] like Figure 5 , Figure 6 and Figure 7This is the second embodiment of the present invention, which differs from the first embodiment in that: the upper surfaces of two adjacent sets of heat-conducting base plates 3 are fixedly connected by two sets of docking plates 11, and the two adjacent sets of liquid guiding pipes 4 are connected through a connecting conduit 14. A limiting seat 10 is provided at the middle of the upper surface of the docking plate 11, a docking guide seat 12 is provided at the rear end of the upper surface of the docking plate 11, and a limiting rear plate 13 is provided at the center of the rear surface of the docking plate 11. The limiting seat 10 and the second positioning seat 9 are directly opposite each other and fitted together, and the docking guide seat 12 and the limiting base 8 are directly opposite each other and fitted together. Working principle: When docking two sets of liquid cooling plates, the operator can place the two sets of liquid cooling plates side by side, and then position the two sets of docking plates 11 on the upper part of the heat-conducting base plate 3 through the limiting plate 10 and the docking guide 12. After positioning, the connector can be docked with the two sets of liquid cooling plates through the limiting plate 13, the limiting plate 10 and the docking guide 12. At the same time, the adjacent liquid guiding pipes 4 of the two sets of liquid cooling plates can be connected through the connecting conduit 14 to complete the docking operation.

[0023] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A multi-segment interconnected high-efficiency thermally conductive liquid cooling plate, comprising a thermally conductive base plate (3) for heat exchange, wherein positioning sleeves (6) are equidistantly arranged on the inner end face of the thermally conductive base plate (3) near the outer side, characterized in that: Liquid cooling guide plate (2), the liquid cooling guide plate (2) is fixedly snapped onto the upper end face of the heat-conducting base plate (3) by the positioning sleeve (6), and a liquid cooling channel (7) is integrally formed on the inner end face of the liquid cooling guide plate (2). Liquid guide tube (4), there are two sets of liquid guide tube (4), and the two sets of liquid guide tube (4) are respectively located at the bottom end of the heat-conducting base plate (3).

2. The multi-segment interconnected high-efficiency thermally conductive liquid cooling plate according to claim 1, characterized in that: The upper end face of the liquid cooling guide plate (2) is fixedly provided with a first positioning bracket (5) on both sides, and the liquid guide pipe (4) is connected to the liquid cooling channel (7).

3. The multi-segment interconnected high-efficiency thermally conductive liquid cooling plate according to claim 2, characterized in that: Positioning plates (1) are provided at equal intervals on the upper surfaces of the two sets of first positioning bases (5), and the positioning plates (1) press and connect to the upper surface of the liquid cooling guide plate (2).

4. The multi-segment interconnected high-efficiency thermally conductive liquid cooling plate according to claim 3, characterized in that: A second positioning bracket (9) is provided at the middle of the lower end face of the heat-conducting base plate (3).

5. The multi-segment interconnected high-efficiency thermally conductive liquid cooling plate according to claim 4, characterized in that: Limiting bases (8) are provided at both ends of the lower end face of the heat-conducting base plate (3).

6. The multi-segment interconnected high-efficiency thermally conductive liquid cooling plate according to claim 1, characterized in that: Both the liquid cooling guide plate (2) and the heat-conducting base plate (3) are made of aluminum.

7. The multi-segment interconnected high-efficiency thermally conductive liquid cooling plate according to claim 5, characterized in that: The upper surfaces of two adjacent sets of heat-conducting base plates (3) are fixedly connected by two sets of docking plates (11), and the two adjacent sets of liquid guiding pipes (4) are connected through a connecting conduit (14). A limiting seat (10) is provided at the middle of the upper surface of the docking plate (11), and a docking guide seat (12) is provided at the rear end of the upper surface of the docking plate (11). A limiting rear plate (13) is provided at the center of the rear end surface of the docking plate (11). The limiting seat (10) is directly attached to the second positioning seat (9), and the docking guide seat (12) is directly attached to the limiting base (8).