A machine cage module for heat dissipation

By designing multi-layered stacked cooling and air-cooling components in the cage module and equipping it with pull-out aids, the problem of poor compatibility of existing cage modules is solved, achieving compatibility and cost-effectiveness of various heat dissipation methods.

CN224306121UActive Publication Date: 2026-05-29KUNSHAN JIATI INFORMATION TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KUNSHAN JIATI INFORMATION TECH CO LTD
Filing Date
2025-05-13
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The existing heat dissipation structure of the cage module has poor adaptability, which means that different structures need to be purchased when different heat dissipation methods are required, increasing costs.

Method used

Design a cage module comprising an upper cover, a lower cover, and a back plate. The lower cover is provided with first and second heat dissipation zones. Each heat dissipation zone has heat conduction and air cooling components stacked on top of each other. The components are matched with each other by guide bars and guide rails. An auxiliary component is provided to facilitate the insertion and removal of the module. The profile parts are connected to form a variety of heat dissipation forms.

Benefits of technology

It achieves good adaptability to various heat dissipation methods, reduces costs, meets different testing needs, and has a compact and economical structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cage module for heat dissipation, it can satisfy a plurality of heat dissipation forms, good adaptability, and low cost, including upper cover, lower cover and backplate, the lower cover is adjacently arranged with first heat dissipation area and second heat dissipation area, be provided with a plurality of cold -conducting components, air -cooled assembly on the lower cover in the first heat dissipation area and second heat dissipation area, a plurality of groups of cold -conducting components and / or air -cooled assembly on each heat dissipation area are arranged in upper and lower layer, each group of cold -conducting components includes two cold -conducting mounting seat of symmetrical arrangement, be equipped with the cold -conducting installation groove for installing cold -conducting module on the cold -conducting mounting seat, each group of air -cooled assembly includes two air -cooled rail parts of symmetrical arrangement, and air -cooled module is assembled with two air -cooled rail parts and is connected, the backplate is arranged with the connector corresponding connection of cold -conducting module, air -cooled module, the upper cover is assembled with top layer's cold -conducting mounting seat and / or air -cooled rail part and is connected.
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Description

Technical Field

[0001] This utility model relates to the field of chassis technology, specifically to a chassis module for heat dissipation. Background Technology

[0002] The heat dissipation methods used inside the chassis of equipment used for measurement, control, and monitoring are usually conductive cooling, air cooling, or a combination of conductive and air cooling. Different heat dissipation methods are selected according to different testing and usage requirements. However, the assembly slots inside the existing chassis modules with heat dissipation structures are fixed, which means that only a single heat dissipation structure can be used, resulting in poor adaptability. Therefore, when different heat dissipation methods are required, chassis modules with different heat dissipation structures must be purchased, which increases the cost. Utility Model Content

[0003] To address the aforementioned issues, this invention provides a cage module for heat dissipation, which can meet various heat dissipation requirements, has good adaptability, and is low in cost.

[0004] This utility model adopts the following technical solution: a cage module for heat dissipation, including an upper cover, a lower cover, and a back plate. The lower cover has a first heat dissipation area and a second heat dissipation area arranged adjacent to each other. The lower cover located in the first heat dissipation area and the second heat dissipation area is provided with a plurality of cooling conductive components and air cooling components. The plurality of sets of cooling conductive components and / or air cooling components in each heat dissipation area are arranged in a stacked manner. Each set of cooling conductive components includes two symmetrically arranged cooling conductive mounting seats. The cooling conductive mounting seats are provided with cooling conductive mounting grooves for installing cooling conductive modules. Each set of air cooling components includes two symmetrically arranged air cooling guide rails. The air cooling module is assembled and connected to the two air cooling guide rails. The back plate is provided with connectors corresponding to the cooling conductive module and the air cooling module. The upper cover is assembled and connected to the top layer of cooling conductive mounting seats and / or air cooling guide rails.

[0005] Furthermore, the upper and lower layers of each heat dissipation zone are assembled and connected to the heat-conducting mounting base and / or air-cooling guide rail. The side end of the heat-conducting module is provided with a first guide bar that corresponds to and matches the heat-conducting mounting groove, and the side end of the air-cooling module is provided with a second guide bar that corresponds to and matches the guide rail portion of the air-cooling guide rail.

[0006] Furthermore, the pull-out end of the air-cooled module is equipped with a pull-out assist component, which includes a pull-out assist base. The pull-out assist base is fixed to the air-cooled module. The pull-out assist base is provided with a limiting rod. The air-cooled guide rail is provided with a limiting hole corresponding to the limiting rod. The pull-out assist base is provided with a through hole. A rotating shaft connected to a rotating component is installed in the through hole so that the rotating component can rotate under the action of the rotating shaft. A pull-out assist housing is fitted outside the rotating component, and the pull-out assist housing is assembled and connected to the rotating shaft.

[0007] Furthermore, each set of air-cooled components also includes four sets of profile components, which are respectively disposed at the four ends of each heat dissipation area. The four sets of profile components are fixedly connected to the air-cooled guide rail component in pairs, and the heat-conducting mounting base and / or profile components of the upper and lower layers of each heat dissipation area are assembled and connected.

[0008] Furthermore, the profile part located at the pull-out end of the air-cooling module is provided with a first hook portion, and the rotating part is provided with a first latch corresponding to the first hook portion for hooking.

[0009] Furthermore, the extraction housing is provided with a second hook portion, and the extraction base is provided with a second latch corresponding to the second hook portion for hooking;

[0010] Furthermore, an insulating strip is provided between the profile component located at the back plate position and the back plate, and a nut strip is assembled in the profile component. The back plate is connected to the insulating strip and the nut strip by a through screw.

[0011] The beneficial effects of this utility model are that a first heat dissipation area and a second heat dissipation area are arranged adjacent to each other on the lower cover. Each heat dissipation area is provided with several heat conduction components and air cooling components arranged in a stacked manner. Different heat dissipation components can be arranged in different heat dissipation areas according to the situation, so as to meet a variety of heat dissipation forms. It has good adaptability, low cost, and good economic value. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0013] Figure 2 This is a rear view of the present invention after the back panel is hidden.

[0014] Figure 3 This is a schematic diagram of the first disassembled state of this utility model;

[0015] Figure 4 yes Figure 3 Enlarged structural diagram at point A in the diagram;

[0016] Figure 5 This is a schematic diagram of the second disassembled state of this utility model;

[0017] Figure 6 This is an exploded view of the cooling guide mounting base and the profile component in the first heat dissipation zone of this utility model;

[0018] Figure 7 This is a schematic diagram of the assembly structure between the cooling guide mounting base and the profile component in the first heat dissipation area of ​​this utility model;

[0019] Figure 8This is an exploded view of the air-cooled guide rail and the profile in the second heat dissipation zone of this utility model. Detailed Implementation

[0020] like Figures 1 to 8 As shown, a heat dissipation cage module of this utility model includes an upper cover 1, a lower cover 2, and a back plate 3. The lower cover 2 has a first heat dissipation area 4 and a second heat dissipation area 5 arranged adjacent to each other. Several cooling components 6 and air-cooling components 7 are provided on the lower cover 2 located in the first heat dissipation area 4 and the second heat dissipation area 5. The several sets of cooling components 6 and / or air-cooling components 7 on each heat dissipation area are arranged in a stacked manner. Each set of cooling components 6 includes two symmetrically arranged cooling mounting seats 8. The cooling mounting seats 8 are provided with cooling mounting grooves 10 for installing cooling modules 9. Each set of air-cooling components 7 includes two symmetrically arranged air-cooling guide rails 11. The air-cooling module 12 is assembled and connected to the two air-cooling guide rails 11. The back plate 3 is provided with connectors 28 that are correspondingly connected to the cooling modules 9 and the air-cooling modules 12. The upper cover 1 is assembled and connected to the top cooling mounting seats 8 and / or air-cooling guide rails 11.

[0021] Each heat dissipation zone is assembled and connected between the upper and lower layers of the heat conduction mounting base 8 and / or the air-cooling guide rail 11. The side end of the heat conduction module 9 is provided with a first guide bar 29 that corresponds to and matches the heat conduction mounting groove 10, and the side end of the air-cooling module 12 is provided with a second guide bar 30 that corresponds to and matches the guide rail part of the air-cooling guide rail 11. Thus, the heat conduction module 9 can be installed on the heat conduction mounting base 8 through the cooperation of the first guide bar 29 and the heat conduction mounting groove 10, and the air-cooling module 12 can be installed on the air-cooling guide rail 11 through the cooperation of the second guide bar 30 and the guide rail part.

[0022] The pull-out end of the air-cooled module 12 is equipped with a pull-out aid component 13. The pull-out aid component 13 includes a pull-out base 14, which is fixed to the air-cooled module 12. The pull-out base 14 is provided with a limiting rod 15. The air-cooled guide rail 11 is provided with a limiting hole 16 corresponding to the limiting rod 15. The pull-out base 14 is provided with a through hole 17, and a rotating shaft 19 connected to a rotating component 18 is installed in the through hole 17 so that the rotating component 18 can rotate under the action of the rotating shaft 19. The rotating component 18 is fitted with a pull-out housing 20, and the pull-out housing 20 is assembled and connected to the rotating shaft 19. Each air-cooled assembly 7 also includes four sets of profile components 21. The four sets of profile components 21 are respectively set at the four ends of each heat dissipation area. The four sets of profile components 21 are fixedly connected to the air-cooled guide rail 11 in pairs. The upper and lower layers of the heat dissipation area are assembled and connected to the heat-conducting mounting base 8 and / or the profile components 21. A first hook portion 22 is provided on the profile part 21 at the pull-out end of the air-cooled module 12, and a first latch 23 corresponding to the first hook portion 22 is provided on the rotating part 18; a second hook portion 24 is provided on the pull-out housing 20, and a second latch 25 corresponding to the second hook portion 24 is provided on the pull-out base 14; the air-cooled module 12 can be easily inserted and removed through the pull-out assembly 13. When the air-cooled module 12 is inserted, the limiting rod 15 is inserted into the limiting hole 16, and the latch on the rotating part 18 is hooked with the first hook portion 22 by rotating the pull-out housing 20 and the rotating part 18 thereon; when the air-cooled module 12 needs to be pulled out, the pull-out housing 20 and the rotating part 18 thereon are also rotated to disengage the latch on the rotating part 18 from the first hook portion 22, so that the air-cooled module 12 can be easily pulled out by pulling the pull-out housing 20.

[0023] An insulating strip 25 is provided between the profile component 21 located at the back plate 3 and the back plate 3. A nut strip 26 is assembled in the profile component 21. The back plate 3 is connected to the insulating strip 25 and the nut strip 26 by a screw 27.

[0024] In this utility model, different heat dissipation components can be arranged in different heat dissipation areas according to the situation, so as to achieve different heat dissipation methods according to different test and use requirements. This utility model is only illustrated by setting up two layers of heat dissipation components. For example, in the first heat dissipation area 4 or the second heat dissipation area 5, the upper and lower layers of heat conduction components 6 and heat conduction components 6, air cooling components 7 and air cooling components 7, and heat conduction components 6 and air cooling components 7 can be arranged in a stacked manner. Then, heat dissipation forms of heat conduction, air cooling, and heat conduction and air cooling can be realized. When the above are combined, they only need to be assembled through the heat conduction mounting base 8 or the profile part 21.

[0025] Specifically, in the embodiments of this utility model, a heat-conducting component 6 and a wind-cooling component 7 are arranged in a stacked manner in the first heat dissipation area 4 to achieve a hybrid heat dissipation form of heat conduction and wind cooling; two sets of wind-cooling components 7 are arranged in a stacked manner in the second heat dissipation area 5 to achieve a wind-cooled heat dissipation form.

[0026] In the first heat dissipation zone 4, when the cooling component 6 and the air-cooling component 7 are assembled, the cooling mounting base 8 is installed on the lower cover 2, and the profile component 21 is correspondingly installed on the cooling mounting base 8; in the second heat dissipation zone 5, the profile component 21 can be a split type or an integrated type, that is, the structure remains unchanged, only the height dimension of the profile component 21 needs to be changed, so the upper and lower air-cooling guide rail components 11 can be assembled through the same profile component 21;

[0027] After the components of the upper and lower layers in the first heat dissipation zone 4 and the second heat dissipation zone 5 are assembled, the upper cover 1 is fixedly connected to the top profile 21, and then the back plate 3 is placed. The back plate 3 is fixedly connected to the profile 21 or the cooling mounting base 8 on the corresponding side, and the connector 28 on the back plate 3 is connected to the cooling module 9 and the air cooling module 12, thereby assembling the overall cage module.

[0028] In summary, this utility model has a compact structure, low cost, and strong versatility. With just the upper cover 1 and the lower cover 2, the entire cage module with different heat dissipation methods can be fixed into various chassis as required.

[0029] It should be noted that the profile parts, cooling module, air-cooling module and connectors in this utility model are all existing components.

[0030] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0031] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A cage module for heat dissipation, characterized in that: The device includes an upper cover, a lower cover, and a back plate. The lower cover has a first heat dissipation area and a second heat dissipation area arranged adjacent to each other. The lower cover located in the first heat dissipation area and the second heat dissipation area is provided with a plurality of cooling conductive components and air cooling components. The plurality of sets of cooling conductive components and / or air cooling components in each heat dissipation area are arranged in a stacked manner. Each set of cooling conductive components includes two symmetrically arranged cooling conductive mounting seats. The cooling conductive mounting seats are provided with cooling conductive mounting grooves for installing cooling conductive modules. Each set of air cooling components includes two symmetrically arranged air cooling guide rails. The air cooling module is assembled and connected to the two air cooling guide rails. The back plate is provided with connectors that are connected to the cooling conductive modules and air cooling modules respectively. The upper cover is assembled and connected to the cooling conductive mounting seats and / or air cooling guide rails on the top layer.

2. The cage module for heat dissipation according to claim 1, characterized in that: The upper and lower layers of each heat dissipation zone are assembled and connected to the heat-conducting mounting base and / or air-cooling guide rail. The side end of the heat-conducting module is provided with a first guide bar that corresponds to and matches the heat-conducting mounting groove, and the side end of the air-cooling module is provided with a second guide bar that corresponds to and matches the guide rail part of the air-cooling guide rail.

3. A heat dissipation cage module according to claim 1, characterized in that: The pull-out end of the air-cooled module is equipped with a pull-out aid component, which includes a pull-out aid base. The pull-out aid base is fixed to the air-cooled module and has a limiting rod. The air-cooled guide rail has a limiting hole corresponding to the limiting rod. The pull-out aid base has a through hole, and a rotating shaft connected to a rotating component is installed in the through hole so that the rotating component can rotate under the action of the rotating shaft. The rotating component is fitted with a pull-out aid housing, and the pull-out aid housing is assembled and connected to the rotating shaft.

4. A cage module for heat dissipation according to claim 3, characterized in that: Each set of air-cooled components also includes four sets of profile components, which are respectively disposed at the four ends of each heat dissipation area. The four sets of profile components are fixedly connected to the air-cooled guide rail component in pairs, and the heat conduction mounting base and / or profile components of the upper and lower layers of each heat dissipation area are assembled and connected.

5. A cage module for heat dissipation according to claim 4, characterized in that: The profile component located at the pull-out end of the air-cooling module is provided with a first hook portion, and the rotating component is provided with a first latch corresponding to the first hook portion.

6. A cage module for heat dissipation according to claim 3, characterized in that: The lifting aid housing is provided with a second hook portion, and the lifting aid base is provided with a second latch corresponding to the second hook portion.

7. A cage module for heat dissipation according to claim 4, characterized in that: An insulating strip is provided between the profile component located at the back plate position and the back plate, and a nut strip is assembled in the profile component. The back plate is connected to the insulating strip and the nut strip by a screw.