Network cabinet with efficient heat dissipation mechanism

The network cabinet with detachable design and magnetic attraction connection solves the problems of inconvenient disassembly and assembly and low heat dissipation efficiency in the prior art, and achieves the effects of fast disassembly and assembly and efficient heat dissipation.

CN223415162UActive Publication Date: 2025-10-03HANGZHOU HENGGU TECH CO LTD
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Patent Information

Application Number
CN202422674814.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-10-03
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

The inspection doors of existing network cabinets are difficult to install and remove and are easily damaged during transportation and use, resulting in high usage costs and space occupation.

Method used

The network cabinet adopts a detachable design, which enables quick assembly and disassembly through magnetic attraction and threaded connection. The heat dissipation slots and heat dissipation holes improve heat dissipation efficiency, and the design of the bottom plate and side panels enhances stability and convenience.

Benefits of technology

It realizes the rapid disassembly, assembly and maintenance of the network cabinet, facilitates transportation, reduces transportation costs, and improves heat dissipation efficiency and space utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of network cabinets, in particular to a network cabinet with an efficient heat dissipation mechanism, which comprises a bottom plate, a bottom block, two groups of first side plates, two groups of second side plates, an upper cover plate and a bearing plate, the bottom block is arranged below the bottom plate, the first side plates and the second side plates are arranged above the bottom plate, and the upper cover plate is arranged above the bottom plate. The upper cover plate is arranged above the first side plate and the second side plate, and the bearing plate is located in the first side plate and the second side plate; the LED lamp has the advantages of being novel in structure, convenient to integrally disassemble and assemble, convenient to transport and carry and high in heat dissipation efficiency.
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Description

Technical Field

[0001] The utility model relates to the field of network cabinets, in particular to a network cabinet with a high-efficiency heat dissipation mechanism. Background Art

[0002] In today's network world, various data storage and computing centers are being built in large numbers to meet the needs of data storage and computing. Multiple server modules are assembled into network cabinets to save space and facilitate management. Multiple server modules can be run in coordination to execute large computing projects.

[0003] The cabinet body of existing network cabinets is generally welded, and a single panel is fixed with screws as an inspection door, which makes it inconvenient to disassemble and assemble. During transportation and use, collisions are inevitable. Once other panels are damaged, the entire cabinet can only be replaced, which is costly to use, and the large size makes it inconvenient to carry. It also takes up space when idle.

[0004] Therefore, the present invention proposes a network cabinet with a high-efficiency heat dissipation mechanism to solve the above-mentioned problems. Utility Model Content

[0005] The purpose of the present utility model is to provide a network cabinet with an efficient heat dissipation mechanism to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a network cabinet with an efficient heat dissipation mechanism, the network cabinet with an efficient heat dissipation mechanism comprising: a base plate, a bottom block, a first side panel, a second side panel, an upper cover plate and a supporting plate, the bottom block being arranged below the base plate, the first side panel and the second side panel being arranged in two groups, the first side panel and the second side panel being arranged above the base plate, the upper cover plate being arranged above the first side panel and the second side panel, and the supporting plate being located inside the first side panel and the second side panel.

[0007] Preferably, the surfaces of the bottom plate, upper cover plate and first side plate are evenly provided with heat dissipation grooves, the surface of the second side plate is provided with heat dissipation holes, and there are several heat dissipation holes, which are distributed in a matrix shape on the surface of the second side plate.

[0008] Preferably, four groups of evenly distributed mounting holes are provided on the surface of the base plate, an inner groove is provided below the mounting holes, the diameter of the inner groove is larger than the diameter of the mounting holes, a first threaded column head passes through the mounting holes, the bottom of the first threaded column head is fixed on the disc, a second threaded column head is fixed below the disc, and the disc can be embedded in the inner groove.

[0009] Preferably, the bottom blocks are provided with four groups, which are respectively located at the four ends of the lower surface of the bottom plate. The bottom blocks are located below the mounting holes. A second threaded recessed hole is provided above the bottom blocks, and the second threaded column head is adapted to the second threaded recessed hole. Rectangular blocks are fixed on both sides of the bottom plate surface, and a rectangular groove is provided at the bottom of the first side plate, into which the rectangular blocks can be embedded.

[0010] Preferably, first threaded recessed holes are provided on both sides of the rectangular groove, the first threaded column head and the first threaded recessed holes are adapted to each other, sliding grooves are provided on both sides of the first side plate, a mounting groove is provided on the surface of the first side plate, a supporting plate is slidably connected in the mounting groove, the supporting plate is in the shape of a square plate, and through grooves are evenly provided on the surface of the supporting plate.

[0011] Preferably, sliders are fixed on both sides of the surface of the second side plate, the sliders and the slide grooves are slidably connected, the cross-sections of the sliders and the slide grooves are trapezoidal, and the short sides of the trapezoid of the sliders are connected to the second side plate.

[0012] Preferably, a plug post is fixed to the upper end of the first side plate, and two groups of plug posts are provided. The two groups of plug posts are symmetrically distributed about the central axis of the first side plate, and a first magnet is fixed to the top of the plug post.

[0013] Preferably, a socket is provided at the bottom of the upper cover, the plug is inserted into the socket, a second magnet is fixed inside the socket, the first magnet and the second magnet cooperate with each other, and the upper cover and the first side plate and the second side plate are tightly pressed against each other.

[0014] Preferably, a vertical plate is fixed above the upper cover plate, and there are two groups of vertical plates, which are respectively located on both sides of the upper surface of the upper cover plate. A handle is fixed between the two groups of vertical plates, and the surface of the handle is evenly covered with rubber rings.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] The utility model proposes a network cabinet with an efficient heat dissipation mechanism. When assembling, first place the first side panel on the bottom panel, embed the rectangular block into the rectangular groove accordingly, then extend the first threaded column through the mounting hole into the first threaded concave hole to achieve the connection between the first side panel and the bottom panel, then extend the second threaded column into the second threaded concave hole and tighten it to achieve the installation of the bottom block. The four groups of bottom blocks provided can provide stable support for the entire device, then move the second side panel from top to bottom, slide the slider into the slide groove accordingly, and push it continuously so that the slider and the slide groove are completely matched, thereby achieving the first side panel and the second side panel. The two side panels and the bottom panel are installed as a whole. Then, the upper cover is moved by manually holding the handle so that the plug is inserted into the socket. The first magnet and the second magnet will attract each other, so that the upper cover is pressed against the first side panel and the second side panel, thereby realizing the overall assembly. Disassembly is also very simple. Just follow the opposite operation of installation, which is convenient for inspection and maintenance, saves time and is convenient. When transporting, the whole can be disassembled and packaged for transportation to save space. The heat dissipation grooves opened on the surface of the first side panel, the upper cover and the bottom panel and the heat dissipation holes opened on the surface of the second side panel allow air to circulate inside and outside, and the heat dissipation is comprehensive and efficient. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the structure of the utility model;

[0018] Figure 2 This is a top view of the structure of the utility model;

[0019] Figure 3 This is a schematic diagram of the structure of the load-bearing plate of the utility model;

[0020] Figure 4 This is a detailed diagram of the structure of the utility model;

[0021] Figure 5 This is a schematic diagram of the structure of the slider of the utility model;

[0022] Figure 6 This is a schematic diagram of the chute structure of the utility model;

[0023] Figure 7 This is a schematic diagram of the bottom plate structure of the utility model;

[0024] Figure 8 This is a schematic diagram of the inner groove structure of the utility model;

[0025] Figure 9 This is a schematic diagram of the jack structure of the utility model;

[0026] Figure 10 This is a schematic diagram of the rectangular trough structure of the utility model.

[0027] In the figure: 1. Upper cover; 2. Heat dissipation groove; 3. First side panel; 4. Bottom panel; 5. Bottom block; 6. Heat dissipation hole; 7. Second side panel; 8. Vertical panel; 9. Rubber ring; 10. Handle; 11. Loading plate; 12. Through groove; 13. Insert column; 14. First magnet; 15. Slider; 16. Slide groove; 17. Placement groove; 18. Rectangular block; 20. First threaded column head; 21. Disc; 22. Second threaded column head; 23. Second threaded recessed hole; 24. Mounting hole; 25. Inner groove; 26. Second magnet; 27. Insert hole; 28. First threaded recessed hole; 29. ​​Rectangular groove. DETAILED DESCRIPTION

[0028] Example 1: Please refer to Figures 1-10 The utility model provides a technical solution: a network cabinet with an efficient heat dissipation mechanism, the network cabinet with an efficient heat dissipation mechanism comprising: a bottom plate 4, a bottom block 5, a first side plate 3, a second side plate 7, an upper cover 1 and a bearing plate 11, the bottom block 5 is arranged below the bottom plate 4, the first side plate 3 and the second side plate 7 are each provided with two groups, the first side plate 3 and the second side plate 7 are arranged above the bottom plate 4, the upper cover 1 is arranged above the first side plate 3 and the second side plate 7, and the bearing plate 11 is located inside the first side plate 3 and the second side plate 7;

[0029] When in use, for assembly: first place the first side panel 3 on the bottom panel 4, embed the rectangular block 18 into the rectangular groove 29 accordingly, then insert the first threaded column head 20 through the mounting hole 24 and extend it into the first threaded recessed hole 28 to achieve the connection between the first side panel 3 and the bottom panel 4, then extend the second threaded column into the second threaded recessed hole 23 and tighten it to achieve the installation of the bottom block 5, then move the second side panel 7 from top to bottom, slide the slider 15 into the sliding groove 16 accordingly, and push it continuously so that the slider 15 and the sliding groove 16 are completely matched, thereby achieving the overall installation of the first side panel 3, the second side panel 7 and the bottom panel 4, then, manually hold the handle 10 to move the upper cover 1 so that the plug 13 is inserted into the plug hole 27, the first magnet 14 and the second magnet 26 will attract each other, so that the upper cover 1 is pressed against the first side panel 3 and the second side panel 7, thereby achieving the overall assembly, and disassembly is also very simple, just follow the reverse operation during installation, which is convenient for inspection and maintenance, saving time and convenience.

[0030] Example 2: Based on Example 1, heat dissipation grooves 2 are evenly formed on the surfaces of the bottom plate 4, the upper cover plate 1 and the first side plate 3, and heat dissipation holes 6 are formed on the surface of the second side plate 7. There are a plurality of heat dissipation holes 6, and the heat dissipation holes 6 are distributed in a matrix on the surface of the second side plate 7;

[0031] During use, the whole can be disassembled and packaged for transportation to save space. The heat dissipation grooves 2 on the surfaces of the first side panel 3, the upper cover 1 and the bottom panel 4, and the heat dissipation holes 6 on the surface of the second side panel 7 allow air to circulate inside and outside, resulting in comprehensive heat dissipation and high heat dissipation efficiency.

[0032] The surface of the base plate 4 is provided with four groups of evenly distributed mounting holes 24. An inner groove 25 is provided below the mounting holes 24. The diameter of the inner groove 25 is larger than the diameter of the mounting holes 24. A first threaded stud 20 passes through the mounting holes 24. The bottom of the first threaded stud 20 is fixed to the disc 21. A second threaded stud 22 is fixed below the disc 21. The disc 21 can be embedded in the inner groove 25.

[0033] When in use, after the first threaded stud 20 and the second threaded stud 22 are installed, the disc 21 is embedded in the inner groove 25 to support the installation of the two sets of threaded studs as a whole;

[0034] The surface of the first side plate 3 is provided with a placement groove 17, in which a supporting plate 11 is slidably connected. The supporting plate 11 is in a square plate shape, and through grooves 12 are evenly formed on the surface of the supporting plate 11.

[0035] During use, after installing two sets of first side panels 3 and one set of second side panels 7, the carrying plate 11 can be slidably arranged in the placement groove 17. The arranged carrying plate 11 is convenient for carrying items. The opened through groove 12 reduces the weight of the carrying plate 11 and saves manufacturing materials on the one hand, and facilitates the wiring of the lines and improves the convenience of equipment connection on the other hand.

[0036] Example 3: Based on Example 2, four groups of bottom blocks 5 are provided. The four groups of bottom blocks 5 are respectively located at the four ends of the lower surface of the bottom plate 4. The bottom blocks 5 are located below the mounting holes 24. A second threaded recessed hole 23 is provided on the top of the bottom block 5. The second threaded stud 22 is adapted to fit in the second threaded recessed hole 23. Rectangular blocks 18 are fixed on both sides of the surface of the bottom plate 4. A rectangular groove 29 is provided at the bottom of the first side plate 3. The rectangular blocks 18 can be embedded in the rectangular groove 29.

[0037] When in use, the four sets of bottom blocks 5 can provide stable support for the entire device. When connecting the first side panel 3 and the bottom panel 4, the rectangular blocks 18 are first inserted into the rectangular grooves 29 accordingly, thereby providing pre-positioning so that the mounting holes 24 and the first threaded recesses 28 correspond to each other, facilitating the subsequent installation of the threaded studs. At the same time, the first side panel 3 is limited to improve the stability of the first side panel 3.

[0038] Slide blocks 15 are fixed on both sides of the surface of the second side plate 7. The slide blocks 15 and the slide grooves 16 are slidably connected. The cross-sections of the slide blocks 15 and the slide grooves 16 are trapezoidal. The short sides of the trapezoid of the slide blocks 15 are connected to the second side plate 7.

[0039] When in use, the cooperation between the slider 15 and the slide groove 16 defines the connection direction between the first side panel 3 and the second side panel 7, thereby preventing the second side panel 7 and the first side panel 3 from being directly separated horizontally under the action of external force;

[0040] A vertical plate 8 is fixed above the upper cover 1. There are two groups of vertical plates 8, which are respectively located on both sides of the upper surface of the upper cover 1. A handle 10 is fixed between the two groups of vertical plates 8. The surface of the handle 10 is evenly covered with a rubber ring 9.

[0041] During use, the setting of the handle 10 facilitates the user to apply force to hold the device, thereby improving the convenience of operation. The set rubber ring 9 can provide a buffer and improve the stability of operation.

[0042] In actual use, when assembling: first place the first side panel 3 on the bottom panel 4, embed the rectangular block 18 into the rectangular groove 29 accordingly, then extend the first threaded column head 20 through the mounting hole 24 into the first threaded recessed hole 28 to achieve the connection between the first side panel 3 and the bottom panel 4, then extend the second threaded column into the second threaded recessed hole 23 and tighten it to achieve the installation of the bottom block 5. The four groups of bottom blocks 5 set up can provide stable support for the entire device, then move the second side panel 7 from top to bottom, slide the slider 15 into the slide groove 16 accordingly, and push it continuously so that the slider 15 and the slide groove 16 are completely matched, thereby achieving the first side panel 3, the second side panel 7 and the bottom panel. After the plate 4 is installed as a whole, the upper cover 1 is moved by manually holding the handle 10 so that the plug 13 is inserted into the socket 27. The first magnet 14 and the second magnet 26 will attract each other, so that the upper cover 1 is pressed against the first side plate 3 and the second side plate 7, thereby realizing the overall assembly. The disassembly is also very simple. Just follow the opposite operation during installation, which is convenient for inspection and maintenance, saves time and is convenient. When transporting, the whole can be disassembled and packaged for transportation to save space. The heat dissipation grooves 2 opened on the surfaces of the first side plate 3, the upper cover 1 and the bottom plate 4 and the heat dissipation holes 6 opened on the surface of the second side plate 7 allow air to circulate inside and outside, and the heat dissipation is comprehensive and efficient.

[0043] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A network cabinet with an efficient heat dissipation mechanism, characterized by: The network cabinet with a high-efficiency heat dissipation mechanism comprises: a bottom plate (4), a bottom block (5), a first side plate (3), a second side plate (7), an upper cover plate (1) and a bearing plate (11), wherein the bottom block (5) is arranged below the bottom plate (4), two groups of the first side plate (3) and the second side plate (7) are provided, the first side plate (3) and the second side plate (7) are arranged above the bottom plate (4), the upper cover plate (1) is arranged above the first side plate (3) and the second side plate (7), and the bearing plate (11) is located inside the first side plate (3) and the second side plate (7).

2. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 1, characterized in that: The surfaces of the bottom plate (4), the upper cover plate (1) and the first side plate (3) are evenly provided with heat dissipation grooves (2), and the surface of the second side plate (7) is provided with heat dissipation holes (6). There are a plurality of heat dissipation holes (6), and the plurality of heat dissipation holes (6) are distributed in a matrix shape on the surface of the second side plate (7).

3. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 1, characterized in that: The surface of the base plate (4) is provided with four groups of evenly distributed mounting holes (24), an inner groove (25) is provided below the mounting holes (24), the diameter of the inner groove (25) is larger than the diameter of the mounting holes (24), a first threaded column head (20) passes through the mounting holes (24), the bottom of the first threaded column head (20) is fixed on the disc (21), a second threaded column head (22) is fixed below the disc (21), and the disc (21) can be embedded in the inner groove (25).

4. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 1, characterized in that: The bottom block (5) is provided with four groups, and the four groups of bottom blocks (5) are respectively located at the four ends of the lower surface of the bottom plate (4). The bottom block (5) is located below the mounting hole (24). A second threaded concave hole (23) is opened above the bottom block (5), and the second threaded column head (22) is adapted to the second threaded concave hole (23). Rectangular blocks (18) are fixed on both sides of the surface of the bottom plate (4). A rectangular groove (29) is opened at the bottom of the first side plate (3), and the rectangular block (18) can be embedded in the rectangular groove (29).

5. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 4, characterized in that: The rectangular groove (29) is provided with a first threaded concave hole (28) on both sides, and the first threaded column head (20) is adapted to the first threaded concave hole (28). The first side plate (3) is provided with a sliding groove (16) on both sides, and a placement groove (17) is provided on the surface of the first side plate (3). A supporting plate (11) is slidably connected in the placement groove (17). The supporting plate (11) is in the shape of a square plate, and a through groove (12) is evenly provided on the surface of the supporting plate (11).

6. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 1, characterized in that: Slide blocks (15) are fixed on both sides of the surface of the second side plate (7), and the slide blocks (15) and the slide grooves (16) are slidably connected. The cross sections of the slide blocks (15) and the slide grooves (16) are trapezoidal, and the short sides of the trapezoid of the slide blocks (15) are connected to the second side plate (7).

7. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 1, characterized in that: A plug post (13) is fixed to the upper end of the first side plate (3), and the plug post (13) is provided with two groups. The two groups of plug posts (13) are symmetrically distributed about the central axis of the first side plate (3), and a first magnet (14) is fixed to the top of the plug post (13).

8. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 1, characterized in that: The bottom of the upper cover (1) is provided with a socket (27), the plug post (13) is inserted into the socket (27), a second magnet (26) is fixed inside the socket (27), the first magnet (14) and the second magnet (26) cooperate with each other, and the upper cover (1) and the first side plate (3) and the second side plate (7) are tightly pressed against each other.

9. The network cabinet with a high-efficiency heat dissipation mechanism according to claim 1, characterized in that: A vertical plate (8) is fixed above the upper cover plate (1), and two groups of vertical plates (8) are provided. The two groups of vertical plates (8) are respectively located on both sides of the upper surface of the upper cover plate (1). A handle (10) is fixed between the two groups of vertical plates (8), and a rubber ring (9) is evenly laid on the surface of the handle (10).