Switch cabinet capable of improving heat dissipation efficiency of switch
By setting up a heat exchange box and heat dissipation components in the switch cabinet, a cold and hot exchange circulation channel is formed, which solves the problem of low heat dissipation efficiency of traditional switch cabinets and realizes efficient heat dissipation and stable operation of the switch.
Patent Information
- Application Number
- CN202422979267.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Traditional switch cabinets have poor heat dissipation design, resulting in low heat dissipation efficiency, which affects the performance and lifespan of the switch, and may even lead to network system failure.
A heat exchange box and heat dissipation components are installed in the switch cabinet. A circulation channel is formed through flexible hoses and multi-directional pipes to exchange heat and cold. Heat is discharged by a pump and heat conduction plate. An adjustable mounting plate structure is used to improve air circulation.
This achieves efficient heat dissipation of the switch, improves the stability and reliability of the device, and avoids network failures caused by insufficient heat dissipation.
Smart Images

Figure CN223730141U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of switch cabinet technology, specifically a switch cabinet that improves the heat dissipation efficiency of a switch. Background Technology
[0002] In today's era of rapid digital and information technology development, network communication has become an indispensable part of social operation and people's lives. As a key device in network communication, the switch is responsible for the exchange and transmission of data within the network, and its stable operation is crucial to ensuring the reliability and performance of the network.
[0003] With the continuous advancement of network technology, the performance and functionality of switches have become increasingly powerful. Simultaneously, the amount of data they process has also increased significantly, leading to a substantial rise in the heat generated during operation. Traditional switch cabinets often fail to adequately consider the heat dissipation requirements of switches in their design. Some switch cabinets have unreasonable ventilation designs and poor fan layouts, failing to effectively and promptly expel the heat generated by the switches. Inefficient heat dissipation not only affects the performance and lifespan of the switches but can also lead to the failure of the entire network system, causing serious consequences such as data loss and service interruption.
[0004] Therefore, a switch cabinet that improves the heat dissipation efficiency of the switch is proposed. Utility Model Content
[0005] The purpose of this invention is to provide a switch cabinet that improves the heat dissipation efficiency of a switch, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a switch cabinet for improving the heat dissipation efficiency of a switch, comprising a switch body, an isolation frame installed inside the switch body, and socket adjustment plates installed on both the left and right sides of the inner wall of the isolation frame. Multiple plugs are inserted into the interior of each of the two socket adjustment plates, and a slider is installed on one side of each of the multiple plugs. A mounting plate is slidably mounted on the outer wall of a corresponding set of sliders. Heat exchange plates are installed inside the multiple mounting plates, and heat exchange boxes are installed at the bottom of each of the multiple heat exchange plates. Flexible hoses are installed on one side of each of the multiple heat exchange boxes, and a heat exchange mechanism is provided on the rear side of each of the multiple flexible hoses. A heat dissipation component is provided on the rear side of the heat exchange mechanism, and the multiple plugs are respectively disposed inside the corresponding mounting plates.
[0007] Preferably, the heat exchange mechanism comprises a first multi-way pipe and a second multi-way pipe, one end of a plurality of the flexible hoses is connected with the inside of the corresponding first multi-way pipe and second multi-way pipe in a penetrating mode, one end of the first multi-way pipe and the second multi-way pipe is jointly provided with a heat insulation liquid storage tank, the inside of the heat insulation liquid storage tank is provided with a plurality of heat transfer plates, one side of the first multi-way pipe is provided with a flow valve, the other end of the first multi-way pipe and the second multi-way pipe is jointly provided with a pump body.
[0008] Preferably, the plurality of heat transfer plates are arranged in an up-down staggered mode and form a circulating flow channel in the inside thereof, and one end of the two first multi-way pipes is arranged at the two ends of the circulating flow channel, respectively.
[0009] Preferably, the heat dissipation assembly comprises a heat conduction plate, the heat conduction plate is arranged on the heat insulation liquid storage tank, one side of the heat conduction plate is arranged on the exchange main body, a plurality of air inlets are formed in one side of the heat conduction plate, a heat dissipation pipe is arranged in the inside of the heat conduction plate, and a heat dissipation device is arranged at the other end of the heat dissipation pipe.
[0010] Preferably, the inside of the heat conduction plate is arranged in a hollow mode, and the inside of the exchange main body is connected with the inside of the heat conduction plate in a penetrating mode.
[0011] Preferably, two sliding openings are formed in one side of the plurality of mounting plates, respectively, a connecting plate is jointly arranged on one side of a group of the sliding blocks, a plurality of the connecting plates are slidably arranged in the inside of the corresponding sliding openings, respectively, a limiting spring is jointly arranged on the opposite side surface of a group of the sliding blocks on the right side, respectively, an elastic tube is sleeved on the outer wall of the plurality of limiting springs, and the two ends of the plurality of elastic tubes are arranged on the corresponding sliding blocks, respectively.
[0012] Preferably, a plurality of Forma wheels are arranged on the bottom of the exchange main body, and an observation window is arranged on one side of the exchange main body.
[0013] Compared with the prior art, the heat exchange mechanism of the utility model has the advantages that:
[0014] 1、The heat exchange tank is arranged below the heat exchange plate, so that the heat generated by the equipment is directly conducted to the liquid in the heat exchange tank, the heated liquid is transported to the inside of the heat insulation liquid storage tank through the flexible hose and the first multi-way pipe, the circulating flow channel is formed in the heat insulation liquid storage tank, and the heat exchange is performed, the cooled liquid is re-transported to the inside of the heat exchange tank through another first multi-way pipe and flexible hose, the heat dissipation device is arranged, the high temperature generated by the internal elements of the equipment is discharged to the outside of the equipment through the heat conduction plate, the heat dissipation layout is reasonable, and the air circulation and heat dissipation efficiency are further improved.
[0015] 2, the utility model discloses further convenient for the height of mounting plate is adjusted, convenient actual operation is moved to corresponding slider to opposite side direction, to realize the compression of the limiting spring of opposite side, and make its operation more stable through the telescopic cylinder of outside, remove the inside of corresponding jack adjusting plate with the both sides plug -in block of corresponding connecting plate drive simultaneously, to remove the position fixation, convenient according to actual situation adjusts the installation, after position determination, through the reaction force of corresponding limiting spring, and the plug -in block of both sides is inserted into the inside of corresponding jack adjusting plate automatically, and the adjustment is convenient. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is main structure schematic diagram of the utility model;
[0017] Figure 2 It is sectional structure schematic diagram of the utility model;
[0018] Figure 3 It is Figure 2 Enlarged view of A in
[0019] Figure 4 It is explosion structure schematic diagram of the utility model;
[0020] Figure 5 It is part of explosion sectional structure schematic diagram of the utility model;
[0021] Figure 6 It is inside structure schematic diagram of heat insulation liquid storage tank of the utility model.
[0022] In the drawing: 1, switch main body;2, isolation frame;3, jack adjusting plate;4, plug-in block;5, slider;6, mounting plate;7, heat exchange plate;8, heat exchange box;9, flexible hose;10, first multidirectional pipe;11, second multidirectional pipe;12, flow valve;13, heat insulation liquid storage tank;14, heat transfer plate;15, heat conduction plate;16, air suction port;17, radiator pipe;18, heat dissipation device;19, sliding port;20, connecting plate;21, telescopic cylinder;22, limiting spring;23, foma wheel;24, observation window. DETAILED DESCRIPTION
[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0024] Embodiment 1: please refer to Figures 1-6This utility model provides a technical solution: a switch cabinet for improving the heat dissipation efficiency of a switch, comprising a switch body 1, an isolation frame 2 installed inside the switch body 1, and socket adjustment plates 3 installed on both the left and right sides of the inner wall of the isolation frame 2. Multiple plug blocks 4 are inserted into the interior of each of the two socket adjustment plates 3. A slider 5 is installed on one side of each of the multiple plug blocks 4. A mounting plate 6 is slidably installed on the outer wall of a corresponding set of sliders 5. Heat exchange plates 7 are installed inside each of the multiple mounting plates 6. A heat exchange box 8 is installed at the bottom of each of the multiple heat exchange plates 7. Flexible hoses 9 are installed on one side of each of the multiple heat exchange boxes 8. A heat exchange mechanism is provided on the rear side of each of the multiple flexible hoses 9. A heat dissipation assembly is provided on the rear side, and multiple inserts 4 are respectively installed inside the corresponding mounting plates 6. By setting a heat exchange box 8 below the heat exchange plate 7, the heat generated by the equipment is directly conducted to the liquid inside the heat exchange box 8. The heated liquid is then transported to the interior of the insulated liquid storage tank 13 through a flexible hose 9 and a first multi-directional pipe 10 by a pump. The liquid is then circulated through multiple heat transfer plates 14 inside the insulated liquid storage tank 13 to exchange heat and cold. The cooled liquid is then transported back to the interior of the heat exchange box 8 through another first multi-directional pipe 10 and a flexible hose 9 for heat dissipation and cooling. The heat dissipation device 18 discharges the high temperature generated by the internal components of the equipment to the outside of the equipment through the heat conduction plate 15.
[0025] like Figure 4 and 5 As shown, the heat exchange mechanism includes a first multi-directional pipe 10 and a second multi-directional pipe 11. One end of a plurality of flexible hoses 9 is respectively connected to the interior of the corresponding first multi-directional pipe 10 and second multi-directional pipe 11. One end of the first multi-directional pipe 10 and the second multi-directional pipe 11 is jointly installed with an insulated liquid storage tank 13. A plurality of heat transfer plates 14 are installed inside the insulated liquid storage tank 13. A flow valve 12 is installed on one side of the first multi-directional pipe 10. The other end of the first multi-directional pipe 10 and the second multi-directional pipe 11 are jointly installed with a pump body. The plurality of heat transfer plates 14 are arranged alternately and form a circulation channel inside. One end of the two first multi-directional pipes 10 is respectively set at both ends of the circulation channel. The heat-conducted liquid is transported to the interior of the insulated liquid storage tank 13 for heat exchange through the first multi-directional pipe 10 and the second multi-directional pipe 11.
[0026] like Figure 2 and 4As shown, the heat dissipation assembly includes a heat conduction plate 15 mounted on the heat insulation liquid tank 13, one side of the heat conduction plate 15 is mounted on the switch main body 1, a plurality of air suction ports 16 are formed on one side of the heat conduction plate 15, a heat dissipation pipe 17 is mounted in the heat conduction plate 15, a heat dissipation device 18 is mounted at the other end of the heat dissipation pipe 17, the inside of the heat conduction plate 15 is hollow, the inside of the switch main body 1 is connected with the inside of the heat conduction plate 15, and the high-temperature gas generated by the switch main body 1 is conveniently transported to the outside of the equipment through the heat dissipation device 18 in the heat dissipation assembly, the air suction port 16 and the heat conduction plate 15.
[0027] As shown in Figure 2 and 3 To further facilitate the adjustment of the height of the mounting plate 6 and facilitate actual operation, one side of each of the plurality of mounting plates 6 is provided with two sliding openings 19, one side of a set of sliding blocks 5 is commonly provided with a connecting plate 20, the plurality of connecting plates 20 are respectively slidably installed in the corresponding sliding openings 19, the opposite side surface of the right side corresponding to a set of sliding blocks 5 is commonly provided with a limiting spring 22, the outer wall of each of the plurality of limiting springs 22 is sleeved with an extension cylinder 21, and the two ends of each of the plurality of extension cylinders 21 are respectively installed on the corresponding sliding blocks 5. By moving the corresponding sliding blocks 5 to the opposite side, the limiting spring 22 on the opposite side is compressed, and the extension cylinder 21 outside is used to make the operation more stable. When moving, the corresponding connecting plate 20 drives the two side insertion blocks 4 to move out of the inside of the corresponding insertion hole adjusting plate 3, so as to release the position fixation, facilitate the adjustment and installation according to the actual situation, and after the position is determined, the two side sliding blocks 5 are loosened, and the two side insertion blocks 4 are automatically inserted into the inside of the corresponding insertion hole adjusting plate 3 through the reaction force of the corresponding limiting spring 22.
[0028] As shown in Figure 1 The bottom of the switch main body 1 is provided with a plurality of Forma wheels 23, and one side of the switch main body 1 is provided with an observation window 24. The Forma wheels 23 are arranged to support the installed equipment and improve the stability of the equipment operation. The observation window 24 is used to observe the internal working elements.
[0029] The working principle is that: the utility model discloses in actual use, first through the isolating frame 2 in the inside of switch main body 1 provides support and installation position for other components.Insert the block 4 on the jack adjusting plate 3 is connected with slider 5, slider 5 can slide in mounting plate 6, the heat exchange plate 7 in the inside of mounting plate 6 and the heat exchange tank 8 of bottom carry out preliminary heat exchange, in the heat exchange mechanism, flexible hose 9 is transported to the first multidirectional pipe 10 and second multidirectional pipe 11 with heat exchange medium in heat exchange tank 8, flow valve 12 can control flow, medium enters heat insulation liquid tank 13, and the heat transfer plate 14 of inside staggered arrangement forms circulation flow channel, and the heat exchange effect is enhanced, in the heat dissipation assembly, the heat conduction plate 15 is connected with heat insulation liquid tank 13, and the heat conduction is conducted to the radiator pipe 17, and then is cooled through the heat dissipation device 18.Heat conduction plate 15 on the air inlet 16 is helpful to air circulation, improves the heat dissipation efficiency, and the sliding mouth 19 in the one side of mounting plate 6, the connecting plate 20 slides with slider 5, and the limiting spring 22 and telescopic cylinder 21 between slider 5 play the role of buffering and reset, and the foma wheel 23 of switch main body 1 bottom is convenient to move, and the observation window 24 of one side is convenient to observe internal condition, through the cooperative work of above-mentioned each component, realize the efficient heat dissipation of switch, guarantee the stable operation of switch.
[0030] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A switch cabinet for improving heat dissipation efficiency of a switch, comprising a switch main body (1), characterized in that: The inside of the switch body (1) is internally provided with a partition frame (2), the left and right sides of the inner wall of the partition frame (2) are both provided with a jack adjusting plate (3), a plurality of plug blocks (4) are inserted in the inside of the two jack adjusting plates (3), one side of the plurality of plug blocks (4) is provided with a sliding block (5), the outer wall of a corresponding group of sliding blocks (5) is jointly and slidingly provided with a mounting plate (6), the inside of the plurality of mounting plates (6) is provided with a heat exchange plate (7), the bottom of the plurality of heat exchange plates (7) is provided with a heat exchange box (8), one side of the plurality of heat exchange boxes (8) is provided with a flexible hose (9), and a heat exchange mechanism is jointly arranged on the rear side of the plurality of flexible hoses (9). The rear side of the heat exchange mechanism is provided with a heat dissipation assembly, and the plurality of plug blocks (4) are respectively arranged in the inside of the corresponding mounting plate (6).
2. The cabinet of claim 1, wherein: The heat exchange mechanism comprises a first multi-way pipe (10) and a second multi-way pipe (11), one end of the plurality of flexible hoses (9) is respectively connected with the inside of the corresponding first multi-way pipe (10) and second multi-way pipe (11), one end of the first multi-way pipe (10) and second multi-way pipe (11) is jointly provided with a heat insulation liquid storage tank (13), the inside of the heat insulation liquid storage tank (13) is provided with a plurality of heat transfer plates (14), one side of the first multi-way pipe (10) is provided with a flow valve (12), and the other end of the first multi-way pipe (10) and second multi-way pipe (11) is jointly provided with a pump body.
3. The cabinet of claim 2, wherein: The plurality of heat transfer plates (14) are arranged in an up-down staggered manner and form a circulating flow channel in the inside thereof, and one end of the two first multi-way pipes (10) is arranged at the two ends of the circulating flow channel respectively.
4. The cabinet of claim 2, wherein: The heat dissipation assembly comprises a heat conduction plate (15), the heat conduction plate (15) is mounted on the heat insulation liquid storage tank (13), one side of the heat conduction plate (15) is mounted on the switch body (1), a plurality of air inlets (16) are formed in one side of the heat conduction plate (15), the inside of the heat conduction plate (15) is provided with a heat dissipation pipe (17), and the other end of the heat dissipation pipe (17) is provided with a heat dissipation device (18).
5. The cabinet of claim 4, wherein: The inside of the heat conduction plate (15) is provided in a hollow manner, and the inside of the switch body (1) is connected with the inside of the heat conduction plate (15) in a through manner.
6. The cabinet of claim 1, wherein: One side of the plurality of mounting plates (6) is provided with two sliding openings (19), one side of a corresponding group of sliding blocks (5) is jointly provided with a connecting plate (20), the plurality of connecting plates (20) are slidingly arranged in the inside of the corresponding sliding openings (19) respectively, the opposite side surfaces of a corresponding group of sliding blocks (5) on the right side are jointly provided with a limiting spring (22), the outer wall of the plurality of limiting springs (22) is sleeved with an extension cylinder (21), and the two ends of the plurality of extension cylinders (21) are mounted on the corresponding sliding blocks (5) respectively.
7. The cabinet of claim 1-6, wherein: The bottom of the switch body (1) is provided with a plurality of Foma wheels (23), and one side of the switch body (1) is provided with an observation window (24).