Network switch cabinet
By designing a detachable heat dissipation mesh structure, and through the combination of hinge pins and mounting pins, the dust problem in the prior art is solved, the disassembly and assembly process of the heat dissipation mesh is simplified, and the disassembly and assembly process is made easier, making it easier to disassemble and reassemble the heat dissipation mesh, and making it easier to maintain and clean after disassembly, thereby improving heat dissipation efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2026-04-03
AI Technical Summary
Dust tends to accumulate in the hexagonal perforated areas of existing network switch cabinets, making cleaning difficult and affecting heat dissipation.
A detachable heat dissipation mesh structure was designed. The heat dissipation mesh can be easily installed and removed by using a convenient handle through the combination of hinge pins and mounting pins. Combined with limit springs and elastic buckles, it ensures that the installation is stable and easy to replace.
The process of disassembling and assembling the heat dissipation mesh has been simplified, making it easier to clean and maintain, reducing dust accumulation, and improving heat dissipation efficiency.
Smart Images

Figure CN224083640U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of electrical control cabinet technology and relates to a network switch cabinet. Background Technology
[0002] A network switch is a device that expands a network by providing more connection ports to subnets, allowing more computers to be connected. Large network switch arrays are typically installed in network switch cabinets. As electrical devices, network switches generate considerable heat. To facilitate heat dissipation, network switch cabinets are usually designed with hexagonal perforations, typically arranged symmetrically on both sides of the cabinet.
[0003] During use, the air inside the cabinet is constantly flowing with the outside air as it exchanges heat. The hexagonal perforation array, as the main air intake channel and having a larger surface area after the opening, is more prone to dust accumulation than other locations. Currently, the hexagonal perforation array is integrated with the cabinet, making dust cleaning quite troublesome. Utility Model Content
[0004] To address the aforementioned problems, this utility model proposes a network switch cabinet, which effectively solves the issues in the prior art.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] A network switch cabinet, comprising:
[0007] A base plate and a top plate, wherein multiple casters are installed on the bottom of the base plate;
[0008] Side panels, back panels, and door panels; the two side panels are fixedly installed between the bottom plate and the top plate, and the two door panels are glued together between the bottom plate and the top plate.
[0009] A heat dissipation window, wherein the heat dissipation window is provided in at least one of the two side panels or back panels and the door panel;
[0010] A heat dissipation mesh is placed inside the heat dissipation window;
[0011] Mounting pins, two of which are slidably mounted on both sides of the heat dissipation mesh;
[0012] A limiting spring is installed between the mounting pin and the heat dissipation mesh;
[0013] A hinge pin is fixedly installed on the bottom side of the heat dissipation window;
[0014] The first pin seat and the second pin seat are fixedly installed on the heat dissipation window. During installation, the mounting pin is inserted into the first pin seat, and the hinge pin is rotatably inserted into the second pin seat.
[0015] A handheld grip, wherein multiple handheld grips are respectively installed at the lower end of the mounting pin and on both sides of the heat dissipation mesh located below the mounting pin.
[0016] Optionally, both the mounting pin and the handgrip can be rotatably mounted on the heat dissipation mesh.
[0017] Optionally, it also includes a first mounting block, a second mounting block, and a third mounting block fixedly installed on the heat dissipation mesh. The first mounting block has two mounting rings fixedly installed, and the mounting pin is slidably installed through the mounting rings. The handheld grip is installed on the second mounting block, the limiting spring is installed between the two mounting rings, and the hinge pin is fixedly installed on the third mounting block.
[0018] Optionally, the first mounting block, the second mounting block, and the third mounting block are all U-shaped blocks, and each of the first mounting block, the second mounting block, and the third mounting block is threadedly connected with a through-type fixing bolt. The first mounting block, the second mounting block, and the third mounting block are inserted and installed on the heat dissipation mesh.
[0019] Optionally, the mounting pin includes an insertion part, the insertion part being threadedly connected to an adjustment tube, the adjustment tube being rotatably mounted with a handle, and the handgrip being mounted on the handle.
[0020] Optionally, the second mounting block is fixedly fitted with an elastic buckle, and the portable grip is locked into the elastic buckle after rotation.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. By setting the hinge pin to the second pin seat and the mounting pin to the first pin seat, the mounting pin can be disengaged by squeezing the two handles together. The heat dissipation mesh can then be easily lifted using the handles and moved to the side to disengage the hinge pin, allowing for easy removal of the heat dissipation mesh. This simplifies the assembly and disassembly process of the heat dissipation mesh and facilitates post-disassembly maintenance and cleaning.
[0023] 2. The handheld handle has a certain length and is designed to rotate. After installation, it can be rotated to be closer to the heat dissipation mesh, reducing the impact on the equipment installed in the cabinet. Furthermore, the flexible buckle design reduces the possibility of the handheld handle rotating randomly during use and affecting the operation of the switch equipment.
[0024] 3. By setting up U-shaped first, second, and third mounting blocks, it is easy to plug and install, and the bolts form a detachable installation, which is convenient for replacing the heat dissipation mesh after it is damaged. The adjustment tube is set to adjust the length of the mounting pin, which can be used to adapt to the use of heat dissipation mesh of different sizes. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present utility model;
[0026] Figure 2 This is a structural schematic diagram of the door panel portion according to an embodiment of the present utility model;
[0027] Figure 3 This is a schematic diagram of the installation pin portion according to an embodiment of the present utility model;
[0028] Figure 4 yes Figure 2 An enlarged schematic diagram of part A in the middle.
[0029] Reference numerals: 1. Base plate; 11. Caster wheel; 2. Side plate; 3. Door panel; 4. Top plate; 41. Ventilation window; 42. First mounting block; 421. Mounting ring; 43. Second mounting block; 422. Elastic buckle; 44. Third mounting block; 51. Ventilation mesh; 52. Mounting pin; 521. Insertion part; 522. Adjustment tube; 523. Handle part; 53. Limiting spring; 54. Hinge pin; 61. First pin seat; 62. Second pin seat; 7. Hand grip. Detailed Implementation
[0030] 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.
[0031] Please see Figures 1 to 4The present invention discloses a network switch cabinet, including a base plate 1, a top plate 4, two side plates 2, a back plate, and a door plate 3. The bottom of the base plate 1 is equipped with multiple casters 11. The two side plates 2 of the back plate are fixedly installed between the base plate 1 and the top plate 4. The two door plates 3 are glued to the base plate 1 and the top plate 4. It is also equipped with a heat dissipation window 41, which is opened in at least one of the two side panels 2 or the back panel and the door panel 3. That is, the heat dissipation window 41 is opened in the two side panels 2 or set in the back panel and the door panel 3. The opposite arrangement facilitates ventilation. Alternatively, heat dissipation windows 41 can be set in both the two side panels 2, the back panel, and the door panel 3. A heat dissipation mesh 51 is placed inside the heat dissipation window 41. Mounting pins 52 can be slidably installed on both sides of the heat dissipation mesh 51. A limit spring 53 is installed between the mounting pin 52 and the heat dissipation mesh 51. A hinge pin 54 is fixedly installed on the bottom side of the heat dissipation window 41. A first pin seat 61 and a second pin seat 62 are fixedly installed on the heat dissipation window 41. During installation, the mounting pin 52 is inserted into the first pin seat 61, and the hinge pin 54 is rotatably inserted into the second pin seat 62. Handles 7 are installed at the lower end of the mounting pin 52 and on both sides of the heat dissipation mesh 51 below the mounting pin 52.
[0032] Specifically, a heat dissipation mesh 51 is installed in the heat dissipation window 41 section for ventilation and heat dissipation of the switches inside the network switch cabinet. A hinge pin 54 is provided at the lower end of the heat dissipation mesh 51, which is rotatably mounted to the second pin seat 62 of the heat dissipation window 41. An installation pin 52 is provided at the upper end of the heat dissipation mesh 51, which is inserted into the first pin seat 61. The heat dissipation mesh 51 is fixed in place at the heat dissipation window 41 by the hinge pin 54 and the installation pin 52. The installation pin 52 is equipped with a handle 7 for pulling the installation pin 52, and the heat dissipation mesh 51 is also equipped with a handle 7 for lifting the heat dissipation mesh 51.
[0033] In this way, by setting the hinge pin 54 to hinge with the second pin seat 62 and the mounting pin 52 to insert with the first pin seat 61, the mounting pin 52 can be disengaged by squeezing the two handles 7 together. The heat dissipation mesh 51 can then be easily lifted and moved to the side to disengage the hinge pin 54, allowing for easy removal of the heat dissipation mesh 51. This simplifies the disassembly and assembly process of the heat dissipation mesh 51 and facilitates post-disassembly maintenance and cleaning.
[0034] In some feasible methods, the bottom plate 1, top plate 4, two side plates 2, and back plate and door plate 3 are all existing technologies. In this embodiment, the back plate and door plate 3 have the same structure, and the heat dissipation window 41 is opened on the back plate and door plate 3.
[0035] The heat dissipation mesh 51 has a rectangular frame on the outside and a hexagonal hole array on the inside. For ease of manufacturing, the heat dissipation mesh 51 is formed by punching holes in a rectangular plate. The mounting pin 52 is cylindrical, and the hinge pin 54 is U-shaped bent. The first pin seat 61 and the second pin seat 62 are fixedly installed on the heat dissipation window 41 and have a through hole in the middle to facilitate the installation of the mounting pin 52 and the hinge pin 54. The first end of the limiting spring 53 is fixed to the mounting pin 52, and the second end is fixed to the heat dissipation mesh 51 to keep the mounting pin 52 in the inserted state. The lower end of the mounting pin 52 is bent to form a handgrip 7. The handgrip 7 installed on the heat dissipation mesh 51 is designed as a rod-shaped handle for easy lifting and is fitted with a rubber sleeve on the outside.
[0036] As one specific implementation of the network switch cabinet provided in the application, please refer to Figure 2 and Figure 3 Both the mounting pin 52 and the convenient grip 7 can be rotatably mounted on the heat dissipation mesh 51.
[0037] Overall, the handheld handle 7 has a certain length and is designed to be rotatable. After installation, it can be rotated to bring it closer to the heat dissipation mesh 51, reducing the impact on the equipment installed in the cabinet.
[0038] Furthermore, it also includes a first mounting block 42, a second mounting block 43, and a third mounting block 44 fixedly installed on the heat dissipation mesh 51. The first mounting block 42 is fixedly installed with two mounting rings 421, and a mounting pin 52 is slidably installed through the mounting rings 421. The handle 7 is installed on the second mounting block 43, a limiting spring 53 is installed between the two mounting rings 421, and a hinge pin 54 is fixedly installed on the third mounting block 44.
[0039] It should be understood that by setting the first mounting block 42, the second mounting block 43 and the third mounting block 44, the installation of the mounting pin 52, the handgrip 7 and the hinge pin 54 is facilitated.
[0040] Furthermore, the first mounting block 42, the second mounting block 43, and the third mounting block 44 are all U-shaped blocks, and each of the first mounting block 42, the second mounting block 43, and the third mounting block 44 is threaded with a through-type fixing bolt. The first mounting block 42, the second mounting block 43, and the third mounting block 44 are inserted and installed on the heat dissipation mesh 51.
[0041] It should be understood that by setting the first mounting block 42, the second mounting block 43 and the third mounting block 44 in a U-shape, it is convenient to perform plug-in installation, and the bolts form a detachable installation, which is convenient to replace the heat dissipation mesh 51 after it is damaged.
[0042] Furthermore, the mounting pin 52 includes an insertion part 521, the insertion part 521 is threadedly connected to an adjustment tube 522, and the adjustment tube 522 is rotatably mounted with a handle part 523, so that the handgrip 7 is mounted on the handle part 523.
[0043] It should be understood that by setting the adjustment tube 522, the length of the mounting pin 52 can be easily adjusted, making it easy to adapt to the use of heat dissipation mesh 51 of different sizes.
[0044] Furthermore, the second mounting block 43 is fixedly mounted with an elastic buckle 422, which locks the handle 7 into the elastic buckle 422 after rotation.
[0045] It should be understood that by setting the elastic buckle 422, the possibility of the handgrip 7 being rotated at will during use and affecting the operation of the switch equipment is reduced.
[0046] In some feasible configurations, the first mounting block 42, the second mounting block 43, and the third mounting block 44 are rectangular blocks with a rectangular groove in the middle, giving them a U-shape, and the mounting ring 421 is a rectangular block with a through hole. The elastic buckle 422 is a buckling mechanism including two elastic arc-shaped pieces.
[0047] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A network switch cabinet, characterized in that, include: A base plate and a top plate, wherein multiple casters are installed on the bottom of the base plate; Side panels, back panels, and door panels; the two side panels are fixedly installed between the bottom plate and the top plate, and the two door panels are glued together between the bottom plate and the top plate. A heat dissipation window, wherein the heat dissipation window is provided in at least one of the two side panels or back panels and the door panel; A heat dissipation mesh is placed inside the heat dissipation window; Mounting pins, two of which are slidably mounted on both sides of the heat dissipation mesh; A limiting spring is installed between the mounting pin and the heat dissipation mesh; A hinge pin is fixedly installed on the bottom side of the heat dissipation window; The first pin seat and the second pin seat are fixedly installed on the heat dissipation window. During installation, the mounting pin is inserted into the first pin seat, and the hinge pin is rotatably inserted into the second pin seat. A handheld grip, wherein multiple handheld grips are respectively installed at the lower end of the mounting pin and on both sides of the heat dissipation mesh located below the mounting pin.
2. A network switch cabinet according to claim 1, characterized in that: Both the mounting pin and the handgrip can be rotatably mounted on the heat dissipation mesh.
3. A network switch cabinet according to claim 2, characterized in that: It also includes a first mounting block, a second mounting block, and a third mounting block that are fixedly installed on the heat dissipation mesh. The first mounting block has two mounting rings fixedly installed on it. The mounting pin is slidably installed through the mounting rings. The handheld grip is installed on the second mounting block. The limiting spring is installed between the two mounting rings. The hinge pin is fixedly installed on the third mounting block.
4. A network switch cabinet according to claim 3, characterized in that: The first mounting block, the second mounting block, and the third mounting block are all U-shaped blocks, and each of the first mounting block, the second mounting block, and the third mounting block is threadedly connected with a through-type fixing bolt. The first mounting block, the second mounting block, and the third mounting block are inserted and installed on the heat dissipation mesh.
5. A network switch cabinet according to claim 4, characterized in that: The mounting pin includes an insertion part, which is threadedly connected to an adjustment tube. The adjustment tube is rotatably mounted with a handle, and the handgrip is mounted on the handle.
6. A network switch cabinet according to claim 3, characterized in that: The second mounting block is fixedly mounted with an elastic buckle, and the handgrip is locked into the elastic buckle after rotation.