Server protection device
By designing adjustable support components and efficient heat dissipation components, the problem of existing server protection devices being unable to adapt to servers of different sizes and having poor heat dissipation effects has been solved. This has enabled adaptation to servers of different sizes and improved stability, ensuring the normal operation and protection of servers in high-temperature environments.
Patent Information
- Application Number
- CN202520331440.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing server protection devices are not compatible with servers of different sizes and have poor heat dissipation, affecting the stability and usability of the servers.
A server protection device is designed, comprising a housing, a support component, a placement component, a heat dissipation component, and a cover component. The support component is adjustable in installation position, the placement component can limit and fix the server, the heat dissipation component effectively dissipates heat through a cooling fan and a filter, and the cover component can protect the server.
It achieves compatibility with servers of different sizes, improves practicality and stability, ensures normal operation of servers in high-temperature environments, prevents dust from entering, and protects servers from vibration damage.
Smart Images

Figure CN223798559U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of server protection, and in particular to a server protection device. Background Technology
[0002] Servers provide computing or application services to other clients on a network. They are common and widely used electronic devices. Servers are complex, precise, and expensive, so they need to be protected when placed alone. Because servers have poor shock resistance, they can be damaged by external impacts, which can seriously affect their normal operation. In addition, servers generate high temperatures during use, and excessively high temperatures can also affect their normal operation. Existing technology publication number CN218103995U discloses a server mounting rack structure, including a base, two gantry frames symmetrically fixed between the front and rear sides of the upper end of the base, multiple brackets equidistantly arranged between the two gantry frames, and pull-out slides installed on the left and right ends of the multiple brackets. The two gantry frames are hollow internally. An air supply mechanism is provided between the base and the two gantry frames. This invention, by incorporating a fan housing, connecting pipe, silent fan, and air supply blades between the base and the two gantry frames, and by installing inclined air seats and air supply pipes on the two gantry frames, allows for individual air supply and heat dissipation for each server on the mounting rack, reducing heat accumulation between servers and thus improving the heat dissipation effect of the server mounting rack. However, in practical use, the distance between the partitions used to place the servers cannot be adjusted, making it unsuitable for computer servers of different sizes and reducing its practicality. Utility Model Content
[0003] To address the aforementioned technical problems, this utility model provides a server protection device that is adaptable to servers of different sizes, improves practicality, enhances heat dissipation, and ensures stability during use.
[0004] This utility model discloses a server protection device, comprising a housing, multiple legs, a support component, a placement component, a heat dissipation component, and a cover component. Multiple legs are installed at the bottom of the housing, the support component is installed inside the housing, the placement component is installed on top of the support component, the heat dissipation component is installed inside the housing, and the cover component is installed at the front end of the housing. The placement component can limit and fix the server, while the support component can be adjusted to fit servers of different sizes, improving practicality. The heat dissipation component facilitates heat dissipation from the inside of the housing, transferring heat generated by electronic components to the outside of the housing to ensure stability during use. The cover component provides protection to the front of the housing.
[0005] Preferably, the support components include two cylinders, two vertical rods, multiple sets of sliding sleeves, multiple sets of lifting sleeves, multiple sets of locking screws, and multiple support plates. The two cylinders are installed at the rear left and right ends inside the enclosure, and the two vertical rods are installed at the front left and right sides inside the enclosure. The sliding sleeves are slidably installed on the outer wall of the cylinders, and the lifting sleeves are slidably installed on the vertical rods. Limit holes are opened at the front ends of the vertical rods, and locking screws are screwed onto the lifting sleeves. The rear left and right sides of the support plates are fixedly connected to the sliding sleeves, and the front left and right sides of the support plates are connected to the lifting sleeves. Pushing the support plates causes the sliding sleeves and lifting sleeves to slide on the cylinders and vertical rods respectively, adjusting the distance between the support plates. Tightening the locking screws limits the lifting sleeves, adapting to servers of different sizes and improving practicality.
[0006] Preferably, the placement assembly includes multiple placement plates, multiple sets of sliding rods, multiple sets of sliders, multiple sets of fixing plates, multiple sets of limiting frames, and buffer components. The placement plates are located above the support plates, and sliding grooves are symmetrically opened on the left and right sides of the placement plates. The sliding rods are installed in the sliding grooves, and the sliders are slidably installed on the outer wall of the sliding rods and in the sliding grooves. A limiting frame is installed on the top of the slider, and a fixing plate is installed on the top of the slider. The server is placed on top of the placement plate to support the server, and the slider is pushed to slide on the outer wall of the sliding rod. The distance between the two fixing plates is adjusted, and the limiting frame is tightened to fix the slider, so that the fixing plate limits the server and ensures stability.
[0007] Preferably, the buffer component includes multiple sets of damping rods and multiple sets of springs. Multiple damping rods are respectively installed on the top of the support plate, with the top of the damping rod connected to the bottom of the placement plate. Springs are fitted onto the outside of the damping rods, with the top of the spring connected to the bottom of the placement plate and the bottom of the spring connected to the top of the support plate. The damping rods and springs absorb vibrations and prevent the server body from shaking, thereby avoiding damage to the server body. The damping rods and springs protect the server body, preventing rigid contact that could damage it and improving the stability of the server body.
[0008] Preferably, the heat dissipation assembly includes two air inlets, two filters, two air inlet grilles, an exhaust box, and a cooling fan. Heat dissipation chambers are formed inside the left and right side walls of the enclosure. Multiple heat dissipation slots communicating with the heat dissipation chambers are formed on the left and right sides of the inner wall of the enclosure. The two air inlets are installed on the lower side walls of the left and right sides of the enclosure. Filters are installed inside the air inlets, and air inlet grilles are detachably installed on the outside of the air inlets. The exhaust box is installed at the top of the enclosure, and heat dissipation holes are formed on its outer wall. The cooling fan is installed on the top of the enclosure inside the exhaust box and communicates with the heat dissipation chambers. The heat emitted by the server enters the heat dissipation chambers through the heat dissipation slots. The cooling fan is activated to draw air in, which enters the air inlets. The filters remove dust, and the air carries away heat from the heat in the heat dissipation chambers. The air is then discharged outwards through the heat dissipation holes in the exhaust box, transferring the heat generated by the electronic components to the outside of the enclosure and ensuring stability during use.
[0009] Preferably, the cover component includes a cover plate and a transparent observation window. The cover plate is hinged to the front end of the enclosure, and the transparent observation window is installed in the middle of the cover plate. After the server is installed, the cover plate is rotated to close the front end of the enclosure, protecting the server and reducing dust entry. The transparent observation window allows for easy and intuitive viewing of the server's operating indicator lights, facilitating inspection.
[0010] Preferably, it also includes multiple guide strips and open rubber pads. The multiple guide strips are installed in the heat dissipation cavity, and a conduit is installed on the rear wall of the housing. An open rubber pad is installed inside the conduit. The guide strips guide the flow of air, and the open rubber pads protect the conduit and reduce gaps.
[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: the placement component can limit and fix the server, while the support component can adjust the installation position to adapt to servers of different sizes, thus improving practicality; the heat dissipation component facilitates heat dissipation inside the cabinet and transfers the heat generated by electronic components to the outside of the cabinet, ensuring stability during use; and the cover component can protect the front of the cabinet. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of this utility model;
[0013] Figure 2 This is a schematic diagram of the isometric structure of this utility model;
[0014] Figure 3 This is a three-dimensional structural schematic diagram of the present invention;
[0015] Figure 4 This is a front cross-sectional structural diagram of the present invention;
[0016] Figure 5 This is a schematic diagram of the upper cross-sectional structure of this utility model;
[0017] The following are labels in the attached diagram: 1. Box body; 2. Support leg; 3. Cylinder; 4. Vertical rod; 5. Sliding sleeve; 6. Lifting sleeve; 7. Locking screw; 8. Support plate; 9. Placement plate; 10. Damping rod; 11. Spring; 12. Sliding rod; 13. Sliding block; 14. Fixing plate; 15. Limiting bracket; 16. Air inlet cylinder; 17. Filter screen; 18. Air inlet grille; 19. Guide strip; 20. Air outlet box; 21. Cooling fan; 22. Cover plate; 23. Transparent observation window; 24. Opening rubber gasket. Detailed Implementation
[0018] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.
[0019] like Figures 1 to 5 As shown, multiple support legs 2 are installed at the bottom of the box body 1. Two cylinders 3 are installed at the left and right ends of the rear side inside the box body 1. Two vertical rods 4 are installed on the left and right sides of the front side inside the box body 1. Sliding sleeves 5 are slidably installed on the outer wall of the cylinders 3. Lifting sleeves 6 are slidably installed on the vertical rods 4. Limiting holes are opened at the front end of the vertical rods 4. Locking screws 7 are screwed onto the lifting sleeves 6. The left and right sides of the rear end of the support plate 8 are fixedly connected to the sliding sleeves 5. The left and right sides of the front end of the support plate 8 are connected to the lifting sleeves 6. The placement plate 9 is located above the support plate 8. Sliding grooves are symmetrically opened on the left and right sides of the placement plate 9. Sliding rods 12 are installed in the sliding grooves. Sliding sliders 13 are slidably installed on the outer wall of the sliding rods 12 and in the sliding grooves. Limiting brackets 15 are installed on the top of the sliders 13. Fixing plates 14 are installed on the top of the sliders 13. Multiple damping rods 10 are respectively installed on the top of the support plate 8. The top of the damping rods 10 are connected to the bottom of the placement plate 9. The outer casing is fitted with a spring 11. The top of the spring 11 is connected to the bottom of the placement plate 9, and the bottom of the spring 11 is connected to the top of the support plate 8. The side walls at both ends of the casing 1 have heat dissipation cavities. The inner walls of the casing 1 have multiple heat dissipation slots that communicate with the heat dissipation cavities. Two air inlets 16 are installed on the lower side of the side walls at both ends of the casing 1. The air inlets 16 have filters 17 installed inside. The air inlets 16 have detachable air inlet grilles 18 installed outside. The air outlet box 20 is installed at the top of the casing 1. The outer wall of the air outlet box 20 has heat dissipation holes. The cooling fan 21 is installed at the top of the casing 1 inside the air outlet box 20. The cooling fan 21 communicates with the heat dissipation cavity. The cover plate 22 is hinged to the front end of the casing 1. The middle of the cover plate 22 has a transparent observation window 23. Multiple guide strips 19 are installed in the heat dissipation cavity. A conduit is installed on the rear wall of the casing 1. An open rubber gasket 24 is installed inside the conduit.
[0020] Pushing the support plate 8 causes the sliding sleeve 5 and lifting sleeve 6 to slide on the cylinder 3 and vertical rod 4 respectively, adjusting the distance between the support plates 8. Tightening the locking screw 7 limits the lifting sleeve 6, adapting to servers of different sizes and improving practicality. The server is placed on top of the placement plate 9 for support. Pushing the slider 13 to slide on the outer wall of the sliding rod 12 adjusts the distance between the two fixed plates 14. Tightening the limit bracket 15 fixes the slider 13, limiting the server with the fixed plates 14 to ensure stability. The damping rod 10 and spring 11 absorb vibration and prevent the server body from shaking, thus avoiding damage to the server body. The damping rod 10 and spring 11 protect the server body, preventing rigid contact between the server body and the server body. The server's stability is improved by preventing damage to the server itself. The heat emitted by the server enters the heat dissipation cavity through the heat sink. The cooling fan 21 is activated to draw air in, and the air enters the air intake 16. The filter 17 filters out dust. The air enters the heat dissipation cavity and carries away the heat. It is then discharged outward through the heat dissipation holes of the exhaust box 20, transferring the heat generated by the electronic components to the outside of the enclosure 1, ensuring stability during use. After the server is installed, the cover 22 is rotated to seal the front of the enclosure 1, protecting the server and reducing dust entry. The transparent observation window 23 allows for easy and intuitive viewing of the server's operating indicator lights, facilitating inspection. The guide strip 19 guides the airflow, and the open rubber gasket 24 protects the cable conduit and reduces gaps.
[0021] like Figures 1 to 5 As shown, this utility model discloses a server protection device. During operation, pushing the support plate 8 causes the sliding sleeve 5 and lifting sleeve 6 to slide on the cylinder 3 and vertical rod 4 respectively, adjusting the distance between the support plates 8. Tightening the locking screw 7 limits the lifting sleeve 6. This device is suitable for servers of different sizes. The server is placed on top of the placement plate 9 for support. Pushing the slider 13 to slide on the outer wall of the sliding rod 12 adjusts the distance between the two fixing plates 14. Tightening the limiting bracket 15 fixes the slider 13, thus limiting the server's position. After installation, the cover plate 22 is rotated to seal the front end of the enclosure 1, protecting the server and reducing dust entry. The damping rod 10 and spring 11 absorb vibration and prevent the server body from shaking, thus avoiding damage to the server body. The heat emitted by the server enters the heat dissipation cavity through the heat dissipation slot. The cooling fan 21 is turned on to draw air in, and the air enters the air intake 16. The filter screen 17 can filter the dust. The air enters the heat dissipation cavity and carries away the heat. It is discharged outward through the heat dissipation holes of the exhaust box 20, transferring the heat generated by the electronic components to the outside of the enclosure 1.
[0022] The damping rod 10 and cooling fan 21 of the server protection device of this utility model are commercially available. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0023] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A server protection apparatus characterized by comprising: The utility model provides a box, a plurality of support legs, support components, placing assembly, heat dissipation subassembly and cover installation spare, the bottom of box (1) is installed with a plurality of support legs (2), the inside of box (1) is installed with support components, the top of support components is installed with placing assembly, the inside of box (1) is installed with heat dissipation subassembly, the front end of box (1) is installed with cover installation spare.
2. The server protection device of claim 1, wherein, Support components include two cylinders (3), two vertical rods (4), multiple groups of sliding sleeves (5), multiple groups of lifting sleeves (6), multiple groups of locking screws (7) and multiple support plates (8), two cylinders (3) are installed at the left and right ends of the rear inside of box (1), two vertical rods (4) are installed at the left and right sides of the front inside of box (1), sliding sleeve (5) is slidingly installed on the outer wall of cylinder (3), lifting sleeve (6) is slidingly installed on vertical rod (4), a limiting hole is formed in the front end of vertical rod (4), locking screw (7) is screwed on lifting sleeve (6), the left and right sides of the rear end of support plate (8) are fixedly connected with sliding sleeve (5), and the left and right sides of the front end of support plate (8) are connected with lifting sleeve (6).
3. A server protection device as claimed in claim 2, characterized in that Placing assembly includes multiple placing plates (9), multiple groups of sliding rods (12), multiple groups of sliding blocks (13), multiple groups of fixed plates (14), multiple groups of limiting racks (15) and buffer components, placing plate (9) is above support plate (8), sliding grooves are symmetrically formed in the left and right sides of placing plate (9), sliding rod (12) is installed in the sliding groove, sliding block (13) is slidingly installed on the outer wall of sliding rod (12) and in the sliding groove, limiting rack (15) is installed on the top of sliding block (13), and fixed plate (14) is installed on the top of sliding block (13).
4. The server protection device of claim 3, wherein, Buffer components include multiple groups of damping rods (10) and multiple groups of springs (11), multiple damping rods (10) are respectively installed on the top of support plate (8), the top end of damping rod (10) is connected with the bottom of placing plate (9), spring (11) is sleeved outside damping rod (10), the top of spring (11) is connected with the bottom of placing plate (9), and the bottom of spring (11) is connected with the top of support plate (8).
5. The server protection device of claim 1, wherein, Heat dissipation subassembly includes two air inlet cylinders (16), two filter screens (17), two air inlet grilles (18), an air outlet box (20) and a heat dissipation fan (21), heat dissipation cavities are formed in the left and right end side walls inside of box (1), a plurality of heat dissipation grooves that are communicated with the heat dissipation cavities are formed in the left and right sides of the inner wall of box (1), two air inlet cylinders (16) are installed on the lower side of the left and right end side walls of box (1), filter screen (17) is installed in air inlet cylinder (16), air inlet grille (18) is detachably installed outside air inlet cylinder (16), air outlet box (20) is installed at the top of box (1), heat dissipation holes are formed in the outer wall of air outlet box (20), heat dissipation fan (21) is installed at the top of the box (1) inside air outlet box (20), and heat dissipation fan (21) is communicated with the heat dissipation cavities.
6. The server protection device of claim 1, wherein, Cover installation spare includes cover plate (22) and transparent observation window (23), cover plate (22) is hinged to the front end of box (1), and transparent observation window (23) is installed in the middle of cover plate (22).
7. The server protection device of claim 5, wherein, Also include a plurality of guide bars (19) and open rubber pad (24), a plurality of guide bars (19) are installed in the heat dissipation cavity, respectively, the rear wall of the box (1) is provided with a threading pipe, the threading pipe is provided with an open rubber pad (24).
Citation Information
Patent Citations
Server mounting rack structure
CN218103995U