A network storage server chassis

By designing adjustable mounting components, the problem of adapting network storage server chassis to different server sizes was solved, achieving stable mounting and convenient configuration.

CN224555899UActive Publication Date: 2026-07-24SHAANXI RADIO & TELEVISION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHAANXI RADIO & TELEVISION TECHNOLOGY CO LTD
Filing Date
2025-05-15
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

The existing network storage server chassis have non-adjustable internal space, which means they can only be matched with specific server sizes, resulting in poor versatility and inconvenient configuration.

Method used

A network storage server chassis was designed, which uses adjustable fixing components, including a support plate, a C-frame, an adjustment plate, a clamping plate, and screws. The clamping plate is adjusted by springs and fixed by screws to adapt to different server sizes.

Benefits of technology

It achieves stable mounting for servers of different sizes, improves the versatility and convenience of the chassis, has good adaptability, and is easy to disassemble and adjust.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to server case technical field proposes a kind of network storage server case, including case main body, the fixed assembly is equipped in case main body inside, the fixed assembly includes support plate, C-type frame, adjusting plate, first screw rod, clamping plate and second screw rod, the support plate is located in case main body inside, C-type frame is fixed with the support plate bottom surface symmetry, adjusting plate is symmetrically equipped below the support plate.The utility model supports server by the support plate in fixed assembly, by control adjusting plate moves out adjusting groove inside, can disassemble fixed assembly, by the movement adjustment of two clamping plates in rectangular groove inside, the distance between two clamping plates can be changed, the server of different width is adapted, by second screw rod drives platen to move up and down, the height of different server can be adapted, so that the server of different size can be installed and used, and the versatility is enhanced.
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Description

Technical Field

[0001] This utility model relates to the field of server chassis technology, specifically a network storage server chassis. Background Technology

[0002] A network storage server is a dedicated device or system that provides data storage and access services to multiple clients via a network connection, supporting cross-platform file sharing and centralized data management. A network storage server is a storage device connected via an RJ45 network interface or a dedicated network (such as Fibre Channel), providing centralized data storage and sharing services to multiple devices in a local area network (LAN) or wide area network (WAN). Through centralized and networked storage, network storage servers solve the core pain points of data dispersion and inconvenient sharing. Their flexibility and scalability make them a preferred solution for data management in modern homes and businesses.

[0003] Currently, network storage servers need to be installed inside a corresponding chassis when they are working. This can maintain the neat arrangement of the servers and protect them. However, the internal space of existing chassis is not adjustable, and the size of the servers they can match is relatively limited, resulting in poor versatility. Different chassis need to be equipped according to different servers, which is quite troublesome to configure.

[0004] Therefore, a network storage server chassis that can adapt to different server sizes is needed. Utility Model Content

[0005] To address the aforementioned issues, this invention proposes a network storage server chassis that uses adjustable mounting components to secure the server to different server sizes, thereby enhancing versatility.

[0006] To achieve the above objectives, the present invention proposes the following specific solutions: A network storage server chassis includes a chassis body. A fixing assembly is provided inside the chassis body. The fixing assembly includes a support plate, a C-frame, an adjusting plate, a first screw, a clamping plate, and a second screw. The support plate is located inside the chassis body. The C-frame is symmetrically fixed to the bottom surface of the support plate. Adjusting plates are symmetrically arranged below the support plate. Adjusting grooves are symmetrically arranged on the inner wall of the chassis body. One end of the adjusting plate is movably inserted into the inner side of the adjusting groove. A movable plate is fixed to one side wall of the adjusting plate. The movable plate passes through the C-frame. A first threaded hole is provided on the edge of the movable plate. A first screw is threadedly connected to the inner side of the first threaded hole. A rectangular groove is provided in the center of the top surface of the support plate. A fixing shaft is fixed to the inner wall of the rectangular groove. Clamping plates are symmetrically arranged inside the rectangular groove. The fixing shaft passes through the clamping plates. A support block is fixed to the top of the clamping plates. A second threaded hole is provided on the top surface of the support block. A second screw is threadedly connected to the inner side of the second threaded hole. The second screw passes through the second threaded hole. A pressure plate is fixed to the lower end of the second screw.

[0007] As a preferred technical solution of the network storage server chassis of this utility model, the lower end of the clamping plate is provided with a through hole, and the fixing shaft passes through the through hole.

[0008] As a preferred technical solution of the network storage server chassis of this utility model, a spring is fixed to one side wall of the lower end of the clamping plate. The spring is located outside the fixed shaft, and one end of the spring is fixed to the inner wall of the rectangular groove.

[0009] As a preferred technical solution of the network storage server chassis of this utility model, the top surface of the support plate is symmetrically provided with heat dissipation grooves, which are located on both sides of the rectangular groove.

[0010] As a preferred technical solution for a network storage server chassis according to this utility model, a pad is fixed on the bottom surface of the pressure plate, and the pad is made of flexible material.

[0011] As a preferred technical solution for a network storage server chassis according to this utility model, the chassis body has four casters fixed to the bottom edge.

[0012] As a preferred technical solution of the network storage server chassis of this utility model, a door is hinged to the outer wall of one side of the chassis body, and the door is made of transparent material.

[0013] As a preferred technical solution for a network storage server chassis according to this utility model, multiple adjustment slots and heat dissipation slots are provided.

[0014] Compared with the prior art, the present invention has the following beneficial effects: This invention uses two clamping plates in a fixing assembly to hold the server. Springs are connected to the side walls of each clamping plate. As the clamping plates move, the springs extend and retract, adjusting the distance between the clamping plates to accommodate servers of different widths. When the server is placed between the two clamping plates, the springs push the clamping plates from both sides to hold the server. Rotating the second screw in both directions moves the pressure plate up and down, allowing it to hold servers of different heights. Once the pressure plate holds the server, the clamping plates are fixed to the sides of the server, preventing movement and thus securing the server to the support plate. This effectively ensures the stability of the server during use. This solution can install and fix servers of different sizes, demonstrating excellent versatility.

[0015] This invention uses a support plate in a fixing assembly to support the server. The server is placed on the support plate, and two adjusting plates below the support plate are inserted into adjusting slots on the inner walls of both sides of the main chassis to support and fix the support plate. By turning the first screw, the upper end of the first screw is pressed against the bottom surface of the support plate, which restricts the movement of the adjusting plates and ensures the stability of the support plate. By controlling the movement of the first screw, the moving plate can be moved, thereby moving the adjusting plates. After the adjusting plates are moved out of the adjusting slots, the support plate can be removed from the inside of the main chassis, completing the disassembly of the fixing assembly. By inserting the adjusting plates into adjusting slots of different heights, the height of the fixing assembly can be changed, greatly facilitating the disassembly, assembly, and adjustment by the staff to adapt to the needs of different servers. Attached Figure Description

[0016] To better describe the technical solution of this utility model in detail, the present invention will be further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 This is a three-dimensional view of the overall structure provided by this utility model; Figure 2 This is a three-dimensional sectional view of the present invention; Figure 3 This is a perspective view of the fixing component of this utility model; Figure 4 This is a perspective view of the C-shaped frame of this utility model; Figure 5 This is a perspective view of the adjustment plate of this utility model; Figure 6 This utility model Figure 2 Enlarged view of point A in the middle; Figure 7 This utility model Figure 2 Enlarged view of point B in the middle; Figure 8 This utility model Figure 2Enlarged diagram of point C in the middle.

[0018] In the diagram: 1. Chassis body; 11. Casters; 12. Door; 13. Adjustment slot; 2. Fixing assembly; 21. Support plate; 211. Rectangular slot; 212. Fixed shaft; 213. Heat dissipation slot; 22. C-frame; 23. Adjustment plate; 231. Moving plate; 232. First threaded hole; 24. First screw; 25. Clamping plate; 251. Support block; 252. Second threaded hole; 253. Spring; 254. Through hole; 26. Second screw; 261. Pressure plate; 262. Pad. Detailed Implementation

[0019] 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 skilled in the art without creative effort are within the protection scope of the present utility model. Example 1

[0020] Please see Figure 1-8 As shown, this utility model provides the following technical solution: a network storage server chassis, including a chassis body 1, with four casters 11 fixed to the bottom edge of the chassis body 1, and a door 12 hinged to the outer wall of one side of the chassis body 1. The door 12 is made of transparent material. The casters 11 facilitate the movement of the chassis body 1, and the transparent door 12 facilitates observation of the interior of the chassis body 1 at any time.

[0021] Reference Figure 1 , Figure 2 , Figure 3 , Figure 6 and Figure 7As shown, specifically, a rectangular groove 211 is provided in the middle of the top surface of the support plate 21 for the movement of the clamping plate 25. A fixing shaft 212 is fixed to the inner wall of the rectangular groove 211 to maintain the stability of the clamping plate 25. The clamping plates 25 are symmetrically arranged inside the rectangular groove 211 to clamp the server equipment. The fixing shaft 212 passes through the clamping plate 25. A through hole 254 is provided at the lower end of the clamping plate 25 to allow the clamping plate 25 to move along the fixing shaft 212. The fixing shaft 212 passes through the through hole 254. A spring 253 is fixed to one side wall at the lower end of the clamping plate 25 to apply an elastic thrust to the clamping plate 25. The spring 253 is located at... On the outside of the fixed shaft 212, one end of the spring 253 is fixed to the inner wall of the rectangular groove 211. The top surface of the support plate 21 is symmetrically provided with heat dissipation grooves 213 to provide heat dissipation channels for the server equipment. The heat dissipation grooves 213 are located on both sides of the rectangular groove 211. In this solution, the distance between the two clamping plates 25 can be adjusted by moving the two clamping plates 25 inside the rectangular groove 211. After the server is placed between the two clamping plates 25, the two springs 253 push the two clamping plates 25 closer to the server from both sides to clamp and fix the server, thereby adapting to server equipment of different widths and improving adaptability. Example 2

[0022] In another embodiment of this solution, refer to Figure 1 , Figure 2 , Figure 3 and Figure 8 As shown, specifically, a support block 251 is fixed to the top of the clamping plate 25 to support the second screw 26. The top surface of the support block 251 is provided with a second threaded hole 252 for threaded connection of the second screw 26. The second screw 26 is threaded inside the second threaded hole 252, which can drive the pressure plate 261 to move up and down. The second screw 26 passes through the second threaded hole 252. The pressure plate 261 is fixed to the lower end of the second screw 26 to press and fix the server equipment. A pad 262 is fixed to the bottom surface of the pressure plate 261. The pad 262 is made of flexible material, which can increase friction and prevent damage to the server equipment. In this solution, after the two clamping plates 25 hold the server, the rotation of the second screw 26 drives the pressure plate 261 to move down, which can press the server and fix the server on the support plate 21. The pressure plate 261 can move up and down to adjust the height, thereby adapting to server equipment of different heights and installing and fixing server equipment of different sizes, with good versatility. Example 3

[0023] In another embodiment of this solution, refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7As shown, specifically, a fixing component 2 is provided inside the chassis body 1 for installing and fixing the server. The fixing component 2 includes a support plate 21, a C-shaped frame 22, an adjusting plate 23, a first screw 24, a clamping plate 25, and a second screw 26. The support plate 21 is located inside the chassis body 1 and can support the server. A C-shaped frame 22 is symmetrically fixed to the bottom surface of the support plate 21 for connecting a movable plate 231 and preventing the movable plate 231 from moving downward. An adjusting plate 23 is symmetrically provided below the support plate 21 to adjust the height of the fixing component 2 and to allow for the removal of the fixing component 2. An adjusting groove 13 is symmetrically provided on the inner wall of the chassis body 1 for adjusting the height of the fixing component 2. Multiple adjusting grooves 13 and heat dissipation grooves 213 are provided. One end of the adjusting plate 23 is movably inserted into the inner side of the adjusting groove 13, and a movable plate 25 is fixed to one side wall of the adjusting plate 23. The movable plate 231 is used to move the adjusting plate 23. The movable plate 231 passes through the C-shaped frame 22. The side of the movable plate 231 is provided with a first threaded hole 232 for connecting the first screw 24. The first screw 24 is threadedly connected to the inside of the first threaded hole 232. The upper end of the first screw 24 presses against the bottom surface of the support plate 21, which can restrict the movement of the movable plate 231. In this solution, by controlling the movement of the first screw 24, the first screw 24 can drive the movable plate 231 to move. The movable plate 231 drives the adjusting plate 23 to move out of the inner side of the adjusting groove 13, so that the support plate 21 can be removed from the inside of the main body 1 of the chassis, and the fixing component 2 can be disassembled. Furthermore, by controlling the adjusting plate 23 to be inserted into the inner side of the adjusting groove 13 at different heights, the height of the fixing component 2 can be changed, which makes it more convenient for the staff to adjust it as needed and enhances the adjustability.

[0024] The working principle and usage process of this utility model: When in use, if not many fixing components 2 are needed, the two first screws 24 can be grasped and moved towards each other, causing the two moving plates 231 to move closer to each other, thereby moving the adjusting plates 23 on both sides out of the adjusting groove 13. Then the support plate 21 can be removed from the inside of the chassis body 1, and the unnecessary fixing components 2 can be removed. The adjusting plate 23 can also be controlled to be inserted into the adjusting groove 13 at different heights, thereby adjusting the height of the fixing components 2. The required height can be adjusted according to different needs. After the adjusting plate 23 is inserted into the adjusting groove 13, the first screw 24 is turned so that the upper end of the first screw 24 abuts against the bottom surface of the support plate 21, thereby restricting the movement of the moving plate 231, thereby restricting the movement of the adjusting plate 23 and ensuring the stability of the support plate 21. When installing the server, separate the two clamping plates 25 to the sides by a certain distance, place the server on the support plate 21 between the two clamping plates 25, and under the pushing force applied by the two springs 253 from both sides, the two clamping plates 25 move towards each other, clamping the server from both sides. Then rotate the second screw 26, which drives the pressure plate 261 to move down, so that the pad 262 contacts the top surface of the server. The pressure plate 261 presses firmly on the top surface of the server, thus fixing the server and completing the installation process.

[0025] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model 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 this utility model should be included within the protection scope of this utility model.

Claims

1. A network storage server chassis, comprising a chassis body (1), characterized in that: The main body of the chassis (1) is provided with a fixing component (2) inside. The fixing component (2) includes a support plate (21), a C-shaped frame (22), an adjusting plate (23), a first screw (24), a clamping plate (25), and a second screw (26). The support plate (21) is located inside the main body of the chassis (1). The bottom surface of the support plate (21) is symmetrically fixed with the C-shaped frame (22). The adjusting plate (23) is symmetrically arranged below the support plate (21). The inner wall of the main body of the chassis (1) is symmetrically provided with adjusting grooves (13). One end of the adjusting plate (23) is movably inserted into the inner side of the adjusting groove (13). A movable plate (231) is fixed on one side wall of the adjusting plate (23). The movable plate (231) passes through the C-shaped frame (22). The movable plate (231) is located on the side wall of the adjusting plate (23). The support plate (21) is provided with a first threaded hole (232), and a first screw (24) is threadedly connected to the inner side of the first threaded hole (232). A rectangular groove (211) is provided in the middle of the top surface of the support plate (21). A fixing shaft (212) is fixed to the inner wall of the rectangular groove (211). A clamping plate (25) is symmetrically provided inside the rectangular groove (211). The fixing shaft (212) passes through the clamping plate (25). A support block (251) is fixed to the top of the clamping plate (25). A second threaded hole (252) is provided on the top surface of the support block (251). A second screw (26) is threadedly connected to the inner side of the second threaded hole (252). The second screw (26) passes through the second threaded hole (252). A pressure plate (261) is fixed to the lower end of the second screw (26).

2. The network storage server chassis according to claim 1, characterized in that: The lower end of the clamping plate (25) is provided with a through hole (254), and the fixed shaft (212) passes through the through hole (254).

3. A network storage server chassis according to claim 2, characterized in that: A spring (253) is fixed to one side wall at the lower end of the clamping plate (25). The spring (253) is located outside the fixed shaft (212), and one end of the spring (253) is fixed to the inner wall of the rectangular groove (211).

4. A network storage server chassis according to claim 3, characterized in that: The top surface of the support plate (21) is symmetrically provided with heat dissipation grooves (213), which are located on both sides of the rectangular groove (211).

5. A network storage server chassis according to claim 4, characterized in that: A pad (262) is fixed to the bottom surface of the pressure plate (261), and the pad (262) is made of flexible material.

6. A network storage server chassis according to claim 5, characterized in that: The bottom edge of the chassis body (1) is fixed with casters (11), and there are four casters (11).

7. A network storage server chassis according to claim 6, characterized in that: A door (12) is hinged to one side of the outer wall of the main body (1) of the chassis, and the door (12) is made of transparent material.

8. A network storage server chassis according to claim 7, characterized in that: The adjustment slot (13) and heat dissipation slot (213) are each provided with multiple slots.