Damping type server case

By installing shock-absorbing components between the outer casing and inner frame of the server chassis, the problem of easy damage to components during transportation was solved, thereby improving stability and heat dissipation and ventilation.

CN224081998UActive Publication Date: 2026-04-03DEEP CUSTOMIZATION TECHNOLOGY (CHENGDU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing server chassis are susceptible to impact damage to motherboard components during transportation or movement, affecting operational stability.

Method used

A gap is set between the outer casing and the inner frame, and shock absorbers are installed on the upper and lower sides, including bottom and top shock absorbers. The shock absorber structure, consisting of springs and mounting keels, absorbs vibrations to protect the components inside the inner frame.

Benefits of technology

It effectively reduces the possibility of component damage, improves the stability of server use, and enhances heat dissipation and ventilation through gap design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a damping type server case which comprises an outer case body and an inner frame body arranged in the outer case body, a gap is formed between the inner frame body and the outer case body, the inner frame body is defined by an inner bottom plate, an inner right side frame and an inner rear side frame, the inner bottom plate and the outer case body are supported through a plurality of sets of bottom damping pieces, and the bottom damping pieces are arranged in the outer case body. An L-shaped inner support is further arranged on the side, away from the inner right side frame, of the inner bottom plate, one end of the inner support is connected with the inner bottom plate, the other end of the inner support is connected with the top of the inner rear side frame, and the inner right side frame, the top of the inner support and the outer box body are supported through multiple sets of top damping pieces. The gap is formed between the outer box body and the inner frame body, and the damping pieces are arranged on the upper side and the lower side of the outer box body to conduct damping protection on the components on the inner frame body, so that the possibility that the components are damaged is reduced, and the stability of the server in the using process is guaranteed.
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Description

Technical Field

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

[0002] With the development of computer technology, user demands for servers are becoming increasingly diverse. The server chassis is a crucial structural component, protecting the components inside, such as the processor, memory, hard drive, and remote IPMI management modules mounted on the motherboard. Currently, server chassis layouts are trending towards standardization, with modules secured to the chassis using rivets or riveting. However, during transportation or movement, the chassis is highly susceptible to damage from impacts, which can severely compromise the components on the motherboard and affect operational stability. Utility Model Content

[0003] To solve the above-mentioned technical problems, this utility model provides a shock-absorbing server chassis, which provides shock-absorbing protection for the components on the inner frame by setting a gap between the outer chassis and the inner frame and setting shock-absorbing components on the upper and lower sides, so as to reduce the possibility of damage to the components and ensure the stability of the server during use.

[0004] This utility model provides a shock-absorbing server chassis to solve the above-mentioned technical problems, including an outer chassis and an inner frame disposed inside the outer chassis. There is a gap between the inner frame and the outer chassis. The inner frame is formed by an inner bottom plate, an inner right side frame, and an inner rear side frame. The inner bottom plate is supported by multiple sets of bottom shock absorbers between itself and the outer chassis. An L-shaped inner bracket is also provided on the side of the inner bottom plate away from the inner right side frame. One end of the inner bracket is connected to the inner bottom plate, and the other end is connected to the top of the inner rear side frame. The tops of the inner right side frame and the inner bracket are supported by multiple sets of top shock absorbers between themselves and the outer chassis.

[0005] Furthermore, the top inner side of the outer casing is connected to mounting plates extending to the left and right sides of the outer casing, one side of the top shock absorber is fixed to the mounting plate, and the other side is fixed to the top of the inner right side frame and / or the inner support.

[0006] Furthermore, the inner bottom plate is also provided with a support plate on one side connected to the side of the inner rear side frame away from the inner right side frame. The width of the support plate is smaller than the width of the inner right side frame, and the outer side of the long side of the inner support is formed with a limiting flange.

[0007] Furthermore, the shock absorber includes two sets of spaced-apart mounting joists, with a spring spirally installed between the two sets of mounting joists.

[0008] Furthermore, a reinforcing bracket extending to the left and right sides of the inner frame is connected between the inner right side frame and the inner support, and the inner right side frame is provided with an outwardly extending support flange for connecting with the reinforcing bracket.

[0009] Furthermore, the front and rear side panels of the outer casing are provided with ventilation structures and filters.

[0010] Furthermore, the inner bottom plate, the inner right side frame, and the inner rear side frame are integrally formed.

[0011] Furthermore, a handle is provided on the front side panel of the inner frame.

[0012] The beneficial effects of this utility model are as follows: The outer casing protects the entire server. The gap between the outer casing and the inner frame facilitates shock absorption when the shock-absorbing components deform and move, providing a range of motion for shock absorption while also improving heat dissipation and ventilation. The inner frame is formed by an inner bottom plate, an inner right side frame, and an inner rear side frame. The top and left sides of the inner frame are open, facilitating the installation of the motherboard and other components. This design also allows for lightweight construction of the inner frame, reducing the overall weight of the chassis. The L-shaped inner bracket on the inner bottom plate, located away from the inner right side frame, supports the top shock-absorbing components and also contributes to a stable frame structure for the inner frame. The top of the inner right frame and inner support is supported by multiple sets of top shock absorbers, and the inner bottom plate is supported by multiple sets of bottom shock absorbers. In this configuration, the inner frame is supported within the outer frame by these shock absorbers. Upon impact, the shock absorbers absorb vibrations, thus protecting the components on the motherboard within the inner frame. In summary, this invention provides a stable server chassis structure. Furthermore, by creating a gap between the outer and inner frames and installing shock absorbers on the top and bottom sides, the components on the inner frame are protected against vibration, reducing the likelihood of damage and ensuring server stability during operation.

[0013] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0015] Figure 2 This is a three-dimensional structural diagram of the inner frame of this utility model;

[0016] Figure 3 This is a schematic diagram of the bottom shock absorber of this utility model;

[0017] Figure 4 This is a schematic diagram of the structure of the shock absorber of this utility model.

[0018] In the attached diagram: 1-Outer casing, 11-Ventilation structure, 12-Filter element, 13-Handle, 2-Inner frame, 21-Inner bottom plate, 22-Inner right side frame, 221-Support flange, 23-Inner rear side frame, 24-Support plate, 3-Bottom shock absorber, 4-Inner bracket, 41-Limit flange, 5-Top shock absorber, 51-Mounting keel, 52-Spring, 6-Mounting plate, 7-Reinforcing bracket. Detailed Implementation

[0019] Referring to the accompanying drawings, the specific embodiments of this utility model will be described in detail.

[0020] Reference Figures 1 to 4 This utility model provides a shock-absorbing server chassis, including an outer casing 1 and an inner frame 2 disposed inside the outer casing 1. The outer casing 1 is used to protect the entire server. A gap exists between the inner frame 2 and the outer casing 1 to facilitate the movement of the inner frame 2 caused by the deformation of the shock-absorbing components, providing shock absorption and improving heat dissipation and ventilation. Furthermore, the front and rear side panels of the outer casing 1 are provided with ventilation structures 11 and filters 12. The ventilation structures 11 can be ventilation holes to improve the server's heat dissipation performance; the filters 12 can be filter screens to filter dust from the air. Furthermore, the front side panel of the outer casing 1 is provided with a handle 13 for easy pulling of the server.

[0021] The inner frame 2 is formed by an inner bottom plate 21, an inner right side frame 22, and an inner rear side frame 23. Preferably, the inner bottom plate 21, the inner right side frame 22, and the inner rear side frame 23 are integrally formed to improve the structural strength of the inner frame 2.

[0022] The top and left side of the inner frame 2 are open, which facilitates the installation of the motherboard and other components into the inner frame 2, making installation easier and allowing for a lightweight design of the inner frame 2, reducing the overall weight of the chassis. The inner right side frame 22 and the inner rear side frame 23 both have multiple openings to make room for or install components, and these openings can be made as needed.

[0023] An L-shaped inner support 4 is provided on the side of the inner bottom plate 21 away from the inner right side frame 22. One end of the inner support 4 is connected to the inner bottom plate 21, and the other end is connected to the top of the inner rear side frame 23. It is used to support the top shock absorber 5 and to form a stable frame structure for the inner frame 2, ensuring the stability of the inner frame 2. Furthermore, a support plate 24 is also provided on the inner bottom plate 21, with one side connected to the side of the inner rear side frame 23 away from the inner right side frame 22. In this case, the support plate 24 is integrally formed with the inner bottom plate 21 and the inner rear side frame 23. The width of the support plate 24 is smaller than the width of the inner right side frame 22, and a limiting flange 41 is formed on the outer side of the long side of the inner support 4. In this manner, the limiting flange 41 can position the inner bracket 4 to ensure installation accuracy. The support plate 24 supports one side of the long side of the L-shaped bracket, and the width of the support plate 24 is smaller than the width of the inner right side frame 22, creating a larger opening between the inner frame and the outer housing 1, facilitating the installation and maintenance of some components mounted on the outer housing 1. Furthermore, a reinforcing bracket 7 extending to the left and right sides of the inner frame 2 is connected between the inner right side frame 22 and the inner bracket 4. The inner right side frame 22 has an outwardly extending support flange 221 for connecting to the reinforcing bracket 7. After the components within the inner frame are installed, the two ends of the reinforcing bracket 7 are fixed to the inner right side frame 22 and the inner bracket 4 respectively, which can compress some components within the frame and improve the structural stability of the inner frame.

[0024] The inner bottom plate 21 and the outer box 1 are supported by multiple sets of bottom shock absorbers 3. Preferably, there are six sets of bottom shock absorbers 3, four of which are arranged at the four corners of the inner bottom plate 21, and the remaining two are arranged in the middle of the inner bottom plate 21. In this way, the inner frame 2 can be stably supported and the vibration can be absorbed evenly to ensure the stability of the inner frame 2.

[0025] The tops of the inner right side frame 22 and the inner support 4 are supported by multiple sets of top shock absorbers 5 between themselves and the outer housing 1. Preferably, there are four sets of top shock absorbers 5, two sets of which are spaced apart between the inner right side frame 22 and the outer housing 1, and the other two sets are spaced apart between the top of the inner support 4 and the outer housing 1, and are symmetrically arranged with the two sets of top shock absorbers 5 on the inner right side frame 22. Further, the inner top of the outer housing 1 is connected to mounting plates 6 extending to the left and right sides of the outer housing 1. There are two sets of mounting plates 6. One side of the top shock absorber 5 is fixed to the mounting plate 6, and the other side is fixed to the top of the inner right side frame 22 and / or the inner support 4. The mounting plate 6 is detachable from the outer housing 1, which facilitates housing assembly. At this time, the mounting plate 6 can support the top shock absorber 5, reduce the pressure on the top plate of the outer housing 1, and can also be used to install components that are not easily damaged, thus supporting the components of the server.

[0026] The top shock absorber 5 and the bottom shock absorber 3 can adopt the same structure. In this embodiment, the shock absorber includes two sets of spaced-apart mounting keels 51. A spring 52 is spirally installed between the two sets of mounting keels 51. The two sets of mounting keels 51 can support and install the spiral spring 52, and can also be used to connect with the outer housing 1 and / or the inner frame 2. At this time, since the spring 52 spirally passes between the two mounting keels 51, when vibrating up and down, the spiral section of the spring 52 is displaced outward or inward and deformed. When vibrating left and right, the two mounting keels 51 can be staggered and the spring 52 deforms along the axial direction of the mounting keel 51, which can absorb vibrations in multiple directions.

[0027] In this way, shock absorbers are installed between the outer casing 1 and the inner frame 2 and on the upper and lower sides to protect the components on the inner frame 2 from shock. When subjected to impact, the shock absorbers can absorb the vibration, thereby protecting the components on the motherboard inside the inner frame 2, reducing the possibility of damage to the components and ensuring the stability of the server during use.

[0028] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0029] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present 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 the present utility model should be included within the protection scope of the present utility model.

Claims

1. A shock-absorbing server case, characterized by, The utility model provides a kind of sound insulation box, including outer box (1) and be located in the inner frame (2) of the outer box (1) inside, the inner frame (2) and the outer box (1) have gap between, the inner frame (2) is enclosed by inner bottom plate (21), inner right side frame (22), inner rear side frame (23), the inner bottom plate (21) and the outer box (1) between by multiple groups of bottom shock absorber (3) support, The inner bottom plate (21) is further provided with an L-shaped inner support (4) away from the inner right side frame (22) on one side, one end of the inner support (4) is connected with the inner bottom plate (21), the other end is connected with the top of the inner rear side frame (23), the top of the inner right side frame (22) and the inner support (4) is supported by multiple groups of top shock absorber (5) between the outer box (1).

2. The shock-mounted server chassis of claim 1, wherein, The top of the outer box (1) is connected with the mounting plate (6) extending to the left and right sides of the outer box (1), one side of the top shock absorber (5) is fixed with the mounting plate (6), the other side is fixed with the top of the inner right side frame (22) and / or the inner support (4).

3. The shock-mounted server chassis of claim 1, wherein, The inner bottom plate (21) is further provided with a support plate (24) connected with the inner rear side frame (23) away from the inner right side frame (22) on one side, the width of the support plate (24) is less than the width of the inner right side frame (22), the outer side of the long edge segment of the inner support (4) is formed with a limiting flange (41).

4. The shock-mounted server chassis of claim 1, wherein, The shock absorber includes two groups of installation keels (51) arranged at intervals, and a spring (52) is spirally penetrated and installed between the two groups of installation keels (51).

5. The shock-mounted server chassis of claim 1, wherein, The inner right side frame (22) and the inner support (4) are connected with the reinforcing support (7) extending to the left and right sides of the inner frame (2), and the inner right side frame (22) is provided with an outwardly extending support flange (221) for connecting with the reinforcing support (7).

6. The shock-mounted server chassis of claim 1, wherein, The front and rear side plates of the outer box (1) are provided with ventilation structure (11) and filter (12).

7. The shock-mounted server chassis of claim 1, wherein, The inner bottom plate (21), the inner right side frame (22) and the inner rear side frame (23) are integrally formed.

8. The shock-mounted server chassis of claim 1, wherein, The front side plate of the outer box (1) is provided with a handle (13).