Server protection device
By designing a server protection device with an inner liner and multi-layered buffer components, the problem of server component damage during transportation was solved, achieving better shock resistance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-04-03
AI Technical Summary
Existing server protection devices lack shock absorption capabilities during transportation, making internal server components susceptible to damage.
A server protection device is designed, which includes an inner liner and a buffer assembly. The inner liner is matched with the server and is equipped with a buffer assembly. The buffer assembly absorbs vibration and impact through a multi-layer elastic structure, including first and second buffer assemblies, and multi-level buffering is achieved by using multiple springs and dampers.
It effectively enhances the protection of the server, absorbing the shock and vibration through multi-layer buffer components, preventing damage to internal components and improving protection during transportation.
Smart Images

Figure CN224081995U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of server technology, and in particular relates to a server protection device. Background Technology
[0002] A server is a specific IT device that provides computing power and runs software applications in a network environment; it is an important network accessory. During production and transportation, servers require protective devices to prevent damage.
[0003] Research revealed that current server protection devices on the market still have some shortcomings and deficiencies: during transportation, they are easily damaged by bumps and vibrations, resulting in damage to delicate internal components; they lack shock absorption capabilities and offer relatively weak protection. Therefore, there is an urgent need to improve existing server protection devices and provide a new type of server protection solution. Utility Model Content
[0004] The purpose of this utility model is to address the shortcomings of existing technologies by providing a server protection device that is reasonably designed, simple in structure, has shock absorption and buffering functions, and provides better protection, thereby solving the problems existing in the prior art.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A server protection device includes an outer shell, an inner shell slidably mounted on the top inner side of the outer shell, a sealing cap connected to the top of the inner shell by bolts, a first buffer assembly provided on the inner side of the inner shell, a first crossbar symmetrically fixed at the bottom end of the inner shell, two first sliding plates and a first spring slidably mounted on the outer side of the first crossbar, the two ends of the first spring being fixedly connected to the two first sliding plates respectively, and a second buffer assembly provided at the inner bottom of the outer shell and directly below the inner shell.
[0007] In a preferred embodiment, the first buffer assembly includes an inner liner, a placement groove, and a cover plate. The inner liner is bonded and fixed to the inner side of the inner shell. The placement groove is provided inside the inner liner. The cover plate is placed on top of the inner liner and can be detached from the inner shell.
[0008] In a preferred embodiment, both the inner liner and the cover are made of elastic foam, and the shape and size of the placement slot are adapted to the corresponding server.
[0009] In a preferred embodiment, the second buffer assembly includes a fixed plate, a second crossbar, a second sliding plate, a second spring, and a connecting rod. The two fixed plates are respectively fixedly located at the inner bottom of the outer shell and are arranged symmetrically from left to right. The two fixed plates are symmetrically fixed front to back between the two fixed plates. The outer side of the second crossbar is slidably fitted with two second sliding plates and a second spring. The two ends of the second spring are respectively fixedly connected to the two second sliding plates. The front and rear ends of the fixed plate and the second sliding plate are hinged with connecting rods.
[0010] In a preferred embodiment, the fixed plate and the second sliding plate on the same side are symmetrically arranged about the first sliding plate, and the other ends of the connecting rods hinged at the ends of both are hinged to the same point of the first sliding plate, and the first sliding plate and the second sliding plate are linked together.
[0011] In a preferred embodiment, a damper is fixedly installed between the middle of the two second slide plates, and a third spring is provided on the outside of the damper, with the two ends of the third spring fixedly connected to the two second slide plates respectively.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] In the solution of this utility model:
[0014] The inner shell has a placement slot adapted to the server, facilitating server placement. A cover plate is placed on top of the inner shell to softly enclose the server, preventing damage from collisions between the server and the inner shell. During transport and vibrations, the inner shell retracts towards the outer shell. At this time, a connecting rod pushes two first sliding plates outside the first crossbar to slide and move closer together. The first spring provides initial cushioning of the impact. Furthermore, it pushes two second sliding plates outside the second crossbar to slide and move closer together. At this time, the second spring, damper, and third spring further absorb and cushion the impact. Compared with existing technologies, this device has superior cushioning and shock absorption capabilities, effectively enhancing the protection of the server and providing better protection. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. The drawings are described as follows:
[0016] Figure 1 This is a three-dimensional front view structural diagram of the present invention;
[0017] Figure 2 This is a schematic diagram of the overall structure of the first buffer component of this utility model;
[0018] Figure 3This is a schematic diagram of the structural structure of this utility model from a bottom view.
[0019] Figure 4 This is a top view of the overall structure of the second buffer component of this utility model;
[0020] Figure 5 This is a top view of the first sliding plate and connecting rod of this utility model.
[0021] In the picture:
[0022] 1. Outer shell; 2. Inner shell; 3. Sealing cover; 4. First buffer assembly; 41. Inner liner; 42. Placement slot; 43. Cover plate; 5. First crossbar; 6. First sliding plate; 7. First spring; 8. Second buffer assembly; 81. Fixing plate; 82. Second crossbar; 83. Second sliding plate; 84. Second spring; 85. Connecting rod; 9. Damper; 10. Third spring. Detailed Implementation
[0023] The embodiments described below are merely some embodiments of the present invention and do not represent all embodiments consistent with the present invention. Exemplary embodiments will now be described with reference to the accompanying drawings:
[0024] like Figure 1-5 As shown, the server protection device of this utility model includes an outer shell 1, an inner shell 2 slidably installed on the top inner side of the outer shell 1, a sealing cover 3 connected to the top of the inner shell 2 by bolts, a first buffer assembly 4 provided on the inner side of the inner shell 2, a first crossbar 5 symmetrically fixed at the bottom end of the inner shell 2, two first sliding plates 6 and a first spring 7 slidably sleeved on the outer side of the first crossbar 5, the two ends of the first spring 7 being fixedly connected to the two first sliding plates 6 respectively, and a second buffer assembly 8 provided at the inner bottom of the outer shell 1 and directly below the inner shell 2.
[0025] Based on the above structure, the first buffer assembly 4 includes an inner liner 41, a placement groove 42, and a cover plate 43. The inner liner 41 is bonded and fixed to the inner side of the inner shell 2. The placement groove 42 is opened inside the inner liner 41. The cover plate 43 is placed on the top of the inner liner 41. The cover plate 43 can be detached from the inner shell 2.
[0026] Based on the above structure, both the inner liner 41 and the cover plate 43 are made of elastic foam, and the shape and size of the placement slot 42 are adapted to the corresponding server.
[0027] In this embodiment, the inner liner 41 and the cover plate 43 can be used to softly wrap the server, which can prevent the server from being damaged due to collision with the inner shell 2.
[0028] Based on the above structure, the second buffer assembly 8 includes a fixed plate 81, a second crossbar 82, a second sliding plate 83, a second spring 84, and a connecting rod 85. The two fixed plates 81 are respectively fixed at the inner bottom of the outer shell 1 and are arranged symmetrically from left to right. The two fixed plates 81 are symmetrically fixed front and back between the two fixed plates 81. The outer side of the second crossbar 82 is slidably fitted with two second sliding plates 83 and a second spring 84. The two ends of the second spring 84 are respectively fixedly connected to the two second sliding plates 83. The front and rear ends of the fixed plate 81 and the second sliding plate 83 are hingedly installed with connecting rods 85.
[0029] Based on the above structure, the fixing plate 81 and the second sliding plate 83 on the same side are symmetrically arranged about the first sliding plate 6, and the other end of the connecting rod 85 at both ends is hinged to the same point of the first sliding plate 6, so the first sliding plate 6 and the second sliding plate 83 are linked together.
[0030] Based on the above structure, a damper 9 is fixedly installed between the middle of the two second slide plates 83, and a third spring 10 is provided on the outside of the damper 9. The two ends of the third spring 10 are fixedly connected to the two second slide plates 83 respectively.
[0031] In this embodiment, when vibration causes the inner shell 2 to move downward, the connecting rod 85 can push the two first sliding plates 6 and the two second sliding plates 83 to slide in a direction that moves closer to each other. The first spring 7, the second spring 84, the damper 9 and the third spring 10 can effectively absorb and buffer the impact force generated by the vibration, so that the device has a better buffer and shockproof function and a better protection effect for the server.
[0032] The working principle of this utility model is as follows:
[0033] When in use, first place the server into the placement slot 42 inside the inner liner 41, which is adapted to the shape and size of the server. Then place the cover plate 43 on top of the inner liner 41 and fix the sealing cover 3 to the top of the inner shell 2 with bolts. The server is softly wrapped by the elastic foam material of the inner liner 41 and the cover plate 43, which can prevent the server from being damaged by collision with the inner shell 2.
[0034] When vibration occurs during transportation, the inner shell 2 retracts towards the inner shell 1. At this time, under the action of the connecting rod 85, the two first sliding plates 6 can slide outside the first crossbar 5 and move closer to each other. The first spring 7 can initially buffer the impact force generated by the vibration. It can also push the two second sliding plates 83 to slide outside the second crossbar 82 and move closer to each other. At this time, the second spring 84, damper 9 and third spring 10 can be used to further absorb and buffer the impact force.
[0035] Compared with existing technologies, the device has a better buffer and shockproof function due to the arrangement of the first buffer component 4 and the second buffer component 8, which can effectively enhance the protection of the server and provide better protection.
[0036] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of protection of this utility model. Any equivalent changes, modifications, substitutions, and variations made by those skilled in the art based on the concept of this utility model and on the basis of existing technology through logical analysis, reasoning, or limited experiments shall be within the scope of protection defined by the claims.
Claims
1. A server protection device comprising an outer housing (1), characterized in that: The inner side of the top of the outer shell (1) is slidably provided with an inner shell (2), the top end of the inner shell (2) is connected with a sealing cover (3) through bolts, the inner side of the inner shell (2) is provided with a first buffer assembly (4), the bottom end of the inner shell (2) is symmetrically fixed with a first cross rod (5), the outer side of the first cross rod (5) is slidably provided with two first sliding plates (6) and a first spring (7), the two ends of the first spring (7) are respectively fixedly connected with the two first sliding plates (6), and the inner bottom of the outer shell (1) and directly below the inner shell (2) are provided with a second buffer assembly (8).
2. The server protection apparatus according to claim 1, wherein: The first buffer assembly (4) comprises an inner container (41), a placing groove (42) and a cover plate (43), the inner container (41) is adhesively fixed to the inner side of the inner shell (2), the inner container (41) is internally provided with the placing groove (42), and the cover plate (43) is placed above the inner container (41) and can be detached from the inner shell (2).
3. The server protection apparatus of claim 2, wherein: The inner container (41) and the cover plate (43) are both elastic foams, and the shape and size of the placing groove (42) are adapted to the corresponding server.
4. The server protection apparatus of claim 1, wherein: The second buffer assembly (8) comprises a fixed plate (81), a second cross rod (82), a second sliding plate (83), a second spring (84) and a connecting rod (85), the two fixed plates (81) are fixed to the inner bottom of the outer shell (1) and symmetrically arranged left and right, the second cross rod (82) is fixed between the two fixed plates (81) and symmetrically arranged front and back, the outer side of the second cross rod (82) is slidably provided with the two second sliding plates (83) and the second spring (84), the two ends of the second spring (84) are respectively fixedly connected with the two second sliding plates (83), and the front and back ends of the fixed plate (81) and the second sliding plate (83) are both hingedly installed with the connecting rod (85).
5. The server protection apparatus according to claim 4, wherein: The fixed plate (81) and the second sliding plate (83) on the same side are symmetrically arranged about the first sliding plate (6), and the other ends of the connecting rods (85) hingedly connected at the ends of the fixed plate (81) and the second sliding plate (83) are both hingedly connected to the same point of the first sliding plate (6), and the first sliding plate (6) is linked with the second sliding plate (83).
6. The server protection apparatus according to claim 5, wherein: The two second sliding plates (83) are fixedly installed with a damper (9) between the middle portions of the two second sliding plates (83), the outer side of the damper (9) is provided with a third spring (10), and the two ends of the third spring (10) are respectively fixedly connected with the two second sliding plates (83).