Cabinet and server system

By installing the limit bracket and slider mechanism at the rear of the cabinet, the problem of the chassis tail shaking during transportation by the bracket rail server system is solved, and the server is installed stably and the risk of part damage is reduced.

CN223024699UActive Publication Date: 2025-06-24LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202421520873.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-06-24
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

During transportation, the server system of the bracket rail is not fixed structure at the rear of the chassis, causing the chassis to shake, increasing the risk of parts damage.

Method used

A cabinet is designed, including a tail mounting strip and a limit bracket of the body. The limit bracket drives the relative movement of the slide through the first slider and the second slider connected to the movably, causing the first slider to move in the first direction, and connects with the server to eliminate the tolerance between the server and the tail of the cabinet.

Benefits of technology

Through the movable connection mechanism of the limit bracket, the stable connection between the server and the cabinet is achieved, reducing the risk of internal components caused by shaking the tail of the chassis during transportation, and adapting to server installation needs of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cabinet and a server system, and the cabinet comprises a body, the tail part of which is provided with a mounting strip; the limiting support is connected with the mounting strip, the limiting support is provided with a first sliding block and a second sliding block which are movably connected, and the first sliding block and the second sliding block are driven to move relatively so that the first sliding block can move in the first direction.
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Description

Technical Field

[0001] This application relates to the technical field of servers, and particularly to a cabinet and a server system. Background Art

[0002] In a server system using bracket-type guide rails, there is only a fixing structure provided at the front of the chassis, and no fixing structure is provided at the rear. At the same time, the length of the bracket-type guide rails is generally less than the length of the chassis. When the width of the assembled chassis is less than the distance between two opposite bracket-type guide rails, it will cause the rear of the chassis of the whole server to shake in the cabinet during transportation, thus posing a risk of damage to some parts. Summary of the Utility Model

[0003] The purpose of the embodiments of this application is to provide a cabinet and a server system.

[0004] To solve the above technical problems, the embodiments of this application provide the following technical solutions:

[0005] In the first aspect of this application, a cabinet is provided, including:

[0006] A body, the rear of the body has a mounting strip;

[0007] A limiting bracket, the limiting bracket is connected to the mounting strip, the limiting bracket has a first slider and a second slider connected movably, driving the relative movement of the first slider and the second slider to make the first slider move along a first direction.

[0008] In some modified embodiments of the first aspect of this application, the limiting bracket includes:

[0009] A frame body, the frame body is connected to the mounting strip, the second slider is connected to the frame body, the first slider and the second slider are connected by a wedge-shaped structure, so that the second slider moves relative to the frame body along a second direction, and drives the first slider to move along the first direction through the wedge-shaped structure.

[0010] In some embodiments, the mounting strip has a first surface and a second surface facing away from each other, the limiting bracket is connected to the first surface or the second surface, the first direction is parallel to the mounting strip, the second direction is perpendicular to the mounting strip, and the mounting strip is provided with a plurality of mounting square holes along a third direction, and the third direction is perpendicular to both the first direction and the second direction.

[0011] In some embodiments, the limiting bracket further includes:

[0012] A connecting member, which is connected to the second slider. The connecting member has a driving portion for moving the second slider relative to the frame along the second direction.

[0013] In some embodiments, the frame has a receiving space. When the second slider is in the first position relative to the frame, the first slider is located within the receiving space; when the second slider is in the second position relative to the frame, the first slider extends at least partially out of the receiving space in the first direction for abutting against the server.

[0014] In some embodiments, the limiting bracket is connected to the first surface, and the driving portion is located on the first side of the frame. By rotating the connecting member, the connecting member drives the second slider to move relative to the frame along the second direction, so that the second slider is switched between the first position and the second position.

[0015] In some embodiments, the limiting bracket is connected to the second surface, and the driving portion is located on the second side of the frame opposite to the first side. By driving the connecting member, the connecting member drives the second slider to move relative to the frame along the second direction.

[0016] In some embodiments, the driving portion can be abutted by the server and drive the second slider to move along the second direction, so that the second slider is switched from the first position to the second position;

[0017] The second slider and the frame are connected by a reset member, and the reset member can move the second slider from the second position to the first position.

[0018] In some embodiments, it further includes:

[0019] A limiting member, which is arranged on the first slider and can be adapted to a connecting portion arranged on the server, so that the limiting member can limit the server.

[0020] The second aspect of the present application provides a server system, including:

[0021] A server; and,

[0022] The cabinet described in the first aspect;

[0023] The tail of the main body of the cabinet has a mounting strip;

[0024] The cabinet has a limit bracket, the limit bracket is connected to the mounting strip, and the limit bracket has a first slider and a second slider that are movably connected. Driving the relative movement of the first slider and the second slider enables the first slider to move in a first direction and connect to the server. Description of the Drawings

[0025] By referring to the drawings and reading the detailed description below, the above and other objects, features, and advantages of the exemplary embodiments of the present application will become readily understood. In the drawings, several embodiments of the present application are shown in an exemplary rather than restrictive manner, with the same or corresponding reference numerals representing the same or corresponding parts, where:

[0026] Figure 1 Schematically shows a schematic structural diagram of an embodiment of the cabinet and server of the present application;

[0027] Figure 2 Schematically shows Figure 1 A partial enlarged view at C in;

[0028] Figure 3 Schematically shows a schematic structural diagram of another embodiment of the cabinet and server of the present application;

[0029] Figure 4 Schematically shows Figure 3 A partial enlarged view at D in;

[0030] Figure 5 Schematically shows a schematic diagram of the state of the frame and the first slider when the second slider in the cabinet of the present application is in the first position;

[0031] Figure 6 Schematically shows a schematic diagram of the state of the frame and the first slider when the second slider in the cabinet of the present application is in the second position;

[0032] Figure 7 Schematically shows a schematic structural diagram of the frame, the second slider, and the connecting member of the cabinet of the present application;

[0033] Figure 8 Schematically shows a schematic structural diagram of the first perspective of the frame of the cabinet of the present application;

[0034] Figure 9 Schematically shows a schematic structural diagram of the second perspective of the frame of the cabinet of the present application;

[0035] Figure 10 Schematically shows a schematic structural diagram of the first perspective of the second slider of the cabinet of the present application;

[0036] Figure 11Schematically shows a schematic diagram of the second perspective of the second slider of the cabinet of the present application;

[0037] Figure 12 Schematically shows a schematic diagram of the first perspective of the first slider of the cabinet of the present application;

[0038] Figure 13 Schematically shows a schematic diagram of the second perspective of the first slider of the cabinet of the present application.

[0039] Explanation of the reference numerals in the drawings:

[0040] 1. Body; 11. Mounting bar; 111. First surface; 112. Second surface; 113. Mounting square hole; 114. First sub-mounting bar; 115. Second sub-mounting bar; 12. Bracket; 2. Limit bracket; 21. First slider; 22. Second slider; 221. First surface; 23. Frame body; 231. Accommodating space; 232. Through hole; 233. Third limiting part; 24. Connecting piece; 241. Driving part; 3. Wedge structure; 31. First wedge piece; 311. First bearing part; 3111. First inclined surface; 312. First limiting part; 313. Second limiting part; 314. Second surface; 315. Chute; 316. Avoidance area; 32. Second wedge piece; 321. Sub-wedge piece; 3211. First side surface; 3212. Second side surface; 3213. Second inclined surface; 322. Sliding part; 4. Limiting component; 5. Server; A. First direction; B. Second direction; C. Third direction. Detailed implementation manners

[0041] Hereinafter, exemplary embodiments of the present disclosure will be described in more detail with reference to the drawings. Although the exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided so that the present disclosure can be more thoroughly understood and the scope of the present disclosure can be fully conveyed to those skilled in the art.

[0042] It should be noted that unless otherwise specified, the technical terms or scientific terms used in the present application should have the ordinary meanings understood by those skilled in the art to which the present application belongs.

[0043] Embodiment 1

[0044] As Figures 1 to 4 shown, Embodiment 1 of the present application provides a cabinet, including:

[0045] A body 1, the tail of the body 1 is provided with a mounting bar 11;

[0046] A limit bracket 2, which is connected to the mounting strip 11. The limit bracket 2 has a first slider 21 and a second slider 22 that are movably connected. Driving the relative movement of the first slider 21 and the second slider 22 enables the first slider 21 to move along the first direction A.

[0047] Specifically, the body 1 is the main frame of the cabinet, providing a physical support platform for the server 5 inside the cabinet to ensure that the server 5 can be stably installed and operate safely.

[0048] The mounting strip 11 includes two first sub-mounting strips 114 and two second sub-mounting strips 115. The two first sub-mounting strips 114 are arranged at intervals and face each other along the first direction A. The two second sub-mounting strips 115 are arranged at intervals and face each other along the first direction A. Each first sub-mounting strip 114 is arranged at intervals and faces a second sub-mounting strip 115 along the second direction B. Among them, the two first sub-mounting strips 114 are arranged at the tail of the body 1, and the two second sub-mounting strips 115 are arranged at the front of the body 1. The length directions of the four sub-mounting strips are all consistent with the third direction C.

[0049] The body 1 may include a frame and two L-shaped brackets 12. The four sub-mounting strips may be arranged on the frame. A bracket 12 is arranged between each first sub-mounting strip 114 and each second sub-mounting strip 115. The bracket 12 is connected to the frame, and the length direction of the bracket 12 is consistent with the second direction B. The server 5 can enter from the front of the body 1 and slide along the second direction B on the two brackets 12 to the tail of the body 1.

[0050] The limit bracket 2 is used to achieve a stable connection between the server 5 and the body 1. There may be two limit brackets 2. Each limit bracket 2 may be connected to a first sub-mounting strip 114 by means of a hanging ear screw or a buckle. The first sliders 21 of the two limit brackets 2 can be respectively connected to the two opposite sides of the server 5 along the first direction A to ensure a stable connection between the server 5 and the tail of the body 1. At this time, the server 5 can be connected to the two second sub-mounting strips 115 by means of bolts, buckle parts, etc. to achieve a stable connection between the server 5 and the front of the body 1; or, there may be four limit brackets 2, and each limit bracket 2 is connected to a sub-mounting strip 11 by means of a hanging ear screw or a buckle, that is, the server 5 is connected to the front and tail of the body 1 through the limit brackets 2. In this application, it is preferred that there are two limit brackets 2 to ensure the stability of the connection between the server 5 and the cabinet and simplify the overall structure at the same time.

[0051] The second slider 22 can be connected to the first sub-installation bar 114 by means of hanging ear screws or snap fasteners. The first slider 21 can be threadedly connected to the second slider 22. At this time, the second slider 22 can have a threaded hole penetrating along the first direction A, and the first slider 21 can be a threaded rod extending along the first direction A. By rotating the first end of the first slider 21, the second end of the first slider 21 can be brought close to and abutted against the server 5 to eliminate the tolerance between the server 5 and the body 1 along the first direction A. Or, in order to further ensure the stability of the server 5, the server 5 can be configured with an internal thread groove matching the first slider 21, so that the second end of the first slider 21 is threadedly connected to the internal thread groove to eliminate the tolerance between the server 5 and the body 1 along the first direction A. Or,

[0052] The first slider 21 can slide along the first direction A with the second slider 22. At this time, the second slider 22 can be configured with a guiding hole penetrating along the first direction A, and the first slider 21 is slidably connected to the second slider 22 along the first direction A through the guiding hole. A first docking portion is configured on the first side of the first slider 21, and the server 5 can be configured with a second docking portion adapted to the first docking portion. The first slider 21 sliding along the first direction A can connect the first docking portion and the second docking portion to limit the movement of the first slider 21 along the first direction A, so as to eliminate the tolerance between the server 5 and the body 1 along the first direction A and realize the positioning and fixing of the server 5. The number of the first sliders 21 can be one or more. When there are multiple first sliders 21, the multiple first sliders 21 can be arranged at intervals along the third direction C.

[0053] Both the first docking portion and the second docking portion can be made of magnetic materials. For example, the first docking portion is configured with metallic iron, and the second docking portion is configured with a permanent magnet, and the magnetic attraction effect is used to achieve rapid connection and fixation. Or, the first docking portion and the second docking portion can adopt a snap-fit component with a shape adaptation, such as a tenon and a groove, to ensure a firm mechanical connection, facilitate installation and disassembly, and at the same time ensure stability.

[0054] In the cabinet of Embodiment 1 of the present application, by connecting the limiting bracket 2 to the mounting strip 11 at the tail of the body 1, due to the moving connection mechanism of the first slider 21 and the second slider 22 of the limiting bracket 2, by driving the relative movement of the first slider 21 and the second slider 22, the first slider 21 moves along the first direction A, and then the first slider 21 realizes the connection with the server 5, eliminating the tolerance between the server 5 and the mounting strip 11 at the tail of the body 1 along the first direction A, ensuring the stability of the installation of the server 5, and significantly reducing the risk of damage to internal components caused by the shaking of the chassis tail during transportation; moreover, due to the relative movement mechanism of the first slider 21 and the second slider 22, it can be dynamically adjusted according to the actual size of the server 5 along the first direction A, meeting the stable installation requirements of the cabinet for servers 5 with different sizes along the first direction A, having good adaptability, and the overall structure is simple and the operation is convenient.

[0055] As Figures 1 to 4 , Figures 10 to 13 shown, in some embodiments, the limiting bracket 2 includes:

[0056] A frame body 23, the frame body 23 is connected to the mounting strip 11, the second slider 22 is connected to the frame body 23, and the first slider 21 is connected to the second slider 22 through a wedge structure 3, so that the second slider 22 moves relative to the frame body 23 along the second direction B, and drives the first slider 21 to move along the first direction A through the wedge structure 3.

[0057] Specifically, the frame body 23 can be connected to the first sub-mounting strip 114 through hanging ear screws or buckles. The second slider 22 can be slidably connected to the frame body 23 along the second direction B; alternatively, the second slider 22 can be hinged to the frame body 23. In the present application, it is preferred that the second slider 22 is slidably connected to the frame body 23 along the second direction B to improve the overall stability and reliability. The first slider 21 can be slidably connected to the frame body 23 along the first direction A. For example, a slideway can be provided on the frame body 23 along the first direction A, and the first slider 21 is slidably connected to the frame body 23 along the first direction A through the slideway to ensure the sliding path of the first slider 21.

[0058] The wedge structure 3 can be connected to the second slider 22. The wedge structure 3 can have a first inclined surface 3111, and the first inclined surface 3111 forms an acute angle with the second direction B. When the second slider 22 moves along the second direction B, the first slider 21 and the first inclined surface 3111 generate relative sliding, and the lateral force generated by the first inclined surface 3111 during the sliding process can drive the first slider 21 to move along the first direction A, converting the linear motion of the second slider 22 along the second direction B into the linear motion of the first slider 21 along the first direction A.

[0059] To ensure the stability of the first slider 21, the wedge-shaped structure 3 may include a first wedge member 31 and a second wedge member 32. The first wedge member 31 may be fixedly connected to or integrally formed with the second slider 22. The first wedge member 31 may include a first bearing portion 311, a first limiting portion 312, and a second limiting portion 313. The first limiting portion 312 and the second limiting portion 313 are spaced apart and oppositely arranged along the third direction C. The first bearing portion 311 is connected to the first limiting portion 312 and the second limiting portion 313 respectively, and the first bearing portion 311 is configured with a first inclined surface 3111.

[0060] The second wedge member 32 may be fixedly connected to or integrally formed with the first slider 21. The second wedge member 32 is configured with a first side surface 3211, a second side surface 3212, and a second inclined surface 3213. The first side surface 3211 and the second side surface 3212 are arranged in opposite directions along the third direction C. The second inclined surface 3213 is connected to the first side surface 3211 and the second side surface 3212 respectively. The second inclined surface 3213 is matched with the first inclined surface 3111. The second inclined surface 3213 can relatively slide with respect to the first inclined surface 3111 and be in contact with each other. During the sliding process, the first side surface 3211 relatively slides and contacts with the first limiting portion 312 or the second limiting portion 313, and the second side surface 3212 relatively slides and contacts with the second limiting portion 313 or the first limiting portion 312 to provide stable guidance and ensure the accuracy and stability of the sliding.

[0061] When there are two first sliders 21, the two first sliders 21 may be spaced apart along the third direction C. At this time, there may be two first wedge members 31. The two first wedge members 31 are spaced apart along the third direction C. The second limiting portions 313 of the two first wedge members 31 may be integrally formed to form the second slider 22 to ensure the stability of the sliding of the second slider 22.

[0062] As Figures 1 to 4 shown, in some embodiments, the mounting strip 11 has an opposite first surface 111 and second surface 112. The limiting bracket 2 is connected to the first surface 111 or the second surface 112. The first direction A and the mounting strip 11 satisfy the parallel condition. The second direction B and the mounting strip 11 satisfy the perpendicular condition. The mounting strip 11 is provided with a plurality of mounting square holes 113 along the third direction C. The third direction C and the first direction A and the second direction B both satisfy the perpendicular condition.

[0063] Specifically, the first sub-installation bar 114 has opposite first and second faces 111 and 112 along the second direction B, where the first face 111 is close to the second sub-installation bar 115. The specific position of the limit bracket 2 installed with the first sub-installation bar 114 can be designed according to the size of the server 5 along the second direction B. Set the first distance as the distance between the first sub-installation bar 114 and the second sub-installation bar 115 along the second direction B. When the size of the server 5 along the second direction B is small, for example, the size of the server 5 along the second direction B is less than the first distance, at this time, the limit bracket 2 can be set on the first face 111 of the first sub-installation bar 114; when the size of the server 5 along the second direction B is large, for example, the size of the server 5 along the second direction B is greater than the sum of the first distance and the size of the frame body 23 along the second direction B, at this time, the limit bracket 2 can be set on the second face 112 of the first sub-installation bar 114.

[0064] The first sub-installation bar 114 is provided with a plurality of installation square holes 113 along the third direction C. The square holes, as a standard installation interface, can adapt to fasteners of different specifications (such as screws, bolts, etc.), providing diverse connection options for actual installation and enhancing adaptability and flexibility. The limit bracket 2 can be connected to the first sub-installation bar 114 through one or more installation square holes 113. In this application, it is preferred that the limit bracket 2 is connected to a plurality of installation square holes 113 to ensure the stability of the connection; the limit bracket 2 can also be connected to the installation square holes 113 at different positions according to the size of the server 5 along the third direction C, so that the cabinet can more flexibly meet diverse installation configurations.

[0065] As Figures 1 to 7 shown, in some embodiments, the limit bracket 2 further includes:

[0066] A connecting member 24, the connecting member 24 is connected to the second slider 22, and the connecting member 24 has a driving portion 241, and the driving portion 241 is used to move the second slider 22 relative to the frame body 23 along the second direction B.

[0067] Specifically, the connecting member 24 can be threadedly connected to the second slider 22. At this time, the connecting member 24 can be a screw rod. In order to ensure the stability of the connecting member 24, the first end of the connecting member 21 can be rotatably connected to the frame body 23 about the second direction B. At this time, the driving portion 241 can be driven in an automatic or manual manner. When automatic driving is selected, the driving portion 241 can be a motor, and the motor can be arranged on the first sub-installation strip 114. The driving end of the motor is connected to the second end of the connecting member 24 for driving the connecting member 24 to rotate about the second direction B, so that the second slider 22 moves relative to the frame body 23 along the second direction B. When manual driving is selected, the second end of the connecting member 24 can be configured with a cross slot, and the cross slot forms the driving portion 241. When in use, a screwdriver can be used to cooperate with the cross slot to drive the connecting member 24 to rotate about the second direction B; or,

[0068] The connecting member 24 can be fixedly connected to the second slider 22. At this time, the driving portion 241 can be driven in an automatic or manual manner. When automatic driving is selected, the driving portion 241 can be a linear motor, and the linear motor can be arranged on the first sub-installation strip 114. The driving end of the motor is connected to the second end of the connecting member 24 for driving the connecting member 24 to move along the second direction B. When manual driving is selected, the first end of the connecting member 24 can be configured with a handle, and the handle forms the driving portion 241. When in use, the second slider 22 can be driven to move along the second direction B by pulling the handle.

[0069] To make the overall structure neater and the operation more convenient, as Figures 1 to 13 shown, in some embodiments, the frame body 23 has a receiving space 231. When the second slider 22 is in the first position relative to the frame body 23, the first slider 21 is located in the receiving space 231. When the second slider 22 is in the second position relative to the frame body 23, the first slider 21 at least partially extends out of the receiving space 231 in the first direction A for abutting against the server 5.

[0070] Specifically, the frame body 23 can have a through hole 232 communicating with the receiving space 231, and at least part of the first slider 21 can extend out of the receiving space 231 through the through hole 232. The frame body 23 can also include two third limiting portions, and the two third limiting portions are respectively arranged on both sides of the through hole 232 along the second direction B to limit the first slider 21 and ensure the movement path of the first slider.

[0071] To achieve miniaturization and lightweight design, the first slider 21 may have a first surface 221 perpendicular to the first direction A; the second wedge member 32 may include two sub-wedge members 321 disposed on both sides of the first surface 111 of the first slider 21 along the third direction C. Both sub-wedge members 321 are configured with second inclined surfaces 3213, and the two side surfaces of the two sub-wedge members 321 facing away from each other are the first side surface 3211 and the second side surface 3212 respectively. A part of the sub-wedge member 321 may extend out of the first slider 21 along the third direction C to form a sliding portion 322, and the first wedge member 31 is configured with a sliding groove 315, and the sliding portion 322 is slidably connected to the sliding groove 315 to further ensure the sliding stability of the second wedge member 32.

[0072] The first wedge member 31 may further include a second surface 314 perpendicular to the first direction A. The second surface 314 is connected to the first inclined surface 3111 to ensure the continuity of the structure and the smooth transmission of force. The second surface 112 is spaced apart from the first limiting portion 312 and the second limiting portion 313 respectively to form an avoidance area 316. When the second slider 22 is in the first position relative to the frame 23, the first surface 221 fits with the second surface 314, and a part of the sub-wedge member 321 extends out of the accommodation space 231 through the avoidance area 316.

[0073] As Figure 1 、 Figure 2 , Figure 7 shown, in some embodiments, the limiting bracket 2 is connected to the first surface 111, the driving portion 241 is located on the first side of the frame 23, and by rotating the connecting member 24, the connecting member 24 drives the second slider 22 to move relative to the frame 23 along the second direction B, so that the second slider 22 switches between the first position and the second position.

[0074] Specifically, the first side of the frame 23 is the side of the frame 23 close to the first sub-mounting strip 114 along the second direction B. When the limiting bracket 2 is disposed on the first surface 111, it is more convenient for the operator to operate by disposing the driving portion 241 on the first side of the frame 23. The connecting member 24 may be threadedly connected to the second slider 22, and the first end of the connecting member 24 may extend out of the mounting square hole 113, so that the cross slot of the connecting member 24 is located on the first side of the frame 23.

[0075] As Figure 3 and Figure 4 , Figure 7 shown, in some embodiments, the limiting bracket 2 is connected to the second surface 112, the driving portion 241 is located on the second side of the frame 23 opposite to the first side, and by driving the connecting member 24, the connecting member 24 drives the second slider 22 to move relative to the frame 23 along the second direction B.

[0076] Specifically, the second side of the frame 23 is the side where the frame 23 is away from the first sub-installation strip 114 along the second direction B. When the limiting bracket 2 is arranged on the second surface 112, arranging the driving part 241 on the second side of the frame 23 is more conducive to the operation of the operator. At this time, the connecting piece 24 can be threadedly connected to the second slider 22, and the first end of the connecting piece 24 can extend out of the accommodating space 231 of the frame 23, so that the cross slot of the connecting piece 24 is located on the first side of the frame 23. In some embodiments, the driving part 241 can be abutted by the server 5 (not shown in the figure) and drive the second slider 22 to move along the second direction B, so that the second slider 22 switches from the first position to the second position;

[0077] The second slider 22 and the frame 23 are connected by a reset member (not shown in the figure), and the reset member can move the second slider 22 from the second position to the first position.

[0078] Specifically, the connecting piece 24 can be fixedly connected to the second slider 22 and the driving part 241 respectively, and the driving part 241 and the connecting piece 24 form an L-shaped structure. When the server 5 is pushed on the bracket 12, the server 5 can be abutted against the driving part 241 to drive the connecting piece 24 and the second slider 22 to move along the second direction B.

[0079] The reset member is used to ensure that after the second slider 22 completes the expected movement (i.e., moving from the first position to the second position), when the server 5 is pushed in the reverse direction during disassembly or maintenance, the second slider 22 can return to the original position (the first position) under the action of the spring force. The reset member can be a spring or a tension spring, etc.

[0080] As Figure 12 shown, in some embodiments, it further includes:

[0081] A limiting member 4, the limiting member 4 is arranged on the first slider 21, and the limiting member 4 can be adapted to a connecting portion arranged on the server 5, so that the limiting member 4 can limit the server 5.

[0082] Specifically, the first slider 21 can have a convex portion, and the server 5 is configured with a groove adapted to the convex portion, and the convex portion and the groove are clamped to realize the limitation of the server 5; or; the first slider 21 can be configured with a limiting hole with internal threads along the first direction A, and the server 5 can be configured with a docking hole with internal threads along the first direction A, and the limitation is realized by respectively threadedly connecting bolts to the limiting hole and the docking hole.

[0083] As Figures 1 to 4 shown, Embodiment 2 of the present application provides a server system, including:

[0084] a server 5; and,

[0085] the cabinet according to Embodiment 1;

[0086] The tail of the body 1 of the cabinet has a mounting strip 11;

[0087] The cabinet has a limiting bracket 2, the limiting bracket 2 is connected to the mounting strip 11, and the limiting bracket 2 has a first slider 21 and a second slider 22 connected movably. Driving the relative movement of the first slider 21 and the second slider 22 enables the first slider 21 to move along a first direction A to be connected to the server 5.

[0088] The server system of Embodiment 2 of the present application includes the cabinet of Embodiment 1. By connecting the limiting bracket 2 to the mounting strip 11 at the tail of the body 1, due to the movable connection mechanism of the first slider and the second slider 22 of the limiting bracket 2, by driving the relative movement of the first slider and the second slider 22, the first slider 21 moves along the first direction A, and then the first slider 21 realizes the connection with the server 5, eliminating the tolerance between the server 5 and the mounting strip 11 at the tail of the body 1 along the first direction A, ensuring the stability of the installation of the server 5, and significantly reducing the risk of damage to internal components caused by the shaking of the rear of the chassis during transportation; and, due to the relative movement mechanism of the first slider 21 and the second slider 22, it can be dynamically adjusted according to the actual size of the server 5 along the first direction A, meeting the stable installation requirements of the cabinet for servers 5 with different sizes along the first direction A, having good adaptability, and the overall structure is simple and the operation is convenient.

[0089] As described above, the above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A cabinet, characterized in that: include: A body, wherein the tail of the body has a mounting strip; A limiting bracket is connected to the mounting bar, and the limiting bracket has a first slider and a second slider that are movably connected, driving the relative movement of the first slider and the second slider so that the first slider moves along a first direction.

2. The cabinet according to claim 1, characterized in that: The limiting bracket comprises: The frame is connected to the mounting bar, the second slider is connected to the frame, and the first slider and the second slider are connected via a wedge structure so that the second slider moves relative to the frame along a second direction, and the first slider is driven to move along the first direction via the wedge structure.

3. The cabinet according to claim 2, characterized in that: The mounting bar has a first surface and a second surface opposite to each other, the limiting bracket is connected to the first surface or the second surface, the first direction is parallel to the mounting bar, the second direction is perpendicular to the mounting bar, and the mounting bar is provided with a plurality of mounting square holes along a third direction, and the third direction is perpendicular to both the first direction and the second direction.

4. The cabinet according to claim 3, characterized in that: The limit bracket also includes: A connecting member is connected to the second sliding block, and the connecting member has a driving part, and the driving part is used to make the second sliding block move along the second direction relative to the frame.

5. The cabinet according to claim 4, characterized in that: The frame has a accommodating space. When the second slider is in a first position relative to the frame, the first slider is located in the accommodating space. When the second slider is in a second position relative to the frame, the first slider at least partially extends out of the accommodating space in the first direction to support the server.

6. The cabinet according to claim 5, characterized in that: The limiting bracket is connected to the first surface, and the driving part is located on the first side of the frame. The connecting member is rotated so that the connecting member drives the second slider to move along the second direction relative to the frame, so that the second slider switches between the first position and the second position.

7. The cabinet according to claim 5, characterized in that: The limiting bracket is connected to the second surface, the driving part is located on a second side of the frame body opposite to the first side, and the connecting member is driven so that the connecting member drives the second sliding block to move relative to the frame body along the second direction.

8. The cabinet according to claim 7, characterized in that: The driving part can be pushed against by the server and drive the second slider to move along the second direction, so that the second slider switches from the first position to the second position; The second slider is connected to the frame through a reset component, and the reset component can move the second slider from the second position to the first position.

9. The cabinet according to claim 1, characterized in that: Also includes: A limiting component is arranged on the first sliding block, and the limiting component can be matched with a connecting portion arranged on the server so that the limiting component can limit the server.

10. A server system, characterized in that: include: server; as well as, The cabinet according to any one of claims 1 to 9; The rear part of the cabinet body is provided with a mounting strip; The cabinet has a limiting bracket, which is connected to the mounting bar. The limiting bracket has a first slider and a second slider that are movably connected, driving the relative movement of the first slider and the second slider so that the first slider moves along a first direction to connect with the server.