Server installation assembly and server cabinet

Through the design of server installation components, the use of lever principles and fixed components solves the problem of difficult server assembly in the cabinet, and realizes a convenient and efficient assembly process.

CN120676572APending Publication Date: 2025-09-19西安远图未来科技有限公司
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Patent Information

Application Number
CN202511130217.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

In the prior art, when a server is inserted into a cabinet, it is difficult to manually push the server into place due to the large insertion resistance generated by multiple connectors.

Method used

The server installation components include mounting bars, sliding bars and handles. The lever principle is used to press the handle to drive the sliding bar, push the server into the cabinet, and ensure that it is assembled in place through fixing components and resetting components.

Benefits of technology

It improves the convenience and accuracy of server assembly, prevents assembly errors, and enhances the reliability of joint docking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention provides a server installation assembly and a server cabinet, and relates to the technical field of server installation. The server installation assembly comprises an installation strip used for being detachably connected with a cabinet; the sliding strip is in sliding connection with the mounting strip, and one end of the sliding strip is used for abutting against a frame body of the server; one end of the first handle is hinged to the mounting strip, the other end of the sliding strip is connected with the position, close to the mounting strip, of the first handle, and the first handle is used for driving the sliding strip to abut against the server when pressed so as to push the server into the cabinet. According to the server mounting assembly and the server cabinet, the server can be mounted in a labor-saving manner.
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Description

Technical Field

[0001] The present application relates to the technical field of server installation, and in particular to a server installation component and a server cabinet. Background Art

[0002] Servers are core hardware devices that provide computing, storage, and application services to network maintenance personnel. Servers that use liquid cooling technology can dissipate heat efficiently and are particularly suitable for high-density computing and energy-saving data center scenarios.

[0003] In related technologies, in order to facilitate the disassembly and maintenance of the server, the server is installed in the cabinet using a plug-in structure. The server includes a frame and a server body arranged in the frame. The cabinet and the server body are respectively provided with a refrigerant connector, a power connector and a signal connector. When the server is inserted into the cabinet, the multiple connectors on the cabinet and the server body can be automatically docked without the need for separate cable connection, which greatly simplifies the installation process.

[0004] However, since simultaneous docking of multiple connectors will generate significant insertion resistance, it is difficult to assemble the server into place simply by manually pushing it. Summary of the Invention

[0005] The embodiments of the present application provide a server installation assembly and a server cabinet to solve the technical problem in the related art that when manually pushing the server, multiple joints generate large insertion resistance, making it difficult to assemble the server in place.

[0006] In a first aspect, an embodiment of the present application provides a server installation component, including:

[0007] A mounting bar, the mounting bar being used for detachable connection with the cabinet;

[0008] a sliding bar, the sliding bar being slidably connected to the mounting bar, one end of the sliding bar being used to abut against a frame of the server;

[0009] A first handle, one end of the first handle is hinged on the mounting bar, and the other end of the sliding bar is connected to the first handle near the mounting bar. The first handle is used to drive the sliding bar to abut against the server when pressed to push the server into the cabinet.

[0010] In some embodiments, a first reset component is further included. The first reset component is arranged between the mounting bar and the sliding bar. The first reset component is used to drive the first handle to reset after the first handle is pressed.

[0011] In some embodiments, it also includes a mounting block, a connecting block and a fixing component, the mounting block is used to be connected to the cabinet, the mounting bar is detachably connected to the mounting block, the connecting block is used to be connected to the frame, one end of the sliding bar is used to abut against the connecting block, the fixing component is connected to the sliding bar, and the fixing component is used to fix or detach the mounting block and the connecting block when the server is moved into the cabinet.

[0012] In some embodiments, the fixing assembly includes a fixing block and a fixing member, the mounting block is provided with an opening, the fixing block is slidably connected in the opening to move in or out of the mounting block, the fixing member is provided in the mounting block, and the fixing member is connected to the fixing block, the fixing member is used to fix the fixing block to a position of moving in or out of the mounting block when the fixing block is pressed or pressed again, the connecting block is provided with a fixing port, and when the fixing block is moved out of the mounting block, the fixing block is inserted into the fixing port.

[0013] In some embodiments, a second handle and a pressing assembly are further included, one end of the second handle is hinged on the sliding bar, and the pressing assembly is connected between the second handle and the sliding bar. When the second handle is pressed, it drives the pressing assembly to press the fixed block.

[0014] In some embodiments, the pressing assembly includes a driving plate and a pressing bar, the driving plate is connected to the second handle to rotate synchronously with the second handle, the pressing bar is hinged on the sliding bar, the driving plate abuts against one end of the pressing bar, and the other end of the pressing bar is used to abut against the fixed block, and the second handle is used to drive the driving plate to abut against the pressing bar when being pressed, so that the pressing bar presses the fixed block.

[0015] In some embodiments, a second reset component is further included, which is connected between the sliding bar and the driving plate. The second reset component is used to drive the driving plate to reset the second handle after the second handle is pressed.

[0016] In some embodiments, a third handle and a snap-on assembly are further included, wherein the third handle is slidably connected to the mounting bar, and the snap-on assembly is connected between the third handle and the mounting bar. A snap-on interface is provided on the mounting block, and the third handle is used to drive the snap-on assembly to engage or disengage with the snap-on interface when pressed, so as to detachably connect the mounting bar to the mounting block.

[0017] In some embodiments, the clamping assembly includes a hinged rod and a clamping block, the hinged rod is hinged on the mounting bar, a driving space is formed between one end of the hinged rod and the mounting bar, the clamping block is connected to the other end of the hinged rod, and the third handle is used to move out of or into the driving space to drive the hinged rod to rotate or rotate in the opposite direction, so that the clamping block is engaged or disengaged with the card interface.

[0018] In some embodiments, a third reset component is further included, which is connected between the hinge rod and the mounting bar. The third reset component is used to drive the hinge rod to reset the clamping block when the third handle moves out of the driving space.

[0019] In a second aspect, an embodiment of the present application provides a server cabinet, comprising a cabinet, a server connected to the cabinet, and the server mounting assembly connected to the cabinet.

[0020] An embodiment of the present application provides a server installation component and a server cabinet. The server installation component provided by the present application, when it is necessary to install the server, first insert part of the server into the cabinet, at this time, connect the installation bar to the cabinet, so that the installation bar can drive one end of the sliding bar to be opposite to the frame of the server, by pressing the first handle, because one end of the first handle is hinged on the installation bar, and the other end of the sliding bar is connected to the position of the first handle close to the installation bar, by utilizing the lever principle, the maintenance personnel can easily push the server into the cabinet by sliding by pressing the first handle, thereby improving the convenience of server assembly; and because the installation bar is connected to the cabinet, when the first handle is pressed to the bottom, the sliding bar can drive the server to be assembled into place, preventing assembly errors between the server and the cabinet, thereby indirectly improving the reliability of docking multiple joints on the cabinet and the server. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0022] Figure 1 A schematic diagram of the server installation components used in this application;

[0023] Figure 2 for Figure 1 Schematic diagram of the exploded structure of the cabinet and server;

[0024] Figure 3 A partial structural diagram of the installation block and cabinet assembly state of the server installation component provided in this application;

[0025] Figure 4A partial structural diagram of the connection block and frame assembly state of the server installation component provided by this application;

[0026] Figure 5 Schematic diagram of the server installation component provided for this application Figure 1 ;

[0027] Figure 6 Schematic diagram of the server installation component provided for this application Figure 2 ;

[0028] Figure 7 Schematic diagram of the exploded structure of the server installation component provided for this application;

[0029] Figure 8 A schematic diagram of the structure of the installation block of the server installation component provided in this application;

[0030] Figure 9 for Figure 8 Structural diagram from another angle;

[0031] Figure 10 A schematic diagram of the exploded structure of the fixing parts of the server installation assembly provided in this application;

[0032] Figure 11 A schematic diagram of the structure of the connection block of the server installation component provided in this application;

[0033] Figure 12 Schematic diagram of the cross-sectional structure of the server installation component provided for this application Figure 1 ;

[0034] Figure 13 Schematic diagram of the cross-sectional structure of the server installation component provided for this application Figure 2 .

[0035] Description of reference numerals:

[0036] 100, mounting strip; 101, blocking block;

[0037] 200, Slider;

[0038] 300, first handle; 310, pressing portion; 320, connecting portion; 321, sliding groove; 330, abutting rod; 340, sliding plate;

[0039] 400, first reset component;

[0040] 500, mounting block; 510, opening; 520, card interface; 530, receiving port;

[0041] 600, connecting block; 610, pull rod; 620, fixing port; 630, insertion port;

[0042] 700, fixing assembly; 710, fixing block; 720, fixing member; 721, circular groove; 722, compression spring; 723, U-shaped rod; 724, cover plate;

[0043] 800, second handle;

[0044] 900, pressing assembly; 910, driving plate; 920, pressing bar; 921, driving rod; 922, pressing rod;

[0045] 110. Second reset component;

[0046] 120. Third handle; 121. Pushing portion; 122. Driving portion; 123. Third spring;

[0047] 130. Clamping assembly; 131. Articulated rod; 132. Clamping block; 133. Driving space;

[0048] 140. a third reset assembly;

[0049] 150, cabinet;

[0050] 160. Server; 161. Frame; 162. Server body.

[0051] The above drawings illustrate specific embodiments of the present application, which will be described in more detail below. These drawings and the textual description are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of the present application to those skilled in the art by reference to specific embodiments. DETAILED DESCRIPTION

[0052] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.

[0053] In related technologies, in order to improve the maintainability and deployment efficiency of servers, servers are usually installed in cabinets using a modular plug-in structure. The server includes a frame and a server body. Refrigerant pipe connectors, high-current power interfaces, and high-speed data transmission signal interfaces are respectively provided inside the cabinet and on the server body. When the operation and maintenance personnel push the server into the cabinet along the guide rail, through the precise guide structure design, multiple sets of connectors can be synchronously aligned and complete the gas-liquid sealing connection, power conduction, and signal transmission, completely avoiding the tedious operation of connecting cables one by one in traditional deployment, significantly reducing the installation complexity and reducing human errors.

[0054] However, this multi-interface synchronous docking design faces obvious mechanical resistance problems in actual operation. Since the refrigerant connector needs to maintain high-pressure sealing and the power connector needs to ensure a large current contact area, these interfaces usually use metal spring contacts or rubber sealing ring structures with high friction coefficients. When the server is pushed in manually, the axial resistance generated by multiple connectors at the same time will form a cumulative effect, making it difficult for ordinary technicians to fully push the server into place with arm strength alone.

[0055] The following specific embodiments describe in detail the technical solution of the present application and how the technical solution of the present application solves the above-mentioned technical problems. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below in conjunction with the accompanying drawings.

[0056] Combine Figures 1 to 13 , an embodiment of the present application provides a server installation component, including:

[0057] The mounting bar 100 is used for detachable connection with the cabinet 150;

[0058] A sliding bar 200 , the sliding bar 200 is slidably connected to the mounting bar 100 , and one end of the sliding bar 200 is used to abut against the frame 161 of the server 160 ;

[0059] The first handle 300 has one end hinged on the mounting bar 100 , and the other end of the sliding bar 200 is connected to the first handle 300 near the mounting bar 100 . When the first handle 300 is pressed, it drives the sliding bar 200 to abut against the server 160 to push the server 160 into the cabinet 150 .

[0060] In the present application, when the server 160 needs to be installed, first, a portion of the server 160 is inserted into the cabinet 150. At this time, the mounting bar 100 is connected to the cabinet 150, so that the mounting bar 100 can drive one end of the sliding bar 200 to face the frame 161 of the server 160. By pressing the first handle 300, one end of the first handle 300 is hinged on the mounting bar 100, and the other end of the sliding bar 200 is connected to the position of the first handle 300 near the mounting bar 100. By utilizing the principle of leverage, The maintenance personnel can easily push the server 160 into the cabinet 150 by sliding it by pressing the first handle 300, thereby improving the convenience of assembling the server 160; and because the mounting bar 100 is connected to the cabinet 150, when the first handle 300 is pressed to the bottom, the sliding bar 200 can drive the server 160 to be assembled into place, preventing assembly errors between the server 160 and the cabinet 150, thereby indirectly improving the reliability of the connection between multiple connectors on the cabinet 150 and the server 160.

[0061] In this embodiment, the cross-section of the sliding bar 200 is set in a "U" shape. The "U"-shaped sliding bar 200 is mounted on the mounting bar 100. A sliding groove is set on the two opposite side walls of the mounting bar 100. The sliding bar 200 is provided with a slider that is slidably connected in the sliding groove. The sliding bar 200 is mounted and slidably connected to the mounting bar 100 through the sliding groove and the slider.

[0062] In this embodiment, the first handle 300 includes a pressing portion 310 and a connecting portion 320. The pressing portion 310 is provided with anti-slip grooves. The connecting portion 320 is integrally connected to the pressing portion 310. The connecting portion 320 is set in a "U" shape. The "U"-shaped connecting portion 320 is sleeved on the mounting bar 100. The "U"-shaped mounting portion is hinged to the mounting bar 100 through a first bolt, thereby facilitating the disassembly and assembly of the first handle 300; the first handle 300 is set on the side of the sliding bar 200 away from the server 160. When the first handle 300 is pressed toward the server 160, the first handle 300 drives the sliding bar 200 to slide, so that the sliding bar 200 pushes the server 160 into the cabinet 150.

[0063] In this embodiment, the two opposite sides of the "U"-shaped connecting portion 320 are provided with sliding grooves 321 along the length direction of the connecting portion 320, and the end of the sliding bar 200 away from the server 160 and on the two opposite sides of the sliding bar 200 are provided with abutment rods 330 and sliding plates 340, the abutment rods 330 are connected to the sliding plates 340, the abutment rods 330 are used to abut against the connecting portion 320, and the sliding plates 340 are slidably arranged in the sliding grooves 321; when the first handle 300 is pressed, the first handle 300 pushes the sliding When the bar 200 slides, it can move on the sliding bar 200 through the sliding groove 321, the abutment rod 330 and the sliding plate 340, thereby increasing the moving range of the sliding bar 200. When the sliding plate 340 moves to the end of the sliding groove 321 away from the mounting bar 100, the first handle 300 is pressed to the extreme position, and the sliding bar 200 pushes the server 160 into place; when the sliding plate 340 moves to the end of the sliding groove 321 close to the mounting bar 100, the first handle 300 is in a reset state.

[0064] In this embodiment, when assembling the same server 160, two server mounting assemblies are required. By detachably connecting the mounting bars 100 on the cabinet 150 and located on both sides of the server 160, the two sliding bars 200 can push the two sides of the server 160 respectively, thereby indirectly improving the installation accuracy of the server 160. When the mounting bars 100 are connected to both sides of the cabinet 150, the first handles 300 on the mounting bars 100 on both sides are opposite to each other, and the space in the thickness direction of the server 160 is utilized to prevent the first handles 300 from occupying a large space in the vertical direction.

[0065] The server mounting assembly further includes a first reset assembly 400 , which is disposed between the mounting bar 100 and the sliding bar 200 . The first reset assembly 400 is configured to drive the first handle 300 to reset after the first handle 300 is pressed.

[0066] In this embodiment, the first reset component 400 is a first spring, which is arranged along the length direction of the mounting bar 100. One end of the first spring is connected to the end of the sliding bar 200 away from the cabinet 150, and the other end of the first spring is connected to the end of the mounting bar 100 away from the cabinet 150, and the first spring is located in the recess of the "U" connection part 320.

[0067] In the present application, by adopting the setting of the first spring, when the first handle 300 is pressed, the first handle 300 can drive the sliding bar 200 to slide, so that the sliding bar 200 drives the first spring to be stretched to a stretched state. After the server 160 is pushed into place, by releasing the first handle 300, the sliding bar 200 can rely on the elastic force of the first spring to move in the direction away from the assembled server 160. The sliding bar 200 can push the first handle 300 to move synchronously, so that the first handle 300 is automatically reset, and there is no need for maintenance personnel to drive the sliding bar 200 and the first handle 300 to reset, which is convenient for the next assembly of the server 160.

[0068] The server installation assembly also includes a mounting block 500, a connecting block 600 and a fixing assembly 700. The mounting block 500 is used to connect to the cabinet 150. The mounting bar 100 is detachably connected to the mounting block 500. The connecting block 600 is used to connect to the frame 161. One end of the sliding bar 200 is used to abut against the connecting block 600. The fixing assembly 700 is connected to the sliding bar 200. The fixing assembly 700 is used to fix or detach the mounting block 500 and the connecting block 600 when the server 160 is moved into the cabinet 150.

[0069] In this embodiment, the mounting block 500 is detachably connected to the cabinet 150 by two bolts, thereby facilitating the disassembly and assembly of the mounting block 500 ; the connecting block 600 is also detachably connected to the cabinet 150 by two bolts, thereby facilitating the disassembly and assembly of the connecting block 600 .

[0070] In the present application, by adopting the setting of the fixing component 700, when the server 160 is assembled in place, the fixing component 700 can fix the mounting block 500 and the connecting block 600. Since the mounting block 500 is set on the cabinet 150 and the connecting block 600 is set on the frame 161 of the server 160, the mounting block 500 and the connecting block 600 can fix the server 160 in the cabinet 150, preventing the server 160 from being separated from the cabinet 150 after the server 160 is assembled in place, thereby indirectly improving the fixing strength of the server 160; the sliding bar 200 is abutted against the connecting block 600 to push the server 160 into the cabinet 150, preventing the sliding bar 200 from abutting against the frame 161 and causing damage to the server 160.

[0071] In this embodiment, a pull rod 610 is hingedly provided on the connecting block 600, and the pull rod 610 is set in a "U" shape. The two ends of the "U"-shaped pull rod 610 are hinged on the connecting block 600. When the server 160 needs to be taken out, the "U"-shaped pull rod 610 can provide a force point for maintenance personnel, thereby facilitating the removal of the server 160 from the cabinet 150.

[0072] The fixing assembly 700 includes a fixing block 710 and a fixing member 720. An opening 510 is provided on the mounting block 500. The fixing block 710 is slidably connected in the opening 510 to move in or out of the mounting block 500. The fixing member 720 is provided in the mounting block 500 and is connected to the fixing block 710. The fixing member 720 is used to fix the fixing block 710 to a position for moving in or out of the mounting block 500 when the fixing block 710 is pressed or pressed again. A fixing port 620 is provided on the connecting block 600. When the fixing block 710 is moved out of the mounting block 500, the fixing block 710 is inserted into the fixing port 620.

[0073] In this embodiment, the fixing member 720 includes a circular groove 721, a compression spring 722 and a U-shaped rod 723. The circular groove 721 is provided on the fixing block 710. The circular groove 721 has a first fixing portion, a second fixing portion, a first communicating portion and a second communicating portion. The first communicating portion and the second communicating portion are respectively provided on both sides of the first fixing portion and the second fixing portion. One end of the first communicating portion is communicated with the first fixing portion, and the other end of the first communicating portion is communicated with the second fixing portion. One end of the second communicating portion is communicated with the first fixing portion, and the other end of the second communicating portion is communicated with the second fixing portion. The cam 720 is connected to the mounting block 500, one end of the compression spring 722 is connected to the inner wall of the mounting block 500, the other end of the compression spring 722 is connected to the fixing block 710, one end of the U-shaped rod 723 is rotatably connected to the inner wall of the mounting block 500, and the other end is slidably set in the circular groove 721; when the U-shaped rod 723 is located in the first fixing portion, the fixing block 710 is in a position to move into the mounting block 500, and when the U-shaped rod 723 is located in the second fixing portion, the fixing block 710 is in a position to move out of the mounting block 500. The fixing part 720 is a prior art and its specific structure will not be described in detail.

[0074] In this embodiment, the fixing member 720 also includes a cover plate 724, and a mounting opening is provided on the mounting block 500. The cover plate 724 is detachably connected to the mounting block 500 by bolts to open and close the mounting opening. One end of the U-shaped rod 723 is rotatably connected to the cover plate 724, and the U-shaped rod 723 is rotatably connected to the inner wall of the mounting shell through the cover plate 724. The end of the compression spring 722 away from the fixing block 710 is connected to the cover plate 724, and the compression spring 722 is connected to the inner wall of the mounting block 500 through the cover plate 724. By removing the cover plate 724, it is convenient to maintain and replace the U-shaped rod 723 and the compression spring 722.

[0075] When the locking cam 722 is released, the locking cam 723 is released, and the U-shaped locking cam 723 is in a state of being moved out of the locking cam 700. When the locking cam 722 is released, the U-shaped locking cam 723 is released, and the U-shaped locking cam 723 is in a state of being moved out of the locking cam 700. When the locking cam 723 is released, the U-shaped locking cam 723 is released, and the U-shaped locking cam 723 is in a state of being moved out of the locking cam 700. The fixing block 710 drives the circular groove 721 to move, and the U-shaped rod 723 moves along the second connecting part to a position relative to the first fixing part. When the fixing block 710 is released, the U-shaped rod 723 moves to the first fixing part by relying on the elastic force of the compression spring 722. At this time, the fixing block 710 is in a position to move into the mounting block 500. By pressing and pressing the fixing block 710 again, the fixing block 710 can be automatically fixed to the position of moving in or out of the mounting block 500, which is convenient for fixing the server 160 and the cabinet 150.

[0076] The server installation assembly also includes a second handle 800 and a pressing assembly 900. One end of the second handle 800 is hinged on the sliding bar 200. The pressing assembly 900 is connected between the second handle 800 and the sliding bar 200. When the second handle 800 is pressed, it drives the pressing assembly 900 to press the fixed block 710.

[0077] In the present application, by adopting the setting of the second handle 800 and the pressing assembly 900, when the connecting block 600 is opposite to the mounting block 500, the connecting block 600 blocks the maintenance personnel from manually pressing the fixing block 710. By adopting the setting of the second handle 800 and the pressing assembly 900, it is convenient to press the fixing block 710, thereby improving the convenience of fixing the mounting block 500 and the connecting block 600.

[0078] In this embodiment, the rotation axis of the second handle 800 is parallel to the rotation axis of the first handle 300. The second handle 800 is used to drive the pressing assembly 900 to squeeze the fixed block 710 when rotating toward the first handle 300. At this time, by holding the first handle 300 and the second handle 800 with one hand at the same time, a fulcrum can be provided for the rotation of the second handle 800, which makes it easier for maintenance personnel to press the fixed block 710 through the pressing assembly 900.

[0079] The pressing assembly 900 includes a driving plate 910 and a pressing bar 920. The driving plate 910 is connected to the second handle 800 so as to rotate synchronously with the second handle 800. The pressing bar 920 is hinged on the sliding bar 200. The driving plate 910 abuts against one end of the pressing bar 920, and the other end of the pressing bar 920 is used to abut against the fixed block 710. The second handle 800 is used to drive the driving plate 910 to abut against the pressing bar 920 when being pressed, so that the pressing bar 920 presses the fixed block 710.

[0080] In this embodiment, the second handle 800 is hinged on the surface of the sliding bar 200 facing away from the mounting bar 100, the pressing bar 920 is hinged on the surface of the sliding bar 200 facing away from the mounting bar 100, and the driving plate 910 is connected to the end of the second handle 800 close to the sliding bar 200. When the second handle 800 rotates toward the first handle 300, it can drive the driving plate 910 to rotate in the direction away from the sliding bar 200; the pressing bar 920 is set in an "L" shape. The "L"-shaped pressing bar 920 includes a driving rod 921 and a pressing rod 922. The driving rod 921 is hinged on the sliding bar 200, and the pressing rod 922 is connected to the end of the driving rod 921 away from the second handle 800. The driving plate 910 abuts against one end of the driving rod 921, and the connecting block 600 is provided with an insertion port 630 for the pressing rod 922 and part of the driving rod 921 to extend into.

[0081] In the present application, when the first handle 300 is pressed to drive the sliding bar 200 to move toward the frame 161, the sliding bar 200 can abut against the connecting block 600. At this time, the pressing rod 922 and part of the driving rod 921 can be extended into the interior of the connecting block 600 through the extension port 630. By pressing the second handle 800, the second handle 800 is rotated toward the first handle 300. At this time, the second handle 800 can drive the driving plate 910 away from the sliding bar 200, so that the driving rod 921 rotates counterclockwise, so that the driving rod 921 drives the pressing rod 922 to pass through the fixing port 620 to press the fixing block 710. By driving the second handle 800 to rotate toward the first handle 300 once, the fixing block 710 can be pressed once, which facilitates the fixing of the mounting block 500 and the connecting block 600, thereby facilitating the fixing of the cabinet 150 and the server 160.

[0082] In other embodiments, the two opposite sides of the connecting block 600 can also be penetrated, so that the fixing block 710 passes through one side of the connecting block 600 and passes out along the other side of the connecting block 600, so that the pressing rod 922 can directly press the fixing block 710 outside the connecting block 600 without the need to separately set up an insertion opening 630; or a pressing plate can be extended on the fixing block 710, and the pressing plate can be pressed by the pressing rod 922 to similarly achieve pressing of the fixing block 710.

[0083] The server installation assembly further includes a second reset assembly 110 , which is connected between the slide bar 200 and the drive plate 910 . The second reset assembly 110 is used to drive the drive plate 910 to reset the second handle 800 after the second handle 800 is pressed.

[0084] In this embodiment, the second reset component 110 is a second spring, which is perpendicular to the first spring. One end of the second spring is connected to the sliding bar 200, and the other end of the second spring is connected to the driving plate 910; an avoidance opening is provided on the driving plate 910, and the avoidance opening is used for the second spring to pass through.

[0085] In the present application, when the second spring is in a natural state, the second handle 800 is located away from the first handle 300. When the second handle 800 is pressed toward the first handle 300, the second handle 800 drives the driving plate 910 away from the sliding bar 200. At this time, the pressing bar 920 rotates counterclockwise to stretch the second spring. When the second handle 800 is released, the pressing bar 920 is reset by the elastic force of the second spring. At this time, the pressing bar 920 drives the second handle 800 to reset through the driving plate 910. There is no need to manually reset the second handle 800, which is convenient for pressing the fixed block 710 next time.

[0086] The server mounting assembly also includes a third handle 120 and a snap-on assembly 130. The third handle 120 is slidably connected to the mounting bar 100. The snap-on assembly 130 is connected between the third handle 120 and the mounting bar 100. A snap-on interface 520 is provided on the mounting block 500. The third handle 120 is used to drive the snap-on assembly 130 to engage or disengage with the snap-on interface 520 when pressed, so as to detachably connect the mounting bar 100 to the mounting block 500.

[0087] In the present application, by pressing the third handle 120, the third handle 120 drives the snap-fit ​​assembly 130 to snap into or out of the snap-fit ​​connection with the snap-fit ​​interface 520, thereby making the mounting bar 100 and the mounting block 500 detachably connected, thereby improving the convenience of disassembling and assembling the mounting bar 100 and the mounting block 500. By fixing the mounting bar 100 and the mounting block 500 by snapping, the convenience of fixing the mounting bar 100 and the mounting block 500 is improved.

[0088] The clamping assembly 130 includes a hinged rod 131 and a clamping block 132. The hinged rod 131 is hinged on the mounting bar 100. A driving space 133 is formed between one end of the hinged rod 131 and the mounting bar 100. The clamping block 132 is connected to the other end of the hinged rod 131. The third handle 120 is used to move out of or into the driving space 133 to drive the hinged rod 131 to rotate or rotate in the opposite direction so that the clamping block 132 is engaged with or disengaged from the card interface 520.

[0089] In this embodiment, the third handle 120 includes a pushing portion 121 and a driving portion 122. A block 101 is provided on one side of the mounting bar 100 and at a position away from the cabinet 150. A sliding opening is provided on the mounting bar 100. The pushing portion 121 is T-shaped, and the tail of the T-shaped pushing portion 121 is slidably arranged in the sliding opening. The driving portion 122 is connected to the end of the pushing portion 121 located in the sliding opening. The driving portion 122 has an arcuate surface, which is used to abut against the end of the hinged rod 131 away from the cabinet 150.

[0090] In this embodiment, the card interface 520 is used for inserting the end of the mounting bar 100. When the end of the mounting bar 100 is inserted into the card interface 520, the hinge rod 131 rotates on the mounting bar 100 and drives the card block 132 to move in a direction away from the mounting bar 100, so that the card block 132 is engaged with the inner wall of the mounting block 500; when the driving portion 122 moves into the driving space 133, the card block 132 is disengaged from the card interface 520. When the driving portion 122 moves out of the driving space 133, the card block 132 is disengaged from the card interface 520. When the driving portion 122 moves into the driving space 133, the clamping block 132 is clamped with the clamping interface 520; the mounting block 500 is also provided with a receiving opening 530, which is used to accommodate part of the clamping block 132 when the clamping block 132 is clamped with the clamping interface 520; in other embodiments, the clamping block 132 can be clamped with the clamping interface 520 when the driving portion 122 moves into the driving space 133, and the clamping block 132 is disengaged from the clamping interface 520 when the driving portion 122 moves out of the driving space 133.

[0091] In other embodiments, the snap-in block 132 can also be extended along the length direction of the mounting bar 100 to the outside of the mounting bar 100, and the snap-in block 132 can be separately snap-connected with the card interface 520, so that the mounting bar 100 and the mounting block 500 can be fixed without moving the end of the mounting bar 100 into the card interface 520.

[0092] In the present application, when it is necessary to fix the mounting bar 100 and the mounting block 500, the driving part 122 is first driven to move into the driving space 133 by the pushing part 121. At this time, the hinged rod 131 can drive the clamping block 132 close to the mounting bar 100, so that the clamping block 132 will not affect the insertion of the mounting bar 100. By inserting the end of the mounting bar 100 into the clamping interface 520, the driving part 122 is driven to move out of the driving space 133 by the pushing part 121. At this time, the hinged rod 131 can drive the clamping block 132 away from the mounting bar 100, so that the clamping block 132 is clamped with the inner wall of the mounting block 500, so that the mounting bar 100 is fixed on the mounting block 500. The fixing of the mounting bar 100 can be achieved by pushing the pushing part 121, which improves the convenience of fixing the mounting bar 100 and the mounting block 500.

[0093] The server installation assembly also includes a third reset assembly 140, which is connected between the hinge rod 131 and the installation bar 100. The third reset assembly 140 is used to drive the hinge rod 131 to drive the clamping block 132 to reset when the third handle 120 moves out of the driving space 133.

[0094] In this embodiment, the third reset assembly 140 includes a torsion spring, which is sleeved on the axis where the hinge rod 131 and the mounting bar 100 are hinged, and one end of the torsion spring is connected to the hinge rod 131, and the other end is connected to the mounting bar 100. When the torsion spring is in a natural state, the hinge rod 131 drives the clamping block 132 to a position away from the mounting bar 100; when the pushing part 121 drives the driving part 122 to move into the driving space 133, the hinge rod 131 resists the elastic force of the torsion spring to achieve rotation.

[0095] In the present application, when the third handle 120 is moved into the driving space 133 and the end of the mounting bar 100 is inserted into the card interface 520, by moving the third handle 120 out of the driving space 133, the hinged rod 131 can automatically drive the clamping block 132 to clamp onto the inner wall of the mounting block 500 by relying on the torsion force of the torsion spring, thereby eliminating the need to drive the hinged rod 131 again, further improving the convenience of fixing the mounting bar 100 and the mounting block 500.

[0096] In this embodiment, a third spring 123 is arranged between the pushing portion 121 of the third handle 120 and the mounting bar 100, one end of the third spring 123 is connected to the pushing portion 121, and the other end of the third spring 123 is connected to the mounting bar 100. When the third spring 123 is in a natural state, the third handle 120 moves out of the driving space 133. When the third handle 120 is pressed, the third spring 123 is in a compressed state, and at this time the third handle 120 moves into the driving space 133; the third spring 123 is arranged in a accommodating space with a circular cross-section formed between the blocking block 101 and the mounting bar 100, and the blocking block 101 is used to abut against the driving portion 122 when the driving portion 122 moves in a direction away from the cabinet 150 to prevent the driving block 122 from detaching from the mounting bar 100.

[0097] In the present application, by adopting the setting of the third spring 123, when the maintenance personnel presses the third handle 120 and drives the mounting bar 100 to be fixed or detached from the mounting block 500, by loosening the third handle 120, the third handle 120 can automatically reset itself by relying on the elastic force of the third spring 123, thereby eliminating the need to pull the third handle 120 back and forth, further improving the convenience of fixing the mounting bar 100 and the mounting block 500.

[0098] An embodiment of the present application further provides a server cabinet, including a cabinet 150 , a server 160 connected to the cabinet 150 , and a server mounting assembly of any of the above embodiments connected to the cabinet 150 .

[0099] The specific structure of the server installation component has been described in detail in the above embodiments and will not be repeated here.

[0100] The server cabinet provided by the present application is provided with a server mounting assembly. When the server 160 needs to be installed, the mounting block 500 is first fixed to the cabinet 150 by bolts, and the connecting block 600 is fixed to the frame 161 of the server 160 by bolts. At this time, part of the server 160 is inserted into the cabinet 150, and the third handle 120 is pressed to move the third handle 120 into the driving space 133. The hinged rod 131 can drive the card block 132 to approach the mounting bar 100. At this time, one end of the mounting bar 100 is inserted into the card interface 520 of the mounting block 500. By loosening the third handle 120, the server 160 is partially inserted into the cabinet 150. The third handle 120 is reset by the third spring 123, and the hinged rod 131 is reset by the torsion spring, so that the clamping block 132 is clamped with the inner wall of the mounting block 500 by the torsion force of the torsion spring, thereby fixing the mounting bar 100 and the mounting block 500. By pressing the first handle 300, the first handle 300 drives the sliding bar 200 to slide on the mounting bar 100, and the sliding bar 200 can abut against the connecting block 600. The pressing bar 920 can extend into the interior of the connecting block 600 through the extension port 630, and the sliding bar 200 can push the connecting block 600 to drive the server 160 to be assembled in place, and the first handle 300 is released. The handle 300, the first handle 300 can automatically reset by relying on the elastic force of the first spring. When the server 160 is assembled in place, the fixed block 710 on the mounting block 500 is opposite to the fixed port 620 on the connecting block 600. By pressing the second handle 800, the second handle 800 can be rotated toward the first handle 300. The first handle 300 drives the driving plate 910 away from the sliding bar 200, so that the driving plate 910 drives the pressing bar 920 to rotate, so that the pressing bar 920 presses the fixed block 710 through the fixed port 620. After being pressed, the fixed block 710 can extend out of the mounting block 500 and be plugged into the fixed port 620. , so that the mounting block 500 and the connecting block 600 are fixed, and the assembly of the server 160 is realized. At this time, by pressing the third handle 120, the third handle 120 is moved into the driving space 133, and the clamping block 132 can be disengaged from the card interface 520, thereby removing the mounting bar 100, so that the mounting bar 100 can be used for the next server 160. When the server 160 needs to be taken out, the mounting bar 100 is fixed to the mounting block 500, and the fixing block 710 is pressed again by the second handle 800 to separate the mounting block 500 from the connecting block 600, and the server 160 can be pulled out by the pull rod 610.

[0101] Finally, it should be noted that those skilled in the art will readily identify other embodiments of the present invention after considering the specification and practicing the invention disclosed herein. The present invention is intended to cover any variations, uses, or adaptations of the present invention that follow the general principles of the present invention and include common knowledge or customary techniques in the art not disclosed herein. The present invention is not limited to the precise structure described above and illustrated in the accompanying drawings, and various modifications and variations may be made without departing from the scope thereof. The scope of the present invention is limited solely by the appended claims.

Claims

1. A server installation component, characterized in that: include: a mounting bar (100), the mounting bar (100) being used for detachable connection to the cabinet (150); A sliding bar (200), the sliding bar (200) being slidably connected to the mounting bar (100), one end of the sliding bar (200) being used to abut against a frame (161) of the server (160); A first handle (300), one end of the first handle (300) is hinged on the mounting bar (100), the other end of the sliding bar (200) is connected to the position of the first handle (300) close to the mounting bar (100), and the first handle (300) is used to drive the sliding bar (200) to abut against the server (160) when pressed, so as to push the server (160) into the cabinet (150).

2. The server installation assembly according to claim 1, wherein: The invention also includes a first reset component (400), which is arranged between the mounting bar (100) and the sliding bar (200), and the first reset component (400) is used to drive the first handle (300) to reset after the first handle (300) is pressed.

3. The server installation assembly according to claim 1, wherein: The server (160) further comprises a mounting block (500), a connecting block (600) and a fixing assembly (700), wherein the mounting block (500) is used to be connected to the cabinet (150), the mounting bar (100) is detachably connected to the mounting block (500), the connecting block (600) is used to be connected to the frame (161), one end of the sliding bar (200) is used to abut against the connecting block (600), the fixing assembly (700) is connected to the sliding bar (200), and the fixing assembly (700) is used to fix or detach the mounting block (500) and the connecting block (600) when the server (160) is moved into the cabinet (150).

4. The server installation assembly according to claim 3, wherein: The fixing assembly (700) includes a fixing block (710) and a fixing member (720). The mounting block (500) is provided with an opening (510). The fixing block (710) is slidably connected in the opening (510) to move in or out of the mounting block (500). The fixing member (720) is provided in the mounting block (500) and connected to the fixing block (710). The fixing member (720) is used to fix the fixing block (710) to a position for moving in or out of the mounting block (500) when the fixing block (710) is pressed or pressed again. The connecting block (600) is provided with a fixing opening (620). When the fixing block (710) moves out of the mounting block (500), the fixing block (710) is inserted into the fixing opening (620).

5. The server installation assembly according to claim 4, wherein: The invention also includes a second handle (800) and a pressing assembly (900), wherein one end of the second handle (800) is hinged on the sliding bar (200), and the pressing assembly (900) is connected between the second handle (800) and the sliding bar (200), and the second handle (800) is used to drive the pressing assembly (900) to press the fixed block (710) when being pressed.

6. The server installation assembly according to claim 5, wherein: The pressing assembly (900) includes a driving plate (910) and a pressing bar (920), wherein the driving plate (910) is connected to the second handle (800) so as to rotate synchronously with the second handle (800), and the pressing bar (920) is hinged on the sliding bar (200), and the driving plate (910) abuts against one end of the pressing bar (920), and the other end of the pressing bar (920) is used to abut against the fixed block (710), and the second handle (800) is used to drive the driving plate (910) to abut against the pressing bar (920) when being pressed, so that the pressing bar (920) presses the fixed block (710).

7. The server installation assembly according to claim 6, wherein: The invention also includes a second reset component (110), wherein the second reset component (110) is connected between the sliding bar (200) and the driving plate (910), and the second reset component (110) is used to drive the driving plate (910) to reset the second handle (800) after the second handle (800) is pressed.

8. The server installation assembly according to any one of claims 4 to 7, wherein: The invention also includes a third handle (120) and a snap-on assembly (130), wherein the third handle (120) is slidably connected to the mounting bar (100), and the snap-on assembly (130) is connected between the third handle (120) and the mounting bar (100). A snap-on interface (520) is provided on the mounting block (500), and the third handle (120) is used to drive the snap-on assembly (130) to snap on or off the snap-on interface (520) when pressed, so as to detachably connect the mounting bar (100) to the mounting block (500).

9. The server installation assembly according to claim 8, wherein: The clamping assembly (130) comprises a hinged rod (131) and a clamping block (132); the hinged rod (131) is hinged on the mounting bar (100); a driving space (133) is formed between one end of the hinged rod (131) and the mounting bar (100); the clamping block (132) is connected to the other end of the hinged rod (131); the third handle (120) is used to move out of or into the driving space (133) to drive the hinged rod (131) to rotate or rotate in the opposite direction, so that the clamping block (132) is clamped or disengaged with the clamping interface (520).

10. The server installation assembly according to claim 9, wherein: The third reset assembly (140) is further included. The third reset assembly (140) is connected between the hinge rod (131) and the mounting bar (100). The third reset assembly (140) is used to drive the hinge rod (131) to reset the clamping block (132) when the third handle (120) moves out of the driving space (133).

11. A server cabinet, characterized in that: The invention comprises a cabinet (150), a server (160) connected to the cabinet (150), and a server installation assembly according to any one of claims 1 to 10 connected to the cabinet (150).