Supporting device of big data server
By designing the support device of the big data server, using components such as bar support plates, guide rails, sliders, protective frames, adjustment screws and wiring boards, the problems of easy server damage and wire entanglement in the existing technology are solved, and the server is stable and fixed and neatly arranged, improving the protection effect and convenience of use.
Patent Information
- Application Number
- CN202421891888.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-06
AI Technical Summary
The existing server support devices lack fixing mechanisms and protective mechanisms, which leads to easy damage to the server during maintenance, and the wires are not fixed firmly, resulting in winding, affecting subsequent maintenance.
Design a support device for a big data server, including strip support plates, guide rails, sliders, protective frames, adjustment screws and wiring boards. Through the connection between sliders and guide rails, the coordination between protective frames and adjustment screws, and the limiting wires of the wiring board, the stable fixation of the server and the neat arrangement of the wires.
Through the protection of the protective frame, the server is prevented from being damaged by collision during maintenance; through the limit of the wiring board, the wires are kept neat and not easily wrapped, improving the convenience and effect of subsequent maintenance.
Smart Images

Figure CN223019810U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of servers, in particular to a supporting device for a big data server. Background Technique
[0002] A server is a type of computer that runs faster, has a higher load, and is more expensive than an ordinary computer. In a network, the server provides computing or application services for other client computers. During use, the server generally needs to be installed on a rack through a supporting device.
[0003] The existing server supporting device is generally a support plate fixed inside the rack. During installation, the server is placed on the corresponding support plate. However, since there is no fixing mechanism box and protection mechanism on the support plate, the server is easily damaged by collision during maintenance. And the wires connected to the server are generally directly fixed together by cable ties, which easily causes the wires to be entangled with each other, causing trouble for subsequent maintenance and poor use effect. For this reason, we propose a supporting device for a big data server. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the above-mentioned disadvantages existing in the prior art, and to propose a supporting device for a big data server.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: design a supporting device for a big data server, including several pairs of strip-shaped support plates. The strip-shaped support plates are stacked inside the rack. There are openings at both ends of the rack, and several pairs of guide rails are installed on both sides inside the rack. One end of the bottom of each pair of strip-shaped support plates is slidably connected to the corresponding guide rail through a slider;
[0006] A placement plate is installed between each pair of strip-shaped support plates, and the server is placed on the placement plate. A protective frame is provided at the top of the placement plate. The bottom of the protective frame is in contact and cooperation with the top edge of the server. The bottom edge of the protective frame extends to form a surrounding edge, and the inner surface of the surrounding edge is in contact with the side surface of the server;
[0007] Bar-shaped connecting plates are installed on both sides of the bottom of each surrounding edge. One side of the bar-shaped connecting plate extends above the strip-shaped support plate. A regulating screw is vertically installed on the top of each strip-shaped support plate. The top of each regulating screw slidably penetrates through the corresponding bar-shaped connecting plate, and an adjusting nut is sleeved on the top of each regulating screw. The bottom of the adjusting nut abuts against the top of the bar-shaped connecting plate;
[0008] A spring is also sleeved on the side of each regulating screw. The top of each spring abuts against the bottom of the bar-shaped connecting plate, and the bottom of each spring abuts against the top of the strip-shaped support plate;
[0009] At one end of each pair of strip-shaped support plates, a second fixing block is installed. A wire arranging plate is rotatably connected between each pair of second fixing blocks through a connecting shaft. A plurality of wire grooves are formed on the side surface of each wire arranging plate, and a wire is arranged inside the wire groove.
[0010] At the top of one end of each pair of strip-shaped connecting plates close to the wire arranging plate, a first fixing block is installed. A locking screw is vertically installed on one side of each first fixing block. Open slots are formed on both sides of the wire arranging plate. When the wire arranging plate rotates to the vertical direction, the open slot is sleeved on the locking screw, and a locking nut sleeve is sleeved on the side surface of the locking screw, and one end of the locking nut sleeve abuts against the side surface of the wire arranging plate.
[0011] Preferably, at both ends of the top of each strip-shaped support plate, a guide rod is vertically installed, and the top of each guide rod slidably penetrates through the corresponding strip-shaped connecting plate.
[0012] Preferably, a plurality of through slots are formed on the top of each storage plate.
[0013] Preferably, when the wire arranging plate rotates to the vertical direction, there is a gap between the adjacent ends of the adjacent two wire arranging plates, and the gap is smaller than the size of the wire.
[0014] Preferably, the width of the wire groove is greater than the diameter of the wire.
[0015] Preferably, baffles are installed at both ends of each guide rail, and a magnetic attraction block is installed on the side of each baffle close to the slider, and the magnetic attraction block is adsorbed and fixed together with the slider.
[0016] Preferably, buffer pads are provided on the top of the storage plate, the bottom of the protective frame and the inner surface of the surrounding edge.
[0017] The beneficial effects of the design scheme proposed by the present utility model in the application process are as follows:
[0018] By adjusting the cooperation of the adjusting nut sleeve and the adjusting screw, the protective frame can be covered on the server. While fixing the server, it can also protect the server, avoid the server being damaged by collision, and improve the protection effect.
[0019] The wires on the server can be limited through the wire grooves on the wire arranging plate, so that the wires are arranged neatly, the wires will not be wound together, which is convenient for subsequent maintenance and improves the use effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic structural diagram of the present utility model;
[0021] Figure 2 is a separated view of the structure of the storage plate and the protective frame of the present utility model;
[0022] Figure 3Schematic diagram of the frame structure of the present utility model;
[0023] Figure 4 Side view of the wire arranging board structure of the present utility model;
[0024] Figure 5 Side view of the frame structure of the present utility model;
[0025] Figure 6 Partial schematic diagram of the guide rail structure of the present utility model.
[0026] In the figure: 1, frame; 2, adjusting sleeve; 3, guide rod; 4, placing board; 5, slider; 6, surrounding edge; 7, strip-shaped support plate; 8, strip-shaped connecting plate; 9, protective frame; 10, wire arranging board; 11, wire arranging groove; 12, opening groove; 13, locking sleeve; 14, locking screw; 15, first fixing block; 16, through groove; 17, adjusting screw; 18, spring; 19, guide rail; 20, second fixing block; 21, baffle; 22, magnetic attraction block. Specific implementation manner
[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0028] Referring to Figures 1-6 , a supporting device for a big data server, including several pairs of strip-shaped support plates 7, the strip-shaped support plates 7 are stacked in the frame 1, both ends of the frame 1 are provided with openings, and several pairs of guide rails 19 are installed on both sides inside the frame 1. One end of the bottom of each pair of strip-shaped support plates 7 is slidably connected to the corresponding guide rail 19 through a slider 5. Through the cooperation of the slider 5 and the guide rail 19, the strip-shaped support plates 7 can be connected in the frame 1, and the strip-shaped support plates 7 can slide along the guide rail 19.
[0029] It should be noted that, as shown in Figure 3 and Figure 6 , a baffle 21 is installed at the low end of each guide rail 19, and a magnetic attraction block 22 is installed on one side of each baffle 21 close to the slider 5. The magnetic attraction block 22 is adsorbed and fixed together with the slider 5. During actual use, the slider 5 can be limited by the baffle 21 to prevent the slider 5 from slipping out of the guide rail 19. Moreover, when the slider 5 at the bottom of the strip-shaped support plate 7 moves to one end of the guide rail 19, the magnetic attraction block 22 can adsorb and fix the strip-shaped support plate 7, so that the server will not shake during the installation of the server and subsequent use.
[0030] As shown in Figure 1 and Figure 2A storage board 4 is installed between each pair of strip-shaped support plates 7. Servers are placed on the storage board 4. A protective frame 9 is provided at the top of the storage board 4. The bottom of the protective frame 9 is in contact and cooperation with the top edge of the server. The bottom edge of the protective frame 9 extends to form a surrounding edge 6, and the inner surface of the surrounding edge 6 is in contact with the side surface of the server. During actual use, the staff can place the server at a preset position on the storage board 4, and then cover the protective frame 9 on the top of the server. Under the action of the surrounding edge 6, the server can be fixed, thus avoiding the server from shaking.
[0031] As Figure 1 and Figure 2 shown, strip-shaped connecting plates 8 are installed on both sides of the bottom of each surrounding edge 6. One side of the strip-shaped connecting plate 8 extends above the strip-shaped support plate 7. A regulating screw 17 is vertically installed on the top of each strip-shaped support plate 7. The top of each regulating screw 17 slidably penetrates through the corresponding strip-shaped connecting plate 8, and a regulating nut 2 is sleeved on the top of each regulating screw 17. The bottom of the regulating nut 2 abuts against the top of the strip-shaped connecting plate 8. During actual use, after the staff places the server on the storage board 4, rotate the regulating nut 2, and the regulating nut 2 can push the strip-shaped connecting plate 8 to move along the regulating screw 17, so that the protective frame 9 covers the server to complete the fixation.
[0032] As Figure 2 shown, a spring 18 is also sleeved on the side of each regulating screw 17. The top of each spring 18 abuts against the bottom of the strip-shaped connecting plate 8, and the bottom of each spring 18 abuts against the top of the strip-shaped support plate 7. During installation, the spring 18 will generate a thrust on the strip-shaped connecting plate 8. In this way, when the staff places the server on the storage board 4, they can rotate the regulating nut 2 in the reverse direction. The spring 18 will push up the strip-shaped connecting plate 8, and the protective frame 9 will move up with the strip-shaped connecting plate 8. When the distance between the protective frame 9 and the storage board 4 can accommodate the server, stop rotating the regulating nut 2, then place the server on the storage board 4, and then rotate the regulating nut 2 in the forward direction to make the protective frame 9 cover the server.
[0033] As Figure 2 shown, a second fixing block 20 is installed at one end of each pair of strip-shaped support plates 7. A wire arranging board 10 is rotatably connected between each pair of second fixing blocks 20 through a connecting shaft. A plurality of wire grooves 11 are formed on the side surface of each wire arranging board 10. Wires are arranged inside the wire grooves 11, and the width of the wire grooves 11 is greater than the diameter of the wires. During actual use, the wires connected to the server can pass through the wire grooves 11 for connection. In this way, the wire grooves 11 can limit the wires, making the wire connections neat and not entangled with each other.
[0034] As Figure 2 and Figure 4As shown, at the top of one end of each pair of strip connecting plates 8 close to the cable arranging plate 10, a first fixing block 15 is installed. On one side of each first fixing block 15, a locking screw rod 14 is vertically installed. Open slots 12 are formed on both sides of the cable arranging plate 10. When the cable arranging plate 10 rotates to the vertical direction, the open slots 12 are sleeved on the locking screw rods 14, and a locking nut sleeve 13 is sleeved on the side surface of the locking screw rod 14. One end of the locking nut sleeve 13 abuts against the side surface of the cable arranging plate 10. During actual use, after the wire passes through the corresponding wire arranging groove 11, the staff can rotate the cable arranging plate 10 to the vertical position, so that the locking screw rod 14 can pass through the open slot 12. Then the staff screws the locking nut sleeve 13 onto the locking screw rod 14 and tightens it, and the cable arranging plate 10 can be fixed firmly.
[0035] It should be noted that, as Figure 5 shown, when the cable arranging plate 10 rotates to the vertical direction, there is a gap between the adjacent ends of two adjacent cable arranging plates 10, and the gap is smaller than the size of the wire, so that the wire located in the wire arranging groove 11 will not fall out of the wire arranging groove 11.
[0036] Specifically, when the utility model is installed, the staff pulls the strip supporting plate 7 to move one end of the strip supporting plate 7 out of the rack 1. Then the staff rotates the adjusting nut sleeve 2 in the reverse direction. Under the elastic force of the spring 18, the strip connecting plate 8 moves along with the adjusting nut sleeve 2, so that the protective frame 9 moves upward. After that, the staff extends the server between the protective frame 9 and the placing plate 4. When the server moves to the preset position, the staff places the server on the placing plate 4. Then the staff rotates the adjusting nut sleeve 2 in the forward direction, and the adjusting nut sleeve 2 moves downward along the adjusting screw rod 17, so that the strip connecting plate 8 and the protective frame 9 move downward. The protective frame 9 covers the top of the server and wraps the edge of the server. After that, the staff pushes the strip supporting plate 7 again to move the strip supporting plate 7 into the interior of the rack 1, so that the sliding block 5 contacts with the magnetic attraction block 22 at the other end of the guide rail 19 to fix the strip supporting plate 7 and complete the installation. After that, the staff connects the wire to the server and passes the wire through the corresponding wire arranging groove 11. Then the staff rotates the cable arranging plate 10 to rotate the cable arranging plate 10 to the vertical position. As Figure 5 shown, when the cable arranging plate 10 rotates to the vertical position, the locking screw rod 14 passes through the open slot 12. Then the staff sleeved the locking nut sleeve 13 on the locking screw rod 14 and tightened it to fix the cable arranging plate 10, and the limiting of the wire can be completed, so that the wires are neatly distributed.
[0037] Furthermore, as Figure 1 and Figure 2As shown in the figure, guide rods 3 are vertically installed at both ends of the top of each strip-shaped support plate 7. The top of each guide rod 3 slidably penetrates through the corresponding strip-shaped connecting plate 8. Under the action of the guide rods 3, the strip-shaped connecting plate 8 will be guided to keep it stable.
[0038] Furthermore, as Figure 2 shown in the figure, a number of through grooves 16 are provided at the top of each storage plate 4. Under the action of the through grooves 16, the bottom of the server can be connected to the external environment, so that part of the heat generated by the server during operation can be dissipated from the through grooves 16, accelerating the heat dissipation speed.
[0039] Furthermore, buffer pads are provided on the top of the storage plate 4, the bottom of the protective frame 9 and the inner surface of the surrounding edge 6. The buffer pads can be made of rubber or other materials with uniform buffering performance. During actual use, the server can be buffered and protected by the buffer pads to prevent the surface of the server from being damaged by collision during installation.
[0040] The above is only the preferred specific implementation manner of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, making equivalent replacements or changes should be covered within the protection scope of the present utility model.
Claims
1. A supporting device for a big data server, comprising a plurality of pairs of strip support plates (7), characterized in that: The strip support plates (7) are stacked in the frame (1), both ends of the frame (1) are provided with openings, and a plurality of pairs of guide rails (19) are installed on both sides of the inside of the frame (1), and one end of the bottom of each pair of strip support plates (7) is slidably connected to the corresponding guide rail (19) via a slider (5); A storage plate (4) is installed between each pair of strip support plates (7), a server is placed on the storage plate (4), a protective frame (9) is provided on the top of the storage plate (4), the bottom of the protective frame (9) contacts and cooperates with the top edge of the server, a peripheral edge (6) is extended from the bottom edge of the protective frame (9), and the inner surface of the peripheral edge (6) contacts the side of the server; A strip connecting plate (8) is installed on both sides of the bottom of each surrounding edge (6), one side of the strip connecting plate (8) extends above the strip supporting plate (7), and an adjusting screw (17) is vertically installed on the top of each strip supporting plate (7), and the top of each adjusting screw (17) slides through the corresponding strip connecting plate (8), and the top of each adjusting screw (17) is sleeved with an adjusting screw sleeve (2), and the bottom of the adjusting screw sleeve (2) is against the top of the strip connecting plate (8); A spring (18) is sleeved on the side of each adjusting screw (17), the top of each spring (18) abuts against the bottom of the strip connecting plate (8), and the bottom of each spring (18) abuts against the top of the strip supporting plate (7); A second fixing block (20) is installed at one end of each pair of strip-shaped support plates (7), and a wiring board (10) is rotatably connected between each pair of second fixing blocks (20) via a connecting shaft, and a plurality of wiring grooves (11) are provided on the side of each wiring board (10), and wires are arranged inside the wiring grooves (11); A first fixing block (15) is installed at the top of one end of each pair of strip connecting plates (8) close to the wiring board (10), and a locking screw (14) is vertically installed on one side of the first fixing block (15). Open grooves (12) are opened on both sides of the wiring board (10). When the wiring board (10) is rotated to a vertical direction, the open grooves (12) are sleeved on the locking screws (14), and the side of the locking screws (14) is sleeved with a locking screw sleeve (13), and one end of the locking screw sleeve (13) is against the side of the wiring board (10).
2. The supporting device of a big data server according to claim 1, characterized in that: Guide rods (3) are vertically mounted at both ends of the top of each strip-shaped support plate (7), and the top of each guide rod (3) slides through the corresponding strip-shaped connecting plate (8).
3. The supporting device of a big data server according to claim 1, characterized in that: A plurality of through slots (16) are formed on the top of each storage plate (4).
4. The supporting device for a big data server according to claim 1, characterized in that: When the wiring board (10) is rotated to a vertical direction, a gap exists between the proximal ends of two adjacent wiring boards (10), and the gap is smaller than the size of the wire.
5. The supporting device for a big data server according to claim 1, characterized in that: The width of the cable groove (11) is greater than the diameter of the wire.
6. The supporting device for a big data server according to claim 1, characterized in that: Baffles (21) are installed at both ends of each guide rail (19), and a magnetic block (22) is installed on one side of each baffle (21) close to the slider (5), and the magnetic block (22) and the slider (5) are adsorbed and fixed together.
7. The supporting device for a big data server according to claim 1, characterized in that: The top of the storage plate (4), the bottom of the protective frame (9) and the inner surface of the surrounding edge (6) are all provided with buffer pads.