Server storage device
By designing a server storage device with a roller pallet with a rolling part and a retracting device, the pulling risk and after-sales service cost caused by the complex connection of the server node wire is solved, and convenient operation of the node server and effective sorting of the wire is achieved.
Patent Information
- Application Number
- CN202421185482.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-28
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-05-28
AI Technical Summary
The wire connection between existing server nodes is complicated, which makes it easy to pull loose or break during the pulling process, increasing the cost of after-sales service.
A server storage device is designed, including a roller pallet and a retracting device. The roller pallet has a rolling part, and the node server can be easily slidably installed and removed, and the retracting device is used to organize and store wires connected to the node server.
It realizes convenient access and placement of node servers and sorting and storage of wires, reducing wire damage and after-sales service costs.
Smart Images

Figure CN222916308U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of terminal servers, and particularly relates to a server storage device. Background Art
[0002] With the development of Internet technology, the demand for network security servers is increasing, and Gemini and multi-Gemini servers emerge as the times require. There is both isolation and connection between each node. The wire connections between nodes are intricate and alternately connected. When a problem occurs in each node, in order not to affect the operation of other nodes, individual nodes need to be maintained.
[0003] Due to the complex wire connections between each node, it will affect the pulling of the node wires. During the pulling process of the nodes, there is a risk of accidentally loosening the wires, and it is also possible to break the wires, increasing the cost of after-sales service. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a server storage device that can facilitate the access of node servers and can organize and store the wires connected to the node servers.
[0005] To achieve the above purpose, the utility model provides a server storage device, including a node server, a box body, a first panel, a second panel, a roller tray and a winding device;
[0006] The box body has a receiving cavity. Both side walls of the box body in the first direction are respectively provided with a first opening and a second opening. Both the first opening and the second opening are communicated with the receiving cavity. The first panel is detachably installed at the first opening, the second panel is detachably installed at the second opening. The roller tray is installed in the receiving cavity. The upper end surface of the roller tray has a rolling part. The node server is placed on the rolling part. The rolling part is used to support the node server to slide on the rolling tray. The winding device is installed inside the second panel. The winding device is used to wind and organize the wires connected to the node server.
[0007] Further, the server storage device further includes a distance sensor and a control component. The distance sensor is installed on the second panel and is used to detect the distance between the node server and the second panel. The control component is arranged in the receiving cavity. The control component is electrically connected to the distance sensor and the winding device.
[0008] Further, the roller support plate includes a support plate body and a roller assembly. The support plate body is installed in the accommodation cavity, and the roller assembly is installed on the support plate body. The roller assembly includes an accommodation groove, a cover plate, and a plurality of rollers. The accommodation groove extends along the first direction, and a plurality of rollers are arranged at intervals along the extension direction of the accommodation groove in the accommodation groove. The rollers can rotate relative to the accommodation groove. A plurality of first openings corresponding to the rollers one by one are formed in the cover plate, and the cover plate covers the accommodation groove. Second openings corresponding to the rollers one by one are formed in the support plate body. The rollers sequentially pass through the first openings and the second openings from bottom to top, and partially protrude from the upper end surface of the support plate body. The rollers are the rolling parts.
[0009] Still further, the roller support plate includes at least two of the roller assemblies, and the roller assemblies are arranged at intervals along the second direction;
[0010] Wherein, the first direction is perpendicular to the second direction.
[0011] Still further, the intervals between the rollers gradually increase from the end close to the first panel to the end close to the second panel.
[0012] Still further, a guiding groove is formed in the lower end surface of the node server along the first direction, and the guiding groove is in mating abutment with the part of the roller protruding from the support plate body.
[0013] Further, the server storage device further includes a wire clamping bracket, which has a first clamping portion and a second clamping portion. One end of the support plate body close to the first panel has a third clamping portion capable of being clamped in cooperation with the first clamping portion, and one end of the node server close to the second panel has a fourth clamping portion capable of being clamped in cooperation with the second clamping portion. The wire clamping bracket further has a wire fixing portion for fixing the wire on the wire clamping bracket.
[0014] Further, the wire clamping bracket includes a first plate, a second plate, a third plate, and a wire fixing member that are sequentially arranged in parallel at intervals. In the arrangement direction of the first plate, the second plate, and the third plate, the projections of the first plate and the third plate do not overlap. A first connecting plate is connected between the upper ends of the first plate and the second plate, and a second connecting plate is connected between the lower ends of the second plate and the third plate. The first clamping portion is arranged on the second plate, and the second clamping portion is arranged on the first plate. The first clamping portion is a first through hole opened on the second plate and a first card slot that communicates with the first through hole and extends upward. The slot width of the first card slot is smaller than the aperture of the first through hole. The third clamping portion includes a first clamping post with one end mounted on the tray body and a first clamping block arranged at the other end of the first clamping post. The outer diameter of the first clamping block is larger than the outer diameter of the first clamping post, and the outer diameter of the first clamping post is equal to the slot width of the first card slot. The second clamping portion is a second through hole opened on the first plate and a second card slot that communicates with the second through hole and extends upward. The slot width of the second card slot is smaller than the aperture of the second through hole. The fourth clamping portion includes a second clamping post with one end mounted on the node server and a second clamping block arranged at the other end of the second clamping post. The outer diameter of the second clamping block is larger than the outer diameter of the second clamping post, and the outer diameter of the second clamping post is equal to the slot width of the second card slot.
[0015] Furthermore, a first wire passing hole is opened on the second plate. The first wire passing hole is arranged below the first clamping portion. The wire fixing portion is arranged on the third plate corresponding to the first wire passing hole. The wire fixing portion includes a wire fixing member. A third through hole is opened on the third plate, and a third card slot that communicates with the third through hole and the upper end of the third plate is opened on the third plate. The wire fixing member includes a third clamping block and a fourth clamping block that are arranged at intervals. A third clamping post is arranged between the third clamping block and the fourth clamping block. A second wire passing hole is opened on the wire fixing member. The second wire passing hole penetrates through the third clamping block, the third clamping post, and the fourth clamping block. The wire sequentially passes through the second through hole and the wire passing hole and is fixedly connected to the wire fixing member. The wire fixing member is detachably clamped at the third through hole through the third clamping post.
[0016] Compared with the prior art, the server storage device according to the embodiment of the present invention has the following beneficial effects: The first panel and the second panel are respectively detachably installed at the first opening and the second opening. The roller tray is installed in the accommodating cavity. The roller tray has a rolling portion. The node server is placed on the roller tray from the first opening and slid and pushed into the accommodating cavity to facilitate the taking and placing of the node server. The winding device is installed inside the second panel, and the winding device can wind and arrange the wire connected to the node server. Description of the Drawings
[0017] Figure 1 is a partial exploded view of the server storage device according to an embodiment of the present utility model;
[0018] Figure 2 is a partial exploded view of the server storage device according to an embodiment of the present utility model;
[0019] Figure 3 is an exploded view of the roller support plate of the server storage device according to an embodiment of the present utility model;
[0020] Figure 4 is an exploded view of the roller assembly of the server storage device according to an embodiment of the present utility model;
[0021] Figure 5 is a schematic structural view of the node server of the server storage device according to an embodiment of the present utility model;
[0022] Figure 6 is a sectional view of the server storage device without the installed node server according to an embodiment of the present utility model;
[0023] Figure 7 is Figure 6 a partial enlarged view of position A;
[0024] Figure 8 is a sectional structural view of the server storage device with the installed node server according to an embodiment of the present utility model;
[0025] Figure 9 is Figure 8 a partial enlarged view of position B;
[0026] Figure 10 is a schematic structural view of the wire clamping bracket and the wire of the server storage device according to an embodiment of the present utility model;
[0027] Figure 11 is a schematic structural view of the wire clamping bracket of the server storage device according to an embodiment of the present utility model;
[0028] In the figure, 1, node server; 11, guide groove; 12, fourth clamping portion; 121, second clamping post; 122, second clamping block;
[0029] 2, box body; 21, accommodation cavity; 22, first opening; 23, second opening;
[0030] 3, first panel;
[0031] 4, second panel;
[0032] 5. Roller support plate; 51. Support plate body; 511. Second through opening; 512. Third clamping part; 5121. First clamping post; 5122. First clamping block; 52. Roller assembly; 521. Accommodating groove; 522. Cover plate; 5221. First through opening; 523. Roller
[0033] 6. Retracting device
[0034] 7. Distance sensor
[0035] 8. Control component
[0036] 9. Wire clamping bracket; 91. First clamping part; 911. First through hole; 912. First clamping groove; 92. Second clamping part; 921. Second through hole; 922. Second clamping groove; 93. Wire fixing part; 931. Wire fixing piece; 9311. Third clamping block; 9312. Fourth clamping block; 9313. Third clamping post; 9314. Second wire through hole; 94. First plate; 95. Second plate; 951. First wire through hole; 96. Third plate; 961. Third through hole; 962. Third clamping groove; 97. First connecting plate; 98. Second connecting plate
[0037] 10. Wire
[0038] X. First direction
[0039] Y. Second direction Detailed implementation manners
[0040] The following further describes in detail the specific implementation manners of the present utility model in conjunction with the drawings and embodiments. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.
[0041] In the description of the present utility model, the terms "upper", "lower", "left", "right", "front", "rear", "inner", "outer", "lateral", "longitudinal", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the present utility model and simplifying the description, and are not used to limit that the indicated device, element or component must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of the present utility model. For those of ordinary skill in the art, the specific meanings of these terms in the present utility model can be understood according to specific circumstances.
[0042] In the description of the present utility model, the terms "provided with", "set", "connected", and "placed" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there can be internal communication between two devices, components, or parts. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0043] In addition, the terms "first", "second", etc. are mainly used to distinguish different devices, components, or parts (the specific types and structures may be the same or different), and are not used to indicate or imply the relative importance and quantity of the indicated devices, components, or parts. Unless otherwise specified, the meaning of "a plurality" is two or more.
[0044] The technical solution of the present utility model will be further described below in conjunction with embodiments and drawings.
[0045] As Figure 1 shown, a server storage device according to an embodiment of the present utility model includes a node server 1, a box body 2, a first panel 3, a second panel 4, a roller support plate 5, and a winding device 6;
[0046] The box body 2 has a receiving cavity 21. On both side walls of the box body 2 in the first direction X, a first opening 22 and a second opening 23 are respectively provided. Both the first opening 22 and the second opening 23 communicate with the receiving cavity 21. The first panel 3 is detachably installed at the first opening 22, and the second panel 4 is detachably installed at the second opening 23. The roller support plate 5 is installed in the receiving cavity 21. The upper end surface of the roller support plate 5 has a rolling part. The node server 1 is placed on the rolling part, and the rolling part is used to support the node server 1 to slide on the rolling support plate. The winding device 6 is installed inside the second panel 4, and the winding device 6 is used to wind and arrange the wire 10 connected to the node server 1.
[0047] Based on the above technical solution, the first panel 3 and the second panel 4 are respectively detachably installed at the first opening 22 and the second opening 23. The detachable first panel 3 facilitates the taking and placing of the node server 1 from the first opening 22. The detachable second panel 4 facilitates the arrangement of the wire 10 on the winding device 6 and also facilitates the maintenance and replacement of the winding device 6; the roller support plate 5 is installed in the receiving cavity 21. The roller support plate 5 has a rolling part. The node server 1 is placed on the roller support plate 5 from the first opening 22 and is slid and pushed into the receiving cavity 21 to achieve the convenient taking and placing of the node server 1; the winding device 6 is installed inside the second panel 4, and the winding device 6 can wind and arrange the wire 10 connected to the node server 1.
[0048] Preferably, the server storage device further includes a distance sensor 7 and a control component 8. The distance sensor 7 is installed on the second panel 4 and is used to detect the distance between the node server 1 and the second panel 4. The control component 8 is arranged in the accommodating cavity 21, and the control component 8 is electrically connected to the distance sensor 7 and the retracting device 6.
[0049] Specifically, the position of the distance sensor 7 is opposite to that of the node server 1.
[0050] In a specific embodiment, the box body 2 is provided with a switch button and a locking button. The control component 8 is electrically connected to the distance sensor 7, the retracting device 6, the switch button, and the locking button.
[0051] Based on the above technical solution, when the locking button is pressed, the retracting device 6 retracts and locks the wire 10, and the wire 10 is in a tensioned state and cannot be pulled out. When the locking button is pressed again, the retracting device 6 releases the lock, and the wire 10 on the retracting device 6 can be pulled out. After the wire 10 is pulled out of the box body 2 and connected to the node server 1, and the node server 1 is placed on the roller support plate 5, when the switch button is pressed, the retracting device 6 starts to retract the wire 10 deep in the retracting device 6. At this time, the distance sensor 7 is facing the node server 1, detecting the distance between the second panel 4 and the node server 1, identifying the position of the node server 1, and thus adjusting the rotation speed of the retracting device 6. When the node server 1 reaches the preset position (the preset position is the position where the node server 1 is completely accommodated in the accommodating groove 521), the retracting device 6 stops retracting and locks the wire 10, completing the entire retracting process.
[0052] Preferably, the roller support plate 5 includes a support plate body 51 and a roller assembly 52. The support plate body 51 is installed in the accommodation cavity 21, and the roller assembly 52 is installed on the support plate body 51. The roller assembly 52 includes an accommodation groove 521, a cover plate 522, and a plurality of rollers 523. The accommodation groove 521 extends along the first direction X. A plurality of rollers 523 are arranged at intervals along the extension direction of the accommodation groove 521 in the accommodation groove 521. The rollers 523 can rotate relative to the accommodation groove 521. A plurality of first through openings 5221 corresponding to the rollers 523 one by one are formed on the cover plate 522. The cover plate 522 covers the accommodation groove 521. Second through openings 511 corresponding to the rollers 523 one by one are formed on the support plate body 51. The rollers 523 sequentially pass through the first through openings 5221 and the second through openings 511 from bottom to top, and partially protrude from the upper end surface of the support plate body 51. The rollers 523 are rolling parts. The accommodation groove 521 and the cover plate 522 partially cover the plurality of rollers 523, which not only allows the rollers 523 to realize their rotation functions, but also can prevent the rollers 523 from falling out of the accommodation groove 521 when the roller assembly 52 is installed and disassembled on the support plate body 51. If the cover plate 522 is not provided and the accommodation groove 521 and the support plate body 51 are directly installed, when installing, since the accommodation groove 521 is installed on the support plate body 51 from bottom to top, it is difficult to observe the relative positions of the rollers 523 and the second through holes 921. The rollers 523 are easily collided with the support plate body 51, resulting in the dislocation of the rollers 523. It is necessary to readjust the positions of the rollers 523 in the accommodation groove 521 and then install them, and the installation is extremely inconvenient. After the cover plate 522 is provided, the cover plate 522 is installed on the accommodation groove 521 from top to bottom, which is convenient for the rollers 523 to correspond to the first through holes 911 one by one. And because the cover plate 522 has a limiting effect on the rollers 523, the problem of the dislocation of the rollers 523 can be avoided when the roller assembly 52 is installed on the support plate body 51, and the installation is more convenient.
[0053] More preferably, the roller support plate 5 includes at least two roller assemblies 52, and the roller assemblies 52 are arranged at intervals along the second direction Y; wherein, the first direction X is perpendicular to the second direction Y. When the node server 1 is placed on the roller support plate 5 and slides, the sliding is more stable and smooth.
[0054] More preferably, the intervals between the rollers 523 gradually increase from the end close to the first panel 3 to the end close to the second panel 4. Since the node server 1 is placed on the roller support plate 5 from the first opening 22 and slid and pushed into the accommodation cavity 21, there are more rollers 523 arranged at the end close to the first panel 3. When the node server 1 is placed and starts to be pushed, it can abut against at least two rollers 523. After abutting, it can be directly slid and pushed. If it only abuts against one roller 523 when starting to be pushed, the node server 1 is very likely to rotate in a small range around the roller 523 when sliding, and it is necessary to adjust the position of the node server 1, which is inconvenient to operate.
[0055] More preferably, a guiding groove 11 is formed in the lower end surface of the node server 1 along the first direction X, and the guiding groove 11 is in mating abutment with the part of the roller 523 protruding from the pallet body 51. By providing the guiding groove 11, firstly, the node server 1 can be limited in the second direction Y, and the node server 1 is only allowed to slide in the first direction X on the roller pallet 5. Moreover, by providing the guiding groove 11, the part of the roller 523 protruding from the pallet body 51 is received in the guiding groove 11, making the structure more compact.
[0056] Preferably, the server storage device further includes a wire clamping bracket 9. The wire clamping bracket 9 has a first clamping portion 91 and a second clamping portion 92. One end of the pallet body 51 close to the first panel 3 has a third clamping portion 512 capable of being clamped in cooperation with the first clamping portion 91. One end of the node server 1 close to the second panel 4 has a fourth clamping portion 12 capable of being clamped in cooperation with the second clamping portion 92. The wire clamping bracket 9 further has a wire fixing portion 93 for fixing the wire 10 to the wire clamping bracket 9.
[0057] Based on the above technical solution, when the wire 10 on the retracting device 6 is pulled out, it can be fixed to the wire clamping bracket 9 through the wire fixing portion 93, and then the wire clamping bracket 9 is clamped to the pallet body 51 near the first opening 22 by the cooperation of the first clamping portion 91 and the third clamping portion 512. After the wire 10 is inserted and connected to the node server 1, the wire clamping bracket 9 is removed, and the wire clamping bracket 9 is clamped to one end of the node server 1 close to the second panel 4 by the cooperation of the second clamping portion 92 and the fourth clamping portion 12. Due to the provision of the wire fixing portion 93, when the retracting device 6 pulls on the wire 10, the wire clamping bracket 9 is stressed, avoiding the stress at the insertion joint between the wire 10 and the node server 1 and preventing loosening between the node server 1 and the wire 10 when the node server 1 is placed in the accommodation cavity 21.
[0058] Preferably, the wire clamping bracket 9 includes a first plate 94, a second plate 95, a third plate 96 and a wire fixing member 931 which are arranged in parallel at intervals in sequence. In the arrangement direction of the first plate 94, the second plate 95 and the third plate 96, the projections of the first plate 94 and the third plate 96 do not overlap. The upper end of the first plate 94 and the upper end of the second plate 95 are connected by a first connecting plate 97, and the lower end of the second plate 95 and the lower end of the third plate 96 are connected by a second connecting plate 98. The first clamping portion 91 is arranged on the second plate 95, and the second clamping portion 92 is arranged on the first plate 94. The first clamping portion 91 is a first through hole 911 opened on the second plate 95 and a first card slot 912 which is communicated with the first through hole 911 and extends upward. The slot width of the first card slot 912 is smaller than the aperture of the first through hole 911. The third clamping portion 512 includes a first clamping column 5121 with one end installed on the support plate body 51 and a first clamping block 5122 arranged at the other end of the first clamping column 5121. The outer diameter of the first clamping block 5122 is larger than the outer diameter of the first clamping column 5121, and the outer diameter of the first clamping column 5121 is equal to the slot width of the first card slot 912. The second clamping portion 92 is a second through hole 921 opened on the first plate 94 and a second card slot 922 which is communicated with the second through hole 921 and extends upward. The slot width of the second card slot 922 is smaller than the aperture of the second through hole 921. The fourth clamping portion 12 includes a second clamping column 121 with one end installed on the node server 1 and a second clamping block 122 arranged at the other end of the second clamping column 121. The outer diameter of the second clamping block 122 is larger than the outer diameter of the second clamping column 121, and the outer diameter of the second clamping column 121 is equal to the slot width of the second card slot 922.
[0059] In a preferred embodiment, the structures of the first clamping portion 91 and the second clamping portion 92 are the same, and the structures of the third clamping portion 512 and the fourth clamping portion 12 are the same.
[0060] According to the specific structures of the first clamping portion 91 and the third clamping portion 512, and the specific structures of the second clamping portion 92 and the fourth clamping portion 12, the first card slot 912 of the first clamping portion 91 can cooperate with the first clamping column 5121 of the third clamping portion 512 to be clamped by the self-weight of the wire clamping bracket 9, and the clamping is convenient and reliable; the second card slot 922 of the second clamping portion 92 can cooperate with the second clamping column 121 of the fourth clamping portion 12 to be clamped by the self-weight of the wire clamping bracket 9, and the clamping is convenient and reliable.
[0061] More preferably, a first wire passing hole 951 is formed in the second plate 95. The first wire passing hole 951 is arranged below the first clamping portion 91. The wire fixing portion 93 is correspondingly arranged on the third plate 96 with respect to the first wire passing hole 951. The wire fixing portion 93 includes a wire fixing member 931. A third through hole 961 is formed in the third plate 96. A third card slot 962 communicating with the third through hole 961 and the upper end of the third plate 96 is formed in the third plate 96. The wire fixing member 931 includes a third clamping block 9311 and a fourth clamping block 9312 which are arranged at intervals. A third clamping column 9313 is arranged between the third clamping block 9311 and the fourth clamping block 9312. A second wire passing hole 9314 is formed in the wire fixing member 931. The second wire passing hole 9314 penetrates through the third clamping block 9311, the third clamping column 9313 and the fourth clamping block 9312. The wire 10 sequentially passes through the second through hole 921 and the wire passing hole and is fixedly connected to the wire fixing member 931. The wire fixing member 931 is detachably clamped at the third through hole 961 through the third clamping column 9313. After the wire clamping bracket 9 is clamped to the fourth clamping portion 12, the wire fixing member 931 can be arranged on the wire 10 according to the distance between the connecting end of the wire 10 and the third through hole 961. The wire fixing member 931 is detachably clamped at the third through hole 961, and the wire 10 can be taken off the wire clamping bracket 9 at any time for operations such as replacement, repair and adjustment of the wire 10.
[0062] In summary, the embodiment of the present utility model provides a server storage device. The first panel 3 and the second panel 4 are respectively detachably installed at the first opening 22 and the second opening 23. The detachable installation of the first panel 3 facilitates the picking and placing of the node server 1 from the first opening 22. The detachable installation of the second panel 4 facilitates the arrangement of the wire 10 on the winding device 6 and the repair and replacement of the winding device 6. The roller support plate 5 is installed in the accommodation cavity 21. The roller support plate 5 has a rolling portion. The node server 1 is placed on the roller support plate 5 from the first opening 22 and is slid and pushed into the accommodation cavity 21 to realize the convenient picking and placing of the node server 1. The winding device 6 is installed on the inner side of the second panel 4. The winding device 6 can wind and arrange the wire 10 connected to the node server 1.
[0063] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and replacements can be made, and these improvements and replacements should also be regarded as the protection scope of the present utility model.
Claims
1. A server storage device, characterized in that: The invention comprises a node server (1), a box (2), a first panel (3), a second panel (4), a roller support plate (5) and a retracting device (6); the box (2) has a receiving cavity (21); two side walls of the box (2) in a first direction (X) are respectively provided with a first opening (22) and a second opening (23); the first opening (22) and the second opening (23) are both connected to the receiving cavity (21); the first panel (3) can be detachably mounted at the first opening (22); the second panel (4) can be detachably mounted at the first opening (22); and the second panel (5) can be detachably mounted at the first opening (22). The panel (4) is detachably mounted at the second opening (23), the roller pallet (5) is mounted in the accommodating cavity (21), the upper end surface of the roller pallet (5) has a rolling portion, the node server (1) is placed on the rolling portion, the rolling portion is used to support the node server (1) to slide on the rolling pallet, the winding device (6) is mounted on the inner side of the second panel (4), and the winding device (6) is used to wind up and organize the wire (10) connected to the node server (1).
2. The server storage device according to claim 1, characterized in that: It also includes a distance sensor (7) and a control component (8); the distance sensor (7) is installed on the second panel (4) and is used to detect the distance between the node server (1) and the second panel (4); the control component (8) is arranged in the accommodating cavity (21); the control component (8) is electrically connected to the distance sensor (7) and the reeling device (6).
3. The server storage device according to claim 1, characterized in that: The roller support plate (5) comprises a support plate body (51) and a roller assembly (52); the support plate body (51) is installed in the accommodating cavity (21); the roller assembly (52) is installed on the support plate body (51); the roller assembly (52) comprises a accommodating groove (521), a cover plate (522) and a plurality of rollers (523); the accommodating groove (521) extends along the first direction (X); a plurality of rollers (523) are arranged in the accommodating groove (521) at intervals along the extending direction of the accommodating groove (521); the rollers (523) are capable of being relatively When the receiving groove (521) rotates, the cover plate (522) is provided with a plurality of first openings (5221) corresponding one-to-one to the rollers (523), the cover plate (522) is covered on the receiving groove (521), the support plate body (51) is provided with second openings (511) corresponding one-to-one to the rollers (523), the rollers (523) pass through the first openings (5221) and the second openings (511) from bottom to top in sequence, and partially protrude from the upper end surface of the support plate body (51), and the rollers (523) are the rolling parts.
4. The server storage device according to claim 3, characterized in that: The roller support plate (5) comprises at least two roller assemblies (52), and the roller assemblies (52) are arranged at intervals along the second direction (Y); The first direction (X) and the second direction (Y) are perpendicular to each other.
5. The server storage device according to claim 3, characterized in that: The interval between the rollers (523) gradually increases from an end close to the first panel (3) to an end close to the second panel (4).
6. The server storage device according to claim 3, characterized in that: A guide groove (11) is provided on the lower end surface of the node server (1) along the first direction (X), and the guide groove (11) is in abutment with a portion of the roller (523) protruding from the support plate body (51).
7. The server storage device according to claim 3, characterized in that: It also includes a wire clamping bracket (9), the wire clamping bracket (9) having a first clamping portion (91) and a second clamping portion (92), the end of the support plate (51) close to the first panel (3) having a third clamping portion (512) capable of being engaged with the first clamping portion (91), the end of the node server (1) close to the second panel (4) having a fourth clamping portion (12) capable of being engaged with the second clamping portion (92), the wire clamping bracket (9) also having a wire fixing portion (93), the wire fixing portion (93) being used to fix the wire (10) on the wire clamping bracket (9).
8. The server storage device according to claim 7, characterized in that: The wire clamping bracket (9) comprises a first plate (94), a second plate (95), a third plate (96) and a wire fixing member (931) which are arranged in parallel and spaced apart in sequence. In the arrangement direction of the first plate (94), the second plate (95) and the third plate (96), the projections of the first plate (94) and the third plate (96) do not overlap. The upper end of the first plate (94) and the upper end of the second plate (95) are connected to a first connecting plate (97). The lower end of the second plate (95) and the third plate (96) are connected to each other. The lower end of the second connecting plate (98) is connected to the first connecting plate (98), the first clamping portion (91) is arranged on the second plate (95), the second clamping portion (92) is arranged on the first plate (94), the first clamping portion (91) is a first through hole (911) provided on the second plate (95) and a first clamping groove (912) connected to the first through hole (911) and extending upward, the groove width of the first clamping groove (912) is smaller than the hole diameter of the first through hole (911), and the third clamping portion (512) includes a first through hole (911) provided on the second plate (95) and a first through hole (911) provided on the second plate (95). The first clamping portion (92) comprises a first clamping column (5121) installed at one end of the support plate body (51) and a first clamping block (5122) arranged at the other end of the first clamping column (5121), the outer diameter of the first clamping block (5122) is greater than the outer diameter of the first clamping column (5121), and the outer diameter of the first clamping column (5121) is equal to the groove width of the first clamping groove (912); the second clamping portion (92) is a second through hole (921) opened on the first plate (94) and connected to the second through hole (921) and extending upward A second card slot (922) is extended and opened, the slot width of the second card slot (922) is smaller than the aperture of the second through hole (921), the fourth card connection portion (12) comprises a second card column (121) with one end mounted on the node server (1) and a second card block (122) arranged at the other end of the second card column (121), the outer diameter of the second card block (122) is larger than the outer diameter of the second card column (121), and the outer diameter of the second card column (121) is equal to the slot width of the second card slot (922).
9. The server storage device according to claim 8, characterized in that: The second plate (95) is provided with a first wire passing hole (951), the first wire passing hole (951) is arranged below the first clamping portion (91), the wire fixing portion (93) is arranged on the third plate (96) corresponding to the first wire passing hole (951), the wire fixing portion (93) includes a wire fixing member (931), the third plate (96) is provided with a third through hole (961), the third plate (96) is provided with a third clamping groove (962) connecting the third through hole (961) and the upper end of the third plate (96), the wire fixing member (931) includes a third clamping block (9311) and a fourth clamping block (9312) arranged at intervals. 9312), a third clamping column (9313) is provided between the third clamping block (9311) and the fourth clamping block (9312), a second wire passing hole (9314) is opened on the wire fixing member (931), and the second wire passing hole (9314) passes through the third clamping block (9311), the third clamping column (9313) and the fourth clamping block (9312), the wire (10) passes through the second through hole (921) and the through hole in sequence, and is fixedly connected to the wire fixing member (931), and the wire fixing member (931) is detachably clamped to the third through hole (961) through the third clamping column (9313).