A network security server cable management device with a fitted partition positioning
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2026-08-11
AI Technical Summary
目前的服务器内存在大量的数据线缆用于各模块间的数据传输,若整理不当,混乱交错的数据线缆则会导致系统内部结构杂乱无章,使得调试、维修困难,甚至影响服务器内部的散热效果,且服务器内部的数据线缆的众多,不同端口的接线长度也不同,若整理不当,容易导致服务器内部的数据线缆排布散乱,不便于辨认
[0014]1. This invention provides a cable management device for a network security server with a conformal partition positioning. The power cable is inserted into the chassis through the cable inlet at the bottom of the chassis, and then into the server part through the cable clamping groove of the clamping box. Pulling the second control block upward causes the pressure plate to be raised, allowing the power cable to be inserted and installed in the server. After installation, the second control block is released, and the pressure plate returns to its original position under the elastic action of the tension spring, clamping and fixing the power cable to ensure its stability.
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Figure CN119620831B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of server technology, and in particular to a cable management device for network security servers with a conformal partition positioning system. Background Technology
[0002] With the rapid development of electronic technology, various technologies have become increasingly mature, making the aesthetics and heat dissipation of products increasingly important. Electronic devices, especially servers, rely heavily on connecting cables for their internal structure. Current servers contain a large number of data cables used for data transmission between modules. If not properly organized, these tangled and chaotic cables can lead to a disorganized internal system structure, making debugging and maintenance difficult, and even affecting the server's internal heat dissipation. Furthermore, the numerous data cables within a server, with varying lengths at different ports, can easily result in a scattered and difficult-to-identify cable arrangement if not properly organized. Summary of the Invention
[0003] The purpose of this invention is to provide a cable management device for a network security server with a conformal partition positioning, which solves the technical problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a cable management device for a network security server with a conformal partition positioning system, comprising a chassis, an adjustment device, two cable management devices, and a fixing frame. The adjustment device includes a first adjustment frame and a second adjustment frame. Each of the two cable management devices includes a cable management box. A slot is formed through the outer wall of each cable management box. Two cable clamping boxes are slidably disposed inside each slot. A connecting block is fixedly disposed on the top outer wall of each cable clamping box. A first control block is fixedly disposed on the top outer wall of each connecting block. A cable clamping groove is formed through the outer wall of each cable clamping box. The cable clamping boxes inside the two slots are symmetrically arranged. The two cable clamping boxes located at the first adjustment frame form a first group, and the two cable clamping boxes located at the second adjustment frame form a second group. The two wire clamping boxes form the second group. Support blocks and buffer plates are fixedly installed on the outer walls of opposite sides of both groups of wire clamping boxes. Each support block has a hole on its outer wall, and a movable rod is slidably inserted into the inner wall of each hole. A second control block is fixedly installed on the top outer wall of each movable rod, and a pressure plate is fixedly installed on the bottom outer wall of each movable rod. A tension spring is fixedly installed between each support block and its corresponding second control block. Each wire clamping box has an adjustment groove on its top outer wall, and each adjustment groove communicates with a corresponding box slot. Each connecting block is located inside its corresponding adjustment groove and slides within the corresponding adjustment groove. Each first control block is located above its corresponding wire clamping box.
[0005] Preferably, each of the cable ties has an adjusting rod slidably inserted into the outer wall of the side of the cable tie box near the door; a connecting plate is fixedly provided on the outer wall of the inner end of each adjusting rod located inside the cable tie box; a pull block is fixedly provided on the outer wall of the outer end of each adjusting rod located outside the cable tie box; a compression spring is provided between each connecting plate and the inner wall of the corresponding cable tie box; a limit block is fixedly provided on the outer wall of each cable tie box away from the door; sliding grooves are provided on both outer walls of the first and second adjusting frames; and the two sliding grooves are respectively connected to the inner walls of the corresponding first and second adjusting frames.
[0006] Preferably, a drive motor is fixedly installed on one outer wall of the fixed frame, and a bidirectional lead screw is fixedly installed at the output end of the drive motor. The outer wall of the bidirectional lead screw away from the drive motor is rotatably connected to the inner wall of the fixed frame. A first sliding block is fixedly installed on the outer wall of the first adjusting frame away from the box door, and a second sliding block is fixedly installed on the outer wall of the second adjusting frame away from the box door. The outer wall of the bidirectional lead screw is threadedly connected to the inner wall of the first sliding block, and the outer wall of the bidirectional lead screw is threadedly connected to the inner wall of the second sliding block.
[0007] Preferably, the bottom outer wall of the chassis has several cable inlets.
[0008] Preferably, the inner walls of both the first and second adjustment frames are slidably connected to the corresponding wire harness devices.
[0009] Preferably, the adjustment device is located inside the chassis and is slidably connected to the inner wall of the chassis.
[0010] Preferably, the mounting bracket is located inside the chassis and is fixedly connected to the inner wall of the chassis, and the cable management device is located inside the chassis.
[0011] Preferably, the door is rotatably connected to the chassis.
[0012] Preferably, each of the pressure plates is located below the corresponding support block, each of the second control blocks is located above the corresponding support block, each of the movable rods is located inside the corresponding tension spring, each of the support blocks is located above the corresponding pressure groove, and each of the buffer plates is located below the corresponding pressure groove.
[0013] Compared with related technologies, the cable management device for network security servers with a conformal partition positioning provided by the present invention has the following beneficial effects:
[0014] 1. This invention provides a cable management device for a network security server with a conformal partition positioning. The power cable is inserted into the chassis through the cable inlet at the bottom of the chassis, and then into the server part through the cable clamping groove of the clamping box. Pulling the second control block upward causes the pressure plate to be raised, allowing the power cable to be inserted and installed in the server. After installation, the second control block is released, and the pressure plate returns to its original position under the elastic action of the tension spring, clamping and fixing the power cable to ensure its stability.
[0015] 2. This invention provides a cable management device for network security servers with a conformal partition positioning system. By adjusting the cable management device inside the first and second adjustment frames according to the server's wiring height, the pull block is pulled outward. As the pull block is stretched outward, it causes the connecting plate to squeeze the compression spring, causing the pull block to detach from the surface of the cable box. Pulling the pull block up and down causes the cable box to slide up and down. When the cable box slides to the corresponding position of the server's wiring terminal, the pull block is released. Under the elastic action of the compression spring, the pull block resets and re-fits the cable box, ensuring the stability of the cable box.
[0016] 3. This invention provides a cable management device for network security servers with a conformal partition positioning system. By simultaneously setting multiple cable clamping boxes with several cable clamping slots, the cable clamping boxes can clamp and fix multiple data cables at the same time, facilitating maintenance and identification, and preventing power cables from becoming loose. Pulling the first control block can cause the cable clamping box to slide inside the slot of the cable management box, adjusting the position of the power cable according to the position of the server connection port, effectively preventing the problem of some power cables being too short to be easy to manage.
[0017] 3. This invention provides a cable management device for a network security server with a conformal partition positioning system. Activating the drive motor causes a bidirectional lead screw to rotate. As the lead screw rotates, a first sliding block and a second sliding block are threaded onto the outer wall of the lead screw. The first and second sliding blocks have opposite threads. The first sliding block is fixedly mounted on a first adjusting frame, and the second sliding block is mounted on a second adjusting frame. When the bidirectional lead screw rotates, the first and second adjusting frames move in opposite directions. When cable management is required for the server, the distance between the first and second adjusting frames is controlled according to the size of the server to facilitate power cable connection and installation. Simultaneously, the first and second adjusting frames, when adjusted to be close together, limit the server's movement, ensuring server stability. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0019] Figure 2 This is a schematic diagram of the structure at the inlet of the present invention;
[0020] Figure 3This is a schematic diagram of the structure of the adjusting device of the present invention;
[0021] Figure 4 This is an exploded view of a portion of the structure of the adjusting device of the present invention;
[0022] Figure 5 This is an exploded view of another angle portion of the structure of the adjustment device of the present invention;
[0023] Figure 6 This is a schematic diagram of the structure of the first adjustment frame of the present invention;
[0024] Figure 7 This is a schematic diagram of the structure of the wire harness device of the present invention;
[0025] Figure 8 This is an exploded view of a portion of the structure of the wire harness device of the present invention;
[0026] Figure 9 This is a partial structural cross-sectional view of the wire harness device of the present invention;
[0027] Figure 10 For the present invention Figure 8 Enlarged view of the structure at point A in the middle;
[0028] Figure 11 For the present invention Figure 9 Enlarged view of the structure at point B in the middle;
[0029] Figure 12 For the present invention Figure 4 Enlarged view of the structure at point C.
[0030] In the diagram: 1. Chassis; 101. Cable inlet; 102. Cabinet door; 2. Adjustment device; 201. First adjustment frame; 202. Sliding groove; 203. First sliding block; 3. Cable harness device; 301. Cable harness box; 302. Adjustment groove; 303. Wire clamping box; 304. Connecting block; 305. First control block; 306. Support block; 307. Block hole; 308. Movable rod; 309. Tension spring; 310. Second control block; 311. Wire clamping groove; 312. Buffer plate; 313. Pressure plate; 314. Adjustment rod; 315. Connecting plate; 316. Compression spring; 317. Pull block; 318. Box groove; 319. Limiting block; 4. Fixing frame; 401. Drive motor; 402. Bidirectional lead screw; 403. Second sliding block; 5. Second adjustment frame. Detailed Implementation
[0031] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0032] Example 1:
[0033] Please see Figures 1-12This invention provides a technical solution: a cable management device for a network security server with a conformal partition positioning system, comprising a chassis 1, an adjustment device 2, two cable management devices 3, and a fixing frame 4. The adjustment device 2 includes a first adjustment frame 201 and a second adjustment frame 5. Each of the two cable management devices 3 includes a cable management box 301. The outer walls of both cable management boxes 301 are provided with slots 318. Two cable clamping boxes 303 are slidably disposed inside each slot 318. A connecting block 304 is fixedly disposed on the top outer wall of each cable clamping box 303. A first control block 305 is fixedly disposed on the top outer wall of each connecting block 304. A cable clamping groove 311 is provided through the outer wall of each cable clamping box 303. The cable clamping boxes 303 inside the two slots 318... The two wire clamping boxes 303 located at the first adjusting frame 201 form the first group, and the two wire clamping boxes 303 located at the second adjusting frame 5 form the second group. Support blocks 306 and buffer plates 312 are fixedly installed on the outer walls of opposite sides of both groups of wire clamping boxes 303. Each support block 306 has a hole 307 on its outer wall, and a movable rod 308 is slidably inserted into the inner wall of each hole 307. A second control block 310 is fixedly installed on the top outer wall of each movable rod 308, and a pressure plate 313 is fixedly installed on the bottom outer wall of each movable rod 308. A tension spring 309 is fixedly installed between each support block 306 and the corresponding second control block 310. A drive motor 401 is fixedly installed on one outer wall of the fixing frame 4. A bidirectional lead screw 402 is fixedly installed at the output end of the drive motor 401. The outer wall of the end of the bidirectional lead screw 402 away from the drive motor 401 is rotatably connected to the inner wall of the fixing frame 4. A first sliding block 203 is fixedly installed on the outer wall of the first adjusting frame 201 away from the box door 102. A second sliding block 403 is fixedly installed on the outer wall of the second adjusting frame 5 away from the box door 102. The outer wall of the bidirectional lead screw 402 is threadedly connected to the inner wall of the first sliding block 203, and the outer wall of the bidirectional lead screw 402 is threadedly connected to the inner wall of the second sliding block 403. An adjusting groove 302 is opened on the top outer wall of each cable tie box 301. Each adjusting groove 302 is connected to the corresponding box groove 318. Each connecting block 304 is located in the corresponding adjusting groove 302. Inside the enclosure, each connecting block 304 slides within its corresponding adjusting slot 302, and each first control block 305 is positioned above its corresponding cable tie box 301. The bottom outer wall of the enclosure 1 has several cable inlets 101. The inner walls of the first adjusting frame 201 and the second adjusting frame 5 are slidably connected to their respective cable ties 3. The adjusting device 2 is located inside the enclosure 1 and is slidably connected to the inner wall of the enclosure 1. The fixing frame 4 is located inside the enclosure 1 and is fixedly connected to the inner wall of the enclosure 1. The cable tie device 3 is located inside the enclosure 1. The door 102 is rotatably connected to the enclosure 1. Each pressure plate 313 is positioned below its corresponding support block 306, and each second control block 310 is positioned above its corresponding support block 306.Each movable rod 308 is located inside its corresponding tension spring 309, each support block 306 is located above its corresponding pressure groove 311, and each buffer plate 312 is located below its corresponding pressure groove 311.
[0034] In this embodiment, when using the device, the prepared server is first placed between the first adjusting frame 201 and the second adjusting frame 5 inside the chassis 1. Depending on the size of the server, the drive motor 401 is started to rotate the bidirectional lead screw 402. As the bidirectional lead screw 402 rotates, a first sliding block 203 and a second sliding block 403 are threaded onto the outer wall of the bidirectional lead screw 402. The first sliding block 203 and the second sliding block 403 have opposite threads. The first sliding block 203 is fixedly installed on the first adjusting frame 201, and the second sliding block 403 is installed on the second adjusting frame 5. When the bidirectional lead screw 402 rotates, the first adjusting frame 201 and the second adjusting frame 5 move in opposite directions. When it is necessary to perform cable management on the server, the first adjusting frame 201 and the second adjusting frame 5 are controlled according to the size of the server. The spacing of frame 5 facilitates the connection and installation of power cords. The power cord is inserted into the chassis 1 through the inlet 101 at the bottom of the chassis 1, and then into the server part through the clamping groove 311 of the clamping box 303. Pulling the second control block 310 upwards causes the clamping plate 313 to lift, allowing the power cord to be inserted into the server for installation. After installation, the second control block 310 is released, and the clamping plate 313 returns to its original position under the elastic action of the tension spring 309, clamping and fixing the power cord to ensure its stability and prevent the power cord from becoming loose from the port. Pulling the first control block 305 can cause the clamping box 303 to slide inside the slot 318 of the cable tie box 301, adjusting the position of the power cord according to the position of the server connection port, effectively preventing the problem of some power cords being too short to be easy to manage.
[0035] Example 2:
[0036] Please see Figures 1-11 As shown, based on Embodiment 1, the present invention provides a technical solution: each cable tie box 301 has an adjusting rod 314 slidably inserted into the outer wall of the side near the door 102; each adjusting rod 314 has a connecting plate 315 fixedly installed on the outer wall of the end inside the cable tie box 301; each adjusting rod 314 has a pull block 317 fixedly installed on the outer wall of the end outside the cable tie box 301; each cable tie box 301 has a limit block 319 fixedly installed on the outer wall of the side away from the door 102; and sliding grooves 202 are opened on both sides of the outer walls of the first adjusting frame 201 and the second adjusting frame 5, respectively communicating with the inner walls of the corresponding first adjusting frame 201 and the second adjusting frame 5.
[0037] In this embodiment, the first adjustment frame 201 and the second adjustment frame 5 are adjusted to be close together to limit the server and ensure the stability of the server. When cable management is required, the cable management device 3 inside the first adjustment frame 201 and the second adjustment frame 5 is adjusted according to the height of the server's wiring. Pulling the pull block 317 outward causes the connecting plate 315 to squeeze the compression spring 316, and the pull block 317 is separated from the surface of the cable box 301. Pulling the pull block 317 up and down causes the cable box 301 to slide up and down. When the cable box 301 slides to the corresponding position of the server's wiring terminal, the pull block 317 is released. Under the elastic action of the compression spring 316, the pull block 317 resets and re-fits the cable box 301, ensuring the stability of the cable box 301.
[0038] Working Principle: When using the device, first place the prepared server between the first adjustment frame 201 and the second adjustment frame 5 inside the chassis 1. Depending on the size of the server, start the drive motor 401 to rotate the bidirectional lead screw 402. As the bidirectional lead screw 402 rotates, a first sliding block 203 and a second sliding block 403 are threaded onto the outer wall of the bidirectional lead screw 402. The first sliding block 203 and the second sliding block 403 have opposite threads. The first sliding block 203 is fixedly installed on the first adjustment frame 201, and the second sliding block 403 is installed on the second adjustment frame 5. When the bidirectional lead screw 402 rotates, the first adjustment frame 201... The first adjustment frame 201 and the second adjustment frame 5 move in opposite directions. When cable management is required for the server, the distance between the first adjustment frame 201 and the second adjustment frame 5 is controlled according to the size of the server to facilitate the connection and installation of power cables. At the same time, the first adjustment frame 201 and the second adjustment frame 5 are adjusted to be close together to limit the server and ensure the stability of the server. When cable management is required, the cable management device 3 inside the first adjustment frame 201 and the second adjustment frame 5 is adjusted according to the height of the server's wiring. Pulling the pull block 317 outward, as the pull block 317 is pulled outward, it causes the connecting plate 315 to squeeze the compression spring 316, and the pull block 317 disengages. On the surface of the cable tie 301, pulling the pull block 317 up and down causes the cable tie 301 to slide up and down. When the cable tie 301 slides to the corresponding position of the server terminal, the pull block 317 is released. Under the elastic action of the compression spring 316, the pull block 317 returns to its original position and re-fits the cable tie 301, ensuring the stability of the cable tie 301. The power cord is inserted into the chassis 1 through the inlet 101 at the bottom of the chassis 1, and then into the server part through the wire clamping groove 311 of the clamping box 303. Pulling the second control block 310 upward causes the clamping plate 313 to lift, allowing the power cord to be inserted and installed in the server. After installation, the second control block 310 is released, and the clamping plate... Under the elastic action of the tension spring 309, 313 resets and clamps and fixes the power cord to ensure the stability of the power cord. At the same time, multiple wire clamping boxes 303 are provided, and several wire clamping grooves 311 are opened in the wire clamping boxes 303, so that the wire clamping boxes 303 can clamp and fix multiple data cables at the same time, which facilitates maintenance and identification and prevents the power cord from becoming loose from the port. Pulling the first control block 305 can drive the wire clamping box 303 to slide inside the box groove 318 of the cable tie box 301, and adjust the position of the power cord according to the position of the server connection port, effectively preventing the problem of some power cords being too short to be easy to manage.
[0039] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, the phrase "comprising an element defined as..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0040] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A cable management device for a network security server with a conformal partition positioning system, comprising a chassis (1), an adjustment device (2), two cable management devices (3), and a fixing frame (4), characterized in that: The adjustment device (2) includes a first adjustment frame (201) and a second adjustment frame (5). Both cable management devices (3) include cable management boxes (301). The outer walls of both cable management boxes (301) are perforated with slots (318). Each slot (318) contains two slidingly arranged wire clamping boxes (303). Each wire clamping box (303) has a connecting block (304) fixedly installed on its top outer wall. The top outer wall of each connecting block (304) has a... Each wall is fixedly provided with a first control block (305), and each of the wire clamping boxes (303) has a wire clamping groove (311) extending through its outer wall. The wire clamping boxes (303) inside the two box grooves (318) are arranged symmetrically. The two wire clamping boxes (303) located at the first adjustment frame (201) form the first group, and the two wire clamping boxes (303) located at the second adjustment frame (5) form the second group. Support blocks (306) are fixedly provided on the outer walls of the opposite sides of the two groups of wire clamping boxes (303). And a buffer plate (312), each of the support blocks (306) has a block hole (307) on its outer wall, a movable rod (308) is slidably inserted into the inner wall of each block hole (307), a second control block (310) is fixedly installed on the top outer wall of each movable rod (308), and a pressure plate (313) is fixedly installed on the bottom outer wall of each movable rod (308). Each support block (306) and the corresponding second control block (310) are fixedly connected. Each of the cable ties (301) is provided with a tension spring (309), and each of the cable ties (301) has an adjustment groove (302) on its top outer wall. Each of the adjustment grooves (302) is connected to a corresponding slot (318). Each of the connecting blocks (304) is located inside the corresponding adjustment groove (302) and slides inside the corresponding adjustment groove (302). Each of the first control blocks (305) is located above the corresponding cable ties (301).
2. The cable management device for a network security server with a conformal partition positioning according to claim 1, characterized in that: Each of the cable ties (301) has an adjusting rod (314) slidably inserted into the outer wall of the side near the door (102). Each adjusting rod (314) has a connecting plate (315) fixedly installed on the outer wall of the end inside the cable ties (301). Each adjusting rod (314) has a pull block (317) fixedly installed on the outer wall of the end outside the cable ties (301). Each connecting plate (315) is provided with a compression spring (316) between it and the inner wall of the corresponding cable ties (301). Each cable ties (301) has a limit block (319) fixedly installed on the outer wall of the side away from the door (102). The outer walls of the first adjusting frame (201) and the second adjusting frame (5) are provided with sliding grooves (202). The two sliding grooves (202) are respectively connected to the inner walls of the corresponding first adjusting frame (201) and the second adjusting frame (5).
3. The cable management device for a network security server with a conformal partition positioning according to claim 1, characterized in that: A drive motor (401) is fixedly installed on one side of the outer wall of the fixed frame (4). A bidirectional lead screw (402) is fixedly installed at the output end of the drive motor (401). The outer wall of the bidirectional lead screw (402) away from the drive motor (401) is rotatably connected to the inner wall of the fixed frame (4). A first sliding block (203) is fixedly installed on the outer wall of the first adjustment frame (201) away from the box door (102). A second sliding block (403) is fixedly installed on the outer wall of the second adjustment frame (5) away from the box door (102). The outer wall of the bidirectional lead screw (402) is threadedly connected to the inner wall of the first sliding block (203). The outer wall of the bidirectional lead screw (402) is threadedly connected to the inner wall of the second sliding block (403).
4. The cable management device for a network security server with a conformal partition positioning according to claim 1, characterized in that: The bottom outer wall of the chassis (1) has several cable inlets (101).
5. The cable management device for a network security server with a conformal partition positioning according to claim 1, characterized in that: The inner walls of the first adjustment frame (201) and the second adjustment frame (5) are slidably connected to the corresponding wire harness device (3).
6. The cable management device for a network security server with a conformal partition positioning according to claim 1, characterized in that: The adjustment device (2) is located inside the chassis (1) and is slidably connected to the inner wall of the chassis (1).
7. The cable management device for a network security server with a conformal partition positioning according to claim 1, characterized in that: The fixing frame (4) is located inside the chassis (1) and is fixedly connected to the inner wall of the chassis (1). The cable harness (3) is located inside the chassis (1).
8. The cable management device for a network security server with a conformal partition positioning according to claim 2, characterized in that: The door (102) is rotatably connected to the chassis (1).
9. The cable management device for a network security server with a conformal partition positioning according to claim 1, characterized in that: Each of the pressure plates (313) is located below the corresponding support block (306), each of the second control blocks (310) is located above the corresponding support block (306), each of the movable rods (308) is located inside the corresponding tension spring (309), each of the support blocks (306) is located above the corresponding pressure groove (311), and each of the buffer plates (312) is located below the corresponding pressure groove (311).
Citation Information
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