Computer network cable wiring fixing device
By designing a computer network cable fixing device, and utilizing limiting components and an S-shaped layout, the length of the network cable can be flexibly adjusted, solving the problem of resource waste when the computer position changes in traditional devices, and improving the neatness of the cabling and space utilization.
Patent Information
- Application Number
- CN202520054808.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Traditional fixed cabling systems suffer from resource waste because the network cable length remains constant when the computer's location changes.
A computer network cable fixing device was designed. The limiting components, including fastening bolts and fastening nuts, allow the network cable to be flexibly adjusted between the back plate and the front plate. Combined with the S-shaped layout and anti-slip pads, the length of the network cable can be flexibly adjusted.
This effectively avoids network cable idleness and resource waste caused by changes in computer location, and improves the neatness of cabling and space utilization.
Smart Images

Figure CN223912196U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of network cable wiring fixing, in particular to a computer network cable wiring fixing device. BACKGROUND
[0002] With the wide application of computer technology, many work tasks cannot be separated from the support of computers and the Internet. In order to use the Internet, it is usually necessary to connect computers with network cables. In order to avoid the network cables from being tangled together, we often use wiring fixing devices to arrange and fix the network cables.
[0003] However, the traditional wiring fixing device has a significant defect: once the position of the computer changes, the original wiring may no longer be suitable because the length of the network cable is fixed. At this time, the user often has to choose a new network cable with appropriate length to rewire, which causes the old network cable with perfect function to be idle. This method undoubtedly causes waste of resources. In order to solve this problem, we need a computer network cable wiring fixing device to solve the above problems. SUMMARY
[0004] The utility model aims at providing a computer network cable wiring fixing device, which has the advantage of flexible adjustment of network cable length and solves the problem of idle network cable and waste of resources caused by the traditional wiring fixing device when the position of the computer changes.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a computer network cable wiring fixing device, comprising a back plate, a front plate is fixedly installed on the front of the back plate, a network cable body passes through the opposite side of the front plate and the back plate, a limiting component is slidingly installed on the opposite side of the front plate and the back plate, a nut sliding groove is vertically and equidistantly formed in the inside of the back plate, and a bolt sliding groove is formed on the front of the back plate opposite the nut sliding groove; a front sliding groove is formed on the front of the front plate, and the position of the front sliding groove is matched with the position of the bolt sliding groove; the limiting component comprises a fastening nut, the fastening nut is slidingly installed in the nut sliding groove, a fastening bolt is threadedly installed on the fastening nut, and the front end of the fastening bolt passes through the front sliding groove.
[0006] Preferably, the upper and lower ends of the back plate are penetrated by the nut sliding groove and the bolt sliding groove, and the upper and lower ends of the back plate are fixedly installed with a cover.
[0007] The design of the cover in the design ensures the closure of the nut sliding groove and the bolt sliding groove, preventing the fastening nut and the fastening bolt from falling off.
[0008] The installation of the cover also enhances the overall structural strength of the back plate, making it more solid and durable.
[0009] Preferably, the back plate of the back of the nut sliding groove is provided with a reserved groove which is a mirror image of the bolt sliding groove, and the rear end of the fastening bolt passes through the fastening nut and extends into the reserved groove.
[0010] The design of the reserved groove in the design fully utilizes the space of the back plate and provides space for the fastening bolt to pass through.
[0011] The rear end of the fastening bolt extending into the reserved groove can further prevent the bolt from loosening due to vibration or external force during long-term use.
[0012] Preferably, the front sliding groove is matched in width with the bolt sliding groove, and the width of the front sliding groove is matched with the cross-sectional dimension of the fastening bolt.
[0013] The width of the front sliding groove is matched with the bolt sliding groove in the design, which ensures that the fastening bolt can accurately and smoothly pass through the front sliding groove and the bolt sliding groove, and realizes accurate positioning of the network position.
[0014] The matching of the width of the front sliding groove with the cross-sectional dimension of the fastening bolt also enhances the stability of the fastening bolt on the front plate, preventing the bolt from shifting or loosening during use.
[0015] Preferably, the network body is distributed in an S shape on the opposite side of the front plate and the back plate by the fastening bolt.
[0016] The S-shaped distribution of the network layout in the design makes the network flexible to adapt to different length requirements, while also reducing the disorder of the network and improving the beauty and neatness of the wiring.
[0017] The S-shaped layout also fully utilizes the space between the back plate and the front plate, allowing more network to be neatly arranged together and improving the space utilization.
[0018] Preferably, the fastening bolt on the opposite side of the front plate and the network body is fixedly installed with a non-slip pad, one side of the non-slip pad is in contact with the network body but not fixedly connected, and the other side of the non-slip pad is not in contact with the back of the front plate.
[0019] The design of the non-slip pad in the design increases the friction between the fastening bolt and the network body, preventing the network from being damaged or loosened due to sliding during fastening.
[0020] The non-slip pad is in contact with the network body but not fixedly connected, which not only plays a non-slip role, but also avoids damage to the network caused by excessive fastening. At the same time, the other side of the non-slip pad is not in contact with the back of the front plate, ensuring that the fastening bolt will not cause additional pressure on the front plate when being tightened.
[0021] Compared with the prior art, the beneficial effects of the present application are as follows:
[0022] The utility model discloses a limiting assembly is by fastening bolt and fastening nut, wherein fastening nut can slide in the nut sliding slot inside backboard. This design allows the position of the network cable body between the backboard and the front plate to be adjusted as needed. The bolt sliding slot on the backboard matches the front sliding slot on the front plate, ensuring that the fastening bolt can smoothly pass through the two slots to fix the network cable body. At the same time, this design also allows the fastening bolt to move within the slot, thereby adjusting the position of the network cable body. The network cable body is distributed in an S shape between the front plate and the back plate by the fastening bolt. This layout not only allows the network cable to flexibly adapt to different length requirements, but also reduces the clutter of the network cable and improves the neatness of the wiring. When the length of the network cable needs to be adjusted, the corresponding fastening bolt can be loosened, and then the network cable can be pulled to a new position and re-fixed.
[0023] The anti-slip pad installed on the fastening bolt increases the friction between the network cable body and the fastening bolt, preventing the network cable from being damaged or loosened due to sliding during the fastening process. At the same time, the anti-slip pad is in contact with the network cable body but not fixedly connected, avoiding damage to the network cable caused by excessive tightening.
[0024] The design of the nut sliding slot and the bolt sliding slot allows the fastening bolt and the fastening nut to move flexibly within a certain range, thereby adapting to the length change of the network cable between the front plate and the back plate. This design not only improves the flexibility of the device, but also effectively avoids the problem of idle network cable and resource waste caused by the change of computer position. In summary, the utility model realizes the advantage of flexible adjustment of network cable length and effectively solves the problems existing in traditional wiring fixing devices. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is a front view structural schematic diagram of the utility model;
[0026] Figure 2 It is a cross-sectional structural schematic diagram of the utility model;
[0027] Figure 3 It is a Figure 2 enlarged portion structural schematic diagram of the utility model;
[0028] Figure 4 It is a network cable body wiring direction structural schematic diagram of the utility model;
[0029] Figure 5 It is a backboard structural schematic diagram of the utility model.
[0030] In the figure: 1, backboard; 11, cover; 12, nut sliding slot; 13, bolt sliding slot; 2, front plate; 21, front sliding slot; 3, limiting assembly; 31, fastening bolt; 32, fastening nut; 33, anti-slip pad; 4, network cable body. DETAILED DESCRIPTION
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0032] Example 1
[0033] like Figures 1 to 5 As shown, one embodiment of this utility model provides a computer network cable fixing device, including a back plate 1, a front plate 2 fixedly installed on the front of the back plate 1, a network cable body 4 passing through the front plate 2 on the opposite side of the back plate 1, a limiting component 3 slidably installed on the opposite side of the front plate 2 and the back plate 1, nut grooves 12 vertically and equidistantly opened inside the back plate 1, and bolt grooves 13 opened on the back plate 1 on the front of the nut grooves 12; a front groove 21 is opened on the front of the front plate 2, and the opening position of the front groove 21 matches the opening position of the bolt groove 13; the limiting component 3 includes a fastening nut 32, the fastening nut 32 is slidably installed in the nut groove 12, and a fastening bolt 31 is threaded on the fastening nut 32, the front end of the fastening bolt 31 passing through the front groove 21.
[0034] Specifically, the limiting component 3 consists of a fastening bolt 31 and a fastening nut 32, wherein the fastening nut 32 can slide within a nut groove 12 inside the back plate 1. This design allows the position of the network cable body 4 between the back plate 1 and the front plate 2 to be adjusted as needed. The bolt groove 13 on the back plate 1 matches the front groove 21 on the front plate 2, ensuring that the fastening bolt 31 can smoothly pass through these two grooves to fix the network cable body 4. At the same time, this design also allows the fastening bolt 31 to move within the groove, thereby adjusting the position of the network cable body 4. The network cable body 4 is distributed in an S-shape between the front plate 2 and the back plate 1 by the fastening bolts 31. This layout not only allows the network cable to flexibly adapt to different length requirements, but also reduces the clutter of the network cable and improves the neatness of the wiring. When the network cable length needs to be adjusted, simply loosen the corresponding fastening bolt 31, pull the network cable to the new position, and then re-fix it.
[0035] The anti-slip pad 33 installed on the fastening bolt 31 increases the friction between it and the network cable body 4, preventing the network cable from being damaged or loosened due to slippage during the fastening process. At the same time, the anti-slip pad 33 contacts the network cable body 4 but is not fixedly connected, avoiding damage to the network cable caused by over-tightening.
[0036] The design of the nut sliding groove 12 and the bolt sliding groove 13 enables the fastening bolt 31 and the fastening nut 32 to be flexibly moved within a certain range, thereby adapting to the length change of the network cable between the front plate 2 and the back plate 1. This design not only improves the flexibility of the device, but also effectively avoids the problem of network cable idling and resource waste caused by the change of computer position. In summary, the utility model realizes the advantages of flexible adjustment of network cable length and effectively solves the problems existing in the traditional wiring fixing device.
[0037] Embodiment two
[0038] In order to improve the stability of the limiting assembly when sliding, as shown in Figure 2 , Figure 3 and Figure 5 , in the embodiment, the upper and lower ends of the back plate 1 are penetrated by the nut sliding groove 12 and the bolt sliding groove 13, and the upper and lower ends of the back plate 1 are fixedly installed with the cover 11.
[0039] The design of the cover 11 ensures the closure of the nut sliding groove 12 and the bolt sliding groove 13, preventing the fastening nut 32 and the fastening bolt 31 from falling off.
[0040] The installation of the cover 11 also enhances the overall structural strength of the back plate 1, making it more solid and durable.
[0041] Further, a reserved groove is formed on the back plate 1 at the back of the nut sliding groove 12, which is a mirror image of the bolt sliding groove 13, and the rear end of the fastening bolt 31 penetrates the fastening nut 32 and extends into the reserved groove.
[0042] The design of the reserved groove makes full use of the space of the back plate 1 and provides space for the fastening bolt 31 to pass through.
[0043] The rear end of the fastening bolt 31 extending into the reserved groove can further prevent the bolt from loosening due to vibration or external force during long-term use.
[0044] Further, the front sliding groove 21 and the bolt sliding groove 13 have a width matching the cross-sectional size of the fastening bolt 31.
[0045] The design of the front sliding groove 21 and the bolt sliding groove 13 matching in width ensures that the fastening bolt 31 can accurately and smoothly pass through the front sliding groove 21 and the bolt sliding groove 13, achieving precise positioning of the network cable position.
[0046] The matching of the width of the front sliding groove 21 and the cross-sectional size of the fastening bolt 31 also enhances the stability of the fastening bolt 31 on the front plate 2, preventing the bolt from shifting or loosening during use.
[0047] Embodiment three
[0048] In order to effectively limit the network line body during use, as shown in Figure 3 and Figure 4 In the embodiment, the network line body 4 is distributed in S shape on the opposite side of the front plate 2 and the back plate 1 through the fastening bolt 31.
[0049] The S-shaped distribution of the network line layout in the design makes the network line flexibly adapt to different length requirements, while reducing the disorder of the network line and improving the beauty and neatness of the wiring.
[0050] The S-shaped layout also fully utilizes the space between the back plate 1 and the front plate 2, so that more network lines can be arranged neatly together, improving the space utilization.
[0051] Further, the anti-skid pad 33 is fixedly installed on the fastening bolt 31 on the opposite side of the front plate 2 and the network line body 4, one side of the anti-skid pad 33 is in contact with the network line body 4 but not fixedly connected, and the other side of the anti-skid pad 33 is not in contact with the back of the front plate 2.
[0052] The design of the anti-skid pad 33 in the design increases the friction between the fastening bolt 31 and the network line body 4, preventing the network line from being damaged or loosened due to sliding during fastening.
[0053] The anti-skid pad 33 is in contact with the network line body 4 but not fixedly connected, which not only plays a role in preventing sliding, but also avoids damage to the network line caused by excessive fastening. At the same time, the other side of the anti-skid pad 33 is not in contact with the back of the front plate 2, ensuring that the fastening bolt 31 will not cause additional pressure on the front plate 2 when being tightened.
[0054] When the utility model is used, it is ensured that all components are complete and intact. Check whether the nut sliding groove 12 and the bolt sliding groove 13 on the back plate 1 are unobstructed, and whether the cover 11 is firmly installed. The network line body 4 is passed through the gap between the back plate 1 and the front plate 2, the fastening bolt 31 is loosened according to the required length and is slid, so that the network line body 4 forms an S-shaped layout between the front plate 2 and the back plate 1, and the length of the passed network line body 4 meets the use requirements.
[0055] When the computer position changes and the network line length needs to be adjusted, the corresponding fastening bolt 31 is loosened. The network line body 4 is pulled to a new position on the opposite side of the front plate 2 and the back plate 1, and then the fastening bolt 31 is tightened to fix the network line. Due to the design of the nut sliding groove 12 and the bolt sliding groove 13, the fastening bolt 31 and the fastening nut 32 can be flexibly moved within a certain range, thereby adapting to the length change of the network line.
[0056] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.
Claims
1. A computer network cable wiring fixing device, comprising a back plate (1), a front plate (2) is fixedly installed on the front of the back plate (1), a network cable body (4) passes through the opposite side of the back plate (1) and the front plate (2), a limiting assembly (3) is slidingly installed on the opposite side of the back plate (1) and the front plate (2), characterized in that: a nut sliding groove (12) is vertically and equidistantly formed in the inside of the back plate (1), and a bolt sliding groove (13) is formed on the front of the back plate (1) and the opposite side of the nut sliding groove (12); a front sliding groove (21) is formed on the front of the front plate (2), and the front sliding groove (21) is formed at a position matched with the position of the bolt sliding groove (13); the limiting assembly (3) comprises a fastening nut (32), the fastening nut (32) is slidingly installed in the nut sliding groove (12), a fastening bolt (31) is threadedly installed on the fastening nut (32), and the front end of the fastening bolt (31) passes through the front sliding groove (21).
2. The computer network wiring arrangement of claim 1, wherein: the nut sliding groove (12) and the bolt sliding groove (13) pass through the upper and lower ends of the back plate (1), and a cover (11) is fixedly installed on the upper and lower ends of the back plate (1).
3. The computer network wiring arrangement of claim 1, wherein: a reserved groove which is a mirror image of the bolt sliding groove (13) is formed on the back of the back plate (1) and the back of the nut sliding groove (12), the rear end of the fastening bolt (31) passes through the fastening nut (32) and extends into the reserved groove.
4. The computer network wiring arrangement of claim 1, wherein: the front sliding groove (21) and the bolt sliding groove (13) have matched widths, and the width of the front sliding groove (21) is matched with the cross-sectional dimension of the fastening bolt (31).
5. The computer network wiring arrangement of claim 1, wherein: the network cable body (4) is distributed in an S shape on the opposite side of the front plate (2) and the back plate (1) by the fastening bolt (31).
6. The computer network wiring arrangement of claim 1, wherein: a non-slip pad (33) is fixedly installed on the fastening bolt (31) on the opposite side of the front plate (2) and the network cable body (4), one side of the non-slip pad (33) is in contact with the network cable body (4) but is not fixedly connected, and the other side of the non-slip pad (33) is not in contact with the back of the front plate (2).