Computer network cabling tool of software platform
By designing the support device and support sleeve of computer network wiring tools, the problems of network cable dispersion and knotting are solved, and orderly network cable layout and efficient construction process are achieved.
Patent Information
- Application Number
- CN202422159677.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-02
AI Technical Summary
During the network cable layout process, the entire bundle of network cables is likely to disperse, resulting in messy and knotting, affecting the layout efficiency.
A computer network wiring tool is designed, including a fixing disk, a support sleeve and a support device. The support device is rotatably installed on the support sleeve and can telescopicly move relative to the support sleeve. By tightening the central hole of the network cable bundle, it provides support force and fixes the relative position of the network cable part to prevent dispersion and knotting.
The orderly network cable layout is achieved, which avoids the scattered network cables, improves the cleanliness and layout efficiency of the construction site, and facilitates construction operations.
Smart Images

Figure CN223141385U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of wiring tools, and more particularly, to a computer network wiring tool for a software platform. Background Art
[0002] Communication network devices are connected by communication cables to ensure stable connection and information transmission between communication networks. When installing communication network cables, cable wiring operations need to be carried out according to design requirements.
[0003] Construction workers usually buy whole bundles of network cables for cable laying, and loosen the whole bundle of network cables little by little during the laying process. In this process, the cable bundle is likely to come loose, resulting in messy cables and even cable knotting. At this time, construction workers also need to perform certain processing on this phenomenon, thus affecting the efficiency of cable laying. Summary of the Utility Model
[0004] An embodiment of this application provides a computer network wiring tool for a software platform.
[0005] The computer network wiring tool provided by the embodiment of this application includes a fixed disk, a support sleeve and a support device. The support sleeve is rotatably installed on the fixed disk, the support device is installed on the support sleeve, and the support device can perform telescopic movement relative to the support sleeve.
[0006] In some embodiments, the support device includes a telescopic component and an adjustment component. The telescopic component and the adjustment component are both installed on the support sleeve. The adjustment component is connected to the telescopic component, and the adjustment component can move relative to the support sleeve so that the telescopic component performs telescopic movement relative to the support sleeve.
[0007] In some embodiments, the telescopic component includes a slide bar, a cross arm, a support block, a slider and a sliding sleeve. The adjustment component includes an adjustment member. The adjustment member is movably sleeved on the support sleeve. The adjustment member is selectively connected to the sliding sleeve. The sliding sleeve is movably arranged on the slide bar. The slider is movably arranged on the support block. The cross arm includes a first side and a second side facing away from each other. The first end of the cross arm is connected to the support block. The second end of the cross arm is connected to the slider. The first end and the second end of the cross arm are located on the first side of the cross arm. The third end of the cross arm is connected to the slide bar. The fourth end of the cross arm is connected to the sliding sleeve. The third end and the fourth end of the cross arm are located on the second side of the cross arm.
[0008] In some embodiments, the support sleeve is provided with an installation groove, and the telescopic assembly further includes a fixing block and a fixing sleeve. The fixing blocks are respectively installed on both sides of the installation groove. Both ends of the sliding rod are respectively connected to the two fixing blocks. The fixing sleeve is fixedly connected to the sliding rod, and the third end of the cross arm is fixedly connected to the fixing sleeve.
[0009] In some embodiments, the fixing blocks are fixedly installed in the installation groove.
[0010] In some embodiments, the adjusting assembly further includes a cushion block and a dowel pin. The cushion block includes a first end and a second end facing away from each other. The first end of the cushion block is connected to the dowel pin, the second end of the cushion block is connected to the sliding sleeve, and a groove is formed on one side of the adjusting member corresponding to the dowel pin.
[0011] In some embodiments, there are multiple support devices. Multiple installation grooves are formed on the outer surface of the support sleeve, and the multiple support devices are respectively installed in the multiple installation grooves.
[0012] In some embodiments, the computer network wiring tool further includes a support arm. The first end of the support arm is connected to the fixed disk, and the second end of the support arm is provided with a plurality of wire assemblies. The plurality of wire assemblies are symmetrically arranged along both sides of the second end of the support arm.
[0013] In some embodiments, the wire assembly includes an elastic member and a wire wheel. The elastic member is connected to the wire wheel, and the distance between the elastic member and the center line of the support arm is less than the distance between the wire wheel and the center line of the support arm.
[0014] In some embodiments, the computer network wiring tool further includes the support shaft and a fixing plate. The fixing plate is connected to the fixed disk. The first end of the support shaft is connected to the fixing plate, and the support sleeve is sleeved on the support shaft.
[0015] In some embodiments, the computer network wiring tool further includes a limiting member. The limiting member is detachably connected to the second end of the support shaft, and the first end of the support shaft is opposite to the second end of the support shaft.
[0016] In some embodiments, a handle is arranged on the side surface of the fixed disk.
[0017] The computer network wiring tool of the software platform of the present application includes a fixed disk, a support sleeve, and a support device. The support device is installed in the support sleeve, and at least part of the structure of the support device can move telescopically relative to the support sleeve. After the network cable bundle is sleeved on the support sleeve, the fixed disk can be used to restrict the movement of the network cable, and the telescopic movement of the support device can be controlled, so that the support device tightens the central hole of the network cable bundle, thereby providing a supporting force for the network cable bundle and fixing the relative positions of the respective network cable parts of the network cable bundle. In this way, even if the respective network cable parts are in a moving state during the cable laying process, under the supporting action of the support device, the network cable bundle is not easily scattered, and the respective network cable parts will not get knotted, so that the cable laying can be carried out in an orderly manner, avoiding the phenomenon of the network cable bundle being scattered during the laying process, making the construction site cleaner, facilitating the network cable laying work, and improving the laying efficiency.
[0018] Additional aspects and advantages of the embodiments of the present application will be given in part in the following description, will become apparent in part from the following description, or will be understood through the practice of the embodiments of the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:
[0020] Figure 1 is a schematic structural diagram of a computer network wiring tool of the software platform of some embodiments of the present application;
[0021] Figure 2 is Figure 1 a schematic structural diagram of a part of the computer network wiring tool shown when propping up the whole bundle of network cables;
[0022] Figure 3 is Figure 1 a side view of the computer network wiring tool shown;
[0023] Figure 4 is Figure 1 a sectional view of the computer network wiring tool shown;
[0024] Figure 5 is Figure 4 a partial sectional view of the computer network wiring tool shown;
[0025] Figure 6 is Figure 1 a schematic structural diagram of a part of the computer network wiring tool shown;
[0026] Figure 7 is Figure 1 a schematic structural diagram of a part of the computer network wiring tool shown;
[0027] Figure 8 is Figure 1 a schematic structural diagram of a partial structure of the computer network wiring tool shown in the figure.
[0028] Description of main component symbols:
[0029] 100, computer network wiring tool;
[0030] 10, fixed disk; 20, support sleeve; 21, installation groove;
[0031] 30, support device; 31, telescopic component; 311, sliding rod; 312, cross arm; 313, support block; 314, slider; 315, sliding sleeve; 316, fixed block; 317, fixed sleeve; 32, adjustment component; 321, adjustment part; 3211, groove; 322, cushion block; 323, pin;
[0032] 40, support arm; 50, wire component; 51, elastic part; 52, wire wheel; 60, support shaft; 61, threaded head; 70, limiting part; 80, fixing plate; 90, handle. Specific implementation manners
[0033] The following details the implementation manners of the present application. Examples of the implementation manners are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The implementation manners described below with reference to the drawings are exemplary and are only used to explain the implementation manners of the present application, and should not be construed as a limitation on the implementation manners of the present application.
[0034] In the description of the present application, it should be understood that the orientation or positional relationship indicated by terms such as "thickness", "upper", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation on the present application. Also, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first" and "second" may explicitly or implicitly include one or more features. In the description of the present application, "a plurality" means two or more unless otherwise specifically defined.
[0035] In the description of the present application, it should be noted that unless otherwise clearly specified and defined, the terms "install", "connect", and "couple" should be understood in a broad sense. In one example, it can be a fixed connection, or a detachable connection, or an integral connection; it can be a mechanical connection, or an electrical connection, or can communicate with each other; it can be directly connected, or indirectly connected through an intermediate medium, and can be the communication inside two components or the interaction relationship between two components.
[0036] In an embodiment of the present application, the first feature being "above" or "below" the second feature may include the first and second features being in direct contact, or may include the first and second features not being in direct contact but in contact through additional features therebetween. Moreover, the first feature being "above", "over", and "on top of" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "beneath", and "underneath" the second feature includes the first feature being directly below and obliquely below the second feature, or merely indicating that the horizontal height of the first feature is less than that of the second feature.
[0037] Communication network devices are connected by communication cables to ensure stable connection between communication networks and information transmission. When installing communication network cables, cable routing operations need to be carried out according to design requirements.
[0038] Construction workers usually buy whole bundles of network cables for network cable laying, and loosen the whole bundle of network cables bit by bit during the laying process. In this process, the network cable bundle is likely to come loose, resulting in messy network cables and even the phenomenon of network cable knotting. Specifically, each part of the network cable in the network cable bundle is wound into multiple circles. If each part of the network cable has no supporting force and the relative positions of each part of the network cable are not fixed, each part of the network cable is likely to come loose during the cable release process, and during the movement of the network cable, each part of the network cable can move freely, resulting in the possibility that each part of the network cable may knot. At this time, construction workers also need to perform certain processing on this phenomenon, thus affecting the efficiency of network cable laying.
[0039] To solve the above problems, the present application provides a computer network wiring tool 100 for a software platform.
[0040] Please refer to Figure 1 and Figure 2 , the computer network wiring tool 100 for the software platform provided by the embodiment of the present application includes a fixed disk 10, a support sleeve 20, and a support device 30. The support sleeve 20 is rotatably installed on the fixed disk 10, the support device 30 is installed on the support sleeve 20, and at least part of the structure of the support device 30 can perform telescopic movement relative to the support sleeve 20.
[0041] Specifically, a software platform refers to an independent software system used to build and support application software. It is the foundation for developing and running application software and a necessary condition for any application software to be realized and applied. For example, software platforms include a comprehensive log audit and management platform, an AI intelligent analysis and early warning monitoring platform, a digital operation analysis platform, and a data intelligent insight platform. When building a software platform, the computer network wiring tool 100 of the present application can be used for network layout.
[0042] The support sleeve 20 is rotatably mounted on the fixed disk 10. For example, please refer to Figure 4 , the computer network wiring tool 100 is further provided with a support shaft 60. The support shaft 60 is arranged in the middle of the end face of the fixed disk 10. The support shaft 60 can rotate relative to the fixed disk 10. The support sleeve 20 is sleeved on the support shaft 60, so that the support sleeve 20 can also rotate relative to the fixed disk 10. It can be understood that if the support sleeve 20 is stationary during the movement of the network cable, relatively intense friction will occur between the network cable and the support sleeve 20, resulting in damage to the network cable and the support sleeve 20. Therefore, when the network cable drives the support sleeve 20 to rotate, the relative movement between the network cable and the support sleeve 20 can be reduced, so as to reduce the friction between the network cable and the support sleeve 20, thereby reducing the damage to the network cable and the support sleeve 20 and ensuring the safe use of the network cable and the support sleeve 20.
[0043] The network cable bundle can be sleeved on the support device 30 and contact the fixed disk 10 to use the fixed disk 10 to limit the movement of the network cable bundle. At least part of the structure of the support device 30 can perform telescopic movement relative to the support sleeve 20, and the telescopic movement includes an extending movement and a retracting movement. After the support device 30 performs an extending movement, the distance between the support device 30 and the outer surface of the support sleeve 20 gradually increases, and the distance between the support device 30 and the central hole of the network cable bundle gradually decreases until the support device 30 contacts the central hole of the network cable bundle and tightens the central hole of the network cable bundle. At this time, the support device 30 can provide a supporting force to each network cable part in the network cable bundle and fix the relative positions of the various network cable parts in the network cable bundle. After the support device 30 performs a retracting movement, the distance between the support device 30 and the outer surface of the support sleeve 20 gradually decreases, and the distance between the support device 30 and the central hole of the network cable bundle gradually increases, generating a gap between the central hole of the network cable bundle and the support device 30. At this time, the network cable bundle can be directly taken out by using this gap.
[0044] Therefore, please refer to Figure 1 , when wiring, first, the network cable bundle needs to be sleeved on the support device 30 and the network cable bundle is made to contact the fixed disk 10. Then, the support device 30 can be controlled to perform an extending movement so that at least part of the structure of the support device 30 tightens the central hole of the network cable bundle. When paying out the cable, the network cable bundle can drive the support sleeve 20 to rotate, so that the network cable can continuously extend out of the computer network wiring tool 100 and be used by the construction personnel for wiring.
[0045] During the wire pay-off process, each part of the wire net is in a moving state. However, since the support device 30 can provide a supporting force to each part of the wire net and fix the relative positions of the parts of the wire net in the wire bundle, it is not easy for the wire bundle to come loose during the movement, and the movement of each part of the wire net is restricted and can only move along the rotation direction of the support sleeve 20 and the wire pay-off direction. Thus, it can be ensured that the parts of the wire net do not move randomly relative to each other, and further that the parts of the wire net do not get knotted. In this way, an orderly wire pay-off can be achieved, avoiding the phenomenon of the wire bundle being scattered during the laying process, making the construction site cleaner, facilitating the wire laying work, and improving the laying efficiency. At the same time, during the wire pay-off process, as the wire is continuously pulled out, the volume of the wire bundle gradually decreases, which may cause looseness between the central hole of the wire bundle and the support device 30. At this time, the support device 30 can be adjusted again so that the support device 30 can tighten the wire bundle, thus ensuring that the wire bundle does not fall off the support device 30 during the wire pay-off process.
[0046] Please combine Figure 2 , when it is necessary to take out the wire net after the wiring is completed, the support device 30 can be controlled to perform a retraction movement so that a gap is formed between the central hole of the wire bundle and the support device 30, enabling the construction worker to take out the wire bundle. Therefore, when using the computer network wiring tool 100 of the software platform of the present application, the disassembly and assembly of the wire bundle are relatively convenient, facilitating the operation and use by construction workers.
[0047] The computer network wiring tool 100 of the software platform in the embodiment of the present application includes a fixed disk 10, a support sleeve 20, and a support device 30. The support device 30 is installed on the support sleeve 20, and at least part of the structure of the support device 30 can perform telescopic movement relative to the support sleeve 20. After the wire bundle is sleeved on the support sleeve 20, the fixed disk 10 can be used to restrict the movement of the wire, and the support device 30 can be controlled to perform telescopic movement so that the support device 30 tightens the central hole of the wire bundle, thereby providing a supporting force to the wire bundle and fixing the relative positions of the parts of the wire bundle. In this way, even though each part of the wire net is in a moving state during the wire pay-off process, under the support of the support device 30, the wire bundle is not easy to come loose, and the parts of the wire net do not get knotted, enabling an orderly wire pay-off to be achieved, avoiding the phenomenon of the wire bundle being scattered during the laying process, making the construction site cleaner, facilitating the wire laying work, and improving the laying efficiency.
[0048] Please refer to Figure 1 and Figure 2, in some embodiments, the support device 30 includes a telescopic assembly 31 and an adjustment assembly 32. Both the telescopic assembly 31 and the adjustment assembly 32 are installed on the support sleeve 20. The adjustment assembly 32 is connected to the telescopic assembly 31 and can move relative to the support sleeve 20 so that the telescopic assembly 31 can perform a telescopic movement relative to the support sleeve 20.
[0049] Specifically, the adjustment assembly 32 is connected to the telescopic assembly 31, and the adjustment assembly 32 can drive at least part of the structure of the telescopic assembly 31 to move, so that the telescopic assembly 31 can perform a telescopic movement relative to the support sleeve 20.
[0050] For example, the telescopic assembly 31 further includes a support block 313, and the support block 313 is used to support the central hole of the wire bundle. The distance between the support block 313 and the outer surface of the support sleeve 20 can be changed, so as to change the distance between the support block 313 and the central hole of the wire bundle, so that the support block 313 performs a telescopic movement.
[0051] The support block 313 can be connected to the adjustment assembly 32 so that the adjustment assembly 32 can drive the support block 313 to move. When the adjustment assembly 32 is in the first preset position, the support block 313 is in the third preset position, for example Figure 1 . When the adjustment assembly 32 is in the second preset position, the support block 313 is in the fourth preset position, for example Figure 2 . When the support block 313 is in the third preset position, the distance between the support block 313 and the outer surface of the support sleeve 20 is the minimum value of the distance between the support block 313 and the outer surface of the support sleeve 20 when the telescopic assembly 31 performs a telescopic movement; when the support block 313 is in the fourth preset position, the distance between the support block 313 and the outer surface of the support sleeve 20 is the maximum value of the distance between the support block 313 and the outer surface of the support sleeve 20 when the telescopic assembly 31 performs a telescopic movement. Thus, by controlling the movement of the adjustment assembly 32 between the first preset position and the second preset position, the support block 313 can be moved between the third preset position and the fourth preset position, so that the support block 313 performs a telescopic movement relative to the support sleeve 20.
[0052] For example, the telescopic assembly 31 further includes a telescopic member. One end of the telescopic member is connected to the support block 313, and the other end of the telescopic member is connected to the adjustment assembly 32. The adjustment assembly 32 can be used to control the telescopic length of the telescopic member, so as to change the distance between the support block 313 and the outer surface of the support sleeve 20 by using the telescopic member. When the adjustment assembly 32 is in the first preset position, the length of the telescopic member is the shortest, and at this time the support block 313 is in the third preset position. When the adjustment assembly 32 is in the second preset position, the length of the telescopic member is the longest, and at this time the support block 313 is in the fourth preset position. Therefore, the adjustment assembly 32 can control the telescopic length of the telescopic member by moving, so as to control the support block 313 to perform a telescopic movement.
[0053] In this way, the adjusting component 32 connected to the telescopic component 31 can drive the telescopic component 31 to perform telescopic movement relative to the support sleeve 20, so as to ensure that when wiring, the adjusting component 32 can make the telescopic component 31 perform an extending movement and abut against the central hole of the wire bundle, thereby facilitating the orderly release of the wire. In the case where the wire bundle needs to be taken out, a gap can be generated between the support block 313 and the central hole of the wire bundle, so that the wire bundle can be taken out smoothly by using this gap.
[0054] Please refer to Figure 4 and Figure 5 , in some embodiments, the telescopic component 31 includes a slide rod 311, a cross arm 312, a support block 313, a slider 314 and a sliding sleeve 315, and the adjusting component 32 includes an adjusting member 321. The adjusting member 321 is selectively connected to the sliding sleeve 315, and the adjusting member 321 is movably sleeved on the support sleeve 20. For example, the outer surface of the support sleeve 20 is also provided with threads, and the adjusting member 321 is an adjusting nut sleeve, and the adjusting member 321 can be rotated to move the adjusting member 321 relative to the support sleeve 20. During the movement, the adjusting member 321 and the sliding sleeve 315 can be in a connected state, so that the adjusting member 321 can drive the sliding sleeve 315 to move, and the adjusting member 321 and the sliding sleeve 315 can be in a non-connected state, so that the movement of the sliding sleeve 315 is not restricted by the adjusting member 321. The sliding sleeve 315 is movably arranged on the slide rod 311. For example, the sliding sleeve 315 can be sleeved on the slide rod 311 and the sliding sleeve 315 is not fixed, so that the sliding sleeve 315 can slide on the slide rod 311. The slider 314 is movably arranged on the support block 313. For example, the support block 313 is also provided with a chute, and the chute is slidably connected to the slider 314, so that the chute can move relative to the support block 313.
[0055] The cross arm 312 includes two intersecting support arms 40, and a rotation axis is set at the intersection of the two support arms 40, and the two support arms 40 can rotate relative to the rotation axis. The cross arm 312 includes a first side and a second side opposite to each other. The first side of the cross arm 312 can be understood as the side of the cross arm 312 away from the central axis of the support sleeve 20, and the second side of the cross arm 312 can be understood as the side of the cross arm 312 close to the central axis of the support sleeve 20. The first end of the cross arm 312 is connected to the support block 313, and the second end of the cross arm 312 is connected to the slider 314. The first end of the cross arm 312 and the second end of the cross arm 312 are located on the first side of the cross arm 312, which can be understood as the first end and the second end of the cross arm 312 are respectively one end of the two support arms 40 away from the central axis of the support sleeve 20. The third end of the cross arm 312 is connected to the sliding rod 311, and the fourth end of the cross arm 312 is connected to the sliding sleeve 315. The third end of the cross arm 312 and the fourth end of the cross arm 312 are located on the second side of the cross arm 312. It can be understood that the third end and the fourth end of the cross arm 312 are respectively one end of the two support arms 40 close to the central axis of the support sleeve 20.
[0056] The adjusting member 321 is movably sleeved on the supporting sleeve 20, so that the adjusting member 321 moves along the axis direction of the supporting sleeve 20. When it is necessary to tighten the network cable bundle, the adjusting member 321 can be moved so that the adjusting member 321 moves toward the direction close to the fixed disk 10, so that the adjusting member 321 and the sliding sleeve 315 are in a connected state. In the process of the adjusting member 321 continuing to move toward the direction close to the fixed disk 10, the adjusting member 321 can drive the sliding sleeve 315 to move toward the direction close to the fixed disk 10, so that the distance between the third end of the cross arm 312 and the fourth end of the cross arm 312 is reduced. In the process of the movement of the sliding sleeve 315, the slider 314 will also move toward the direction close to the fixed disk 10, so that the distance between the second end of the cross arm 312 and the first end of the cross arm 312 is reduced, and the cross arm 312 is extended accordingly, so that the support block 313 moves in the direction away from the supporting sleeve 20, thereby reducing the distance between the support block 313 and the center hole of the network cable bundle, ensuring that the support block 313 can tighten the center hole of the network cable bundle.
[0057] When it is necessary to take out the wire bundle, the adjusting member 321 can be moved reversely so that the adjusting member 321 moves away from the fixed disk 10 to release the connection state between the adjusting member 321 and the sliding sleeve 315, that is, the adjusting member 321 and the sliding sleeve 315 are in a non-connected state. At this time, the movement of the sliding sleeve 315 will not be affected by the adjusting member 321. Therefore, at this time, the wire bundle can be shaken so that the central hole of the wire bundle presses the support block 313, so that the sliding sleeve 315 and the slider 314 move away from the fixed disk 10. At this time, the distance between the third end and the fourth end of the cross arm 312 increases, and the distance between the second end and the first end of the cross arm 312 increases. The cross arm 312 then retracts to move the support block 313 closer to the support sleeve 20, thereby increasing the distance between the support block 313 and the central hole of the wire bundle, ensuring that the gap between the support block 313 and the central hole of the wire bundle is sufficient for the construction personnel to take out the wire bundle.
[0058] Alternatively, the adjusting member 321 and the sliding sleeve 315 can be fixedly connected so that the adjusting member 321 can directly drive the sliding sleeve 315 to move. When the adjusting member 321 moves toward the fixed disk 10, the adjusting member 321 can directly drive the sliding sleeve 315 to move toward the fixed disk 10. When the adjusting member 321 moves away from the fixed disk 10, the adjusting member 321 can directly drive the sliding sleeve 315 to move away from the fixed disk 10 without moving the sliding sleeve 315 and the slider 314 by shaking the wire bundle.
[0059] In this way, by controlling the moving direction of the adjusting member 321, it can be ensured that the cross arm 312 can perform telescopic movement, so that the support block 313 can move away from or closer to the support sleeve 20. Thus, when it is necessary to tighten the wire bundle, the support block 313 can tighten the central hole of the wire bundle, which is beneficial to realizing orderly wire release. When it is necessary to take out the wire bundle, a gap can be formed between the support block 313 and the central hole of the wire bundle, so that the wire bundle can be taken out smoothly by using this gap.
[0060] Please refer to Figure 4 and Figure 5, in some embodiments, the support sleeve 20 is provided with an installation groove 21. The telescopic assembly 31 further includes a fixing block 316 and a fixing sleeve 317. The fixing blocks 316 are respectively installed on both sides of the installation groove 21. Both ends of the sliding rod 311 are respectively connected to the two fixing blocks 316. The fixing sleeve 317 is sleeved on the sliding rod 311 and is fixedly connected to the sliding rod 311. The third end of the cross arm 312 is fixedly connected to the fixing sleeve 317, and the fixed connection methods include but are not limited to threaded connection, welding or riveting. In this way, the computer network wiring tool 100 can only change the distance between the support block 313 and the support sleeve 20 by controlling the fourth end of the cross arm 312, and the movement of the fourth end of the cross arm 312 can be accurately controlled by using the adjusting member 321, so as to ensure that the distance between the support block 313 and the support sleeve 20 can be accurately controlled, and prevent the situation that the distance between the support block 313 and the support sleeve 20 changes due to the sudden movement of the third end of the cross arm 312 during the wire laying process, resulting in the central hole of the wire bundle falling off from the support block 313.
[0061] Correspondingly, the first end of the cross arm 312 can be fixedly connected to the support block 313, so that when the cross arm 312 performs telescopic movement, only the second end and the fourth end of the cross arm 312 move, which is convenient for more accurately controlling the movement of the cross arm 312, and preventing the situation that the distance between the support block 313 and the support sleeve 20 changes due to the sudden movement of the first end of the cross arm 312 during the wire laying process, resulting in the central hole of the wire bundle falling off from the support block 313.
[0062] At the same time, the fixing block 316, the sliding rod 311 and the fixing sleeve 317 are all arranged in the installation groove 21. On the one hand, it is beneficial to the assembly of the telescopic assembly 31. On the other hand, it can reduce the protruding degree of the overall telescopic assembly 31 relative to the support sleeve 20. When the computer network wiring tool 100 is not needed, the telescopic assembly 31 can be controlled to perform a retracting movement, so that at least part of the structure of the telescopic assembly 31 retracts into the installation groove 21 to reduce the volume of the computer network wiring tool 100, thereby facilitating the storage of the computer network wiring tool 100.
[0063] Please refer to Figure 4 and Figure 5 , in some embodiments, the fixing block 316 is fixedly installed in the installation groove 21, and the fixed connection methods include but are not limited to threaded connection, welding or riveting, so as to increase the stability of the fixing block 316, make the installation of the support device 30 more stable, thereby facilitating the improvement of the structural stability of the support device 30 and ensuring the normal use of the computer network wiring tool 100.
[0064] Please refer to Figures 4 to 6, in some embodiments, the adjusting assembly 32 further includes a cushion block 322 and a dowel pin 323. The cushion block 322 includes a first end and a second end facing away from each other. The first end of the cushion block 322 is connected to the dowel pin 323, and the second end of the cushion block 322 is connected to the sliding sleeve 315. A groove 3211 is formed on one side of the adjusting member 321 corresponding to the dowel pin 323.
[0065] Specifically, the adjusting member 321 can be connected to the sliding sleeve 315 through the dowel pin 323 and the cushion block 322. When it is necessary to tighten the central hole of the wire bundle, the adjusting member 321 moves towards the fixed disk 10. At this time, the groove 3211 of the adjusting member 321 will abut against the dowel pin 323, so that the adjusting member 321 and the sliding sleeve 315 are in a connected state, so that the adjusting member 321 can drive the dowel pin 323 and the cushion block 322 to move towards the fixed disk 10 in sequence. The sliding sleeve 315 can move towards the fixed disk 10 under the drive of the cushion block 322, and the slider 314 also moves towards the fixed disk 10 at this time, so that the telescopic assembly 31 can perform an extending movement.
[0066] In the case where it is necessary to take out the wire bundle, the adjusting member 321 moves away from the fixed disk 10. At this time, a gap is generated between the groove 3211 of the adjusting member 321 and the dowel pin 323, and the adjusting member 321 and the sliding sleeve 315 are in a non-connected state. At this time, the wire bundle can be shaken to apply a force to the cross arm 312 in the direction of the central axis of the support sleeve 20. Under the action of this force, the sliding sleeve 315 and the slider 314 can move away from the fixed disk 10, so that the telescopic assembly 31 can perform a retracting movement.
[0067] Alternatively, the adjusting member 321 and the dowel pin 323 can be fixedly connected so that the adjusting member 321 can directly drive the dowel pin 323 to move. When the adjusting member 321 moves towards the fixed disk 10, the adjusting member 321 can directly drive the dowel pin 323 to move towards the fixed disk 10. When the adjusting member 321 moves away from the fixed disk 10, the adjusting member 321 can directly drive the dowel pin 323 to move away from the fixed disk 10 without moving the dowel pin 323 by shaking the wire bundle.
[0068] In this way, the adjusting member 321 can be connected to the sliding sleeve 315 through the pin 323 and the pad 322, and the sliding sleeve 315 can be driven to move toward the direction close to the fixed plate 10 through the pin 323 and the pad 322, so as to drive the cross arm 312 to perform telescopic movement, and ensure that the support block 313 can hold the cable bundle tightly, which is conducive to orderly cable release. In the case of needing to take out the cable bundle, the adjusting member 321 can be moved in the reverse direction to release the conflict between the adjusting member 321 and the pin 323, so as to release the connection between the adjusting member 321 and the sliding sleeve 315, so that the movement of the sliding sleeve 315 is not restricted by the adjusting member 321, so that a gap can be generated between the support block 313 and the center hole of the cable bundle, so that the cable bundle can be taken out smoothly by using the gap.
[0069] See also Figure 4 and Figure 8 In some embodiments, there are multiple support devices 30, and the outer surface of the support sleeve 20 is provided with multiple installation grooves 21. The multiple support devices 30 are respectively installed in the multiple installation grooves 21, that is, one support device 30 is installed in one installation groove 21. The multiple installation grooves 21 can be arranged at equal intervals or at unequal intervals, which is determined according to the use requirements. In this way, the multiple support devices 30 can be used to contact the different positions of the central hole of the network cable bundle to ensure that the multiple support devices 30 can stably support the central hole of the network cable bundle, thereby ensuring that the network cable bundle will not loosen during use, which is conducive to orderly wire laying.
[0070] See also Figure 1 and Figure 3 In some embodiments, the computer network cabling tool 100 also includes a support arm 40, a first end of the support arm 40 is connected to the fixed disk 10, and a second end of the support arm 40 is provided with a plurality of wire assemblies 50, and the plurality of wire assemblies 50 are symmetrically arranged along both sides of the second end of the support arm 40.
[0071] Specifically, the computer network cabling tool 100 can use the support arm 40 to lay out the network cable, and the network cable can be pulled out through the wire assembly 50 .
[0072] The second end of the support arm 40 is provided with a plurality of wire assemblies 50, and the plurality of wire assemblies 50 are symmetrically arranged, for example, the number of wire assemblies 50 may be two, four or six, and every two wire assemblies 50 form a group, and two of the wire assemblies 50 in a group are respectively located on both sides of the second end of the support arm 40. At this time, there will be gaps between the plurality of symmetrical wire assemblies 50, and the network cables extending from the network cable bundle can pass through the gaps and reach the area outside the computer network wiring tool 100, thereby completing the wiring. In this process, the wire assemblies 50 can play a guiding role, which is conducive to the unfolding and pulling out of the network cables, and can also ensure the orderliness of the network cables pulled out from the computer network wiring tool 100, thereby facilitating the improvement of the orderliness of the wiring work.
[0073] Please refer to Figure 1 and Figure 3 , in some embodiments, the wire assembly 50 includes an elastic member 51 and a wire wheel 52. The elastic member 51 is connected to the wire wheel 52, and the distance between the elastic member 51 and the center line of the support arm 40 is less than the distance between the wire wheel 52 and the center line of the support arm 40. The elastic member 51, such as an elastic sheet, has a certain elasticity and can be deformed when an external force is applied.
[0074] For example, the elastic member 51 is installed on the side of the second end of the support arm 40, and the wire wheel 52 is arranged on the side of the elastic member 51 close to the center line of the support arm 40, so that the network cable can pass through the wire wheel 52 and be pulled outwards, and the wire wheel 52 plays a guiding role for the network cable, facilitating the deployment and pulling out of the network cable. At the same time, the elasticity of the elastic member 51 enables the distance between the wire wheels 52 to better adapt to the diameter of the network cable. That is, when the network cable passes through the wire wheel 52, the network cable can apply a force to the guiding wheel, and under this force, the elastic member 51 can be deformed, thereby changing the distance between two opposite wire wheels 52 to ensure that the distance between two opposite wire wheels 52 matches the diameter of the network cable.
[0075] Please refer to Figure 1 , Figure 4 and Figure 7 , in some embodiments, the computer network cabling tool 100 further includes a support shaft 60 and a fixing plate 80. The fixing plate 80 is connected to the fixed disk 10, the first end of the support shaft 60 is rotatably connected to the fixing plate 80, and the support sleeve 20 is sleeved on the support shaft 60.
[0076] Specifically, the first end of the support shaft 60 is connected to the fixing plate 80, and the support shaft 60 can rotate relative to the fixing plate 80. The support sleeve 20 is sleeved on the support shaft 60, so that during the cable laying process, the moving network cable can drive the support sleeve 20 to rotate, reducing the relative movement between the network cable and the support sleeve 20, reducing the friction between the network cable and the support sleeve 20, thereby reducing the damage to the network cable and the support sleeve 20 and ensuring the safe use of the network cable and the support sleeve 20.
[0077] The fixing plate 80 can be fixed to the middle of the end face of the fixed disk 10 by bolts. The fixing plate 80 is connected to the first end of the support shaft 60, the support sleeve 20 is sleeved on the support shaft 60, and the support device 30 is installed on the support sleeve 20. Therefore, the assembly of the fixing plate 80, the support shaft 60, the support sleeve 20 and the support device 30 can be realized by using the fixing plate 80, and it is beneficial to improve the structural stability of the support shaft 60, the support sleeve 20 and the support device 30 by using the fixing plate 80.
[0078] Please refer to Figure 1 , Figure 4 and Figure 7, in some embodiments, the computer network wiring tool 100 further includes a limiting member 70, which is detachably connected to the second end of the support shaft 60, and the first end of the support shaft 60 is opposite to the second end of the support shaft 60.
[0079] Specifically, the support sleeve 20 is sleeved on the support shaft 60 through the second end of the support shaft 60. The limiting member 70 is detachably connected to the second end of the support shaft 60. For example, the limiting member 70 is a limiting screw sleeve, and the second end of the support shaft 60 may be provided with a threaded head 61. During the assembly of the support shaft 60 and the support sleeve 20, the limiting member 70 can be removed first, the support sleeve 20 can be sleeved on the support shaft 60, and then the limiting member 70 can be connected to the second end of the support shaft 60. In this way, the limiting member 70 can, on the one hand, ensure that the support sleeve 20 can be sleeved on the support shaft 60, and on the other hand, can limit the support sleeve 20 to prevent the support sleeve 20 from slipping off the second end of the support shaft 60 during the wiring work, thereby ensuring the normal operation of the wiring work.
[0080] Please refer to Figure 3 , in some embodiments, a handle 90 is provided on the side of the fixed disk 10. The handle 90 is provided on the side of the fixed disk 10 that is not connected to the support arm 40. For example, the handle 90 can be installed on the adjacent side of the side where the fixed disk 10 is connected to the support arm 40, so that the construction worker can hold the computer network wiring tool 100 by using the handle 90, thereby improving the portability of the computer network wiring tool 100.
[0081] In one embodiment, the handle 90 is detachably installed on the fixed disk 10. In the case where the hand-held function is needed, the construction worker can manually install the handle 90 on the fixed disk 10 to improve the portability of the computer network wiring tool 100. In the case where the hand-held function is not needed, the construction worker can manually disassemble the fixed disk 10 to facilitate reducing the volume of the computer network wiring tool 100 and facilitating the storage of the computer network wiring tool 100.
[0082] In another embodiment, the handle 90 is non-detachably installed on the fixed disk 10 to improve the structural stability of the handle 90 and ensure that the handle 90 does not fall off the fixed disk 10 when the construction worker holds the computer network wiring tool 100, thereby improving the use safety of the computer network wiring tool 100.
[0083] In the description of this specification, the descriptions referring to the terms "certain embodiments", "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" mean that the specific features, structures, materials, or characteristics described in connection with the embodiments or examples are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner.
[0084] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of the said features. In the description of the present application, "a plurality" means at least two, such as two, three, unless otherwise specifically and clearly defined.
[0085] Although the embodiments of the present application have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present application. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present application, and the scope of the present application is defined by the claims and their equivalents.
Claims
1. A computer network cabling tool (100) for a software platform, characterized in that, Comprising: A fixed disk (10), a support sleeve (20) and a support device (30), wherein the support sleeve (20) is rotatably mounted on the fixed disk (10), the support device (30) is mounted on the support sleeve (20), and the support device (30) can perform telescopic movement relative to the support sleeve (20).
2. The computer network wiring tool (100) according to claim 1, characterized in that, The support device (30) includes a telescopic component (31) and an adjustment component (32). Both the telescopic component (31) and the adjustment component (32) are mounted on the support sleeve (20). The adjustment component (32) is connected to the telescopic component (31), and the adjustment component (32) can move relative to the support sleeve (20) so that the telescopic component (31) performs telescopic movement relative to the support sleeve (20).
3. The computer network wiring tool (100) according to claim 2, characterized in that, The telescopic component (31) includes a slide bar (311), a cross arm (312), a support block (313), a slider (314) and a slide sleeve (315). The adjustment component (32) includes an adjustment member (321). The adjustment member (321) is movably sleeved on the support sleeve (20), and the adjustment member (321) is selectively connected to the slide sleeve (315). The slide sleeve (315) is movably arranged on the slide bar (311), and the slider (314) is movably arranged on the support block (313); The cross arm (312) includes a first side and a second side facing away from each other. The first end of the cross arm (312) is connected to the support block (313), the second end of the cross arm (312) is connected to the slider (314), the first end and the second end of the cross arm (312) are located on the first side of the cross arm (312), the third end of the cross arm (312) is connected to the slide bar (311), the fourth end of the cross arm (312) is connected to the slide sleeve (315), and the third end and the fourth end of the cross arm (312) are located on the second side of the cross arm (312).
4. The computer network wiring tool (100) according to claim 3, characterized in that, The support sleeve (20) is provided with a mounting groove (21). The telescopic component (31) further includes a fixed block (316) and a fixed sleeve (317). The fixed blocks (316) are respectively mounted on both sides of the mounting groove (21). Both ends of the slide bar (311) are respectively connected to the two fixed blocks (316). The fixed sleeve (317) is fixedly connected to the slide bar (311), and the third end of the cross arm (312) is fixedly connected to the fixed sleeve (317).
5. The computer network wiring tool (100) according to claim 4, characterized in that, The fixed block (316) is fixedly mounted in the mounting groove (21).
6. The computer network wiring tool (100) according to claim 3, characterized in that, The adjustment component (32) further includes a cushion block (322) and a dowel pin (323). The cushion block (322) includes a first end and a second end facing away from each other. The first end of the cushion block (322) is connected to the dowel pin (323), the second end of the cushion block (322) is connected to the slide sleeve (315), and a groove (3211) is formed on the side of the adjustment member (321) corresponding to the dowel pin (323).
7. The computer network wiring tool (100) according to claim 1, characterized in that, The support devices (30) are multiple. A plurality of mounting grooves (21) are formed in the outer surface of the support sleeve (20), and the multiple support devices (30) are respectively mounted in the multiple mounting grooves (21).
8. The computer network wiring tool (100) according to claim 1, characterized in that, The computer network wiring tool (100) further includes a support arm (40). The first end of the support arm (40) is connected to the fixed disk (10), and a plurality of wire assemblies (50) are provided at the second end of the support arm (40). The plurality of wire assemblies (50) are symmetrically arranged along both sides of the second end of the support arm (40).
9. The computer network wiring tool (100) according to claim 8, characterized in that, The wire assembly (50) includes an elastic member (51) and a wire wheel (52). The elastic member (51) is connected to the wire wheel (52), and the distance between the elastic member (51) and the center line of the support arm (40) is less than the distance between the wire wheel (52) and the center line of the support arm (40).
10. The computer network wiring tool (100) according to claim 1, characterized in that, The computer network wiring tool (100) further includes a support shaft (60) and a fixing plate (80). The fixing plate (80) is connected to the fixed disk (10). The first end of the support shaft (60) is connected to the fixing plate (80), and the support sleeve (20) is sleeved on the support shaft (60).
11. The computer network wiring tool (100) according to claim 10, characterized in that, The computer network wiring tool (100) further includes a limiting member (70). The limiting member (70) is detachably connected to the second end of the support shaft (60), and the first end of the support shaft (60) is opposite to the second end of the support shaft (60).
12. The computer network wiring tool (100) according to claim 1, characterized in that, A handle (90) is arranged on the side surface of the fixed disk (10).