Computer cable auxiliary arranging equipment
Through adaptive clamping and dynamic adjustment between the coil tightening part and the auxiliary tightening part, the adaptability and adjustment capabilities of the cable retention and relocation equipment are solved, stable tightening and precise wiring of the cable are achieved, and wiring efficiency and quality are improved.
Patent Information
- Application Number
- CN202510666232.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-07-08
AI Technical Summary
In the prior art, cable retracting and releasing equipment has insufficient adaptability to the wire disk and cannot dynamically adjust the clamping force, resulting in the cable being easily offset, loose or entangled, and it is difficult to meet the needs of efficient and accurate wiring.
Adaptive clamping between the wire disk tightening part and the auxiliary tightening part is adopted, combined with pressure detection and dynamic adjustment, and the coordinated work of the guide plate and the tightening plate is controlled by the electromagnet to achieve the adaptation and tension balance of the multi-special wire disk.
It realizes adaptive receptacle and placement of multi-special wire disks, ensuring stable tightening and precise wiring, and improving wiring efficiency and quality.
Smart Images

Figure CN120270865A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of cable auxiliary wire arrangement, and more specifically, to a computer cable auxiliary wire arrangement device. Background Art
[0002] With the rapid development of computer network technology, network cabling, as an important basic link for information transmission, its construction efficiency and quality directly affect the stability and performance of the network system. However, in the actual cabling process, there are still many problems in the installation, locking, and pay-off and reeling operations of coiled cables, and traditional methods and technologies are difficult to meet the requirements of high efficiency and precision.
[0003] In the prior art (a patent application with the application number CN202323054553.9 and the patent name of a computer network wire arrangement auxiliary tool; and a patent application with the application number CN201811194772.8 and the patent name of a portable adjustable power cable pay-off device), the main problems it solves are that during the wire arrangement of cables, the cables cannot be effectively fixed in the early stage, and it is inconvenient to adjust the height during pay-off.
[0004] However, there are still certain problems in the actual use of this device, such as:
[0005] 1. Insufficient wire reel adaptability: Coiled wire reel specifications are diverse (such as differences in diameter and width). Most of the existing wire reel tightening structures are fixed, making it difficult to flexibly adapt to different-sized wire reels, resulting in easy deviation or loosening of the cable during pay-off and reeling, and frequent manual adjustment is required, with low efficiency.
[0006] 2. Lack of dynamic adjustment ability: During the pay-off process, the diameter of the cable may change dynamically due to stretching or relaxation. Most of the tightening wire reels of traditional devices are statically clamped and cannot sense the change in cable tension in real time and automatically adjust the clamping force, easily causing the cable to break due to being too tight or become entangled and chaotic due to being too loose. Summary of the Invention
[0007] This application aims to solve at least one of the technical problems existing in the prior art. For this purpose, this application proposes a computer cable auxiliary wire arrangement device. This device realizes the adaptation of multiple specifications of wire reels, the balance of pay-off tension, and the precise wire arrangement to prevent cable accumulation through the adaptive clamping of the wire reel tightening part and the auxiliary matching tightening part, the cooperation of pressure detection with the guiding connection disk and the tightening plate for dynamic adjustment, and the cooperation of the pushing disk and the pressing rod for pushing.
[0008] According to the computer cable auxiliary wire arrangement device of the embodiment of this application, it includes: a wire arrangement adjustment part for power transmission. A wire reel tightening part for the pay-off and positioning of coiled cables is arranged on the front side of the wire arrangement adjustment part. At the same time, winding cylinder bodies for assembling them are arranged on the outer sides of both the wire arrangement adjustment part and the wire reel tightening part;
[0009] The wire reel tightening part includes an adjusting disk and a fixed disk used in cooperation therewith. Among them, a guiding connection block is provided on one side of the fixed disk, and there are multiple guiding connection blocks. A guiding connection disk is provided on one side of the guiding connection block, and the guiding connection block and the guiding connection disk are movably connected by an electromagnet;
[0010] A winding and unwinding rod is installed through the surface of the guiding connection block;
[0011] Among them, a storage member is connected to the bottom of the side of the guiding connection disk away from the guiding connection block, and the storage member is used for storing and accommodating the coiled wire.
[0012] According to some embodiments of the present application, the wire arranging and adjusting part includes a plurality of driving rods two arranged in triangular symmetry. Among them, a planetary gear is sleeved on the outer surface of the driving rod two;
[0013] Planetary gear frames are installed at both shaft ends of the driving rod two.
[0014] According to some embodiments of the present application, there are multiple planetary gears. A driving rod one is longitudinally arranged at one end of the multiple planetary gears facing each other. A sun gear is sleeved on the surface of the driving rod one and on one side of the planetary gear. A toothed ring member is sleeved outside the planetary gear, and the internal teeth of the toothed ring member mesh with the external teeth of the planetary gear.
[0015] According to some embodiments of the present application, a magnetic sleeve one is provided on one side of the planetary gear frame. Among them, an electromagnetic member one is provided on the side of the magnetic sleeve one away from the planetary gear frame, and the other end of the electromagnetic member one is connected to a hollow sleeve.
[0016] According to some embodiments of the present application, one end of the surface of the toothed ring member is connected to a magnetic sleeve two through a connecting rod. Among them, an electromagnetic member two is provided on the end of the magnetic sleeve two away from the toothed ring member, and a mounting disk plate is sleeved on one end of the outer surface of the electromagnetic member two.
[0017] According to some embodiments of the present application, a plurality of adjusting grooves are formed on the surface of the adjusting disk, and a plurality of linear grooves that cooperate with the adjusting grooves are formed on the surface of the fixed disk. Among them, the adjusting disk is slidably installed on the surface of the fixed disk; a winding and unwinding member is provided on one side of the guiding connection block.
[0018] According to some embodiments of the present application, an auxiliary tightening part is provided on the outer circle of the wire reel tightening part. Among them, the wire arranging and adjusting part and the wire reel tightening part cooperate with the auxiliary tightening part to adaptively tighten the wire, so as to effectively wind and unwind the coiled wire.
[0019] According to some embodiments of the present application, the auxiliary tightening part includes a tightening ring shell. Among them, the tightening ring shell is installed on the front side of the wire winding cylinder body, and an annular spring is installed in the inner cavity of the tightening ring shell.
[0020] According to some embodiments of the present application, a plurality of assembly push blocks are sleeved on the surface of the annular spring, and the assembly push blocks penetrate through the tightening ring housing and are connected to a tightening plate.
[0021] According to some embodiments of the present application, an anti - detachment disk is provided on the front side of the wire winding cylinder body, and the tail end of the anti - detachment disk is connected to the front side of the tightening ring housing. An anti - detachment rod body penetrates through the surface of the anti - detachment disk.
[0022] According to some embodiments of the present application, a wire arranging shell is communicated with the bottom of the front side of the wire winding cylinder body. Among them, a bent - wire correcting wire guiding part is arranged in the inner cavity of the wire arranging shell;
[0023] Among them, the bent - wire correcting wire guiding part includes a first mounting frame and a second mounting frame. A plurality of straightening shaft rollers I are mounted on the left end of the inner surfaces of the first mounting frame and the second mounting frame, and a plurality of straightening shaft rollers II are mounted on the right end of the inner surfaces of the first mounting frame and the second mounting frame.
[0024] According to some embodiments of the present application, synchronous teeth are sleeved on the surfaces of a plurality of straightening shaft rollers II, and transmission teeth II and transmission teeth I are respectively sleeved on the shaft ends of the straightening shaft rollers I and the straightening shaft rollers II.
[0025] According to some embodiments of the present application, a guiding connecting rod penetrates through the inner cavity of the wire arranging shell at the rear side of the first mounting frame, and the rear side of the guiding connecting rod penetrates to the outside of the wire arranging shell and is connected to a transmission small disk. A transmission large disk is sleeved on the outer surface of the toothed ring member. Among them, the transmission large disk and the transmission large disk are connected by belt drive;
[0026] Among them, driving tooth disks are sleeved on one end of the guiding connecting rod surface far away from the transmission small disk and on the surface of the straightening shaft rollers II.
[0027] According to some embodiments of the present application, the bent - wire correcting wire guiding part further includes a pushing disk arranged below the second mounting frame. A supporting rod is connected to the rear side of the pushing disk, and connecting disks are sleeved on the surfaces of the supporting rod and the guiding connecting rod.
[0028] According to some embodiments of the present application, a guiding arc plate and a guiding cylinder body are symmetrically arranged up and down in the inner cavity of the wire arranging shell at the front side of the pushing disk, and a cleaning sleeve is penetrated and installed at the front end of the inner cavity of the wire arranging shell.
[0029] The beneficial effects of the present application are:
[0030] 1. In this solution, the driving rod 1 is driven to rotate by the motor component. The sun gear on the surface of the driving rod 1 meshes with the planetary gear. When the electromagnetic component 1 is energized to attract the magnetic sleeve 1 to fix the planetary gear carrier, the planetary gear revolves around the sun gear, driving the ring gear component to rotate. When the electromagnetic component 2 is energized to attract the magnetic sleeve 2 to fix the ring gear component, the planetary gear rotates and drives the planetary gear carrier to rotate through the driving rod 2, and then drives the adjusting disk to rotate through the driving rod 2. In the wire reel tightening part, the adjusting disk drives the guide connection block to drive the guide connection disk and the storage component to expand outwards through the retractable rod under the cooperation of the adjusting groove and the straight groove, and cooperates with the tightening plate of the auxiliary tightening part to clamp the coiled cable. The pressure sensor monitors the clamping force in real time and adjusts the position of the storage component through the guide connection disk and the retractable component.
[0031] 2. During wire release, the driving rod 1 drives the retractable component to rotate, and then drives the storage component to rotate to release the coiled cable. At the same time, the ring gear component rotates, drives the guide rod through the transmission large disk and the transmission small disk, and drives the straightening roller 2 and the straightening roller 1 to rotate relative to each other through the driving gear disk to straighten and push the cable. At the same time, the pushing disk rotates synchronously with the guide rod through the support rod, and cooperates with the pressing rod to push the cable to the guiding arc plate and the cleaning sleeve to complete correction and cleaning. The anti-disengagement disk and the anti-disengagement rod body prevent the cable from disengaging from the storage component, and finally realize the adaptive tightening, stable wire release and precise wire arrangement of the cable.
[0032] Additional aspects and advantages of the present application will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required to be used in the embodiments of the present application will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.
[0034] Figure 1 is the first three-dimensional schematic diagram of the overall structure of the computer cable auxiliary wire arrangement device according to the embodiment of the present application;
[0035] Figure 2 is the second three-dimensional schematic diagram of the overall structure of the computer cable auxiliary wire arrangement device according to the embodiment of the present application;
[0036] Figure 3 is the schematic diagram of the structure of the wire reel cylinder according to the embodiment of the present application;
[0037] Figure 4 is the first structural assembly schematic diagram of the wire arrangement adjusting part, the wire reel tightening part, the auxiliary tightening part and the wire bending and correcting and guiding part according to the embodiment of the present application;
[0038] Figure 5 It is the second schematic diagram of the assembly structure of the cable adjustment part, the wire reel tightening part, the auxiliary tightening part and the wire bending and correcting wire part according to the embodiment of the present application;
[0039] Figure 6 It is the schematic diagram of the tightening ring shell structure according to the embodiment of the present application;
[0040] Figure 7 It is the schematic diagram of the gear ring component structure according to the embodiment of the present application;
[0041] Figure 8 It is the schematic diagram of the motor component structure according to the embodiment of the present application;
[0042] Figure 9 It is the schematic diagram of the assembly structure of the small transmission disc and the large transmission disc according to the embodiment of the present application;
[0043] Figure 10 It is the first schematic diagram of the auxiliary tightening part structure according to the embodiment of the present application;
[0044] Figure 11 It is the partial structure schematic diagram of the auxiliary tightening part according to the embodiment of the present application;
[0045] Figure 12 It is the first schematic diagram of the auxiliary tightening part structure according to the embodiment of the present application;
[0046] Figure 13 It is the schematic diagram of the adjusting disc structure according to the embodiment of the present application;
[0047] Figure 14 It is the schematic diagram of the electromagnetic component two structure according to the embodiment of the present application;
[0048] Figure 15 It is the schematic diagram of the planetary gear structure according to the embodiment of the present application;
[0049] Figure 16 It is the exploded schematic diagram of the adjusting disc and the fixed disc structure according to the embodiment of the present application;
[0050] Figure 17 It is the three-dimensional assembly schematic diagram of the adjusting disc and the fixed disc structure according to the embodiment of the present application;
[0051] Figure 18 It is the three-dimensional assembly schematic diagram of the partial structure of the wire reel tightening part according to the embodiment of the present application;
[0052] Figure 19 It is the three-dimensional assembly schematic diagram of the storage component and the conducting disc structure according to the embodiment of the present application;
[0053] Figure 20 It is the front view schematic diagram of the tightening plate and the conducting disc structure according to the embodiment of the present application.
[0054] Icon:
[0055] 1. Reel cylinder; 11. Fixed disc frame; 12. Anti - detachment disc; 1201. Anti - detachment rod body; 13. Cable arranging shell; 2. Cable arranging adjustment part; 21. Driving rod one; 2101. Motor component; 22. Driving rod two; 2201. Planet gear; 2202. Planet gear frame; 2203. Hollow sleeve; 2204. Electromagnetic component one; 2205. Magnetic sleeve one; 23. Sun gear; 24. Ring gear component; 2401. Magnetic sleeve two; 2402. Electromagnetic component two; 2403. Mounting disc plate; 3. Wire disc tightening part; 31. Adjusting disc; 3101. Fixed disc; 3102. Adjusting groove; 3103. Linear groove; 3104. Reeling rod; 32. Conductive connecting block; 33. Conductive connecting disc; 3301. Storage component; 3302. Support disc; 34. Reeling component; 4. Auxiliary matching tightening part; 41. Tightening ring shell; 4101. Annular spring; 42. Assembly pushing block; 4201. Tightening plate; 5. Bending wire and correcting wire part; 51. Mounting frame one; 5101. Straightening shaft roller one; 5102. Straightening shaft roller two; 5103. Transmission gear one; 5104. Transmission gear two; 5105. Synchronous gear; 52. Mounting frame two; 53. Conductive connecting rod; 5301. Transmission small disc; 5302. Transmission large disc; 5303. Driving gear disc; 54. Pushing disc; 5401. Support rod; 5402. Connecting disc; 5403. Pressing rod; 55. Guide arc plate; 5501. Guide cylinder; 5502. Cleaning sleeve. Detailed implementation manners
[0056] Next, the technical solutions in the embodiments of the present application will be described in conjunction with the accompanying drawings in the embodiments of the present application.
[0057] As Figures 1 to 20 shown, the computer cable auxiliary cable arranging device according to the embodiment of the present application includes a cable arranging adjustment part 2 for power transmission. A wire disc tightening part 3 for winding and unwinding and positioning the coiled cable is arranged on the front side of the cable arranging adjustment part 2. At the same time, a reel cylinder 1 for assembling them is arranged on the outer sides of both the cable arranging adjustment part 2 and the wire disc tightening part 3; The computer cable is specifically a Loose Tube type outdoor optical fiber cable, and the tensile value of this optical fiber cable is between 600 - 800N, and the compressive value is between 1000 - 1500N / 10cm.
[0058] As a further implementation of this solution, the cable arranging adjustment part 2 includes a plurality of driving rods two 22 arranged in a triangular symmetry. Among them, a planet gear 2201 is sleeved on the outer surface of the driving rod two 22, and the planet gear 2201 meshes with the sun gear 23, and the sun gear 23 is used to drive the planet gear 2201.
[0059] To connect multiple second driving rods 22, planetary gear carriers 2202 are installed at both axial ends of the second driving rods 22. Among them, the connection between the second driving rod 22 and the planetary gear carrier 2202 is movably connected through a bearing.
[0060] There are multiple planetary gears 2201. At the same time, as Figure 16 shown, at one longitudinal end of the multiple planetary gears 2201, a first driving rod 21 is provided. A sun gear 23 is sleeved on the surface of the first driving rod 21 and on one side of the planetary gear 2201. The surfaces of the planetary gear 2201 and the sun gear 23 mesh with each other;
[0061] To drive the first driving rod 21, a motor part 2101 is provided at the axial end of the first driving rod 21. Among them, the motor part 2101 is installed on the surface of the mounting disc plate 2403. The first driving rod 21 cooperates with the motor part 2101 as a power source for the power output of the computer cable auxiliary wiring device. For its specific detailed functions, refer to the following content;
[0062] Specifically, the axial end on the surface of the first driving rod 21 is in transmission connection with the output end of the motor part 2101 through bevel gears. As Figure 8 、 Figure 9 、 Figure 15 and Figure 16 shown, a tooth ring member 24 is sleeved outside the planetary gear 2201. The inner teeth of the tooth ring member 24 mesh with the outer teeth of the planetary gear 2201.
[0063] As Figure 16 shown, a first magnetic sleeve 2205 is provided on one side of the planetary gear carrier 2202. Among them, an electromagnetic part one 2204 is provided on the side of the first magnetic sleeve 2205 away from the planetary gear carrier 2202. The other end of the electromagnetic part one 2204 is connected to a hollow sleeve 2203. Among them, the first driving rod 21 is disposed through the inner surface of the hollow sleeve 2203; the electromagnetic part one 2204 and the first magnetic sleeve 2205 are used in cooperation; when the electromagnetic part one 2204 is powered on, it can attract the first magnetic sleeve 2205, and then fix the connected planetary gear carrier 2202 so that it cannot rotate under the action of the three planetary gears 2201;
[0064] Specifically, the hollow sleeve 2203 passes through the middle of the surface of the adjusting disc 31 and is connected to one end of the fixed disc 3101. Because the fixed disc 3101 is fixedly installed on the inner wall of the wire winding cylinder 1, the fixed disc 3101 can be used to assist in supporting the hollow sleeve 2203, thereby fixing the electromagnetic part one 2204.
[0065] As Figure 8 and Figure 14As shown, one end of the surface of the gear ring member 24 is connected to the second magnetic sleeve 2401 through a connecting rod, wherein the second electromagnetic member 2402 is provided at one end of the magnetic sleeve 2401 away from the gear ring member 24, and the outer surface of the second electromagnetic member 2402 is sleeved with a mounting plate 2403 at one end, and at the same time, the outer surface of the mounting plate 2403 is connected to the inner wall of the winding drum body 1, so that the mounting plate 2403 is used to support the second electromagnetic member 2402, and the second electromagnetic member 2402 and the second magnetic sleeve 2401 are used together. When the second electromagnetic member 2402 is working, it can attract the connected magnetic sleeve 2401, so that the second magnetic sleeve 2401 and the gear ring member 24 are fixed so that they cannot rotate;
[0066] In actual use, the ring gear component 24 is fixed by cooperating with the electromagnetic component 2402 and the magnetic sleeve 2401, and the planetary gear 2201 can be fixed by the electromagnetic component 1 2204 and the magnetic sleeve 1 2205;
[0067] Among them, one end of the driving rod 22 is movably connected to the surface of the adjusting disk 31 through a bearing; when the multiple planetary gears 2201 rotate around the inner ring of the ring gear component 24, the planetary gear frame 2202 is driven to rotate, and finally the adjusting disk 31 is driven to rotate; therefore, when the driving rod 1 21 and the sun gear 23 rotate, and the ring gear component 24 is in a fixed state, the multiple driving rods 222 and the adjacent planetary gears 2201 can revolve around the sun gear 23, and then can drive the planetary gear frame 2202 to rotate; and when the driving rod 1 21 and the sun gear 23 rotate, and the planetary gear frame 2202 is in a fixed state under force, the multiple planetary gears 2201 can only rotate around the driving rod 22 as the center, and then the ring gear component 24 is rotated by the planetary gear 2201.
[0068] As a further implementation of the present solution, the wire drum tightening part 3 includes an adjusting disk 31 and a fixed disk 3101 used in conjunction with the adjusting disk 31, wherein a guide block 32 is provided on one side of the fixed disk 3101, and the guide blocks 32 are multiple and used in conjunction with the retracting rod 3104, and a guide disk 33 is provided on one side of the guide block 32. At the same time, in order to push the guide disk 33 and the storage member 3301, the guide block 32 and the guide disk 33 are movably connected through an electromagnet. Specifically, the electromagnet is embedded in the surface of the guide block 32, and the guide disk 33 is made of metal.
[0069] Specifically, a retractable rod 3104 is installed through the surface of the guiding block 32. Among them, the retractable rod 3104 penetrates through the linear groove 3103 and extends into the inner cavity of the adjusting groove 3102. Among them, a storage member 3301 is connected to the bottom of the side of the guiding disk 33 away from the guiding block 32. The storage member 3301 is used to store and hold the coiled cable. And a support disk 3302 is connected to the side of the storage member 3301 away from the guiding disk 33. Specifically, the side of the support disk 3302 away from the storage member 3301 is in sliding contact with the inner wall of the winding cylinder 1, which is used to increase the stability of the storage member 3301.
[0070] Among them, the storage member 3301 is a telescopic sleeve. The fixed end of the telescopic sleeve is connected to the surface of the guiding disk 33, and the extended end of the telescopic sleeve is connected to the surface of the support disk 3302.
[0071] When the guiding block 32 and the guiding disk 33 are in contact, the electromagnet can work and attract the guiding disk 33. Therefore, when the adjusting disk 31 rotates, the retractable rod 3104 is affected by the adjusting groove 3102, and under the limitation of the linear groove 3103 on the fixed disk 3101, multiple retractable rods 3104 are used to drive the adjacent guiding blocks 32 to expand outwards, and then push the guiding disk 33 and the storage member 3301 to move outwards, bringing the guiding disk 33 close to the tightening plate 4201, so that the guiding disk 33 cooperates with the tightening plate 4201 to clamp the coiled cable.
[0072] A plurality of adjusting grooves 3102 are formed on the surface of the adjusting disk 31, and a plurality of linear grooves 3103 that cooperate with the adjusting grooves 3102 are formed on the surface of the fixed disk 3101. Among them, the adjusting disk 31 is slidably installed on the surface of the fixed disk 3101, and the fixed disk 3101 is installed in the inner cavity of the winding cylinder 1. As Figure 16 and Figure 17 and Figure 18 shown, one end of the retractable rod 3104 penetrates through the linear groove 3103 and extends into the inner cavity of the adjusting groove 3102.
[0073] Among them, the inner cavity shape of the adjusting groove 3102 is arc-shaped, and the inner cavity of the linear groove 3103 is straight-shaped. During actual use, when the adjusting disk 31 is forced to rotate, it can be driven by the adjusting groove 3102 and limited by the linear groove 3103 to drive multiple retractable rods 3104 to expand outwards. Similarly, when the adjusting disk 31 is rotated in the opposite direction, it can drive multiple retractable rods 3104 to contract inwards.
[0074] Specifically, a retractable member 34 is arranged on one side of the guiding block 32. The retractable member 34 is sleeved on the shaft end of the driving rod one 21, and the output end of the retractable member 34 is connected to the surface of the guiding disk 33.
[0075] Specifically, the retractable member 34 is specifically a telescopic cylinder, the fixed end of which is installed at the shaft end of the first driving rod 21, and the extending end of the telescopic cylinder is connected to the surface of the guiding disk 33;
[0076] Referring to the above content, when the retractable rod 3104 drives the guiding block 32 to expand outwards, the output end of the retractable member 34 can extend outwards synchronously; when the first driving rod 21 is driven by the motor member 2101 to rotate under force, it can drive the retractable member 34 to rotate, and then drive the guiding disk 33 and the storage member 3301 to rotate. The coiled cable is installed on the surface of the storage member 3301, and when the storage member 3301 rotates, it can drive the coiled cable to rotate; so as to pay out the coiled cable subsequently, so as to assist in arranging the cable.
[0077] As a further implementation of this solution, an auxiliary tightening part 4 is arranged on the outer ring of the wire reel tightening part 3. Among them, the auxiliary tightening part 4 is located on the front side of the coiling cylinder body 1. The wire arranging adjusting part 2 and the wire reel tightening part 3 cooperate with the auxiliary tightening part 4 to adaptively tighten the cable, so as to effectively wind and pay out the coiled cable.
[0078] The auxiliary tightening part 4 includes a tightening ring shell 41. Among them, the tightening ring shell 41 is installed on the front side of the coiling cylinder body 1. Specifically, as Figures 1 - 4 shown, the tightening ring shell 41 is fixedly installed on the front side of the coiling cylinder body 1 through bolts;
[0079] As Figure 18 and Figure 19 shown, an annular spring 4101 is installed in the inner cavity of the tightening ring shell 41. Among them, the annular spring 4101 is used in cooperation with the assembly pushing block 42. A plurality of assembly pushing blocks 42 are sleeved on the surface of the annular spring 4101, and the assembly pushing block 42 penetrates through the tightening ring shell 41 and is connected with a tightening plate 4201. Among them, the assembly pushing block 42 is slidably arranged on the surface of the tightening ring shell 41, and the tightening plate 4201 is arranged on the inner surface of the tightening ring shell 41 and is used in cooperation with the adjacent guiding disk 33.
[0080] Specifically, a pressure sensor is inlaid on the surface of the guiding disk 33, and a plurality of guiding disks 33 and a plurality of tightening plates 4201 are used in cooperation; specifically, as Figure 20As shown, by using the guide plate 33 and the tightening plate 4201 in cooperation, the coiled cable can be adaptively clamped. The pressure sensor detects the tightness of the coiled cable between the guide plate 33 and the tightening plate 4201. According to the detection data of the pressure sensor, through the retractable rod 3104 and the guide block 32, the positions of the guide plate 33 and the storage member 3301 are adjusted in real time, so that the guide plate 33 approaches or moves away from the tightening plate 4201, thereby stably clamping and positioning the coiled cable. At the same time, the extrusion force between the optical fiber cables can be monitored in real time according to the pressure sensor, and the corresponding warning value is set according to the compressive value of the optical fiber cable, improving the storage quality of the optical fiber cable.
[0081] As a further implementation of this solution, as Figure 3 and Figure 4 shown, a anti-disengagement plate 12 is provided on the front side of the coiling cylinder body 1, and the tail end of the anti-disengagement plate 12 is connected to the front side of the tightening ring shell 41. Among them, the tightening ring shell 41 is made of flexible metal material. The surface of the anti-disengagement plate 12 is provided with an anti-disengagement rod body 1201. A through hole is opened on the surface of the anti-disengagement plate 12, and the anti-disengagement rod body 1201 is slidably arranged in the inner cavity of the through hole. One end of the anti-disengagement rod body 1201 is connected with a telescopic spring, and the other end of the telescopic spring is connected to the bottom of the inner wall of the through hole. In actual application, when the coiled cable is placed on the surface of the storage member 3301, the anti-disengagement plate 12 is bent, and the surface of the anti-disengagement plate 12 is attached to the front of the tightening ring shell 41, and the coiled cable is blocked by the anti-disengagement rod body 1201 to prevent the coiled cable from randomly disengaging from the storage member 3301. Under the action of the anti-disengagement plate 12 and the anti-disengagement rod body 1201, the storage member 3301 can be conveniently taken.
[0082] Specifically, a fixed disk frame 11 is installed on the rear side of the coiling cylinder body 1. Among them, the fixed disk frame 11 is used for winding and unwinding the cable auxiliary wiring device.
[0083] Although the above solves the problems of low adaptability to the coiled wire reel and the ability to dynamically adjust the tightening force, there are still certain problems in the process of use. For example, the existing equipment simply relies on the tightening wire reel to push the cable unidirectionally, and the wire release end of the cable is prone to accumulation during the wire release process, lacking the coordinated control of the two-way pushing and pulling of the cable, so that the auxiliary wire release is still not ideal.
[0084] Refer to Figures 3 to 7 and Figures 10 to 12 shown, as a further implementation of this solution, a wiring case 13 is communicated with the bottom of the front side of the coiling cylinder body 1. As Figure 3 and Figure 4 shown, the appearance of the wiring case 13 is L-shaped, and the wiring case 13 is used for storing the bent wire correction wire part 5. Among them, the bent wire correction wire part 5 is arranged in the inner cavity of the wiring case 13;
[0085] Among them, the bent wire correction wire part 5 includes a first mounting bracket 51 and a second mounting bracket 52. The first mounting bracket 51 and the second mounting bracket 52 are fixedly installed on the front side of the wire arrangement housing 13 by bolts. The first mounting bracket 51 and the second mounting bracket 52 have the same shape. A plurality of first straightening rollers 5101 are installed at the left end of the inner surface of the first mounting bracket 51 and the second mounting bracket 52, and a plurality of second straightening rollers 5102 are installed at the right end of the inner surface of the first mounting bracket 51 and the second mounting bracket 52. Among them, the shaft ends of the first straightening rollers 5101 and the second straightening rollers 5102 are movably connected to the surfaces of the adjacent first mounting bracket 51 and the second mounting bracket 52 through bearings;
[0086] Specifically, the shaft ends of the first straightening rollers 5101 and the second straightening rollers 5102 penetrate into the inner cavity of the wire arrangement housing 13. Synchronous teeth 5105 are sleeved on the surfaces of the plurality of second straightening rollers 5102, and the surfaces of the plurality of synchronous teeth 5105 are connected by a synchronous belt. Driving teeth two 5104 and driving teeth one 5103 are respectively sleeved on the shaft ends of the first straightening rollers 5101 and the second straightening rollers 5102. Among them, the adjacent driving teeth two 5104 and driving teeth one 5103 are meshed with each other;
[0087] During actual use, as Figure 12 shown, the plurality of second straightening rollers 5102 can be driven to rotate through the synchronous teeth 5105. When the second straightening rollers 5102 rotate, the first straightening rollers 5101 rotate synchronously through the meshing of the driving teeth one 5103 and the driving teeth two 5104. Finally, under the action of the driving teeth one 5103 and the driving teeth two 5104, the second straightening rollers 5102 and the first straightening rollers 5101 rotate relatively. Therefore, the cooperation of the first straightening rollers 5101 and the second straightening rollers 5102 can be used to push the wire feeding end of the coiled cable;
[0088] Among them, because the coiled cable is in a bent state when it is payed out, so, under the action of the second straightening rollers 5102 and the first straightening rollers 5101, the cable on their surfaces can also be straightened. A guiding rod 53 is penetrated and arranged at the rear side of the first mounting bracket 51 and in the inner cavity of the wire arrangement housing 13, and the rear side of the guiding rod 53 penetrates to the outside of the wire arrangement housing 13 and is connected with a transmission small disc 5301. A transmission large disc 5302 is sleeved on the outer surface of the gear ring member 24. Among them, as Figure 7 and Figure 9 shown, the transmission large disc 5302 and the transmission large disc 5302 are connected by a belt drive. Therefore, according to the above content, when the gear ring member 24 is driven by force, it can drive the transmission large disc 5302 to rotate, then drive the transmission small disc 5301 to rotate, and finally drive the guiding rod 53 to rotate;
[0089] Specifically, as Figure 11 and Figure 12As shown, the end of the surface of the guide rod 53 away from the transmission small plate 5301 and the surface of the straightening shaft roller 5102 are both provided with a driving sprocket 5303, and the two driving sprockets 5303 are meshed with each other. Therefore, according to the above technical solution, when the ring gear component 24 is rotated under force, it can drive the transmission large plate 5302 to rotate, and then drive the transmission small plate 5301 and the guide rod 53 to rotate. When the guide rod 53 rotates, the straightening shaft roller 5102 can be driven to rotate through the driving sprocket 5303.
[0090] like Figure 11 As shown, the bending correction wire portion 5 also includes a push plate 54 disposed below the second mounting frame 52, wherein the push plate 54 is located in the inner cavity of the cable housing 13, and a support rod 5401 is connected to the rear side of the push plate 54, and the support rod 5401 is movably connected to the surface of the cable housing 13 through a bearing, and the surfaces of the support rod 5401 and the guide rod 53 are both sleeved with a connecting plate 5402;
[0091] Specifically, the front end of the pushing disk 54 is staggered with the surface of the coiled cable, that is, the surface of the coiled cable close to the pushing disk 54 is arranged on one side of the surface of the pushing disk 54. This design can push the cable more effectively.
[0092] At the same time, when the guide rod 53 rotates, the connecting disk 5402 can also drive the support rod 5401 to rotate, and then drive the pushing disk 54 to rotate, so as to assist in pushing the rolled cable; in order to increase the stability of the pushing disk 54 in pushing the cable, a clamping rod 5403 is provided on the front side of the pushing disk 54, and the clamping rod 5403 is movably installed on the inner wall of the cable housing 13 through a support plate and bolts. When the cable is released, the pushing disk 54 and the clamping rod 5403 slide in contact with the surface of the cable, thereby effectively pushing one end of the cable to the outside for release processing.
[0093] like Figure 11 As shown, a guide arc plate 55 and a guide cylinder 5501 are symmetrically arranged on the front side of the pushing disk 54 and located in the inner cavity of the cable housing 13. The guide arc plate 55 is arc-shaped, and cooperates with the guide cylinder 5501 to guide the released cables. A cleaning sleeve 5502 is installed through the front end of the inner cavity of the cable housing 13. The cleaning sleeve 5502 assists in wiping and cleaning the surface of the cable. At the same time, the cleaning sleeve 5502 can assist in correcting the cable.
[0094] Specifically, the working principle of the computer cable auxiliary wiring device is as follows: in this solution, the motor component 2101 drives the driving rod 21 to rotate, and the sun gear 23 on the surface of the driving rod 21 is meshed with the planetary gear 2201. When the electromagnetic component 2204 is energized to attract the magnetic sleeve 2205 to fix the planetary gear frame 2202, the planetary gear 2201 revolves around the sun gear 23, driving the gear ring component 24 to rotate;
[0095] When the electromagnetic component two 2402 is energized to adsorb the magnetic sleeve two 2401 to fix the gear ring component 24, the planetary gear 2201 rotates self - rotatably and drives the planetary gear carrier 2202 to rotate through the driving rod two 22, and then drives the adjusting disk 31 to rotate through the driving rod two 22. In the wire reel tightening part 3, the adjusting disk 31, through the cooperation of the winding and unwinding rod 3104 in the adjusting slot 3102 and the straight slot 3103, pushes the guiding and connecting block 32 to drive the guiding and connecting disk 33 and the storage component 3301 to expand outwards, and cooperates with the tightening plate 4201 of the auxiliary matching tightening part 4 to clamp the coiled cable. The pressure sensor monitors the clamping force in real - time and adjusts the position of the storage component 3301 through the guiding and connecting disk 33 and the winding and unwinding component 34, so as to avoid the phenomenon that too small pressure affects the clamping stability and too large pressure causes damage to the optical fiber cable.
[0096] When paying out the wire, the driving rod one 21 drives the winding and unwinding component 34 to rotate, and then drives the storage component 3301 to rotate to pay out the coiled cable. At the same time, the gear ring component 24 rotates, drives the guiding rod 53 through the transmission large disk 5302 and the transmission small disk 5301, drives the straightening shaft roller two 5102 and the straightening shaft roller one 5101 to rotate relatively through the driving gear disk 5303 to straighten and push the cable. At the same time, the pushing disk 54 rotates synchronously with the guiding rod 53 through the support rod 5401, and cooperates with the pressing rod 5403 to push the cable to the guiding arc plate 55 and the cleaning sleeve 5502 to complete calibration and cleaning. The anti - detachment disk 12 and the anti - detachment rod body 1201 prevent the cable from detaching from the storage component 3301, and finally realize the self - adaptive tightening, stable wire pay - out and precise wire arrangement of the cable.
[0097] The electronic components and models used in the present invention can all be according to the actual usage needs.
[0098] The above are only the embodiments of the present application, and are not used to limit the protection scope of the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application. It should be noted that similar reference numerals and letters represent similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.
[0099] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present application, and all should be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A computer cable auxiliary wiring device, characterized in that, It includes a wire arrangement adjusting part (2) for power transmission. A wire reel tightening part (3) for winding and unwinding and positioning the coiled cable is arranged on the front side of the wire arrangement adjusting part (2). At the same time, a wire winding cylinder body (1) for assembling them is arranged on the outer sides of both the wire arrangement adjusting part (2) and the wire reel tightening part (3); The wire reel tightening part (3) includes an adjusting disc (31) and a fixed disc (3101) used in cooperation therewith. Among them, a conducting block (32) is arranged on one side of the fixed disc (3101). There are multiple conducting blocks (32). A conducting disc (33) is arranged on one side of the conducting block (32). The conducting block (32) and the conducting disc (33) are movably connected by an electromagnet; A winding and unwinding rod (3104) is installed through the surface of the conducting block (32); among them, a storage member (3301) is connected to the bottom of the side of the conducting disc (33) away from the conducting block (32). The storage member (3301) is used for storing the coiled cable.
2. The computer cable auxiliary wiring device according to claim 1, characterized in that, The wire arrangement adjusting part (2) includes a plurality of driving rods two (22) arranged in a triangular symmetry. Among them, a planetary gear (2201) is sleeved on the outer surface of the driving rod two (22); Planetary gear brackets (2202) are installed at both axial ends of the driving rod two (22).
3. The computer cable auxiliary wiring device according to claim 2, characterized in that, There are multiple planetary gears (2201). A driving rod one (21) is longitudinally arranged at the opposite ends of the multiple planetary gears (2201). And a sun gear (23) is sleeved on the surface of the driving rod one (21) and on one side of the planetary gear (2201). A toothed ring member (24) is sleeved on the outside of the planetary gear (2201). The internal teeth of the toothed ring member (24) mesh with the external teeth of the planetary gear (2201).
4. The computer cable auxiliary wiring device according to claim 3, characterized in that, A magnetic sleeve one (2205) is arranged on one side of the planetary gear bracket (2202). Among them, an electromagnetic part one (2204) is arranged on the side of the magnetic sleeve one (2205) away from the planetary gear bracket (2202). And the other end of the electromagnetic part one (2204) is connected to a hollow sleeve (2203).
5. The computer cable auxiliary wiring device according to claim 4, wherein One end of the surface of the toothed ring member (24) is connected to a magnetic sleeve two (2401) through a connecting rod. Among them, an electromagnetic part two (2402) is arranged on the end of the magnetic sleeve two (2401) away from the toothed ring member (24). And a mounting disc plate (2403) is sleeved on the outer surface of one end of the electromagnetic part two (2402).
6. The computer cable auxiliary wiring device according to claim 5, characterized in that, A plurality of adjusting grooves (3102) are formed on the surface of the adjusting disc (31). And a plurality of linear grooves (3103) that cooperate with the adjusting grooves (3102) are formed on the surface of the fixed disc (3101). Among them, the adjusting disc (31) is slidably installed on the surface of the fixed disc (3101); A winding and unwinding member (34) is arranged on one side of the conducting block (32).
7. The computer cable auxiliary wire arranging device according to claim 6, wherein An auxiliary tightening part (4) is arranged on the outer ring of the wire reel tightening part (3). Among them, the wire arrangement adjusting part (2), the wire reel tightening part (3) cooperate with the auxiliary tightening part (4) to adaptively tighten the cable, so as to effectively wind and unwind the coiled cable.
8. The computer cable auxiliary wiring device according to claim 7, wherein, The auxiliary matching tightening part (4) includes a tightening ring shell (41). Among them, the tightening ring shell (41) is installed on the front side of the wire winding cylinder body (1), and an annular spring (4101) is installed in the inner cavity of the tightening ring shell (41).
9. The computer cable auxiliary wiring device according to claim 8, characterized in that, A plurality of assembly push blocks (42) are sleeved on the surface of the annular spring (4101), and the assembly push blocks (42) penetrate through the tightening ring shell (41) and are connected with a tightening plate (4201).
10. The computer cable auxiliary wiring device according to claim 9, wherein, A wire retaining disc (12) is arranged on the front side of the wire winding cylinder body (1), and the tail end of the wire retaining disc (12) is connected to the front side of the tightening ring shell (41). A wire retaining rod body (1201) penetrates through the surface of the wire retaining disc (12).
Citation Information
Patent Citations
Adjustable electric power cable paying-off device convenient to carry
CN109399331A
Computer network flat cable auxiliary tool
CN221396303U