A wire taking-up device for data line production
By designing a wire collection device for data line production, the winding components and transmission components are used to realize automatic wire collection and unloading of data lines, the problem of inconsistency in line collection caused by manual participation in the prior art is solved, and production efficiency and product consistency are improved.
Patent Information
- Application Number
- CN202510150535.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-02-11
AI Technical Summary
The existing data line winding method requires manual participation, resulting in the limitation of the line finishing due to the worker's proficiency and mechanical operation level, which affects the uniformity of the shape and specification of the data line, and thus affects the packaging process.
A wire collection device for data line production is designed, including winding components, transmission components and automatic push rod system. Through automated winding and transmission processes, the automatic wire collection and unloading of data lines is realized.
Automatically collecting and unloading of data lines is realized, ensuring that the same type of data lines have the same collecting process and quality, avoiding the problem of inconsistent collecting shapes, and improving production efficiency and product consistency.
Smart Images

Figure CN119612276B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of data line production devices, and in particular to a wire take-up device for data line production. Background Art
[0002] Data cables are used to connect mobile devices and computers for data transmission or communication. They are access tools used to connect computers and mobile devices to transfer videos, ringtones, pictures and other files. Usually, multiple USB ports on a computer are connected to different electronic devices through USB data cables. During the production process of the data cable, the data cable needs to be rolled into a shape similar to a paper clip to reduce its storage space and facilitate placement in a plastic liner box, which is then placed in a paper outer packaging box to complete the final packaging step in the production process.
[0003] Due to the special shape of the data cable after folding and winding, it needs to be wound manually or semi-automatically by a special winding machine. However, the current winding methods all require manual participation in key processes, so that the completion of the winding process of the data cable after modulation and detection is limited by the proficiency of the workers and the technical level of operating the machine, which will result in the overall shape and specification uniformity of the data cable after winding cannot be guaranteed, affecting the progress of the final packaging process. Therefore, a winding device for data cable production is proposed. Summary of the invention
[0004] The purpose of the present invention is to solve the problem that the current data cable winding methods all require manual participation in key processes, so that the completion of the winding process of the data cable after modulation and detection is limited by the proficiency of the workers and the technical level of operating the machinery, which will result in the overall shape and specification uniformity of the data cable after winding cannot be guaranteed, affecting the progress of the final packaging process. The present invention provides a data cable production winding device.
[0005] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:
[0006] A wire take-up device for data cable production, comprising four frames, the tops of the four frames are fixedly mounted with a same assembly platform, the bottom of the assembly platform is fixedly mounted with a track plate and a first central electric push rod, the bottom of the track plate is provided with a clearance hole, the first central electric push rod is located inside the clearance hole, the telescopic end of the first central electric push rod is driven to be installed with an outer sleeve, the inside of the outer sleeve is fixedly mounted with a second central electric push rod, the telescopic end of the second central electric push rod is fixedly mounted with a lifting plate, the lifting plate is slidably mounted inside the outer sleeve, the bottom of the outer sleeve is fixedly mounted with a B-end driver, the bottom of the B-end driver is driven to be installed with two symmetrically arranged B-end clamping claws, both sides of the bottom end of the outer sleeve are provided with a first cable clearance groove, the bottom of the track plate is provided with a wire take-up annular track, the inside of the wire take-up annular track is provided with a winding assembly, the bottom of the first central electric push rod is provided with a conveyor belt assembly, the conveyor belt assembly is located between the four frames, and the top of the conveyor belt assembly is provided with a transmission assembly;
[0007] The winding assembly is used to grab the A end of the data cable and drive the data cable along the winding circular track to wind around the bottom end of the outer sleeve slide cylinder;
[0008] The winding assembly comprises a driving trolley placed inside the winding circular track, a vertically arranged winding electric push rod is fixedly installed at the bottom of the driving trolley, a suspension telescopic frame is fixedly installed on one side of the winding electric push rod, the winding electric push rod and the telescopic end of the suspension telescopic frame are fixedly installed with the same adjusting electric push rod, the adjusting electric push rod is horizontally arranged, the telescopic end of the adjusting electric push rod is fixedly installed with an A-end driver, the bottom drive of the A-end driver is installed with two symmetrically arranged suspension rods, the bottom ends of the suspension rods are fixedly installed with A-end clamps, and the two A-end clamps are symmetrically arranged;
[0009] The transmission component is used to place the data line to be collected and transmit it;
[0010] The transmission component includes a first conveying seat and a second conveying seat arranged on the top of the conveyor belt assembly, and the tops of the first conveying seat and the second conveying seat are respectively fixedly installed with a B-end placing table and an A-end placing table, and the top of the B-end placing table is provided with a B-end cross groove for placing the B-end of the data cable, and the top of the A-end placing table is provided with an A-end cross groove for placing the A-end of the data cable, the B-end cross groove is adapted to the B-end clamping claw, and the A-end cross groove is adapted to the A-end clamping claw, and a second cable yielding groove is provided on the side where the B-end cross groove and the A-end cross groove are close to each other, and positioning convex plates are fixedly installed on the bottoms of the first conveying seat and the second conveying seat, and a plurality of evenly distributed positioning grooves are provided on the top of the conveyor belt assembly, and the positioning grooves are adapted to the positioning convex plates.
[0011] Furthermore, a wheel frame is fixedly installed on the top of the driving trolley, and guide wheels are rotatably installed at the four corners of the top of the wheel frame, and the four guide wheels are respectively in contact with the inner walls on both sides of the wire-receiving circular track.
[0012] Furthermore, a same double-headed threaded tube is arranged between the B-end placing table and the A-end placing table, and adjusting screws are rotatably installed inside both ends of the double-headed threaded tube, one end of the two adjusting screws are respectively fixedly installed on the side walls of the B-end placing table and the A-end placing table, and a same limiting telescopic rod is fixedly installed between the first conveying seat and the second conveying seat.
[0013] Furthermore, laser locators are fixedly installed on the top of the B-end placement table and the A-end placement table, and laser receivers compatible with the laser locators are fixedly installed on the bottom of the lifting plate and one side of the A-end driver.
[0014] Furthermore, a storage platform is fixedly installed on the side of the B-end placement platform away from the A-end placement platform, a circular storage groove is opened on the top of the storage platform, a positioning column is fixedly installed at the inner center position of the circular storage groove, the positioning column is adapted to the outer sleeve slide, a B-end storage groove is opened on the top of the positioning column, and a third cable yielding groove is opened on the side of the B-end storage groove facing the A-end placement platform.
[0015] Furthermore, vertically arranged electric guide rails are fixedly installed on the side walls of the two frames respectively located on both sides of the conveyor belt assembly, an electric slide is driven and installed on one side of the electric guide rails, a connecting frame is fixedly installed on one side of the electric slide, an assembly frame is fixedly installed on one side of the connecting frame, a wire taking electric push rod is fixedly installed on the assembly frame, the wire taking electric push rod is horizontally arranged and corresponds to the position of the storage table, a wire taking driver is fixedly installed on the telescopic end of the wire taking electric push rod, and the wire taking driver drives and installs two symmetrically arranged wire taking clamps toward one side of the storage table.
[0016] Furthermore, two spring slides are fixedly installed on the top of the storage table, and the two spring slides are symmetrically distributed on both sides of the circular storage groove. Spring slides are elastically and slidably installed inside the two spring slides, and elastic pins are provided on the top of the spring slides for controlling the spring slides to pop out, and the positions of the two elastic pins correspond to the positions of the two wire-taking claws.
[0017] Furthermore, the four top corners of the track plate are fixedly installed with assembly angle plates, and the assembly angle plates are fixedly connected to the assembly table. A hinge plate is rotatably installed on one side of the bottom of the track plate, and the hinge plate is adapted to the wire-retracting circular track. Two locking pins are fixedly installed on one side of the track plate, and the two locking pins are symmetrically distributed on both sides of the hinge plate.
[0018] The beneficial effects of the present invention are as follows:
[0019] 1. The present invention sets a winding assembly so that when winding, the B-end driver drives the B-end clamp to clamp the B-end of the data cable, the A-end driver drives the A-end clamp to clamp the A-end of the data cable, and the driving trolley drives the A-end of the data cable and the cable to wind around the bottom end of the outer sleeve, thereby realizing automatic transportation, picking up and winding of the data cable, so that the same type of data cables have the same winding process and quality, avoiding the situation that the winding shape of the data cables is inconsistent in the past;
[0020] 2. The present invention provides a winding electric push rod and an adjusting electric push rod, so that during the data cable winding process, the winding electric push rod can drive the A-end driver to move slightly up and down, so that the data cable can be evenly wound up and down at the bottom of the outer sleeve slide, avoiding excessive winding of the cable at the same height. At the same time, the adjusting electric push rod can not only push toward the outer sleeve slide during the winding process, but also keep the tension on the cable close to the same.
[0021] 3. The present invention provides a guide wheel so that when the driving trolley makes a circular motion, the guide wheel will contact the inner wall of the take-up circular track, and rotate along the inner wall of the take-up circular track during the movement of the driving trolley, so that the guide wheel guides and limits the movement of the driving trolley, so that the driving trolley maintains the trajectory of the circular motion without deviation, and avoids the contact between the driving trolley and the inner wall of the take-up circular track to cause wear and collision;
[0022] 4. The present invention provides a double-threaded tube, so that the double-threaded tube located between the B-end placement platform and the A-end placement platform can be rotated according to the length of the data line, driving the adjusting screws at both ends to be screwed in or out of the double-threaded tube, thereby changing the distance between the B-end placement platform and the A-end placement platform, and at the same time cooperating with the position change of the positioning convex plate and the positioning groove, so that the positioning convex plate is snapped into the corresponding positioning groove, thereby realizing the placement of data lines of different lengths;
[0023] 5. The present invention provides a laser locator and a laser receiver, so that when the transmission component and the data line move to the bottom of the track plate, the two sets of laser locators and laser receivers will be aligned respectively, and the laser signal emitted by the laser locator is received by the laser receiver, so that the B-end placement table and the A-end placement table correspond to the positions of the B-end clamping claw and the A-end clamping claw respectively, thereby realizing automatic positioning;
[0024] 6. The present invention provides a storage platform so that after the data cable is wound up at the bottom end of the outer sleeve, the bottom end of the outer sleeve docks with the positioning column, the outer sleeve and the data cable are both located in the circular storage groove, and then the B-end clamp releases the B end of the data cable, and the A-end clamp releases the A end, so that the data cable falls into the circular storage groove, and the outer sleeve and the A-end driver are reset, so that the data cable surrounds the peripheral side of the positioning column, and the data cable is automatically unloaded;
[0025] 7. The present invention provides a wire-taking clamping claw, so that if the data line is tightly wound at the bottom end of the outer sleeve slide and cannot fall naturally, the wire-taking electric push rod drives the wire-taking driver to move toward the outer sleeve slide, and then the wire-taking clamping claw clamps the two sides of the outer sleeve slide, and then the outer sleeve slide rises and resets, and the data line will be separated from the outer sleeve slide under the obstruction of the wire-taking clamping claw, and finally keep the shape of the wire to fall into the circular storage groove, solving the problem that the data line cannot fall;
[0026] 8. The present invention provides a spring slide plate, so that after the data line is blocked by the line-taking clamp and falls into the circular storage groove, the electric guide rail drives the line-taking driver and the line-taking clamp to descend until the line-taking clamp contacts and presses the elastic pins on both sides, thereby releasing the limit of the spring slide plate, so that the spring slide plate pops out and clamps on the top of the data line, limits the data line, and prevents the data line from sliding outward during transmission;
[0027] 9. The present invention arranges an assembly angle plate and a hinge plate so that the assembly angle plate can facilitate the replacement of the track plate. At the same time, during the process of replacing the track plate, the hinge plate can be rotated open to create a gap in the winding circular track. Then, the driving trolley is controlled to move to the gap, and the driving trolley together with the entire winding assembly is taken out. At this time, the track plate can be directly replaced, and the winding assembly can be placed in the new winding circular track. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;
[0029] Figure 2 It is a schematic diagram of the three-dimensional structure of the bottom of the track plate of the present invention;
[0030] Figure 3 It is a schematic diagram of the three-dimensional structure of the cooperation between the first central electric push rod and the outer sleeve slide cylinder of the present invention;
[0031] Figure 4 This is a schematic diagram of the internal three-dimensional structure of the outer sleeve slide of the present invention;
[0032] Figure 5 It is a schematic diagram of the three-dimensional structure of the winding assembly of the present invention;
[0033] Figure 6 It is a schematic diagram of the three-dimensional structure of the A-end driver and the A-end clamping claw of the present invention;
[0034] Figure 7 It is a schematic diagram of the three-dimensional structure of the driving trolley of the present invention;
[0035] Figure 8 It is a schematic diagram of the three-dimensional structure of the transmission component of the present invention from a first viewing angle;
[0036] Fig. 9 is a schematic diagram of the stereoscopic structure of the transmission component of the present invention from a second viewing angle;
[0037] Fig.10 It is a schematic diagram of the three-dimensional structure of the B-end placement table and the A-end placement table of the present invention;
[0038] Fig.11 It is a schematic diagram of the three-dimensional structure of the storage table of the present invention;
[0039] Fig.12 It is a schematic diagram of the three-dimensional structure of the electric guide rail and the wire-taking driver of the present invention;
[0040] Figure numerals: 1, rack; 2, assembly table; 3, track plate; 301, take-up circular track; 4, first center electric push rod; 5, outer sleeve slide; 501, first cable clearance groove; 6, second center electric push rod; 7, lifting plate; 8, B end driver; 9, B end clamping claw; 10, driving trolley; 11, winding electric push rod; 12, hanging telescopic frame; 13, adjusting electric push rod; 14, A end driver; 15, hanging rod; 16, A end clamping claw; 17, conveyor belt assembly; 1701, positioning groove; 18, first conveying seat; 19, second conveying seat; 20, B end placement table; 2001, B end cross groove; 2002, second cable clearance groove; 21, A end placement The mounting table includes: 2101, cross groove at end A; 22, positioning convex plate; 23, wheel frame; 24, guide wheel; 25, double-head threaded tube; 26, adjusting screw; 27, limit telescopic rod; 28, laser locator; 29, laser receiver; 30, storage table; 3001, circular storage groove; 31, positioning column; 3101, storage groove at end B; 3102, third cable clearance groove; 32, electric guide rail; 33, electric slide; 34, connecting frame; 35, assembly frame; 36, electric push rod for wire taking; 37, wire taking drive; 38, wire taking clamp; 39, spring slide seat; 40, spring slide plate; 41, elastic latch; 42, assembly angle plate; 43, hinge plate; 44, locking latch. DETAILED DESCRIPTION
[0041] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations.
[0042] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the invention claimed for protection, but merely represents selected embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0043] It should be noted that similar reference numerals and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further defined and explained in the subsequent drawings. In addition, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0044] In the description of the embodiments of the present invention, it should be noted that the terms "inside", "outside", "upper", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the inventive product is usually placed when used. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0045] like Figures 1 to 12 As shown, a data cable production take-up device includes four racks 1, the tops of the four racks 1 are fixedly mounted with a same assembly table 2, and the bottom of the assembly table 2 is fixedly mounted with a track plate 3 and a first central electric push rod 4, as shown in FIG. Figure 2 As shown, a clearance hole is provided at the bottom of the track plate 3, and the first central electric push rod 4 is located inside the clearance hole. Figure 3 As shown, the telescopic end of the first central electric push rod 4 is driven to be installed with an outer sleeve 5. In this embodiment, the shape of the outer sleeve 5 is close to the shape of a paper clip, such as Figure 4 As shown, a second central electric push rod 6 is fixedly installed inside the outer sleeve 5, a lifting plate 7 is fixedly installed on the telescopic end of the second central electric push rod 6, and the lifting plate 7 is slidably installed inside the outer sleeve 5. A B-end driver 8 is fixedly installed at the bottom of the outer sleeve 5, and two symmetrically arranged B-end clamps 9 are installed on the bottom drive of the B-end driver 8. First cable clearance grooves 501 are provided on both sides of the bottom end of the outer sleeve 5, and a wire-receiving annular track 301 is provided at the bottom of the track plate 3, and a winding assembly is provided inside the wire-receiving annular track 301, as shown in FIG. Figure 1 As shown, a conveyor belt assembly 17 is disposed at the bottom of the first central electric push rod 4, the conveyor belt assembly 17 is located between the four frames 1, and a transmission component is disposed on the top of the conveyor belt assembly 17;
[0046] The winding assembly is used to grab the A end of the data cable and drive the data cable along the winding circular track 301 to wind around the bottom end of the outer sleeve slide 5;
[0047] like Figure 2 , Figure 5 As shown, the winding assembly includes a driving trolley 10 placed inside the winding circular track 301. In this embodiment, the cross-sectional shape of the winding circular track 301 is T-shaped. The driving trolley 10 is placed across the bottom inner wall of the winding circular track 301. A vertically arranged winding electric push rod 11 is fixedly installed at the bottom of the driving trolley 10, and a hanging telescopic frame 12 is fixedly installed on one side of the winding electric push rod 11. The telescopic ends of the winding electric push rod 11 and the hanging telescopic frame 12 are fixedly installed with the same adjusting electric push rod 13, and the adjusting electric push rod 13 is horizontally arranged. The telescopic end of the adjusting electric push rod 13 is fixedly installed with an A-end driver 14, as shown in FIG. Figure 6As shown, the bottom drive of the A-end driver 14 is equipped with two symmetrically arranged suspension rods 15, and the bottom ends of the suspension rods 15 are fixedly equipped with A-end clamps 16, and the two A-end clamps 16 are symmetrically arranged;
[0048] The transmission component is used to place the data line to be received and transmit;
[0049] like Figure 1 , Figure 8 As shown, the transmission assembly includes a first transmission seat 18 and a second transmission seat 19 disposed on the top of the conveyor belt assembly 17, and a B-end placement table 20 and an A-end placement table 21 are fixedly installed on the top of the first transmission seat 18 and the second transmission seat 19, respectively. Fig.10 As shown, the top of the B-end placement platform 20 is provided with a B-end cross groove 2001 for placing the B-end of the data cable, and the top of the A-end placement platform 21 is provided with an A-end cross groove 2101 for placing the A-end of the data cable. The B-end cross groove 2001 is adapted to the B-end clamping claw 9, and the A-end cross groove 2101 is adapted to the A-end clamping claw 16. The side where the B-end cross groove 2001 and the A-end cross groove 2101 are close to each other is provided with a second cable clearance groove 2002. Fig. 9 As shown, the bottom of the first conveying seat 18 and the second conveying seat 19 are fixedly mounted with a positioning protrusion 22. Figure 1As shown, a plurality of evenly distributed positioning grooves 1701 are provided on the top of the conveyor belt assembly 17, and the positioning grooves 1701 are matched with the positioning convex plates 22; specifically, when the data cable production take-up device is used, the data cable is first placed on the transmission component, and the A end and the B end of the data cable are respectively placed in the A end cross groove 2101 on the A end placement table 21 and the B end cross groove 2001 on the B end placement table 20, and the cable is clamped between the two second cable yielding grooves 2002, and then the B end placement table 20 and the A end placement table 21 are separated from each other and placed on the conveyor belt assembly 17, so that the two positioning convex plates 22 are respectively clamped in the corresponding positioning grooves 1701, the data cable is straightened, and then the conveyor belt assembly 17 drives the transmission component and the data line to move to the bottom of the track plate 3, so that the B end of the data line corresponds to the position of the first central electric push rod 4, and the A end corresponds to the position of the A end driver 14. By setting the winding component, when winding, the first central electric push rod 4 and the winding electric push rod 11 respectively drive the outer sleeve slide 5 and the adjusting electric push rod 13 to descend, so that the bottom end of the outer sleeve slide 5 is located on the top of the B end placement table 20, and the second central electric push rod 6 inside the outer sleeve slide 5 drives the lifting plate 7 to descend, so that the two B end clamps 9 at the bottom of the B end driver 8 are inserted into the inner sides of the B end cross groove 2001, and the B end driver 8 drives the B end clamp 9 to clamp the B end of the data line. At this time, the winding electric push rod 11 drives the A end The end clamp 16 descends to both sides of the inside of the A-end cross groove 2101, and the A-end driver 14 drives the suspension rod 15 to drive the A-end clamp 16 to hold the A-end of the data cable, and then the second center electric push rod 6 and the first center electric push rod 4 drive the B-end driver 8 to lift, and the winding electric push rod 11 drives the A-end driver 14 to lift, so that the data cable is separated from the transmission component and moves upward, and the B-end of the data cable moves to the inside of the outer sleeve slide 5, and the cable is located inside the first cable yielding groove 501. At this time, the driving trolley 10 starts to make a circular motion in the winding circular track 301, thereby driving the A-end of the data cable and the cable to be wound around the bottom end of the outer sleeve slide 5, and at the same time, the electric push rod 13 is adjusted to drive the A-end driver 14 toward the outer sleeve slide The position of the cylinder 5 is pushed forward, so that the data cable is finally wound into a shape similar to a paper clip at the bottom end of the outer sleeve slide 5, thereby realizing automatic transportation, retrieval and winding of the data cable, so that data cables of the same type have the same winding process and quality, avoiding the previous situation of inconsistent winding shapes of data cables. By setting the winding electric push rod 11 and the adjusting electric push rod 13, during the data cable winding process, the winding electric push rod 11 can drive the A-end driver 14 to move slightly up and down, so that the data cable can be evenly wound up and down at the bottom end of the outer sleeve slide 5, avoiding excessive winding of the cable at the same height. At the same time, in addition to pushing toward the outer sleeve slide 5 during the winding process, the adjusting electric push rod 13 can also keep the tension on the cable nearly consistent.
[0050] like Figure 7As shown, a wheel frame 23 is fixedly installed on the top of the driving trolley 10, and guide wheels 24 are rotatably installed at the four corners of the top of the wheel frame 23, and the four guide wheels 24 are respectively in contact with the inner walls on both sides of the winding circular track 301; specifically, by setting the guide wheels 24, when the driving trolley 10 makes a circular motion inside the winding circular track 301, the guide wheels 24 set at the four corners of the wheel frame 23 on the top of the driving trolley 10 will respectively contact the inner walls on both sides of the winding circular track 301, and rotate along the inner wall of the winding circular track 301 during the movement of the driving trolley 10, so that the guide wheels 24 guide and limit the movement of the driving trolley 10, so that the driving trolley 10 maintains the trajectory of the circular motion without deviation, and at the same time avoids the contact between the driving trolley 10 and the inner wall of the winding circular track 301 to cause wear and collision.
[0051] like Figure 8 As shown, a same double-headed threaded tube 25 is arranged between the B-end placement table 20 and the A-end placement table 21, and adjusting screws 26 are rotatably installed inside both ends of the double-headed threaded tube 25, one end of the two adjusting screws 26 are respectively fixedly installed on the side walls of the B-end placement table 20 and the A-end placement table 21, and a same limiting telescopic rod 27 is fixedly installed between the first conveying seat 18 and the second conveying seat 19; specifically, by arranging the double-headed threaded tube 25, before placing the data cable, the double-headed threaded tube 25 located between the B-end placement table 20 and the A-end placement table 21 can be rotated according to the length of the data cable, driving the adjusting screws 26 at both ends to be screwed in or out of the double-headed threaded tube 25, thereby changing the distance between the B-end placement table 20 and the A-end placement table 21, and at the same time cooperating with the position change of the positioning convex plate 22 and the positioning groove 1701, the positioning convex plate 22 is snapped into the corresponding positioning groove 1701, so as to realize the placement of data cables of different lengths.
[0052] like Fig.10 As shown, a laser locator 28 is fixedly installed on the top of the B-end placement table 20 and the A-end placement table 21. Figure 4 , Figure 6 As shown, a laser receiver 29 compatible with the laser locator 28 is fixedly installed at the bottom of the lifting plate 7 and one side of the A-end driver 14; specifically, by setting the laser locator 28 and the laser receiver 29, when the conveyor belt assembly 17 carrying the transmission components and the data cable moves to the bottom of the track plate 3, the two groups of laser locators 28 and laser receivers 29 will be aligned respectively until the two laser locators 28 are aligned with the two laser receivers 29 respectively, and the laser signal emitted by the laser locator 28 is received by the laser receiver 29, so that the B-end placement table 20 and the A-end placement table 21 correspond to the positions of the B-end clamp 9 and the A-end clamp 16 respectively, thereby realizing automatic positioning.
[0053] like Figure 8As shown, a receiving table 30 is fixedly installed on one side of the B-end placement table 20 away from the A-end placement table 21. Fig.11 As shown, a circular storage groove 3001 is provided on the top of the storage platform 30, and a positioning column 31 is fixedly installed at the inner center position of the circular storage groove 3001, and the positioning column 31 is adapted to the outer sleeve slide 5. A B-end storage groove 3101 is provided on the top of the positioning column 31, and a third cable yielding groove 3102 is provided on the side of the B-end storage groove 3101 facing the A-end placement platform 21; specifically, by setting up the storage platform 30, after the data cable is wound up at the bottom end of the outer sleeve slide 5, the conveyor belt assembly 17 continues to move a short distance, so that the storage platform 30 moves to the outer sleeve. The bottom of the slide 5 is then controlled to control the outer sleeve slide 5 and the A-end driver 14 to descend, so that the bottom end of the outer sleeve slide 5 is docked with the positioning column 31, and the positioning column 31 is inserted into the interior of the outer sleeve slide 5. The outer sleeve slide 5 and the data line are both located in the circular storage groove 3001, and then the B-end driver 8 drives the B-end clamp 9 to release the B-end of the data line, and the A-end driver 14 drives the A-end clamp 16 to release the A-end, so that the data line falls into the circular storage groove 3001, and the outer sleeve slide 5 and the A-end driver 14 are reset, so that the data line surrounds the surrounding side of the positioning column 31, completing the automatic unloading of the data line.
[0054] like Figure 1 As shown, vertically arranged electric guide rails 32 are fixedly installed on the side walls of the two frames 1 respectively located on both sides of the conveyor belt assembly 17. Fig.12 As shown, one side of the electric guide rail 32 is driven to install an electric slide 33, one side of the electric slide 33 is fixedly installed with a connecting frame 34, one side of the connecting frame 34 is fixedly installed with an assembly frame 35, and a wire-taking electric push rod 36 is fixedly installed on the assembly frame 35. The wire-taking electric push rod 36 is horizontally arranged and corresponds to the position of the storage platform 30. The telescopic end of the wire-taking electric push rod 36 is fixedly installed with a wire-taking driver 37, and the wire-taking driver 37 is driven to install two symmetrically arranged wire-taking claws 38 toward one side of the storage platform 30; specifically, by setting the wire-taking claws 38, when unloading the data line, if the data line The data cable is tightly wound around the bottom end of the outer sleeve slide 5 and cannot fall naturally, then the electric guide rail 32 will drive the electric slide 33 carrying the connecting frame 34 to descend to the height of the storage table 30, and the wire-taking electric push rod 36 will drive the wire-taking driver 37 to move toward the outer sleeve slide 5, and then the wire-taking driver 37 will drive the wire-taking claws 38 on both sides to approach each other and clamp them on both sides of the outer sleeve slide 5, that is, the top of the data cable, and then the outer sleeve slide 5 will rise and reset, and the data cable will be separated from the outer sleeve slide 5 under the obstruction of the wire-taking claws 38, and finally keep the shape of the wound cable and fall into the circular storage groove 3001, solving the problem that the data cable cannot fall.
[0055] like Fig.11As shown, two spring slides 39 are fixedly installed on the top of the storage table 30, and the two spring slides 39 are symmetrically distributed on both sides of the circular storage groove 3001. The inside of the two spring slides 39 are elastically slidably installed with spring slides 40, and the top of the spring slides 39 is provided with an elastic pin 41 for controlling the spring slide 40 to pop out. The positions of the two elastic pins 41 correspond to the positions of the two wire-taking claws 38, respectively. In this embodiment, the inside of the spring slide 39 is provided with a spring that can drive the spring slide 40 to pop out, and the elastic pin 41 is connected to the spring slide 40 by a hook, and the elastic pin 41 is After being pressed, the elastic pin 41 is disengaged from the spring slide 40, and the spring slide 40 loses its restriction and pops out from the inside of the spring slide 39 under the action of the spring; specifically, by setting the spring slide 40, after the data line is blocked by the line taking clamp 38 and falls into the circular storage groove 3001, the electric guide rail 32 will drive the line taking driver 37 and the line taking clamp 38 to descend until the line taking clamp 38 contacts the elastic pins 41 on both sides and presses, thereby releasing the limit on the spring slide 40, allowing the spring slide 40 to pop out and get stuck on the top of the data line, limiting the data line and preventing the data line from sliding outward during transmission.
[0056] like Figure 2 As shown, the four corners of the top of the track plate 3 are fixedly installed with assembly angle plates 42, and the assembly angle plates 42 are fixedly connected to the assembly platform 2. In this embodiment, the assembly angle plates 42 can be connected to the assembly platform 2 by a detachable structure such as screw connection and riveting. A hinge plate 43 is rotatably installed on one side of the bottom of the track plate 3, and the hinge plate 43 is adapted to the wire-receiving circular track 301. Two locking pins 44 are fixedly installed on one side of the track plate 3, and the two locking pins 44 are symmetrically distributed on both sides of the hinge plate 43. Specifically, by arranging the assembly angle plates 42 and the hinge plates 43, the assembly angle plates 42 can make the track plate 3 and the assembly platform 2 a detachable structure, so that when facing an irregular When using data cables of the same type but different specifications, the track plate 3 can be replaced to obtain a new winding circular track 301. At the same time, during the process of replacing the track plate 3, the first central electric push rod 4 is located in the make way hole inside the track plate 3, which will not affect the disassembly of the track plate 3, and the locking pins 44 on both sides can be slid to release the limit on the hinge plate 43, so that the hinge plate 43 can be rotated open, thereby creating a gap in the winding circular track 301, and then the driving trolley 10 is controlled to move to the gap, and the driving trolley 10 is taken out together with the entire winding assembly. At this time, the track plate 3 can be directly replaced, and the winding assembly can be placed in the new winding circular track 301.
[0057] In summary: before winding the cable: first, according to the length of the data cable, rotate the double-headed threaded tube 25 located between the B-end placement platform 20 and the A-end placement platform 21, drive the adjusting screws 26 at both ends to be screwed in or out of the double-headed threaded tube 25, so that the distance between the B-end placement platform 20 and the A-end placement platform 21 changes, and at the same time, cooperate with the position change of the positioning convex plate 22 and the positioning groove 1701, so that the positioning convex plate 22 is inserted into the corresponding positioning groove 1701, and then place the data cable on the transmission component, so that the A end and the B end of the data cable are respectively placed in the A-end cross groove 2101 on the A-end placement platform 21 and the B-end cross groove 2001 on the B-end placement platform 20, and the cable is stuck in the two second cables. The B-end placement table 20 and the A-end placement table 21 are then moved away from each other and placed on the conveyor belt assembly 17, so that the two positioning convex plates 22 are respectively inserted into the corresponding positioning grooves 1701, and the data line is straightened. Then the conveyor belt assembly 17 drives the transmission component and the data line to move to the bottom of the track plate 3, and the two sets of laser locators 28 and laser receivers 29 are respectively aligned until the two laser locators 28 are respectively aligned with the two laser receivers 29, and the laser signal emitted by the laser locator 28 is received by the laser receiver 29, so that the B-end placement table 20 and the A-end placement table 21 correspond to the positions of the B-end clamp 9 and the A-end clamp 16 respectively;
[0058] When winding the line: the first central electric push rod 4 and the winding electric push rod 11 respectively drive the outer sleeve slide 5 and the adjusting electric push rod 13 to descend, so that the bottom end of the outer sleeve slide 5 is located on the top of the B-end placement table 20, and the second central electric push rod 6 inside the outer sleeve slide 5 drives the lifting plate 7 to descend, so that the two B-end clamping claws 9 at the bottom of the B-end driver 8 are inserted into the inner sides of the B-end cross groove 2001, and the B-end driver 8 drives the B-end clamping claws 9 to clamp the B-end of the data cable. At this time, the winding electric push rod 11 drives the A-end clamping claws 16 to descend to the inner sides of the A-end cross groove 2101, and the A-end driver 14 drives the hanging rod 15 to drive the A-end clamping claws 16 to clamp the A-end of the data cable. Then the second center electric push rod 6 and the first center electric push rod 4 drive the B end driver 8 to lift, and the winding electric push rod 11 drives the A end driver 14 to lift, so that the data cable is separated from the transmission component and moves upward, and the B end of the data cable moves to the inside of the outer sleeve slide 5, and the cable is located inside the first cable yielding groove 501. At this time, the driving trolley 10 starts to make a circular motion in the winding circular track 301, thereby driving the A end of the data cable and the cable to be wound around the bottom end of the outer sleeve slide 5, and at the same time, the electric push rod 13 is adjusted to drive the A end driver 14 to advance toward the position of the outer sleeve slide 5, so that the data cable is finally wound into a shape similar to a paper clip at the bottom end of the outer sleeve slide 5;
[0059] After winding up: After the data cable is wound up at the bottom end of the outer sleeve slide 5, the conveyor belt assembly 17 continues to move a short distance, so that the storage platform 30 moves to the bottom of the outer sleeve slide 5, and then controls the outer sleeve slide 5 and the A-end driver 14 to descend, so that the bottom end of the outer sleeve slide 5 docks with the positioning column 31, and the positioning column 31 is inserted into the interior of the outer sleeve slide 5. The outer sleeve slide 5 and the data cable are both located in the circular storage groove 3001, and then the B-end driver 8 drives the B-end clamp 9 to release the B end of the data cable, and the A-end driver 14 drives the A-end clamp 16 to release the A end, so that the data cable falls into the circular storage groove 3001, and the outer sleeve slide 5 and the A-end driver 14 are reset, so that the data cable is wrapped around the peripheral side of the positioning column 31, and the data cable is automatically unloaded. If the data cable is tightly wound at the bottom end of the outer sleeve slide 5 and cannot be When it falls naturally, the electric guide rail 32 will drive the electric slide 33 carrying the connecting frame 34 to descend to the height of the storage table 30, and the wire-taking electric push rod 36 will drive the wire-taking driver 37 to move toward the outer sleeve slide 5, and then the wire-taking driver 37 will drive the wire-taking claws 38 on both sides to approach each other and clamp them on both sides of the outer sleeve slide 5, that is, the top of the data cable, and then the outer sleeve slide 5 will rise and reset, and the data cable will be separated from the outer sleeve slide 5 under the obstruction of the wire-taking claws 38, and finally fall into the circular storage groove 3001 while maintaining the shape of the wound cable, and the electric guide rail 32 will drive the wire-taking driver 37 and the wire-taking claws 38 to descend until the wire-taking claws 38 contact the elastic pins 41 on both sides and press them, thereby releasing the limit on the spring slide 40, so that the spring slide 40 pops out and is stuck on the top of the data cable, thereby limiting the data cable.
[0060] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only describe the principles of the present invention. The present invention may be subject to various changes and improvements without departing from the spirit and scope of the present invention. These changes and improvements fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the attached claims and their equivalents.
Claims
1. A data cable production take-up device, characterized in that: The invention comprises four frames (1), wherein the top of the four frames (1) is fixedly mounted with a same assembly platform (2), the bottom of the assembly platform (2) is fixedly mounted with a track plate (3) and a first central electric push rod (4), the bottom of the track plate (3) is provided with a clearance hole, the first central electric push rod (4) is located inside the clearance hole, the telescopic end of the first central electric push rod (4) is driven to be mounted with an outer sleeve slide (5), the inside of the outer sleeve slide (5) is fixedly mounted with a second central electric push rod (6), the telescopic end of the second central electric push rod (6) is fixedly mounted with a lifting plate (7), the lifting plate (7) is slidably mounted on the outer sleeve slide ( 5), a B-end driver (8) is fixedly installed at the bottom of the outer sleeve slide (5), and two symmetrically arranged B-end clamps (9) are installed at the bottom of the B-end driver (8), and a first cable clearance groove (501) is provided on both sides of the bottom of the outer sleeve slide (5), a wire-receiving annular track (301) is provided at the bottom of the track plate (3), and a winding assembly is provided inside the wire-receiving annular track (301), a conveyor belt assembly (17) is provided at the bottom of the first central electric push rod (4), and the conveyor belt assembly (17) is located between the four frames (1), and a transmission assembly is provided on the top of the conveyor belt assembly (17); The winding assembly is used to grab the A end of the data cable and drive the data cable along the winding annular track (301) to wind the data cable around the bottom end of the outer sleeve slide (5); The winding assembly comprises a driving trolley (10) placed inside the winding circular track (301), a vertically arranged winding electric push rod (11) is fixedly installed at the bottom of the driving trolley (10), a suspension telescopic frame (12) is fixedly installed on one side of the winding electric push rod (11), the telescopic ends of the winding electric push rod (11) and the suspension telescopic frame (12) are fixedly installed with the same adjusting electric push rod (13), the adjusting electric push rod (13) is horizontally arranged, the telescopic end of the adjusting electric push rod (13) is fixedly installed with an A-end driver (14), the bottom drive of the A-end driver (14) is installed with two symmetrically arranged suspension rods (15), the bottom ends of the suspension rods (15) are fixedly installed with A-end clamps (16), and the two A-end clamps (16) are symmetrically arranged; The transmission component is used to place the data line to be collected and transmit it; The transmission component comprises a first transmission seat (18) and a second transmission seat (19) which are arranged on the top of the conveyor belt assembly (17); a B-end placement table (20) and an A-end placement table (21) are fixedly installed on the top of the first transmission seat (18) and the second transmission seat (19), respectively; a B-end cross groove (2001) for placing the B end of the data line is provided on the top of the B-end placement table (20); an A-end cross groove (2101) for placing the A end of the data line is provided on the top of the A-end placement table (21); the B-end cross groove (2001) and the A-end cross groove (2101) are connected to each other. The B-end clamping jaw (9) is adapted to match the A-end cross groove (2101) and the A-end clamping jaw (16); a second cable clearance groove (2002) is provided on the side where the B-end cross groove (2001) and the A-end cross groove (2101) are close to each other; a positioning convex plate (22) is fixedly installed at the bottom of the first conveying seat (18) and the second conveying seat (19); a plurality of evenly distributed positioning grooves (1701) are provided on the top of the conveyor belt assembly (17); and the positioning grooves (1701) are adapted to match the positioning convex plate (22).
2. A data cable production take-up device according to claim 1, characterized in that: A wheel frame (23) is fixedly mounted on the top of the driving trolley (10), and guide wheels (24) are rotatably mounted at the four corners of the top of the wheel frame (23), and the four guide wheels (24) are respectively in contact with the inner walls on both sides of the take-up circular track (301).
3. A data cable production take-up device according to claim 1, characterized in that: A same double-headed threaded tube (25) is arranged between the B-end placement platform (20) and the A-end placement platform (21), and adjusting screws (26) are rotatably installed inside both ends of the double-headed threaded tube (25), and one end of the two adjusting screws (26) is respectively fixedly installed on the side walls of the B-end placement platform (20) and the A-end placement platform (21), and a same limiting telescopic rod (27) is fixedly installed between the first conveying seat (18) and the second conveying seat (19).
4. A data cable production take-up device according to claim 1, characterized in that: A laser locator (28) is fixedly mounted on the top of the B-end placement platform (20) and the A-end placement platform (21), and a laser receiver (29) compatible with the laser locator (28) is fixedly mounted on the bottom of the lifting plate (7) and one side of the A-end driver (14).
5. A data cable production take-up device according to claim 1, characterized in that: A storage platform (30) is fixedly installed on the side of the B-end placement platform (20) away from the A-end placement platform (21), a circular storage groove (3001) is provided on the top of the storage platform (30), a positioning column (31) is fixedly installed at the inner center position of the circular storage groove (3001), the positioning column (31) is adapted to the outer sleeve slide (5), a B-end storage groove (3101) is provided on the top of the positioning column (31), and a third cable clearance groove (3102) is provided on the side of the B-end storage groove (3101) facing the A-end placement platform (21).
6. A data cable production take-up device according to claim 5, characterized in that: A vertically arranged electric guide rail (32) is fixedly installed on the side walls of the two frames (1) respectively located on both sides of the conveyor belt assembly (17); an electric slide (33) is driven and installed on one side of the electric guide rail (32); a connecting frame (34) is fixedly installed on one side of the electric slide (33); an assembly frame (35) is fixedly installed on one side of the connecting frame (34); a wire-taking electric push rod (36) is fixedly installed on the assembly frame (35); the wire-taking electric push rod (36) is horizontally arranged and corresponds to the position of the storage platform (30); a wire-taking driver (37) is fixedly installed on the telescopic end of the wire-taking electric push rod (36); the wire-taking driver (37) is driven and installed with two symmetrically arranged wire-taking clamps (38) toward one side of the storage platform (30).
7. A data cable production take-up device according to claim 6, characterized in that: Two spring slides (39) are fixedly installed on the top of the storage platform (30), and the two spring slides (39) are symmetrically distributed on both sides of the circular storage groove (3001). Spring slides (40) are elastically slidably installed inside the two spring slides (39), and elastic pins (41) for controlling the spring slides (40) to pop out are arranged on the top of the spring slides (39), and the positions of the two elastic pins (41) correspond to the positions of the two wire-taking clamps (38).
8. A data cable production take-up device according to claim 1, characterized in that: The four corners of the top of the track plate (3) are fixedly mounted with assembly angle plates (42), the assembly angle plates (42) are fixedly connected to the assembly platform (2), a hinge plate (43) is rotatably mounted on one side of the bottom of the track plate (3), the hinge plate (43) is adapted to the wire-collecting circular track (301), and two locking pins (44) are fixedly mounted on one side of the track plate (3), the two locking pins (44) are symmetrically distributed on both sides of the hinge plate (43).
Citation Information
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