Wire bundling machine for cable processing

By using a support assembly driven by a cylinder and a motor, the problems of difficult removal of the take-up roller and uneven winding in existing filament bundling machines have been solved, achieving easy operation and uniform winding.

CN223665226UActive Publication Date: 2025-12-12HUAYI CABLE ACCESSORIES CO LTD
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Patent Information

Application Number
CN202422667927.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-12-12
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

The take-up rollers of existing filament bundling machines are heavy after winding, requiring considerable effort to remove, and the winding is uneven, affecting subsequent use.

Method used

A support assembly including a cylinder, a motor, and a screw was designed. The cylinder pushes the support seat to lift the take-up roller, and the motor drives the screw to move the fixing block, so as to easily remove the take-up roller and evenly wind it.

Benefits of technology

It reduces the labor intensity of workers, achieves uniform winding of cables on the take-up roller, prevents uneven winding, and improves operating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a bunching machine for cable processing, which comprises a base, the left side of the top surface of the base is fixedly connected with a bunching machine body, the right side of the top surface of the base is fixedly connected with a supporting assembly, and the front side and the rear side of the top surface of the supporting assembly are both provided with connecting plates. First through holes are formed in the positions, close to the tops, of the side walls of the two connecting plates correspondingly, all the parts are matched with one another, the air cylinder pushes the supporting base to ascend to lift the winding roller, then the two fixing blocks move away from each other and are pulled out of the two rectangular inserting blocks correspondingly, and fixing of the winding roller can be relieved; at the moment, the winding roller is slightly lifted upwards and can be taken down from the device, operation is easy, the labor intensity of workers is reduced, the cable can move left and right in a reciprocating mode, the cable is evenly wound on the winding roller, the phenomenon that the two ends of the cable are too thin after the cable is wound on the winding roller is prevented, and the cable winding device can be used after the cable is wound.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable processing technical field especially, is a kind of silk binding machine for cable processing. BACKGROUND

[0002] The silk binding machine is mainly used for plastic, rubber wire, cable, stranded bare copper wire and aluminum wire core, which is simple, safe and reliable to operate, can strand multiple single cores according to specified model, has fast stranding speed, and can be regularly bound as a whole according to certain length, facilitating the production of wire coating with plastic or rubber.

[0003] The existing patent (publication number: CN218088370U) discloses a silk binding machine for cable processing and production, which comprises a base, a first rotating motor, a first gear, a rotating rod, a fixed rod, a winding roller, a protective shell, a second rotating motor, a threaded rod and a moving plate. The base is clamped on the upper end face of the workbench. The inventor found that the following problems in the prior art have not been well solved in the process of implementing the scheme: 1. The winding roller in the existing device is heavy after winding the cable, and needs to be lifted upwards before it can be removed from the rotating rod, which is labor-intensive and increases the work intensity of workers; 2. The winding roller in the existing device is fixed and does not move, and the silk binding is concentrated in the middle of the winding roller, causing uneven distribution of silk binding on the winding roller, which presents the phenomenon of thicker winding in the middle of the take-up reel and thinner winding on both sides, affecting the subsequent use of silk binding. UTILITY MODEL CONTENT

[0004] The utility model aims to provide a silk binding machine for cable processing to solve the problems mentioned in the background.

[0005] The technical scheme of the utility model is a silk binding machine for cable processing, which comprises a base, a silk binding machine body fixedly connected to the left side of the top surface of the base, a support assembly fixedly connected to the right side of the top surface of the base, a connecting plate provided on the front and rear sides of the top surface of the support assembly, a first through hole formed in the side wall of each of the two connecting plates and near the top, a connecting shaft journalled in each of the two first through holes, a fixed block fixedly connected to the end face of each of the two connecting shafts, a rectangular insertion slot formed in the middle of the facing surface of each of the two fixed blocks, a winding roller provided on the facing surface of each of the two connecting plates and near the top, a flapper fixedly connected to the front and rear end surfaces of the winding roller, a rectangular insertion block fixedly connected to the center of the facing surface of each of the two flappers, and a first motor fixedly connected to the rear side of the rear connecting plate and the rear end surface of the rear connecting shaft.

[0006] In one embodiment, the support component connecting seat has its bottom surface fixedly connected to the right side of the top surface of the base. Limit openings are provided on the front and rear sides of the top of the connecting seat. The bottoms of the two connecting plates are slidably connected in the connected limit openings and penetrate into the inner cavity of the connecting seat. A bidirectional screw is connected to the front bearing of the inner wall of the connecting seat. The bottoms of the two connecting plates are movably sleeved on the front and rear ends of the surface of the bidirectional screw.

[0007] In one embodiment, a second through hole is provided on the rear side of the connecting seat, and the rear end bearing of the bidirectional screw surface is sleeved in the second through hole and extends to the outside of the rear side of the connecting seat. A second motor is fixedly connected to the rear side of the connecting seat through a frame, and the shaft of the second motor is connected to the rear end bearing of the bidirectional screw.

[0008] In one embodiment, cylinders are fixedly connected to the front and rear sides of the top surface of the connecting seat, and a support seat is fixedly connected to the upper ends of the two cylinders. An arc-shaped placement groove is provided on the left and right sides of the top surface of the support seat, and the arc-shaped placement groove is adapted to the baffle plate.

[0009] In one embodiment, a support platform is fixedly connected to the center of the top surface of the base, a rotating shaft is connected to the front bearing of the inner wall of the support platform, a connecting cylinder is fixedly sleeved on the center of the surface of the rotating shaft, a ring is movably sleeved on the center of the surface of the connecting cylinder, an arc-shaped guide groove is formed on the side surface of the connecting cylinder, a movable block is fixedly connected to the front side of the inner side of the ring, the movable block is slidably connected in the arc-shaped guide groove, a support block is fixedly connected to the top surface of the side surface of the ring, and a guide hole is formed in the center of the support block.

[0010] In one embodiment, a third through hole is provided in the middle of the rear side of the support platform, and the rear bearing of the rotating shaft is sleeved in the third through hole and extends to the outside of the rear side of the support platform. A third motor is fixedly connected to the rear side of the support platform through a frame, and the rear end face of the third motor is fixedly connected to the rear end face of the rotating shaft.

[0011] In one embodiment, a groove is provided on the bottom surface of the inner side of the support platform, and a slider is fixedly connected to the bottom of the annular side surface, with the bottom of the slider slidably connected in the groove.

[0012] In one embodiment, a control panel is fixedly connected to the front of the filament bundling machine body, and the control panel is electrically connected to the first motor, the second motor, the cylinder and the third motor.

[0013] The beneficial effects provided by this utility model are:

[0014] By coordinating the various components, the cylinder pushes the support seat upward to lift the take-up roller, and then the two fixed blocks move apart and are pulled off the two rectangular inserts respectively, thus releasing the fixation of the take-up roller. At this time, the take-up roller can be lifted slightly upward to remove it from the device. The operation is relatively easy, reducing the labor intensity of workers, and it can make the cable move back and forth, so that the cable is evenly wound on the take-up roller, preventing the cable from being too thin at both ends after being wound on the take-up roller. This can be done after the cable is wound up. Attached Figure Description

[0015] Figure 1 This is the front view of the present invention;

[0016] Figure 2 This is a side sectional view of the connector.

[0017] Figure 3 This is a side sectional view of the support platform;

[0018] Figure 4 This is a main sectional view of the connecting cylinder and the ring;

[0019] Figure 5 This is the main sectional view of the support base.

[0020] In the attached diagram: 1. Base; 2. Bundling machine body; 3. Support assembly; 31. Connecting seat; 32. Limiting opening; 33. Bidirectional screw; 34. Second motor; 4. Connecting plate; 5. Connecting shaft; 6. Fixing block; 7. Rectangular slot; 8. Take-up roller; 9. Baffle plate; 10. Rectangular insert; 11. First motor; 12. Cylinder; 13. Support seat; 14. Arc-shaped placement groove; 15. Support platform; 16. Rotating shaft; 17. Connecting cylinder; 18. Ring; 19. Arc-shaped guide groove; 20. Movable block; 21. Support block; 22. Guide hole; 23. Third motor; 24. Slide groove; 25. Slider; 26. Control panel. Detailed Implementation

[0021] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments of the present invention can be combined with each other. The technical solutions of the present invention will be further described below with reference to the accompanying drawings of the embodiments. The present invention is not limited to the specific embodiments described below.

[0022] It should be understood that the same or similar reference numerals in the accompanying drawings of the embodiments correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "front," "rear," "left," "right," "top," and "bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms describing positional relationships in the accompanying drawings are for illustrative purposes only and should not be construed as limiting this patent. Those skilled in the art can understand the specific meaning of the above terms according to the specific circumstances.

[0023] In one embodiment, such as Figures 1-5 As shown, a cable processing wire bundling machine includes a base 1. A wire bundling machine body 2 is fixedly connected to the left side of the top surface of the base 1, and a support assembly 3 is fixedly connected to the right side of the top surface of the base 1. Connecting plates 4 are provided on the front and rear sides of the top surface of the support assembly 3. A first through hole is opened on the side wall of the two connecting plates 4 near the top. A connecting shaft 5 is sleeved in the two first through holes. A fixing block 6 is fixedly connected to the end face of the two connecting shafts 5 facing each other. A rectangular slot 7 is opened in the middle of the facing face of the two fixing blocks 6. A winding roller 8 is provided on the facing face of the two connecting plates 4 near the top. A baffle 9 is fixedly connected to the front and rear end faces of the winding roller 8. A rectangular insert 10 is fixedly connected to the center of the disjoint face of the two baffles 9. The two rectangular inserts 10 are respectively inserted into the adjacent rectangular slots 7. A first motor 11 is fixedly connected to the rear side of the rear connecting plate 4. The rear end face of the rear connecting shaft 5 is fixedly connected to the shaft of the first motor 11.

[0024] In order to enable the two connecting plates 4 to move towards each other or away from each other, the support assembly 3 connects to the base 1. The bottom surface of the connecting plate 31 is fixedly connected to the right side of the top surface of the base 1. Limit openings 32 are opened on the front and rear sides of the top of the connecting plate 31. The bottoms of the two connecting plates 4 are slidably connected in the connected limit openings 32 and penetrate into the inner cavity of the connecting plate 31. The front bearing of the inner wall of the connecting plate 31 is connected to the bidirectional screw 33. The bottoms of the two connecting plates 4 are movably sleeved on the front and rear ends of the surface of the bidirectional screw 33.

[0025] To facilitate the rotation of the bidirectional screw 33, a second through hole is provided on the rear side of the connecting seat 31. The rear bearing of the surface of the bidirectional screw 33 is sleeved in the second through hole and extends to the outside of the rear side of the connecting seat 31. A second motor 34 is fixedly connected to the rear side of the connecting seat 31 through a frame. The shaft of the second motor 34 is connected to the rear bearing of the bidirectional screw 33.

[0026] In order to support the take-up roller 8 after it is released from its fixed position, so as to eliminate the need for manual lifting and to prevent the take-up roller 8 from rolling when it is released from its fixed position, cylinders 12 are fixedly connected to the front and rear sides of the top surface of the connecting seat 31. The upper ends of the two cylinders 12 are fixedly connected to the support seat 13. Arc-shaped placement grooves 14 are opened on the left and right sides of the top surface of the support seat 13. The arc-shaped placement grooves 14 are adapted to the baffle plate 9.

[0027] To enable the cable to move back and forth when wound on the winding roller 8, a support platform 15 is fixedly connected to the center of the top surface of the base 1. A rotating shaft 16 is connected to the front bearing of the inner wall of the support platform 15. A connecting cylinder 17 is fixedly sleeved on the center of the surface of the rotating shaft 16. A ring 18 is movably sleeved on the center of the surface of the connecting cylinder 17. An arc-shaped guide groove 19 is provided on the side surface of the connecting cylinder 17. A movable block 20 is fixedly connected to the front side of the inner side of the ring 18. The movable block 20 is slidably connected in the arc-shaped guide groove 19. A support block 21 is fixedly connected to the top surface of the side surface of the ring 18. A guide hole 22 is provided in the center of the support block 21.

[0028] To facilitate the rotation of the rotating shaft 16, a third through hole is provided in the middle of the rear side of the support platform 15. The rear bearing of the rotating shaft 16 is sleeved in the third through hole and extends to the outside of the rear side of the support platform 15. A third motor 23 is fixedly connected to the rear side of the support platform 15 through a frame. The rear end face of the third motor 23 is fixedly connected to the rear end face of the rotating shaft 16.

[0029] To prevent the ring 18 from rotating with the connecting cylinder 17, a groove 24 is provided on the bottom surface of the inner side of the support platform 15. A slider 25 is fixedly connected to the bottom of the side surface of the ring 18, and the bottom of the slider 25 is slidably connected in the groove 24.

[0030] To facilitate the operation of the electrical structure on the control device, a control panel 26 is fixedly connected to the front of the wire bundling machine body 2. The control panel 26 is electrically connected to the first motor 11, the second motor 34, the cylinder 12 and the third motor 23.

[0031] Working Principle: When using this invention, the operator first passes the twisted cable (after winding on the main body 2) through the guide hole 22 and winds it onto the take-up roller 8. Then, the first motor 11 is started, driving the take-up roller 8 to rotate and wind the cable. Simultaneously, the third motor 23 is started, driving the rotating shaft 16 to rotate. The rotating shaft 16 drives the connecting cylinder 17 to rotate, causing the movable block 20 to move along the trajectory of the arc-shaped guide groove 19. The movable block 20 drives the ring 18 to move, causing the ring 18 to move back and forth. The ring 18 drives the support block 21 to move, causing the cable located in the guide hole 22 to move left and right, ensuring the cable is evenly wound onto the take-up roller 8. This prevents the cable from becoming too thin at both ends after winding on the take-up roller 8. After winding is completed, cylinder 12 is first activated, which pushes support 13 upward, causing the bottoms of the two baffles 9 to be inserted into the two arc-shaped placement slots 14 respectively. This not only lifts the winding roller but also prevents the winding roller 8 from rolling when it is released from its fixation. Then, the second motor 34 is activated, which drives the bidirectional screw 33 to rotate. The rotation of the bidirectional screw 33 causes the two connecting plates 4 to move towards each other. The connecting plates 4 drive the connecting shaft 5 to move, and the connecting shaft 5 drives the fixing block 6 to move, so that the two fixing blocks 6 are pulled off the two rectangular inserts 10 respectively, releasing the fixation of the winding roller 8. At this time, the winding roller 8 is slightly lifted upward so that the bottom of the baffle 9 is removed from the arc-shaped placement slot 14. The winding roller 8 with the wound cable can then be removed from the device. The operation is relatively easy and reduces the labor intensity of the workers.

[0032] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0033] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A cable bundling machine, characterized in that, The system includes a base, a filament bundling machine body fixedly connected to the left side of the top surface of the base, and a support assembly fixedly connected to the right side of the top surface of the base. Connecting plates are provided on the front and rear sides of the top surface of the support assembly. First through holes are provided on the side walls of both connecting plates near the top. Connecting shafts are bearing-sleeved within both first through holes. Fixing blocks are fixedly connected to the facing end faces of both connecting shafts. Rectangular slots are provided in the middle of the facing faces of both fixing blocks. Taking-up rollers are provided on the facing faces of both connecting plates near the top. Baffles are fixedly connected to the front and rear end faces of the taking-up rollers. Rectangular inserts are fixedly connected to the centers of the separating surfaces of both baffles. The rectangular inserts are respectively inserted into adjacent rectangular slots. A first motor is fixedly connected to the rear side of the rear connecting plate. The rear end face of the rear connecting shaft is fixedly connected to the shaft of the first motor. The support assembly connecting seat... The bottom surface of the connecting seat is fixedly connected to the right side of the top surface of the base. Limit openings are provided on the front and rear sides of the top of the connecting seat. The bottoms of the two connecting plates are slidably connected in the connected limit openings and penetrate into the inner cavity of the connecting seat. A bidirectional screw is connected to the front bearing of the inner wall of the connecting seat. The bottoms of the two connecting plates are movably sleeved on the front and rear ends of the surface of the bidirectional screw. A second through hole is provided on the rear side of the connecting seat. The rear bearing of the surface of the bidirectional screw is sleeved in the second through hole and penetrates to the outside of the rear side of the connecting seat. A second motor is fixedly connected to the rear side of the connecting seat through a frame. The shaft of the second motor is connected to the rear bearing of the bidirectional screw. Cylinders are fixedly connected to the front and rear sides of the top surface of the connecting seat. A support base is fixedly connected to the upper ends of the two cylinders. Arc-shaped placement grooves are provided on the left and right sides of the top surface of the support base. The arc-shaped placement grooves are adapted to the baffle plate.

2. The cable processing wire bundling machine as described in claim 1, characterized in that: A support platform is fixedly connected to the center of the top surface of the base. A rotating shaft is connected to the front bearing of the inner wall of the support platform. A connecting cylinder is fixedly sleeved on the center of the surface of the rotating shaft. A ring is movably sleeved on the center of the surface of the connecting cylinder. An arc-shaped guide groove is opened on the side surface of the connecting cylinder. A movable block is fixedly connected to the front side of the inner side of the ring. The movable block is slidably connected in the arc-shaped guide groove. A support block is fixedly connected to the top surface of the side surface of the ring. A guide hole is opened in the center of the support block.

3. The cable processing wire bundling machine as described in claim 2, characterized in that: A third through hole is provided in the middle of the rear side of the support platform. The rear bearing of the rotating shaft is sleeved in the third through hole and extends to the outside of the rear side of the support platform. A third motor is fixedly connected to the rear side of the support platform through a frame. The rear end face of the third motor is fixedly connected to the rear end face of the rotating shaft.

4. A cable processing wire bundling machine as described in claim 2, characterized in that: The bottom surface of the inner side of the support platform is provided with a sliding groove, and a slider is fixedly connected to the bottom of the annular side surface. The bottom of the slider is slidably connected in the sliding groove.

5. A cable processing wire bundling machine as described in claim 1, characterized in that: The control panel is fixedly connected to the front of the filament bundling machine body. The control panel is electrically connected to the first motor, the second motor, the cylinder and the third motor.

Citation Information

Patent Citations

  • Wire bundling machine for cable processing and production

    CN218088370U