Cable wrapping equipment for cable production
By setting the resistance plate and damping liquid in the cable wrapping equipment, the area of the resistance plate in the damping liquid is adjusted, the problem of rotary damping adjustment of the installation shaft is solved, the stable winding of the wrapping material and the firmness of the wrapping belt are achieved, and the service life of the equipment is extended.
Patent Information
- Application Number
- CN202510874663.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2045-06-27
AI Technical Summary
It is difficult for existing cable wrapping equipment to adjust the rotational damping of the mounting shaft, resulting in tensile deformation or winding slackness of the wrapping material, and poor firmness of the wrapping belt.
By setting the resistance plate and damping liquid on the mounting shaft, the area of the resistance plate in the damping liquid is adjusted by using the adjustment component to change the damping when the installation shaft rotates, and avoiding the problem of excessive or too small damping.
The appropriate winding of the wrapping material is achieved, the quality and firmness of the wrapping tape is improved, the service life of the equipment is extended, and the heating and wear are avoided.
Smart Images

Figure CN120376253A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable processing equipment, and specifically to a wire wrapping equipment for cable production. Background Art
[0002] The wire wrapping equipment for cable production is a key equipment used to wrap insulating materials, shielding materials, etc. around the cable core during the cable manufacturing process. It generally consists of a wire feeding device, a wrapping device, a traction device, a wire winding device, and a control system, etc. The wire feeding device is responsible for evenly feeding materials to be wrapped, such as paper tape, aluminum foil, non-woven fabric, etc. The wrapping device winds these materials tightly around the cable core at a certain angle and spacing through a rotating wrapping head to form structures such as insulating layers or shielding layers. The traction device ensures that the cable core can move forward at a constant speed during the wrapping process. The wire winding device neatly winds up the wrapped cable. The control system precisely controls and adjusts parameters such as the speed, tension, and wrapping angle of the entire wrapping process to ensure the stability and consistency of the wrapping quality, so as to produce high-quality cable products that meet the standard requirements.
[0003] When the wrapping equipment performs wrapping, generally, the cable is pulled by the traction device so that the cable passes through the wrapping equipment. During the movement of the cable, the wrapping material is wound around the cable core. Often, multiple wrapping materials need to be wound on one cable. In order to improve the processing efficiency, multiple wrapping discs are required to wind multiple wrapping materials simultaneously. During the winding, the wrapping disc rotates automatically by the power of the wrapping material wound around the cable core to release the wrapping material. The wrapping disc is installed on the installation shaft, and the rotation of the installation shaft requires a certain damping. If the damping is too large, it will cause the tension of the wrapping material to be too large, making the wrapping material easy to stretch and deform. If the damping is too small, it will cause the wrapping material to be wound loosely and the firmness of the tape to be poor. However, the existing wrapping equipment is often not convenient to adjust the damping when the installation shaft rotates.
[0004] Therefore, it is necessary to provide a wire wrapping equipment for cable production to solve the above technical problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a wire wrapping equipment for cable production. Through the setting of the adjustment component and the resistance plate, the damping when the installation shaft rotates can be changed by adjusting the area of the resistance plate extending into the damping liquid, avoiding the problems of the wrapping material being stretched and deformed due to too large damping, or the wrapping material being wound loosely and the poor firmness of the tape due to too small damping.
[0006] The above technical object of the present invention is achieved by the following technical solutions: A wire wrapping device for cable production, including a housing, a processing chamber opened inside the housing, limiting cylinders arranged on both sides of the processing chamber and penetrating through both side walls of the housing, an installation ring rotatably arranged in the processing chamber, a rotation driving component for driving the installation ring to rotate, and a plurality of wrapping components arranged on the installation ring. The wrapping component includes an installation shaft, an installation cylinder and a resistance plate. The installation cylinder is fixedly installed on the installation ring. One end of the installation shaft extends into the interior of the installation cylinder. The installation shaft is rotatably connected to the installation cylinder, and a resistance plate is slidably installed on the installation shaft. The resistance plate is arranged inside the installation cylinder. An adjustment component for driving the resistance plate to move is arranged on the installation shaft. The interior of the installation cylinder is filled with damping liquid.
[0007] The further setting of the present invention is: The adjustment component includes a sliding plate, a tension spring, a connecting rod and an adjustment column. There are two resistance plates. The two resistance plates are located in the same plane. Sliding plates are fixedly installed on one side of the two resistance plates close to each other. The two ends of the tension spring are respectively fixedly connected to the two sliding plates. First connecting seats are fixedly installed on the side walls of the two sliding plates close to each other. One end of the adjustment column extends between the two sliding plates. A second connecting seat is fixedly installed at one end of the adjustment column close to the tension spring. One end of the connecting rod is hinged to the first connecting seat, and the other end of the connecting rod is hinged to the second connecting seat.
[0008] The further setting of the present invention is: A connecting disk is arranged on the side of the installation cylinder away from the installation shaft. A push column is fixedly installed on the side of the connecting disk close to the installation cylinder. One end of the push column away from the connecting disk extends into the interior of the installation cylinder, and the push column is slidably matched with the installation cylinder. A first ball is embedded at one end of the adjustment column away from the tension spring. One end of the push column extending into the interior of the installation cylinder is in contact with the first ball. The connecting disk is elastically connected to the installation cylinder through a first spring. A power component for driving a plurality of connecting disks to move synchronously is arranged inside the housing.
[0009] The further setting of the present invention is: The power component includes a first oil cylinder and a push ring. The first oil cylinder is fixedly installed inside the housing. The output end of the first oil cylinder is fixedly connected to the push ring. A second ball is embedded on the side of the connecting disk away from the installation cylinder. The push ring is in contact with the second ball.
[0010] The further setting of the present invention is: A support ring is fixedly installed on the inner side wall of the processing chamber. A gear ring is rotatably installed on the support ring. The installation ring is fixedly installed inside the gear ring.
[0011] The further setting of the present invention is: The rotation driving component includes a first motor and a driving gear. The first motor is fixedly installed inside the housing. The output end of the first motor is fixedly installed with a driving gear. The driving gear meshes with the gear ring.
[0012] A further setting of the present invention is that: two sliding grooves are formed on the mounting shaft, fixing blocks are slidably mounted in the sliding grooves, inclined surfaces are arranged at both ends of the fixing blocks, and the fixing blocks are elastically connected to the inner side wall of the sliding groove through second springs.
[0013] A further setting of the present invention is that: a blanking ring is arranged on the side of the mounting ring away from the mounting cylinder, the mounting shaft penetrates through the blanking ring, and the blanking ring is slidably matched with the mounting shaft. A second oil cylinder is fixedly installed inside the housing, a driving ring is fixedly installed at the output end of the second oil cylinder, and the driving ring is fixedly connected to the blanking ring.
[0014] A further setting of the present invention is that: a feeding ring is arranged inside the processing chamber, multiple fixing pins are fixedly installed on the side of the feeding ring close to the mounting ring, a translation driving assembly for driving the feeding ring to move horizontally is arranged inside the processing chamber, a tape wrapping disc is sleeved on the mounting shaft, and a plurality of fixing grooves adapted to the fixing pins are formed on the side of the tape wrapping disc close to the mounting ring.
[0015] A further setting of the present invention is that: the translation driving assembly includes a sliding seat slidably mounted on the bottom of the inner cavity of the processing chamber, a second motor fixedly installed inside the processing chamber, and a screw rod fixedly connected to the output end of the second motor. The screw rod penetrates through the sliding seat, and the screw rod is threadedly connected to the sliding seat. The sliding seat is fixedly connected to the feeding ring.
[0016] In summary, the present invention has the following beneficial effects: through the settings of the adjusting assembly and the resistance plate, the damping during the rotation of the mounting shaft can be changed by adjusting the area of the resistance plate extending into the damping liquid, avoiding problems such as stretching deformation of the wrapping material caused by excessive damping or loose winding of the wrapping material and poor firmness of the tape caused by too small damping. By reasonably adjusting the damping, the wrapping material can be properly wound around the cable core, improving the quality and firmness of the tape, ensuring a good taping effect. Using damping liquid in cooperation with the resistance plate to achieve the rotational damping of the mounting shaft will not cause problems such as heat generation and wear compared with other methods, thereby improving the service life of the equipment. Description of the Drawings
[0017] Figure 1 is a three-dimensional structural schematic diagram of the present invention; Figure 2 is a structural schematic diagram of the gear ring, driving assembly and tape wrapping disc of the present invention; Figure 3 is the present invention Figure 2 is an enlarged structural schematic diagram at A of the present invention; Figure 4 is a sectional structural schematic diagram of the gear ring and the support ring of the present invention; Figure 5Three-dimensional structural schematic diagram of the mounting shaft, mounting cylinder and connecting plate of the present invention; Figure 6 Cross-sectional structural schematic diagram of the mounting shaft and mounting cylinder of the present invention; Figure 7 For the present invention Figure 6 Enlarged structural schematic diagram at position B; Figure 8 Structural schematic diagram of the mounting shaft and the resistance plate of the present invention; Figure 9 Structural schematic diagram of the translation drive assembly and the loading ring of the present invention.
[0018] In the figure: 1. Housing; 2. Support ring; 3. Ring gear; 4. First motor; 5. Driving gear; 6. Mounting ring; 7. Mounting shaft; 8. Mounting cylinder; 9. Resistance plate; 10. Slide plate; 11. Tension spring; 12. Adjusting column; 13. Connecting rod; 14. First connecting seat; 15. Second connecting seat; 16. First ball; 17. Pushing column; 18. First spring; 19. Elastic sealing sleeve; 20. Connecting plate; 21. Second ball; 22. Damping liquid; 23. Pushing ring; 24. First oil cylinder; 25. Fixed block; 26. Second spring; 27. Second oil cylinder; 28. Feeding ring; 29. Driving ring; 30. Banding disc; 3001. Fixed groove; 31. Slide seat; 32. Loading ring; 33. Fixed pin; 34. Screw; 35. Second motor; 36. Limiting cylinder. Specific embodiments
[0019] The following will further describe the present invention with reference to the accompanying drawings in the embodiments of the present invention.
[0020] Please refer to Figures 1 to 8, in the embodiment of the present invention, a wire wrapping device for cable production includes a housing 1, a processing chamber opened inside the housing 1, limiting cylinders 36 arranged on both sides of the processing chamber and penetrating through both side walls of the housing 1, a mounting ring 6 rotatably arranged in the processing chamber, a rotation driving assembly for driving the mounting ring 6 to rotate, and a plurality of wrapping assemblies arranged on the mounting ring 6. Preferably, there are 6 wrapping assemblies, and the plurality of wrapping assemblies are distributed in a circular array on the mounting ring 6. The two limiting cylinders 36 and the mounting ring 6 are coaxially arranged. The wrapping assembly includes a mounting shaft 7, a mounting cylinder 8, and a resistance plate 9. The mounting cylinder 8 is fixedly installed on the mounting ring 6. One end of the mounting shaft 7 extends into the interior of the mounting cylinder 8. The mounting shaft 7 is rotatably connected to the mounting cylinder 8, and the connection part is rotationally sealed. A resistance plate 9 is slidably installed on the mounting shaft 7. The resistance plate 9 is arranged inside the mounting cylinder 8. An adjusting assembly for driving the resistance plate 9 to move is arranged on the mounting shaft 7. The interior of the mounting cylinder 8 is filled with damping liquid 22. The damping liquid 22 is a liquid with high viscosity and not easy to volatilize. Lubricating oil can be used, and silicone oil, glycerin, hydraulic oil, etc. can also be used. These liquids all have high viscosity and low volatility, and can meet the usage requirements of the damping liquid 22, and can play a good damping role under different working environments and conditions. Specifically, during use, the cable core is passed through the two limiting cylinders 36, so that the cable core penetrates through the processing chamber. A tape reel 30 is installed on the mounting shaft 7. A wrapping material is wound on the tape reel 30, and the wrapping material on the tape reel 30 is pulled out and attached to the cable core. During processing, the cable core is horizontally moved by a traction device, and at the same time, the mounting ring 6 is driven to rotate by the rotation driving assembly. When the mounting ring 6 rotates, it drives a plurality of mounting shafts 7 to revolve in a circular trajectory, so that the wrapping material is gradually wound on the cable core. When it is necessary to adjust the damping during the rotation of the mounting shaft 7, the resistance plate 9 is driven to move by the adjusting assembly, so that the area of the resistance plate 9 extending into the damping liquid 22 increases or decreases. When the mounting shaft 7 rotates, it drives the resistance plate 9 to rotate together. The larger the area of the resistance plate 9 extending into the damping liquid 22, the greater the damping during the rotation of the mounting shaft 7, thereby realizing the adjustment of the damping during the rotation of the mounting shaft 7, so as to avoid the problem of poor wrapping effect caused by too large or too small damping of the mounting shaft 7. Moreover, the rotation damping of the mounting shaft 7 is realized by the cooperation of the damping liquid 22 and the resistance plate 9, without generating heat and wear problems, and the service life is improved.
[0021] In this embodiment, preferably, the adjusting assembly includes a sliding plate 10, a tension spring 11, a connecting rod 13 and an adjusting column 12. There are two resistance plates 9, and the two resistance plates 9 are located in the same plane. Sliding plates 10 are fixedly installed on the sides of the two resistance plates 9 close to each other. The two ends of the tension spring 11 are respectively fixedly connected to the two sliding plates 10. First connecting seats 14 are fixedly installed on the side walls of the two sliding plates 10 close to each other. One end of the adjusting column 12 extends between the two sliding plates 10. A second connecting seat 15 is fixedly installed at the end of the adjusting column 12 close to the tension spring 11. One end of the connecting rod 13 is hinged to the first connecting seat 14, and the other end of the connecting rod 13 is hinged to the second connecting seat 15; on the side of the mounting cylinder 8 away from the mounting shaft 7, there is a connecting disk 20. A push column 17 is fixedly installed on the side of the connecting disk 20 close to the mounting cylinder 8. The end of the push column 17 away from the connecting disk 20 extends into the interior of the mounting cylinder 8, and the push column 17 is slidably matched with the mounting cylinder 8. A first ball 16 is embedded at the end of the adjusting column 12 away from the tension spring 11. The end of the push column 17 extending into the interior of the mounting cylinder 8 is in contact with the first ball 16. The connecting disk 20 is elastically connected to the mounting cylinder 8 through a first spring 18. A power assembly for driving the synchronous movement of a plurality of connecting disks 20 is arranged in the housing 1. An elastic sealing sleeve 19 is sleeved on the push column 17. The elastic sealing sleeve 19 is made of an elastic material to seal the sliding connection between the push column 17 and the mounting cylinder 8. The elastic sealing sleeve 19 has a certain elasticity so that it can expand and contract by itself; the power assembly includes a first oil cylinder 24 and a push ring 23. The first oil cylinder 24 is fixedly installed in the housing 1. The output end of the first oil cylinder 24 is fixedly connected to the push ring 23. A second ball 21 is embedded on the side of the connecting disk 20 away from the mounting cylinder 8. The push ring 23 is in contact with the second ball 21;When it is necessary to increase the damping during the rotation of the mounting shaft 7, the output end of the first oil cylinder 24 is controlled to extend, thereby pushing the push ring 23 to move leftward. When the push ring 23 moves, it pushes the connecting disk 20 to move leftward through the second ball 21, and then pushes the adjusting column 12 to move leftward through the push post 17. When the adjusting column 12 moves leftward, it drives the connecting rod 13 to rotate outward, and further enables the two sliding plates 10 to move away from each other against the tension of the tension spring 11, so that the area of the resistance plate 9 extending into the damping liquid 22 increases, thereby increasing the resistance during the rotation of the mounting shaft 7, and thus realizing the increase of the damping during the rotation of the mounting shaft 7. When it is necessary to reduce the damping during the rotation of the mounting shaft 7, the output end of the first oil cylinder 24 is controlled to contract, thereby pushing the push ring 23 to move rightward, and then enabling the connecting disk 20 to move rightward under the elastic action of the first spring 18, so that the push post 17 moves rightward. When the push post 17 moves rightward, the two sliding plates 10 move closer to each other under the tension of the tension spring 11, so that the area of the resistance plate 9 extending into the damping liquid 22 decreases, thereby reducing the resistance during the rotation of the mounting shaft 7, and thus realizing the reduction of the damping during the rotation of the mounting shaft 7. By only setting one first oil cylinder 24 and the push ring 23, the synchronous adjustment of the damping of multiple mounting shafts 7 can be realized, improving the convenience of adjusting the damping of the mounting shaft 7; through the setting of the first ball 16, the friction force during the relative rotation of the adjusting column 12 and the push post 17 can be reduced, and through the setting of the second ball 21, the friction force during the relative rotation of the connecting disk 20 and the push ring 23 can be reduced.;
[0022] In this embodiment, preferably, a support ring 2 is fixedly installed on the inner side wall of the processing chamber, a gear ring 3 is rotatably installed on the support ring 2, and the mounting ring 6 is fixedly installed inside the gear ring 3; the rotation driving assembly includes a first motor 4 and a driving gear 5, the first motor 4 is fixedly installed inside the housing 1, the output end of the first motor 4 is fixedly installed with a driving gear 5, and the driving gear 5 meshes with the gear ring 3; through the support ring 2 and the gear ring 3, the mounting ring 6 is rotatably installed inside the processing chamber, and the first motor 4 can drive the driving gear 5 to rotate. When the driving gear 5 rotates, it drives the gear ring 3 to rotate, and when the gear ring 3 rotates, it drives the mounting ring 6 to rotate, thereby realizing the driving of the mounting ring 6 to rotate through the rotation driving assembly.
[0023] In this embodiment, preferably, two chutes are provided on the mounting shaft 7, and fixing blocks 25 are slidably installed in the chutes. Both ends of the fixing blocks 25 are provided with inclined surfaces, and the setting of the inclined surfaces makes the installation and disassembly of the strap disk 30 more convenient. The fixing blocks 25 are elastically connected to the inner side walls of the chutes through second springs 26; when the strap disk 30 is sleeved on the mounting shaft 7, the fixing blocks 25 can be pressed against the inner peripheral wall of the strap disk 30 by the elastic force of the second springs 26, thereby fixing the strap disk 30. A plurality of anti-slip grooves adapted to the fixing blocks 25 can be provided on the inner peripheral wall of the strap disk 30 to prevent the strap disk 30 from rotating relative to the mounting shaft 7.
[0024] Please refer to Figures 2 to 4 and Figure 9 In the embodiment of the present invention, a blanking ring 28 is provided on the side of the mounting ring 6 away from the mounting cylinder 8. The mounting shaft 7 penetrates through the blanking ring 28, and the blanking ring 28 is slidably matched with the mounting shaft 7. A second oil cylinder 27 is fixedly installed inside the housing 1, and the output end of the second oil cylinder 27 is fixedly installed with a driving ring 29, and the driving ring 29 is fixedly connected to the blanking ring 28. When the strap material on the strap reel 30 is used up, the second oil cylinder 27 can be used to drive the blanking ring 28 to move leftward, so as to simultaneously push out the strap reels 30 on multiple mounting shafts 7, so as to simultaneously blank the multiple used-up strap reels 30, so as to improve the efficiency of replacing the strap reels 30.
[0025] In this embodiment, preferably, a loading ring 32 is arranged inside the processing chamber. A plurality of fixing pins 33 are fixedly installed on the side of the loading ring 32 close to the mounting ring 6. A translation driving assembly for driving the loading ring 32 to move horizontally is arranged inside the processing chamber. A strap reel 30 is sleeved on the mounting shaft 7. A plurality of fixing grooves 3001 adapted to the fixing pins 33 are formed on the side of the strap reel 30 close to the mounting ring 6. The number of groups of fixing pins 33 is the same as the number of mounting shafts 7. The translation driving assembly includes a sliding seat 31 slidably installed at the bottom of the inner cavity of the processing chamber, a second motor 35 fixedly installed inside the processing chamber, and a screw rod 34 fixedly connected to the output end of the second motor 35. The screw rod 34 penetrates through the sliding seat 31, and the screw rod 34 is threadedly connected to the sliding seat 31. The sliding seat 31 is fixedly connected to the loading ring 32. The output end of the second motor 35 can drive the screw rod 34 to rotate. When the screw rod 34 rotates, it drives the sliding seat 31 to move, so as to drive the loading ring 32 to move horizontally. Before the strap material on the strap reel 30 on the mounting shaft 7 is used up, a plurality of new strap reels 30 are placed on the fixing pins 33. After the strap material on the strap reel 30 is used up, the strap reel 30 is pushed down by the blanking ring 28, and then the translation driving assembly is used to drive the loading ring 32 to move rightward, so as to drive the strap reels 30 on the loading ring 32 to move rightward, so that the plurality of mounting shafts 7 respectively extend into the through holes in the middle of the plurality of strap reels 30, and the strap reels 30 are fixed on the mounting shafts 7 by the fixing blocks 25, and then the translation driving assembly is used to drive the mounting ring 6 to move leftward, so that the loading ring 32 is reset, so as to realize the rapid installation of the plurality of strap reels 30, so as to improve the replacement efficiency of the strap reels 30. It should be noted that both the first motor 4 and the second motor 35 adopt servo motors. A vision system is arranged inside the processing chamber, and a processor is arranged inside the housing 1 to ensure the docking of the mounting shaft 7 and the strap reel 30. The specific control method is the prior art and will not be described in detail here.
[0026] Working principle: Pass the cable core wire through the two limiting cylinders 36, so that the cable core wire penetrates the processing chamber. Install the tape wrapping disc 30 on the installation shaft 7. The tape wrapping material is wound on the tape wrapping disc 30, and the tape wrapping material on the tape wrapping disc 30 is pulled out and attached to the cable core wire. During processing, the cable core wire is horizontally moved by the traction device, and at the same time, the installation ring 6 is rotated by the rotation driving assembly. When the installation ring 6 rotates, it drives a plurality of installation shafts 7 to revolve in a circular track, so that the tape wrapping material is gradually wound on the cable core wire. When it is necessary to adjust the damping when the installation shaft 7 rotates, when it is necessary to increase the damping when the installation shaft 7 rotates, control the output end of the first oil cylinder 24 to extend, so as to push the push ring 23 to move leftward. When the push ring 23 moves, it pushes the connecting disc 20 to move leftward through the second ball 21, so as to push the adjusting column 12 to move leftward through the push post 17. When the adjusting column 12 moves leftward, it drives the connecting rod 13 to rotate outward, so that the two sliding plates 10 move away from each other against the tension of the tension spring 11, so that the area of the resistance plate 9 extending into the damping liquid 22 increases, and further increases the resistance when the installation shaft 7 rotates, so as to realize the increase of the damping when the installation shaft 7 rotates. When it is necessary to reduce the damping when the installation shaft 7 rotates, control the output end of the first oil cylinder 24 to contract, so as to push the push ring 23 to move rightward, and then make the connecting disc 20 move rightward under the elastic action of the first spring 18, so that the push post 17 moves rightward. When the push post 17 moves rightward, the two sliding plates 10 move closer to each other under the tension of the tension spring 11, so that the area of the resistance plate 9 extending into the damping liquid 22 decreases, and further reduces the resistance when the installation shaft 7 rotates, so as to realize the reduction of the damping when the installation shaft 7 rotates. Before the tape wrapping material on the tape wrapping disc 30 on the installation shaft 7 is used up, place a plurality of new tape wrapping discs 30 on the fixed pins 33. After the tape wrapping material on the tape wrapping disc 30 is used up, push down the tape wrapping disc 30 through the blanking ring 28, and then drive the feeding ring 32 to move rightward through the translation driving assembly, so as to drive the tape wrapping disc 30 on the feeding ring 32 to move rightward, so that a plurality of installation shafts 7 respectively extend into the through holes in the middle of a plurality of tape wrapping discs 30, and fix the tape wrapping disc 30 on the installation shaft 7 through the fixing block 25, and then drive the installation ring 6 to move leftward through the translation driving assembly, so that the feeding ring 32 is reset, so as to realize the rapid installation of a plurality of tape wrapping discs 30, so as to improve the replacement efficiency of the tape wrapping disc 30.
[0027] The above is only the preferred embodiment of the present invention. Therefore, all equivalent changes or modifications made according to the structure, features and principles described in the scope of the present invention patent application are included in the scope of the present invention patent application.
Claims
1. A wire wrapping device for cable production, comprising a housing, a processing chamber opened inside the housing, limiting cylinders arranged on both sides of the processing chamber and penetrating through both side walls of the housing, a mounting ring rotatably arranged in the processing chamber, a rotation driving assembly for driving the mounting ring to rotate, and a plurality of wrapping assemblies arranged on the mounting ring, characterized in that: The wrapping component includes a mounting shaft, a mounting cylinder, and a resistance plate. The mounting cylinder is fixedly installed on the mounting ring. One end of the mounting shaft extends into the interior of the mounting cylinder. The mounting shaft is rotatably connected to the mounting cylinder, and a resistance plate is slidably mounted on the mounting shaft. The resistance plate is arranged inside the mounting cylinder. An adjusting component for driving the movement of the resistance plate is arranged on the mounting shaft, and damping liquid is filled inside the mounting cylinder.
2. The cable wrapping equipment for cable production according to claim 1, characterized in that: The adjusting component includes a sliding plate, a tension spring, a connecting rod, and an adjusting column. There are two resistance plates, and the two resistance plates are located in the same plane. Sliding plates are fixedly installed on the sides of the two resistance plates close to each other. The two ends of the tension spring are respectively fixedly connected to the two sliding plates. First connecting seats are fixedly installed on the side walls of the two sliding plates close to each other. One end of the adjusting column extends between the two sliding plates. A second connecting seat is fixedly installed at the end of the adjusting column close to the tension spring. One end of the connecting rod is hinged to the first connecting seat, and the other end of the connecting rod is hinged to the second connecting seat.
3. A wire wrapping device for cable production according to claim 2, characterized in that: A connecting disk is arranged on the side of the mounting cylinder away from the mounting shaft. A push column is fixedly installed on the side of the connecting disk close to the mounting cylinder. The end of the push column away from the connecting disk extends into the interior of the mounting cylinder, and the push column is slidably matched with the mounting cylinder. A first ball is embedded at the end of the adjusting column away from the tension spring. The end of the push column extending into the interior of the mounting cylinder is in contact with the first ball. The connecting disk is elastically connected to the mounting cylinder through a first spring. A power component for driving the synchronous movement of multiple connecting disks is arranged inside the housing.
4. A wire wrapping device for cable production according to claim 3, characterized in that: The power component includes a first oil cylinder and a push ring. The first oil cylinder is fixedly installed inside the housing. The output end of the first oil cylinder is fixedly connected to the push ring. A second ball is embedded on the side of the connecting disk away from the mounting cylinder. The push ring is in contact with the second ball.
5. A wire wrapping device for cable production according to claim 1, characterized in that: A support ring is fixedly installed on the inner side wall of the processing chamber. A gear ring is rotatably installed on the support ring. The mounting ring is fixedly installed inside the gear ring.
6. The wire wrapping equipment for cable production according to claim 5, characterized in that: The rotation driving component includes a first motor and a driving gear. The first motor is fixedly installed inside the housing. The output end of the first motor is fixedly installed with a driving gear, and the driving gear meshes with the gear ring.
7. A wire wrapping device for cable production according to claim 1, characterized in that: Two sliding grooves are formed on the mounting shaft. Fixing blocks are slidably installed in the sliding grooves. Inclined surfaces are arranged at both ends of the fixing blocks. The fixing blocks are elastically connected to the inner side walls of the sliding grooves through second springs.
8. A wire wrapping device for cable production according to claim 1, characterized in that: A blanking ring is arranged on the side of the mounting ring away from the mounting cylinder. The mounting shaft passes through the blanking ring, and the blanking ring is slidably matched with the mounting shaft. A second oil cylinder is fixedly installed inside the housing. The output end of the second oil cylinder is fixedly installed with a driving ring, and the driving ring is fixedly connected to the blanking ring.
9. The cable wrapping device for cable production according to claim 8, characterized in that: An upper feeding ring is arranged inside the processing chamber. Multiple groups of fixing pins are fixedly installed on the side of the upper feeding ring close to the mounting ring. A translation driving component for driving the horizontal movement of the upper feeding ring is arranged inside the processing chamber. A tape wrapping disk is sleeved on the mounting shaft. Multiple fixing grooves adapted to the fixing pins are formed on the side of the tape wrapping disk close to the mounting ring.
10. A wire wrapping device for cable production according to claim 9, characterized in that: The translation drive assembly includes a sliding seat slidably mounted on the bottom of the inner cavity of the processing chamber, a second motor fixedly mounted in the processing chamber, and a screw rod fixedly connected to the output end of the second motor. The screw rod penetrates through the sliding seat, and the screw rod is threadedly connected to the sliding seat. The sliding seat is fixedly connected to the feeding ring.
Citation Information
Patent Citations
Cable conductor stranding equipment capable of preventing conductor wire jumping
CN116844782A
Cable fire-resistant wrapping process
CN117747210A
Cable constant tension wrapping tape wrapping device
CN222672706U
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