Tape wrapping equipment
Patent Information
- Application Number
- CN202522466867.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-20
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-20
AI Technical Summary
[0003]人工缠绕方式存在显著局限
[0015]本实用新型的有益效果在于,拉胶组件预先将送胶组件中的胶带拉出,被拉出的胶带的一端贴敷于波纹管上,送料装置推动波纹管移动,同时,缠胶运动组件环绕波纹管转动,以此实现波纹管的缠胶,最后由切胶组件将胶带切断。该种方式实现了波纹管的自动缠胶,既提升了生产效率,还确保了缠胶后的品质,同时,还大大改善了因人员疲劳引发操作失误所带来的质量和安全问题。
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Figure CN224783559U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mechanical equipment technology, specifically to a tape wrapping device. Background Technology
[0002] Corrugated tubing is widely used for wire harness protection, and its outer surface needs to be wrapped with tape for insulation, abrasion resistance, and sealing. Currently, this wrapping operation is generally done manually in the industry.
[0003] Manual winding has significant limitations. First, it is inefficient; the speed of manual operation is limited by the operator's skill and physical strength, making it difficult to keep pace with large-scale production and extending the overall processing cycle. Second, the winding quality is unstable; the force, winding angle, and tape tension during manual operation are easily affected by human factors, often resulting in uneven tape overlap, wrinkling, or loosening, making it impossible to guarantee product consistency. Third, long-term manual operation increases labor costs and is prone to errors due to operator fatigue, further affecting production quality and safety. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a tape wrapping device.
[0005] The present invention discloses a tape wrapping device, comprising: a carrier, a feeding device, and a tape wrapping device. The tape wrapping device includes a tape wrapping motion component, a tape feeding component, a tape pulling component, and a tape cutting component. The tape wrapping motion component is rotatably mounted on the carrier, the tape feeding component is mounted on the tape wrapping motion component, the tape pulling component is mounted on the tape wrapping motion component, and the tape pulling component and the tape feeding component are distributed opposite each other. The tape cutting component is mounted on the carrier. In this process, the feeding device drives the corrugated pipe to move continuously in the X-axis direction. The adhesive pulling component pulls out the adhesive tape from the adhesive feeding component in advance. During the movement of the corrugated pipe, the adhesive feeding component rotates around the corrugated pipe. After the adhesive is wrapped, the adhesive cutting component cuts the adhesive tape.
[0006] According to one embodiment of the present invention, the adhesive wrapping motion assembly includes an adhesive wrapping drive component, an adhesive wrapping transmission component, and an adhesive wrapping support component. The adhesive wrapping drive component is disposed on the support component, the adhesive wrapping transmission component is disposed on the support component, the output end of the adhesive wrapping drive component is connected to the adhesive wrapping transmission component, and the adhesive wrapping support component is connected to the adhesive wrapping transmission component. The adhesive wrapping drive component drives the adhesive wrapping support component to rotate relative to the support component through the adhesive wrapping transmission component.
[0007] According to one embodiment of the present invention, the glue feeding assembly includes a glue feeding support and a glue feeding drive. Both the glue feeding support and the glue feeding drive are hinged to the glue wrapping support, and the output end of the glue feeding drive is hinged to the glue feeding support.
[0008] According to one embodiment of the present invention, the glue-pulling assembly includes a glue-pulling drive, a glue-pulling support, a glue-clamping drive, and at least two glue-clamping components. The glue-pulling drive is disposed on the support, the glue-pulling support is slidably disposed on the support, the glue-clamping drive is disposed on the glue-pulling support, and at least two glue-clamping components are disposed opposite to each other at the output end of the glue-clamping drive, and at least two glue-clamping components are disposed directly opposite to the glue-feeding support.
[0009] According to one embodiment of the present invention, the glue-cutting assembly includes a first glue-cutting drive, a glue-cutting transmission, a glue-cutting support, a second glue-cutting drive, and a glue-cutting component. The first glue-cutting drive and the glue-cutting transmission are both disposed on the support, and the output end of the first glue-cutting drive is connected to the glue-cutting transmission. The glue-cutting support is slidably disposed on the support, the second glue-cutting drive is disposed on the glue-cutting support, and the glue-cutting component is connected to the output end of the second glue-cutting drive. The glue-pulling drive is disposed on the glue-cutting support, and the glue-pulling support is slidably disposed on the glue-cutting support.
[0010] According to one embodiment of the present invention, the adhesive wrapping device further includes a lifting assembly, which includes a lifting drive and a lifting support. The lifting drive is disposed on the support, and the lifting support is slidably disposed on the support. The output end of the lifting drive is connected to the lifting support. The adhesive wrapping drive and the adhesive wrapping transmission are both disposed on the lifting support. The adhesive wrapping support can rotate relative to the lifting support. The adhesive wrapping support has a receiving opening, and a corrugated tube is placed in the receiving opening. The corrugated tube and the receiving opening can move relative to each other.
[0011] According to one embodiment of the present invention, the adhesive wrapping device further includes an adhesive applicator, which includes an adhesive applicator drive and an adhesive applicator. The adhesive applicator drive is disposed on the adhesive cutting support, and the adhesive applicator is connected to the output end of the adhesive applicator drive. The adhesive applicator is disposed opposite to the corrugated pipe. The adhesive applicator has a contoured surface that is adapted to the corrugated pipe. After the adhesive clamp pulls out the tape, the tape is pressed onto the corrugated pipe through the contoured surface.
[0012] According to one embodiment of the present invention, the feeding device includes a first feeding assembly, which includes a first feeding drive, a first feeding transmission, a second feeding drive, and two feeding components. The first feeding drive and the second feeding drive are disposed opposite to the support member. The first feeding transmission is connected to the output end of the first feeding drive and one feeding component, respectively. The other feeding component is connected to the output end of the second feeding drive. The first feeding drive drives one feeding component to rotate, and the second feeding drive drives the other feeding component to move closer to or away from the first feeding drive. A corrugated pipe is placed between the two feeding components.
[0013] According to one embodiment of the present invention, the feeding device further includes a second feeding component, which is arranged opposite to the first feeding component. The first feeding component and the second feeding component act on the bellows simultaneously to realize the continuous movement of the bellows.
[0014] According to one embodiment of the present invention, a protective device is also included, comprising a first protective member, a second protective member, a shielding drive member, and a shielding member. The first protective member and the second protective member are both disposed on the support member, and an inlet is provided between the first protective member and the second protective member. The shielding drive member is disposed on the first protective member, the second protective member, or the support member. The shielding member is movably disposed on the first protective member or the second protective member, and the shielding member is connected to the output end of the shielding drive member. The corrugated pipe is fed through the inlet, and the shielding drive member drives the shielding member to move to the inlet for shielding.
[0015] The beneficial effects of this invention are as follows: the tape-pulling assembly pre-pulls out the tape from the tape-feeding assembly, with one end of the pulled-out tape applied to the corrugated pipe. The feeding device pushes the corrugated pipe to move, while the tape-wrapping motion assembly rotates around the corrugated pipe, thus achieving tape wrapping. Finally, the tape-cutting assembly cuts the tape. This method achieves automatic tape wrapping of corrugated pipes, improving production efficiency, ensuring the quality of the wrapped tape, and significantly mitigating quality and safety issues caused by operator fatigue and errors. Attached Figure Description
[0016] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings: Figure 1 A three-dimensional structural diagram of a tape wrapping device; Figure 2 This is another three-dimensional structural diagram of the tape wrapping equipment; Figure 3 This is another three-dimensional structural diagram of a tape wrapping device; Figure 4 This is a three-dimensional structural diagram of the feeding device; Figure 5 This is a three-dimensional structural diagram of the adhesive wrapping device; Figure 6 This is one of the schematic diagrams of a partial structure of a glue-wrapping device; Figure 7 This is the second partial structural schematic diagram of the adhesive wrapping device; Figure 8 This is the third schematic diagram of a partial structure of the adhesive wrapping device.
[0017] Explanation of reference numerals in the attached figures 1. Load-bearing components; 2. Feeding device; 21. First feeding assembly; 211. First feeding drive; 212. First feeding transmission component; 213. Second feeding drive; 214. Feeding component; 22. Second feeding assembly; 3. Glue wrapping device; 31. Glue wrapping motion component; 311. Glue wrapping drive component; 312. Glue wrapping transmission component; 313. Glue wrapping support component; 3131. Receiving opening; 32. Glue feeding component; 321. Glue feeding support component; 322. Glue feeding drive component; 33. Glue pulling component; 331. Glue pulling drive component; 332. Glue pulling support component; 333. Glue clamping drive component; 334. Glue clamping component; 34. Glue cutting component; 341. First glue cutting drive component; 342. Glue cutting transmission component; 343. Glue cutting support component; 344. Second glue cutting drive component; 345. Glue cutting component; 35. Lifting component; 351. Lifting drive component; 352. Lifting support component; 36. Glue applying component; 361. Glue applying drive component; 362. Glue applying component; 3621. Contouring surface; 4. Protective device; 41. First protective component; 42. Second protective component; 43. Shielding drive component; 44. Shielding component; 45. Inlet; 10. Corrugated pipe; 20. Rollers. Detailed Implementation
[0018] The following drawings will disclose several embodiments of this utility model. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit this utility model. That is, in some embodiments of this utility model, these practical details are not essential. In addition, for the sake of simplicity, some conventional structures and components will be shown in the drawings in a simple schematic manner.
[0019] Furthermore, in this utility model, the use of terms such as "first" and "second" is for descriptive purposes only and does not specifically refer to any order or sequence, nor is it intended to limit the utility model. They are merely used to distinguish components or operations described with the same technical terms and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but only if they are feasible for those skilled in the art. If a combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0020] like Figures 1-3 As shown, Figure 1 A three-dimensional structural diagram of a tape wrapping device; Figure 2 This is another three-dimensional structural diagram of the tape wrapping equipment; Figure 3This is another three-dimensional structural diagram of the tape wrapping equipment. The tape wrapping equipment includes a carrier 1, a feeding device 2, and a tape wrapping device 3. Both the feeding device 2 and the tape wrapping device 3 are located on the carrier 1. The feeding device 2 is used to continuously push the corrugated tube 10 in the X-axis direction, while the tape wrapping device 3 wraps the surface of the corrugated tube 10 with tape during the pushing process.
[0021] Please review Figures 1-3 and reference Figure 4 As shown, Figure 4 This is a three-dimensional structural diagram of the feeding device 2. The feeding device 2 includes a first feeding assembly 21, which is disposed on the surface of the carrier 1. The first feeding assembly 21 includes a first feeding drive 211, a first feeding transmission 212, a second feeding drive 213, and two feeding components 214. The first feeding drive 211 is disposed on the carrier 1. The first feeding transmission 212 is connected to the output end of the first feeding drive 211 and is also connected to one of the feeding components 214. The second feeding drive 213 is disposed on the carrier 1, and the output end of the second feeding drive 213 is connected to the other feeding component 214. The two feeding components 214 are arranged opposite to each other, and the corrugated pipe 10 is placed between the two feeding components 214. In use, the first feeding drive 211 operates, driving one feeding component 214 to rotate via the first feeding transmission component 212. The second feeding drive 213 drives another feeding component 214 to move closer to or further away from the first feeding drive 211. When the corrugated pipe 10 needs to be inserted, the second feeding drive 213 drives the other feeding component 214 to move away from the first feeding drive 211. After the corrugated pipe 10 is inserted, the second feeding drive 213 drives the other feeding component 214 to move closer to the first feeding drive 211, so that both feeding components 214 are in contact with the corrugated pipe 10. Finally, the feeding component 214 driven by the first feeding drive 211 pushes the corrugated pipe 10 in the X-axis direction through its own rotation. According to the nature of force transmission, the other feeding component 214 connected to the second feeding drive 213 will also rotate, so that the corrugated pipe 10 can be pushed more smoothly. Specifically, the first feeding drive component 211 is a motor; the first feeding transmission component 212 can consist of two transmission wheels and a transmission belt. One transmission wheel is connected to the output end of the first feeding drive component 211, and the other transmission wheel is connected to the feeding component 214. The two transmission wheels are connected by a transmission belt. This transmission method is a common existing structure, therefore, it will not be described in detail. The second feeding drive component 213 is a cylinder. The surfaces of both feeding components 214 are provided with a corrugated structure, which can improve the pushing effect on the bellows 10.
[0022] Further explanation: the feeding device 2 also includes a second feeding component 22, which is distributed opposite to the first feeding component 21. The second feeding component 22 also pushes the corrugated pipe 10, but unlike the first feeding component 21, it pushes the corrugated pipe 10, after it has been coated with adhesive, outwards. In specific applications, the structure of the second feeding component 22 is similar to that of the first feeding component 21; for details, please refer to the above description of the first feeding component 21. In another embodiment, the second feeding component 22 uses a belt drive to push the corrugated pipe 10, i.e., it uses a structure with two drive wheels and a drive belt. After one drive wheel is driven, it drives the other drive wheel via the drive belt, and the corrugated pipe 10 is pushed synchronously during the movement of the drive belt.
[0023] Please refer to the following: Figures 5-8 , Figure 5 This is a three-dimensional structural diagram of the adhesive wrapping device 3; Figure 6 This is one of the partial structural schematic diagrams of the adhesive wrapping device 3; Figure 7 This is the second partial structural schematic diagram of the adhesive wrapping device 3; Figure 8 This is the third partial structural schematic diagram of the tape wrapping device 3. The tape wrapping device 3 includes a tape wrapping motion component 31, a tape feeding component 32, a tape pulling component 33, and a tape cutting component 34. The tape wrapping motion component 31 is mounted on the carrier 1, the tape feeding component 32 is mounted on the tape wrapping motion component 31, the tape pulling component 33 is positioned opposite the tape feeding component 32, and the tape cutting component 34 is opposite to the tape feeding path. In use, the tape wrapping motion component 31 drives the tape feeding component 32 to rotate around the corrugated pipe 10. The tape feeding component 32 is used to carry the tape roll, and the tape pulling component 33 pulls the tape out of the tape feeding component 32. After the tape wrapping is completed, the tape is cut by the tape cutting component 34.
[0024] The adhesive wrapping motion assembly 31 includes an adhesive wrapping drive component 311, an adhesive wrapping transmission component 312, and an adhesive wrapping support component 313. The adhesive wrapping drive component 311 is disposed on the carrier component 1. The adhesive wrapping transmission component 312 connects the adhesive wrapping drive component 311 and the adhesive wrapping support component 313. The adhesive wrapping support component 313 can rotate relative to the carrier component 1. The adhesive feeding assembly 32 is disposed on the adhesive wrapping support component 313. In specific applications, the adhesive wrapping transmission component 312 is composed of multiple meshing gears. The output end of the adhesive wrapping drive component 311 is fitted with a matching first gear. When the adhesive wrapping drive component 311 operates, it drives the first gear to rotate. After the first gear is transmitted through multiple gears, it drives the last output gear to rotate. The adhesive wrapping support component 313 is disposed on the last output gear, thus realizing the rotation of the adhesive wrapping support component 313 relative to the carrier component 1. Specifically, to ensure more stable and smooth rotation of the last output gear and the rubber-wrapped support 313, multiple rollers 20 that can rotate relative to the carrier 1 can be provided on the carrier 1. These rollers 20 respectively contact the last output gear and the rubber-wrapped support 313. Of course, the rollers 20 can be replaced with other rotatable products, such as bearings, etc., which are not limited here. Specifically, the rubber-wrapped support 313 also has a receiving opening 3131. During use, the bellows 10 is placed inside the receiving opening 3131, but the bellows 10 and the receiving opening 3131 can move relative to each other. That is, when the rubber-wrapped support 313 rotates relative to the carrier 1, it will not interfere with the bellows 10. In this embodiment, the rubber-wrapping drive 311 is a motor.
[0025] In another embodiment, the adhesive wrapping device 3 further includes a lifting assembly 35, which is disposed on the support member 1. The adhesive wrapping drive member 311, the adhesive wrapping transmission member 312, and the adhesive wrapping support member 313 are all disposed on the lifting assembly 35. The lifting assembly 35 includes a lifting drive member 351 and a lifting support member 352. The lifting drive member 351 is disposed on the support member 1, and the lifting support member 352 is slidably disposed on the output end of the lifting drive member 351. The adhesive wrapping drive member 311, the adhesive wrapping transmission member 312, and the adhesive wrapping support member 313 are all disposed on the lifting support member 352. The lifting drive member 351 drives the lifting support member 352 to move along the Z-axis direction. When the corrugated tube 10 needs to be placed, the lifting drive member 351 drives the lifting support member 352 to move in the negative Z-axis direction (i.e., downward). After the corrugated tube 10 is placed, the lifting drive member 351 drives the lifting support member 352 to move in the positive Z-axis direction (i.e., upward). At this time, the corrugated tube 10 can enter the receiving port 3131. In this embodiment, the lifting drive component 351 is a cylinder.
[0026] The glue feeding assembly 32 includes a glue feeding support 321 and a glue feeding drive 322. The glue feeding support 321 is hinged to the glue wrapping support 313, and the glue feeding drive 322 is also hinged to the glue wrapping support 313. The output end of the glue feeding drive 322 is also hinged to the glue feeding support 321. In use, the tape roll is placed on the tape feeding support 321, and one end of the tape roll is stretched to the outside of the tape feeding support 321 so that the tape pulling assembly 33 can clamp and pull the tape. The angle between the tape on the tape feeding support 321 and the corrugated pipe 10 can be changed by the operation of the tape feeding drive 322. For example, the tape feeding drive 322 can pull the tape feeding support 321 directly towards the corrugated pipe 10. At this time, the tape extending from the tape feeding support 321 is also directly towards the corrugated pipe 10. After one corrugated pipe 10 is wrapped with tape, the tape feeding drive 322 can push the tape feeding support 321, causing the tape feeding support 321 to deviate away from the corrugated pipe 10. At this time, a new corrugated pipe 10 can be fed. In this embodiment, the tape feeding drive 322 is a cylinder.
[0027] The adhesive-pulling assembly 33 includes an adhesive-pulling drive 331, an adhesive-pulling support 332, an adhesive-clamping drive 333, and two clamping members 334. The adhesive-pulling drive 331 is mounted on the support member 1, the adhesive-pulling support 332 is slidably mounted on the support member 1, and the output end of the adhesive-pulling drive 331 is connected to the adhesive-pulling support 332. The adhesive-clamping drive 333 is mounted on the adhesive-pulling support 332, and the two clamping members 334 are both connected to the output end of the clamping drive 333. The two clamping members 334 are positioned opposite to the adhesive feeding support 321. In use, the adhesive-pulling drive 331 can drive the adhesive-pulling support 332 to move along the Y-axis, and the adhesive-pulling support 332 can drive the clamping drive 333 and the two clamping members 334 to also move along the Y-axis. The clamping drive 333 can then drive the two clamping members 334 to move towards or away from each other. In this embodiment, when the adhesive pulling drive 331 operates, the two adhesive clamping parts 334 move towards the adhesive feeding support 321. Then, the adhesive clamping drive 333 operates again, causing the two clamping parts 334 to move closer to each other. The two clamping parts 334 can hold the adhesive tape extending from the adhesive feeding support 321. Afterward, the adhesive pulling drive 331 resets, and the two clamping parts 334 move together with the adhesive tape. Upon reaching a designated position, the adhesive clamping drive 333 also resets, at which point the two clamping parts 334 move away from each other, releasing the adhesive tape. In this embodiment, the adhesive pulling drive 331 is a cylinder; the adhesive clamping drive 333 is a conventional pneumatic gripper or pneumatic finger, etc.
[0028] The glue-cutting assembly 34 includes a first glue-cutting drive 341, a glue-cutting transmission 342, a glue-cutting support 343, a second glue-cutting drive 344, and a glue-cutting component 345. The first glue-cutting drive 341 and the glue-cutting transmission 342 are both disposed on the support member 1. The glue-cutting transmission 342 is connected to the output end of the first glue-cutting drive 341 and the glue-cutting support 343. The glue-cutting support 343 is slidably disposed on the support member 1. The second glue-cutting drive 344 is disposed on the glue-cutting support 343. The glue-cutting component 345 is connected to the output end of the second glue-cutting drive 344. The glue-pulling drive 331 is disposed on the glue-cutting support 343. The glue-pulling support 332 is slidably disposed on the glue-cutting support 343. In use, the first tape-cutting drive 341 drives the tape-cutting support 343 to move along the Z-axis direction through the tape-cutting transmission 342. The tape-cutting support 343 drives the tape-pulling drive 331, tape-pulling support 332, tape-clamping drive 333, tape-clamping component 334, second tape-cutting drive 344, and tape-cutting component 345 to also move along the Z-axis direction. Then, the second tape-cutting drive 344 further drives the tape-cutting component 345 to move towards the Y-axis direction. Finally, the tape-cutting component 345 cuts the tape.
[0029] Preferably, the adhesive application device 3 further includes an adhesive application assembly 36, which is disposed on the adhesive cutting support 343. The adhesive application assembly 36 includes an adhesive application drive 361 and an adhesive application component 362. The adhesive application drive 361 is disposed on the adhesive cutting support 343, and the adhesive application component 362 is connected to the output end of the adhesive application drive 361, with the adhesive application component 362 facing the adhesive tape. Furthermore, the adhesive application component 362 also has a contoured surface 3621, which is adapted to the shape of the corrugated pipe 10. In use, the adhesive application drive 361 drives the adhesive application component 362 to move closer to the corrugated pipe 10, so that the contoured surface 3621 of the adhesive application component 362 fits against the corrugated pipe 10. The contoured surface 3621 is spaced from the outer surface of the corrugated pipe 10 by an adhesive tape, which allows the adhesive tape to adhere better to the outer surface of the corrugated pipe 10.
[0030] To further explain, the clamping component 334 is higher than the cutting component 345 in the Y-axis direction. At startup, the feeding support 321, clamping component 334, cutting component 345, and applicator 362 are all located at the lower part of the bellows 10. When the clamping component 334 pulls the tape out of the feeding support 321, the lifting drive 351 pushes the lifting support 352 upwards, and the first cutting drive 341 also pushes the cutting support 343 upwards. At this time, a portion of the tape between the feeding support 321 and the clamping component 334 will adhere to the lower part of the bellows 10. Then, the clamping drive 333 drives the two clamping components 334 to release their grip on the tape, and the applicator drive 361 drives the applicator 362 to move further upwards. The tube is raised so that the tape-applying component 362 can attach the end of the pulled-out tape to the outer surface of the corrugated tube 10. Then, the tape-applying drive component 361 drives the tape-applying component 362 to reset. The tape-wrapping drive component 311 then drives the tape-wrapping support component 313, the tape-feeding support component 321, and the tape-feeding drive component 322 to rotate. Simultaneously, the first feeding drive component 211 and the second feeding assembly 22 also work. The corrugated tube 10 continues to move to complete the tape wrapping of different parts of the corrugated tube 10. After the tape wrapping is completed, the second tape-cutting drive component 344 drives the tape-cutting component 345 to rise further. The tape-cutting component 345 cuts the tape between the tape-feeding support component 321 and the corrugated tube 10. Thus, the full surface tape wrapping or intermittent tape wrapping of the corrugated tube 10 is completed.
[0031] Furthermore, the tape wrapping equipment also includes a protective device 4, which is disposed on the surface of the carrier 1 and covers the feeding device 2. The protective device 4 includes a first protective member 41, a second protective member 42, a shielding drive member 43, and a shielding member 44. The first protective member 41 and the second protective member 42 are both disposed above the feeding device 2, facing each other, and there is an inlet 45 between the first protective member 41 and the second protective member 42. The shielding drive member 43 is disposed on the carrier 1, the first protective member 41, or the second protective member 42. The shielding member 44 is connected to the output end of the shielding drive member 43 and is adapted to the inlet 45. In use, the corrugated pipe 10 is inserted into the position between the two feeding members 214 through the inlet 45. Before the adhesive wrapping begins, the shielding drive member 43 moves the shielding member 44 to the inlet 45, blocking the inlet 45 to prevent foreign objects from entering the interior, thus improving safety during operation and preventing damage to the feeding device 2 and the adhesive wrapping device 3. Specifically, the first protective member 41 and the second protective member 42 can be made of transparent material to facilitate the insertion of the corrugated pipe 10 and to observe the processing of the corrugated pipe 10.
[0032] In summary, the tape pulling assembly 33 pre-pulls out the tape from the tape feeding assembly 32, with one end of the pulled-out tape applied to the corrugated pipe 10. The feeding device 2 pushes the corrugated pipe 10 to move, while the tape wrapping motion assembly 31 rotates around the corrugated pipe 10, thereby achieving tape wrapping of the corrugated pipe 10. Finally, the tape cutting assembly 34 cuts the tape. This method achieves automatic tape wrapping of the corrugated pipe 10, improving production efficiency, ensuring the quality of the wrapped tape, and significantly mitigating quality and safety issues caused by operator fatigue and errors.
[0033] The above description is merely an embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.
Claims
1. A tape wrapping device, characterized in that, include: The device includes a carrier (1), a feeding device (2), and a glue wrapping device (3). The glue wrapping device (3) includes a glue wrapping motion assembly (31), a glue feeding assembly (32), a glue pulling assembly (33), and a glue cutting assembly (34). The glue wrapping motion assembly (31) is rotatably mounted on the carrier (1), the glue feeding assembly (32) is mounted on the glue wrapping motion assembly (31), the glue pulling assembly (33) is mounted on the glue wrapping motion assembly (31), and the glue pulling assembly (33) and the glue feeding assembly (32) are distributed opposite each other. The glue cutting assembly (34) is mounted on the carrier (1). Among them, the feeding device (2) drives the corrugated pipe (10) to move continuously in the X-axis direction, the glue pulling component (33) pulls out the tape on the glue feeding component (32) in advance, and the glue feeding component (32) rotates around the corrugated pipe (10) during the movement of the corrugated pipe (10). After the glue wrapping is completed, the glue cutting component (34) cuts the tape.
2. The tape wrapping equipment according to claim 1, characterized in that, The adhesive wrapping motion assembly (31) includes an adhesive wrapping drive (311), an adhesive wrapping transmission (312), and an adhesive wrapping support (313). The adhesive wrapping drive (311) is disposed on the carrier (1), the adhesive wrapping transmission (312) is disposed on the carrier (1), the output end of the adhesive wrapping drive (311) is connected to the adhesive wrapping transmission (312), and the adhesive wrapping support (313) is connected to the adhesive wrapping transmission (312). The adhesive wrapping drive (311) drives the adhesive wrapping support (313) to rotate relative to the carrier (1) through the adhesive wrapping transmission (312).
3. The tape wrapping equipment according to claim 2, characterized in that, The glue feeding assembly (32) includes a glue feeding support (321) and a glue feeding drive (322). Both the glue feeding support (321) and the glue feeding drive (322) are hinged to the glue wrapping support (313). The output end of the glue feeding drive (322) is hinged to the glue feeding support (321).
4. The tape wrapping equipment according to claim 3, characterized in that, The glue-pulling assembly (33) includes a glue-pulling drive (331), a glue-pulling support (332), a glue-clamping drive (333), and at least two glue-clamping parts (334). The glue-pulling drive (331) is disposed on the support member (1), the glue-pulling support (332) is slidably disposed on the support member (1), the glue-clamping drive (333) is disposed on the glue-pulling support (332), and at least two glue-clamping parts (334) are disposed opposite to each other at the output end of the glue-clamping drive (333). At least two glue-clamping parts (334) are disposed directly opposite to the glue-feeding support member (321).
5. The tape wrapping equipment according to claim 4, characterized in that, The glue cutting assembly (34) includes a first glue cutting drive (341), a glue cutting transmission component (342), a glue cutting support component (343), a second glue cutting drive (344), and a glue cutting component (345). The first glue cutting drive (341) and the glue cutting transmission component (342) are both disposed on the support component (1), and the output end of the first glue cutting drive (341) is connected to the glue cutting transmission component (342). The glue cutting support component (343) is slidably disposed on the support component (1). The second glue cutting drive (344) is disposed on the glue cutting support component (343). The glue cutting component (345) is connected to the output end of the second glue cutting drive (344). The glue pulling drive (331) is disposed on the glue cutting support component (343), and the glue pulling support component (332) is slidably disposed on the glue cutting support component (343).
6. The tape wrapping equipment according to claim 5, characterized in that, The adhesive wrapping device (3) also includes a lifting assembly (35), which includes a lifting drive (351) and a lifting support (352). The lifting drive (351) is disposed on the carrier (1), and the lifting support (352) is slidably disposed on the carrier (1). The output end of the lifting drive (351) is connected to the lifting support (352). The adhesive wrapping drive (311) and the adhesive wrapping transmission (312) are both disposed on the lifting support (352). The adhesive wrapping support (313) can rotate relative to the lifting support (352). The adhesive wrapping support (313) has a receiving port (3131), and the corrugated pipe (10) is placed in the receiving port (3131). The corrugated pipe (10) and the receiving port (3131) can move relative to each other.
7. The tape wrapping equipment according to claim 5, characterized in that, The tape wrapping device (3) also includes a tape application assembly (36), which includes a tape application drive (361) and a tape application component (362). The tape application drive (361) is disposed on the tape cutting support (343), and the tape application component (362) is connected to the output end of the tape application drive (361). The tape application component (362) is disposed opposite to the corrugated pipe (10). The tape application component (362) has a contour surface (3621), which is adapted to the corrugated pipe (10). After the tape clamping component (334) pulls out the tape, the tape is pressed onto the corrugated pipe (10) through the contour surface (3621).
8. The tape wrapping equipment according to any one of claims 1-7, characterized in that, The feeding device (2) includes a first feeding assembly (21), which includes a first feeding drive (211), a first feeding transmission (212), a second feeding drive (213), and two feeding components (214). The first feeding drive (211) and the second feeding drive (213) are disposed opposite to the carrier (1). The first feeding transmission (212) is connected to the output end of the first feeding drive (211) and a feeding component (214), respectively. The other feeding component (214) is connected to the output end of the second feeding drive (213). The first feeding drive (211) drives one feeding component (214) to rotate. The second feeding drive (213) drives the other feeding component (214) to move closer to or away from the first feeding drive (211). The corrugated pipe (10) is placed between the two feeding components (214).
9. The tape wrapping equipment according to claim 8, characterized in that, The feeding device (2) also includes a second feeding component (22), which is positioned opposite to the first feeding component (21). The first feeding component (21) and the second feeding component (22) act on the bellows (10) simultaneously to achieve continuous movement of the bellows (10).
10. The tape wrapping equipment according to any one of claims 1-7, characterized in that, It also includes a protective device (4), which includes a first protective component (41), a second protective component (42), a shielding drive component (43), and a shielding component (44). The first protective component (41) and the second protective component (42) are both disposed on the carrier component (1). An inlet (45) is provided between the first protective component (41) and the second protective component (42). The shielding drive component (43) is disposed on the first protective component (41), the second protective component (42), or the carrier component (1). The shielding component (44) is movably disposed on the first protective component (41) or the second protective component (42). The shielding component (44) is connected to the output end of the shielding drive component (43). The corrugated pipe (10) is fed through the inlet (45). The shielding drive component (43) drives the shielding component (44) to move to the inlet (45) for shielding.