An automatic adhesive tape winding apparatus
By designing an automatic tape wrapping device, and utilizing the coordinated work of the cable end fixing mechanism, tape wrapping mechanism, and cutting mechanism, the problem of low tape wrapping efficiency and unstable quality in vehicle wire processing was solved, realizing automated production and improving wrapping quality and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-11
- Publication Date
- 2026-06-19
AI Technical Summary
The tape wrapping process in the current automotive wiring harness manufacturing process is inefficient, has unstable quality, and relies heavily on manual labor, which cannot meet the high-efficiency production requirements of the modern automotive industry.
An automatic tape wrapping device was designed, including a cable end fixing mechanism, a tape wrapping mechanism, a cable end fixing mechanism, and a cutting mechanism. Through the coordinated work of these mechanisms, the automatic fixing, wrapping, and cutting of cables are achieved. Spring components and sliding components are used to tighten the cable to ensure the wrapping quality.
It has automated the cable tape wrapping process, reduced manual labor, improved processing efficiency and wrapping quality, ensured the stability and accuracy of the wrapping process, and prevented cable damage.
Smart Images

Figure CN224377280U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of automotive wiring technology, and in particular to an automatic tape wrapping device. Background Technology
[0002] In today's automotive industry, with the continuous improvement of vehicle intelligence and electrification, the demand for vehicle wiring harnesses has increased dramatically, and the quality requirements have become increasingly stringent.
[0003] In the past, the crucial step of wrapping electrical tape in automotive wiring harness manufacturing was typically done manually. Workers would secure the cable, then hold the tape and wrap it around the cable layer by layer until a certain length was reached, at which point they would cut the tape with scissors or other tools. Another common approach was to use simpler semi-automated equipment. This equipment used simple clamps to hold the cable in place, and a motor to rotate the tape roll to achieve the wrapping. However, manual assistance was still needed to adjust the cable's position and control the tightness of the wrapping. Some companies also adopted a segmented processing model, separating the cable securing, wrapping, and cutting processes onto different equipment.
[0004] However, manual winding is inefficient, and the quality depends heavily on the worker's experience and skill level, making it difficult to guarantee uniformity and consistency. Problems such as loose tape and wrinkles can easily occur, affecting the performance of the vehicle's wiring harness. While semi-automated equipment improves efficiency to some extent, it still requires considerable manual intervention and cannot achieve fully automated production. Furthermore, its winding precision and stability are limited. Segmented processing increases cable handling time and the risk of damage, and it also hinders overall production efficiency, failing to meet the large-scale, high-efficiency production demands of the modern automotive industry. Summary of the Invention
[0005] The purpose of this application is to overcome the above-mentioned technical problems and provide an automatic tape wrapping device, which adopts the following solution:
[0006] An automatic tape winding device includes: a frame; a cable end fixing mechanism, including a first support member and a receiving assembly, one end of the first support member being fixed to the frame and the other end connected to the receiving assembly, the receiving assembly including a first receiving element with a first receiving groove for receiving the cable end; and a tape winding mechanism disposed near the cable end fixing mechanism, including a second support member, a rotating assembly, and a tape hanging member, one end of the second support member being fixed to the frame, the rotating assembly including a third support member, a first driving member, a driving wheel, and a main rotating wheel, one end of the third support member being fixed to the frame and located at the end of the second support member away from the first support member, the first driving member passing through the third support member and connected to the driving wheel, and the main rotating wheel located at the other end of the second support member. One end engages with the drive wheel, and the other end is fixed to the tape suspension component; the cable rear end fixing mechanism is located at the end of the tape winding mechanism away from the cable head end fixing mechanism, and includes a fourth support member, a second receiving member, a pressing member, and a second driving member. The fourth support member is fixed to the frame, the second receiving member is fixed to the fourth support member, and the second driving member is fixed to the fourth support member for connecting the pressing member and driving the pressing member to move towards the second receiving member to press down the cable; the cutting mechanism is located near the cable head end fixing mechanism and the tape winding mechanism, and includes a fifth support member, a first driving component, and a cutting component. One end of the fifth support member is fixed to the frame, and the other end is used to fix the first driving component. The first driving component is connected to the cutting component to drive the cutting component to cut the tape.
[0007] By adopting the above technical solution, the division of labor among the various institutions is clear, and they work together to achieve the operations of fixing the cable head and tail, wrapping and cutting the tape, thereby improving the efficiency of tape wrapping and ensuring the stability of tape wrapping quality. Specifically: The frame provides support and a fixed foundation for the entire automatic tape winding equipment; the cable end fixing mechanism fixes the receiving component within the frame via a first support member, and the first receiving groove of the first receiving member of the receiving component can effectively receive the cable end, achieving stable fixing of the cable end; the tape winding mechanism is located near the cable end fixing mechanism, and a second support member fixes it to the frame; the first drive member of the rotating component drives the main rotating wheel to rotate via a drive wheel, and the main rotating wheel drives the tape suspension member fixed thereon to rotate, thereby performing tape winding operation on the cable; the cable rear end fixing mechanism is located at the end of the tape winding mechanism away from the cable end fixing mechanism, and a fourth support member fixes the second receiving component within the frame; the second drive member drives the pressing member to move towards the second receiving component, reliably pressing down on the cable to fix the cable rear end; the cutting mechanism is located near the cable end fixing mechanism and the tape winding mechanism, and a fifth support member fixes the first drive member, which drives the cutting component to accurately cut the tape, completing the cutting operation after tape winding.
[0008] Optionally, it also includes: a head clamping assembly, including a third driving member, an opening and closing member, and a clamping member, wherein the third driving member is located at the center of the main rotating wheel and is connected to the opening and closing member, and the clamping member is located on the opening and closing member; wherein, the main rotating wheel has a cutout to facilitate the cable passing through the center, and the third driving member is used to drive the opening and closing member to open and close so that the cable is clamped by the clamping member.
[0009] By adopting the above technical solution, the cable end clamping component can better fix the cable end when the main rotating wheel rotates, so that the tape can be wrapped around the cable more stably and accurately, improving the wrapping quality. The cut makes it easy for the cable to be passed through the center of the main rotating wheel. The third driving component drives the opening and closing component to conveniently and quickly realize the clamping and releasing operation of the cable end.
[0010] Optionally, the cable rear end fixing mechanism further includes: a spring member, one end of which is connected to the fourth support member; a connector, one end of which is connected to the second drive member, the other end of which is connected to the pressing member, and the side away from the tape winding mechanism is connected to the other end of the spring member; a sliding assembly, including a first sliding member and a second sliding member horizontally arranged side by side on the fourth support member; wherein, the second drive member is fixed on the first sliding member, the connector is fixed on the second sliding member, and the sliding assembly is used to drive the second drive member and the pressing member away from the tape winding mechanism to tighten the cable, while compressing the spring member.
[0011] By adopting the above technical solution, the automatic tape winding equipment adds spring components, connectors, and sliding components. The sliding components can drive the second drive component and the pressing component to move away from the tape winding mechanism, tightening the cable and ensuring the winding effect. At the same time, the spring component is compressed during the tightening process, which can play a buffering role and avoid excessive pulling and damage to the cable.
[0012] Optionally, it further includes: a translation drive mechanism, comprising: a second drive component, disposed on the frame, for slidingly fitting the fourth support member to drive the cable rear end fixing mechanism to move; a third sliding member, disposed on the frame, for fitting the end of the second receiving member away from the second drive member; a linkage member, one end of which is connected to the fourth support member; a fourth sliding member, disposed on the frame near the cutting mechanism; a fitting member, fitted on the fourth sliding member and connected to the linkage member; and a fifth sliding member, disposed parallel to the fourth sliding member on the frame, and the fitting member being connected to the first support member.
[0013] By adopting the above technical solution, the second drive component can drive the cable rear end fixing mechanism and the cable head end fixing mechanism to move synchronously, thereby changing the size of the tape wrapped around the cable. Specifically, the linkage component can drive the cable rear end fixing mechanism to move through the fourth support component. At the same time, the linkage component is connected to the sleeve component, and the sleeve component is connected to the first support component. This allows the cable head end fixing mechanism to slide on the fourth sliding component. In this way, the cable rear end fixing mechanism and the cable head end fixing mechanism move relative to the tape wrapping mechanism, thereby changing the size of the tape wrapped around the cable to meet the different requirements of different cables for wrapping length.
[0014] Optionally, the receiving component further includes: a through member for passing through the first receiving member to cover the cable head end, wherein the two ends of the first receiving member are respectively provided with through slots and limiting holes for the through member to pass through.
[0015] By adopting the above technical solution, the receiving component of the cable end fixing mechanism is equipped with a through-hole, a through groove and a limiting hole. The through-hole passes through the first receiving component and covers the cable end, which can more firmly fix the cable end and prevent the cable end from shifting or shaking during the tape wrapping process, thus ensuring the smooth progress of the tape wrapping operation and the stability of the wrapping effect.
[0016] Optionally, the rotating assembly further includes two slave rotating wheels disposed on the second support member to engage the drive wheel and the main rotating wheel respectively.
[0017] By adopting the above technical solution, the rotating assembly is equipped with two slave rotating wheels that mesh with the drive wheel and the main rotating wheel respectively, which can improve the stability and smoothness of the main rotating wheel transmission and ensure the normal operation of the tape winding.
[0018] Optionally, the first driving component includes a fourth driving member and a fifth driving member. The fourth driving member is fixed on the fifth support member, and the fifth driving member is fixed on the fourth driving member. It is used to connect the cutting component, and the fourth driving member and the fifth driving member are used to drive the cutting component to perform two-dimensional motion.
[0019] By adopting the above technical solution, the fourth and fifth driving components can drive the cutting assembly to perform two-dimensional motion, enabling the cutting mechanism to cut the tape more flexibly and improving the accuracy and flexibility of cutting.
[0020] Optionally, the cutting assembly includes a sixth driving member, scissors, and a baffle. The sixth driving member is connected to the scissors and fixed on the fifth driving member, and the baffle is disposed on the side of the sixth driving member. The fourth driving member and the fifth driving member together drive the sixth driving member to perform two-dimensional motion, and when a preset position is reached, the sixth driving member drives the scissors to cut the tape.
[0021] By adopting the above technical solution, the fourth and fifth driving components together drive the sixth driving component to perform two-dimensional motion. Upon reaching a preset position, the sixth driving component then drives the scissors to cut the tape, thus achieving automatic tape cutting. Additionally, a baffle is positioned on the side of the sixth driving component to provide protection and prevent accidents during the cutting process.
[0022] Optionally, the clamping member is provided with a limiting groove.
[0023] By adopting the above technical solution, the clamping component is equipped with a limiting groove, which can clamp the cable more stably, prevent the cable from shifting or shaking during the clamping process, improve the fixing effect of the equipment on the cable, and ensure the stability and accuracy of the tape wrapping process.
[0024] Optionally, it also includes: a grating assembly disposed at the entrance of the frame; and two starters located on either side of the grating assembly away from the frame.
[0025] By adopting the above technical solution, the grating assembly is set at the frame entrance to detect whether an object enters the equipment, thus playing a safety protection role; the two starters are located on both sides of the grating assembly away from the frame, making it convenient for operators to operate the equipment with both hands, thereby improving operational safety.
[0026] In summary, this application includes at least one of the following beneficial technical effects:
[0027] 1. Through the collaborative work of various departments, the cable tape wrapping process can be automated, reducing manual input, lowering the error rate, and improving cable processing efficiency;
[0028] 2. By using the cable end fixing mechanism, the cable end clamping assembly, and the cable end fixing mechanism, the cable can be firmly fixed to ensure that the cable is stable during winding and to improve the situation of poor cable fixing;
[0029] 3. The automatic tape winding equipment adds spring components, connectors, and sliding components. The sliding components can drive the second drive component and the pressing component to move away from the tape winding mechanism to tighten the cable and ensure the winding effect. At the same time, the spring component is compressed during the cable tightening process, which can play a buffering role and avoid excessive pulling and damage to the cable. Attached Figure Description
[0030] Figure 1 This is a three-dimensional structural diagram of an automatic tape winding device disclosed in an embodiment of this application;
[0031] Figure 2 for Figure 1 A partial structural schematic diagram of an automatic tape wrapping device disclosed in the present invention;
[0032] Figure 3 for Figure 1 A partial structural schematic diagram of an automatic tape wrapping device disclosed in the present invention;
[0033] Figure 4 for Figure 1 An exploded view of a partial structure of an automatic tape wrapping device disclosed in the present invention.
[0034] Figure 5 for Figure 4 An enlarged schematic diagram of structure A in an automatic tape wrapping device disclosed in the present invention;
[0035] Figure 6 for Figure 1 An exploded view of a partial structure of an automatic tape wrapping device disclosed in the present invention.
[0036] Figure 7 for Figure 1 An exploded view of part of the structure of an automatic tape wrapping device disclosed in the paper.
[0037] Explanation of reference numerals in the attached figures:
[0038] 10. Frame; 20. Cable end fixing mechanism; 21. First support member; 22. Receiving assembly; 221. First receiving member; 2211. First receiving groove; 2212. Through groove; 2213. Limiting hole; 222. Through-feed member; 30. Tape winding mechanism; 31. Second support member; 32. Rotating assembly; 321. Third support member; 322. First driving member; 323. Drive wheel; 324. Main rotating wheel; 3241. Cutout; 325. Spur rotating wheel; 33. Tape suspension member; 40. Cable end fixing mechanism; 41. Fourth support member; 42. Second receiving member; 43. Pressing member; 44. Second driving member; 45. Spring member; 46. 47. Connector; 471. Sliding assembly; 472. First sliding member; 472. Second sliding member; 50. Cutting mechanism; 51. Fifth support member; 52. First drive assembly; 521. Fourth drive member; 522. Fifth drive member; 53. Cutting assembly; 531. Sixth drive member; 532. Scissors; 533. Baffle; 60. Head end clamping assembly; 61. Third drive member; 62. Opening and closing member; 63. Clamping member; 631. Limiting groove; 70. Translation drive mechanism; 71. Second drive assembly; 72. Third sliding member; 73. Linkage member; 74. Fourth sliding member; 75. Sleeving member; 76. Fifth sliding member; 80. Grating assembly; 90. Actuating member. Detailed Implementation
[0039] The terminology used in the following embodiments of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. As used in the specification and appended claims of this application, the singular expressions “a,” “an,” “the,” “the,” and “this” are intended to include the plural expressions as well, unless the context clearly indicates otherwise. It should also be understood that the term “and / or” as used in this application refers to and includes any or all possible combinations of one or more of the listed items.
[0040] Hereinafter, the terms "first" and "second" are used for descriptive purposes only and should not be construed as implying or suggesting relative importance or implicitly indicating the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature, and in the description of the embodiments of this application, unless otherwise stated, "multiple" means two or more.
[0041] The technical solutions of the embodiments of this application are described in detail below with reference to the accompanying drawings.
[0042] See Figure 1 and Figure 2This application discloses an automatic tape wrapping device, comprising a frame 10, a cable end fixing mechanism 20, a tape wrapping mechanism 30, a cable end fixing mechanism 40, and a cutting mechanism 50. The frame 10 supports and carries each mechanism. The cable end fixing mechanism 20 fixes the cable end. The tape wrapping mechanism 30 is located near the cable end fixing mechanism 20 and performs tape wrapping on the cable. The cable end fixing mechanism 40 is located at the end of the tape wrapping mechanism 30 away from the cable end fixing mechanism 20 and fixes the cable end. The cutting mechanism 50 is located near the cable end fixing mechanism 20 and the tape wrapping mechanism 30 and cuts the tape. Through the cooperation of these mechanisms, the automatic tape wrapping function is achieved.
[0043] For details, see Figure 3 , Figure 4 and Figure 5 The cable end fixing mechanism 20 includes a first support member 21 and a receiving component 22. One end of the first support member 21 is fixed to the frame 10, and the other end is connected to the receiving component 22. The receiving component 22 includes a first receiving element 221 and a through-feed element 222. The first receiving element 221 is a block structure with a certain thickness and strength, such as a metal block or a plastic block, and a first receiving groove 2211 for receiving the cable end is provided on the first receiving element 221. The shape of the first receiving groove 2211 can be set according to the shape and size of the cable end to ensure that the cable end can be stably placed therein. The through-feed element 222 is used to pass through the first receiving element 221 to cover the cable end. A through groove 2212 and a limiting hole 2213 for the through-feed element 222 are correspondingly provided at both ends of the first receiving element 221.
[0044] In this embodiment, after the cable end is placed into the first receiving groove 2211, the through-hole 222 is passed through the through-groove 2212 and the limiting hole 2213 to firmly fix the cable end in the first receiving groove 2211. In this embodiment, by setting the first support member 21, the first receiving member 221, and the through-hole 222, the first support member 21 fixes the receiving component 22 on the frame 10, providing support and positioning for the receiving component 22. The through-hole 222 cooperates with the first receiving member 221 to stably fix the cable end in the first receiving groove 2211, providing a stable foundation for subsequent tape wrapping operations, thus preventing the cable end from shaking or shifting during tape wrapping, which could lead to uneven or loose wrapping.
[0045] For details, see Figure 2 and Figure 6The tape winding mechanism 30 includes a second support member 31, a rotating assembly 32, and a tape suspension member 33. One end of the second support member 31 is fixed to the frame 10 by welding or bolting. The rotating assembly 32 includes a third support member 321, a first drive member 322, a drive wheel 323, a main rotating wheel 324, and two driven rotating wheels 325. One end of the third support member 321 is fixed to the frame 10 by welding or bolting and is located at the end of the second support member 31 away from the first support member 21, used to fix the first drive member 322. The first drive member 322 is a drive motor, and the output shaft of the motor passes through the third support member 321 and connects to the drive wheel 323. When the drive motor starts, it can drive the drive wheel 323 to rotate, thereby driving the main rotating wheel 324 to rotate. The main rotating wheel 324 is located at the other end of the second support member 31, with one end meshing with the drive wheel 323 and the other end being fixed by the tape suspension member 33, which is used to suspend the tape. The main rotating wheel 324 can slide along the arc-shaped track on the second support member 31 to drive the tape suspension member 33 to rotate, thereby driving the tape to rotate and wrap around the cable. One end of the corresponding second support member 31 is set as an arc-shaped groove.
[0046] Two driven rollers 325 are mounted on the second support member 31 to mesh with the drive roller 323 and the main roller 324, respectively. The driven rollers 325 assist in transmission and stabilize the rotation of the main roller 324. Each driven roller 325 is a gear that matches the drive roller 323 and the main roller 324; its material can be metal or plastic. The two driven rollers 325 make the transmission smoother, reduce the wobbling of the main roller 324 during rotation, and improve the quality of the conveyor belt winding. The meshing of the drive roller 323, the main roller 324, and the two driven rollers 325 is gear meshing, which ensures effective power transmission.
[0047] Thus, through the second support member 31, the rotating assembly 32, and the tape suspension member 33, the second support member 31 can provide support and positioning for the rotating assembly 32. The rotating assembly 32 drives the drive wheel 323 to rotate via the first drive member 322. The drive wheel 323 then drives the secondary rotating wheel 325 and the main rotating wheel 324 to rotate in sequence, thereby causing the tape suspension member 33, which is fixed on the main rotating wheel 324, to rotate accordingly, achieving tape wrapping around the cable. This combined effect allows the tape to be wrapped evenly and tightly around the cable.
[0048] For details, see Figure 2 , Figure 3 and Figure 4The cable rear end fixing mechanism 40 includes a fourth support member 41, a second receiving member 42, a pressing member 43, and a second driving member 44. The fourth support member 41 is fixed to the frame 10, and the second receiving member 42 is fixed to the fourth support member 41. The second receiving member 42 is used to hold the rear end of the cable. The first driving member 322 is fixed to the fourth support member 41 and is used to connect to the pressing member 43, and drive the pressing member 43 to move towards the second receiving member 42 to press the cable. The second driving member 44 can be a cylinder or an electric push rod. When the pressing member 43 moves downward, it can press the rear end of the cable onto the second receiving member 42.
[0049] Further, see Figure 3 The cable rear end fixing mechanism 40 also includes a spring 45, a connector 46, and a sliding assembly 47. One end of the spring 45 is connected to the fourth support 41, and the other end is connected to the connector 46. One end of the connector 46 is connected to the second drive 44, and the other end is connected to the pressing member 43. That is, the side located between the second drive 44 and the pressing member 43, and away from the tape winding mechanism 30, is connected to the other end of the spring 45. The sliding assembly 47 includes a first sliding member 471 and a second sliding member 472 horizontally arranged side by side on the fourth support 41. The second drive 44 is fixed to the first sliding member 471, and the connector 46 is fixed to the second sliding member 472. The sliding assembly 47 is used to drive the second drive 44 and the pressing member 43 away from the tape winding mechanism 30 to tighten the cable, while compressing the spring 45.
[0050] When the sliding component 47 moves the pressing member 43 away from the tape winding mechanism 30, the spring member 45 is compressed, and the cable is tightened. This ensures that the cable is under tension during tape winding, improving the winding quality. The sliding component 47 is a combination of a guide rail and a slider. Thus, by setting up the fourth support member 41, the second receiving member 42, the pressing member 43, the second driving member 44, the spring member 45, the connecting member 46, and the sliding component 47, the fourth support member 41 provides support and positioning for other components; the second receiving member 42 is used to place the cable's rear end; the second driving member 44 drives the pressing member 43 to press down the cable; and the spring member 45 and the sliding component 47 work together to buffer and adjust while tightening the cable. This combination ensures that the cable's rear end is firmly fixed and that the cable is under tension, which is beneficial for improving the quality of tape winding.
[0051] For details, see Figure 2 and Figure 7The cutting mechanism 50 includes a fifth support member 51, a first drive assembly 52, and a cutting assembly 53. One end of the fifth support member 51 is fixed to the frame 10, and the other end is used to fix the first drive assembly 52. The first drive assembly 52 includes a fourth drive member 521 and a fifth drive member 522, which are cylinders or electric push rods. The fourth drive member 521 is fixed to the fifth support member 51, and the fifth drive member 522 is fixed to the fourth drive member 521. They are used to connect the cutting assembly 53. The fourth drive member 521 and the fifth drive member 522 are configured to drive the cutting assembly 53 to perform two-dimensional motion, so that the cutting assembly 53 can move in the horizontal and vertical directions, thereby accurately cutting the tape.
[0052] The cutting assembly 53 includes a sixth drive component 531, scissors 532, and a baffle 533. The sixth drive component 531, a cylinder or electric actuator, connects to the scissors 532 and is fixed to the fifth drive component 522 to drive the scissors 532 to cut the tape. The baffle 533, located on the side of the sixth drive component 531, provides protection during the cutting process, ensuring a safe working environment.
[0053] Specifically, during operation, the sixth drive component 531 is driven by the fourth drive component 521 and the fifth drive component 522 together to perform two-dimensional motion. When it reaches the preset position (the preset stroke), the sixth drive component 53 drives the scissors 532 to close to cut the tape. After cutting, the fourth drive component 521 and the fifth drive component 522 drive the sixth drive component 531 to drive the scissors 532 back to the initial position. At the same time, during the movement, the sixth drive component 531 drives the scissors 532 to open.
[0054] Thus, by setting up a fifth support member 51, a first drive assembly 52, and a cutting assembly 53, the fifth support member 51 can provide support and positioning for the first drive assembly 52 and the cutting assembly 53. The first drive assembly 52 drives the cutting assembly 53 to perform two-dimensional motion to accurately locate the cutting position of the tape. The cutting assembly 53 cuts the tape under the drive of the sixth drive member 531. This combination allows the tape to be cut accurately and quickly, improving work efficiency.
[0055] Furthermore, to further improve the stability of the cable during the tape wrapping process, see [link to relevant documentation]. Figure 2 and Figure 6 In this embodiment, a head clamping component 60 is also included, which includes a third driving member 61, an opening and closing member 62, and a clamping member 63.
[0056] The third driving component 61 is located at the center of the main rotating wheel 324 and connected to the opening / closing component 62. The third driving component 61 is a motor or cylinder used to drive the opening / closing component 62 to open and close. The main rotating wheel 324 has a cutout 3241 for easy cable passage through the center. A clamping component 63 is mounted on the opening / closing component 62. When the third driving component 61 drives the opening / closing component 62 to open and close, the clamping component 63 can clamp the cable. Furthermore, it is worth mentioning that a limiting groove 631 is provided on the clamping component 63. The limiting groove 631 prevents the cable from slipping during clamping, improving clamping stability. Thus, by driving the opening / closing component 62 with the third driving component 61, the clamping component 63 can easily clamp and release the cable. The limiting groove 631 prevents cable slippage and improves clamping reliability.
[0057] Furthermore, to meet the different cable requirements regarding tape wrapping length, see [link / reference]. Figure 3 and Figure 4 In this embodiment, the automatic tape winding device further includes a translation drive mechanism 70, which includes a second drive component 71, a third sliding member 72, a linkage member 73, a fourth sliding member 74, a sleeve member 75, and a fifth sliding member 76.
[0058] The second drive assembly 71 is mounted on the frame 10 and is used for sliding the fourth support member 41. The second drive assembly 71 can be a combination of a motor and a lead screw. The motor drives the lead screw to rotate, causing the fourth support member 41 to slide on the lead screw, thereby driving the cable rear end fixing mechanism 40 to move as a whole. The third sliding member 72 is mounted on the frame 10 and is used for the end of the second receiving member 42 away from the second drive assembly 44. The third sliding member 72 can be a guide rail, serving a guiding and supporting function. One end of the linkage member 73 is connected to the fourth support member 41. The fourth sliding member 74 is mounted on the frame 10 near the cutting mechanism 50. The fitting member 75 is fitted onto the fourth sliding member 74 and connected to the linkage member 73. The fifth sliding member 76 is mounted side by side with the fourth sliding member 74 on the frame 10, and the fitting member 75 is connected to the first support member 21. By setting the translation drive mechanism 70, the positions of the cable rear end fixing mechanism 40 and the cable head end fixing mechanism 20 can be adjusted to meet the processing needs of cables with different tape lengths.
[0059] Therefore, by setting up a translation drive mechanism 70, which includes a second drive component 71, a third sliding member 72, a linkage member 73, a fourth sliding member 74, a sleeve member 75, and a fifth sliding member 76, the second drive component 71 can drive the cable rear end fixing mechanism 40 to move, and the sleeve member 75 can slide on the fourth sliding member 74, thereby driving the cable head end fixing mechanism 20 to slide on the fifth sliding member 76. This allows the positions of the cable head end fixing mechanism 20 and the cable rear end fixing mechanism 40 to be adjusted together, so as to meet the user's needs for wrapping different lengths of tape around different cables, thereby expanding the application range of the equipment.
[0060] Additionally, for device security during and at startup, see [link to relevant documentation]. Figure 1 In this embodiment, the automatic tape winding device further includes a grating assembly 80 and a starter 90.
[0061] The grating assembly 80 is located at the entrance of the frame 10. The grating assembly 80 detects whether a cable has entered the device. If a cable is detected, it triggers a corresponding signal, such as an emergency stop signal or an alarm signal. Two starters 90 are located on either side of the grating assembly 80, away from the frame 10. Operators can start the device by pressing the starters 90. The arrangement of the grating assembly 80 and the starters 90 improves the safety and ease of operation of the device.
[0062] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application.
Claims
1. An automatic tape wrapping device, characterized in that, include: Framework (10); The cable head-end fixing mechanism (20) includes a first support member (21) and a receiving component (22). One end of the first support member (21) is fixed to the frame (10), and the other end is connected to the receiving component (22). The receiving component (22) includes a first receiving member (221), and a first receiving groove (2211) for receiving the cable head-end is provided on the first receiving member (221). A tape winding mechanism (30) is located near the cable end fixing mechanism (20) and includes a second support member (31), a rotating component (32), and a tape suspension member (33). One end of the second support member (31) is fixed to the frame (10). The rotating component (32) includes a third support member (321), a first drive member (322), a drive wheel (323), and a main rotating wheel (324). One end of the third support member (321) is fixed to the frame (10) and is located at the end of the second support member (31) away from the first support member (21). The first drive member (322) passes through the third support member (321) and connects to the drive wheel (323). The main rotating wheel (324) is located at the other end of the second support member (31), and one end engages with the drive wheel (323), while the other end is fixed by the tape suspension member (33). The cable rear end fixing mechanism (40) is located at the end of the tape winding mechanism (30) away from the cable head end fixing mechanism (20), and includes a fourth support member (41), a second receiving member (42), a pressing member (43), and a second driving member (44). The fourth support member (41) is fixed on the frame (10), the second receiving member (42) is fixed on the fourth support member (41), and the second driving member (44) is fixed on the fourth support member (41) to connect to the pressing member (43) and drive the pressing member (43). The component (43) moves toward the second receiving component (42) to press down the cable; the cutting mechanism (50) is located near the cable end fixing mechanism (20) and the tape winding mechanism (30), and includes a fifth support component (51), a first drive component (52) and a cutting component (53). One end of the fifth support component (51) is fixed to the frame (10), and the other end is used to fix the first drive component (52). The first drive component (52) is connected to the cutting component (53) to drive the cutting component (53) to cut the tape.
2. The automatic tape winding device according to claim 1, characterized in that, Also includes: The first end clamping assembly (60) includes a third driving member (61), an opening and closing member (62) and a clamping member (63). The third driving member (61) is located at the center of the main rotating wheel (324) and is connected to the opening and closing member (62). The clamping member (63) is located on the opening and closing member (62). The main rotating wheel (324) has a cut (3241) for easy cable passing through the center, and the third driving member (61) is used to drive the opening and closing member (62) to open and close so that the cable is clamped by the clamping member (63).
3. The automatic tape winding device according to claim 1, characterized in that, The cable rear end fixing mechanism (40) also includes: The spring member (45) is connected at one end to the fourth support member (41). The connector (46) is connected at one end to the second drive member (44), at the other end to the pressing member (43), and at the other end to the side away from the tape winding mechanism (30) to the other end of the spring member (45); The sliding assembly (47) includes a first slider (471) and a second slider (472) arranged horizontally side by side on the fourth support (41). The second driving member (44) is fixed on the first sliding member (471), the connecting member (46) is fixed on the second sliding member (472), and the sliding assembly (47) is used to drive the second driving member (44) and the pressing member (43) away from the tape winding mechanism (30) to tighten the cable, while compressing the spring member (45).
4. The automatic tape winding device according to claim 1, characterized in that, Also includes: Translation drive mechanism (70) includes: The second drive component (71) is disposed on the frame (10) for the fourth support member (41) to slide and fit on, so as to drive the cable rear end fixing mechanism (40) to move. The third sliding member (72) is disposed on the frame (10) for the second receiving member (42) to be sleeved at the end away from the second driving member (44); Linkage component (73), one end of which is connected to the fourth support component (41); A fourth sliding member (74) is disposed on the frame (10) near the cutting mechanism (50); The sleeve (75) is sleeved on the fourth sliding member (74) and connected to the linkage member (73). The fifth sliding member (76) is arranged side by side with the fourth sliding member (74) on the frame (10), and the sleeve member (75) is connected to the first support member (21).
5. The automatic tape winding device according to claim 1, characterized in that, The accommodating component (22) further includes: a through member (222) for passing through the first accommodating component (221) to cover the cable end, wherein the two ends of the first accommodating component (221) are respectively provided with a through groove (2212) and a limiting hole (2213) for the through member (222) to pass through.
6. The automatic tape winding device according to claim 1, characterized in that, The rotating assembly (32) also includes two slave rotating wheels (325) disposed on the second support (31) to engage the drive wheel (323) and the main rotating wheel (324) respectively.
7. The automatic tape winding device according to claim 1, characterized in that, The first driving component (52) includes a fourth driving member (521) and a fifth driving member (522). The fourth driving member (521) is fixed on the fifth support member (51), and the fifth driving member (522) is fixed on the fourth driving member (521) for connecting the cutting component (53). The fourth driving member (521) and the fifth driving member (522) are used to drive the cutting component (53) to perform two-dimensional motion.
8. The automatic tape winding device according to claim 7, characterized in that, The cutting assembly (53) includes a sixth drive member (531), scissors (532) and a baffle (533). The sixth drive member (531) is connected to the scissors (532) and fixed on the fifth drive member (522). The baffle (533) is disposed on the side of the sixth drive member (531). The fourth driving member (521) and the fifth driving member (522) together drive the sixth driving member (531) to perform two-dimensional motion, and when the preset position is reached, the sixth driving member (531) drives the scissors (532) to cut the tape.
9. The automatic tape winding device according to claim 2, characterized in that, The clamping member (63) is provided with a limiting groove (631).
10. An automatic tape winding device according to claim 1, characterized in that, Also includes: A grating assembly (80) is disposed at the entrance of the frame (10); The starters (90) are configured as two, located on both sides of the grating assembly (80) away from the frame (10).