A wire coating paper equipment

CN122822503APending Publication Date: 2026-09-25深圳市鹰腾科技有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202610967994.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-01
Publication Date
2026-09-25

AI Technical Summary

Technical Problem

[0004]但是,人工裹胶的方式,需要人工对线材进行反复定位和转运,线材无法实现连续输送,并且人工难以稳定控制胶纸的裁切长度和裹覆圈数,易出现胶纸过长、过短或裹覆松垮的问题,增加返工率,导致线材裹胶效率下降

Benefits of technology

1、裹胶纸组件包括送胶纸组件、裁切组件、卷胶轴及裹胶纸夹线爪,送胶纸组件将胶纸输送至裹胶通道,裁切组件将胶纸裁切成预设长度,卷胶轴带动预设长度的胶纸绕线材旋转缠绕,使胶纸输送、裁切及缠绕过程相互配合,提高了胶纸长度控制精度,减少胶纸过长或过短的问题,提高了线材裹胶质量,从而提高了线材裹胶效率;同时,裹胶纸台上可设置多组裹胶纸组件,能够实现线材不同位置的连续自动裹覆,并且能够满足不同裹胶位置、不同胶纸长度或不同裹覆要求的加工需求,提高设备的适用性和线材裹胶效率。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122822503A_ABST
    Figure CN122822503A_ABST
Patent Text Reader

Abstract

The application discloses a wire rubberizing paper equipment for improving wire rubberizing efficiency. The application comprises a rubberizing paper table, a wire feeding assembly, a hot pressing assembly, at least one rubberizing paper assembly and a wire pulling assembly; the wire feeding assembly, the hot pressing assembly, the at least one rubberizing paper assembly and the wire pulling assembly are sequentially arranged on the rubberizing paper table; the rubberizing paper assembly comprises a rubberizing paper support, a rubberizing paper feeding assembly, a rubberizing paper cutting assembly, a rubberizing paper winding shaft, a rubberizing paper driving element and a rubberizing paper wire clamping jaw; the rubberizing paper winding shaft is rotatably arranged on the rubberizing paper support and forms a rubberizing channel with the rubberizing paper support; the rubberizing paper driving element is fixed to the rubberizing paper support and is in transmission connection with the rubberizing paper winding shaft; the rubberizing paper wire clamping jaw is arranged on both sides of the rubberizing paper winding shaft; the rubberizing paper feeding assembly is fixed to the rubberizing paper support, and a discharging end of the rubberizing paper feeding assembly faces the rubberizing channel; and the rubberizing paper cutting assembly is arranged between the discharging end of the rubberizing paper feeding assembly and the rubberizing paper winding shaft.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of wire processing technology, and in particular to a wire coating equipment. Background Technology

[0002] In the production and processing of wires and cables, electronic wire harnesses, industrial connecting wires, etc., wrapping with adhesive tape is an important pre-treatment process. By wrapping different materials such as cloth tape, PVC tape, and yellow tape in designated positions, the wires can achieve functions such as insulation protection, identification and differentiation, and fixing of the wire harness.

[0003] In the existing technology, the coating of wire is usually done manually. After the operator places the wire at the coating station, the operator manually feeds, cuts and wraps the coating paper. Then the operator moves the wire to the next processing station to continue processing, thus completing the coating operation of the entire wire.

[0004] However, manual coating requires repeated positioning and transfer of the wire by hand. The wire cannot be continuously transported, and it is difficult for people to stably control the cutting length of the adhesive tape and the number of wraps. Problems such as the adhesive tape being too long or too short or the wrapping being loose are easy to occur, increasing the rework rate and causing the wire coating efficiency to decrease. Summary of the Invention

[0005] To address the aforementioned technical problems, this application provides a wire coating paper device to improve the efficiency of wire coating.

[0006] The technical solution provided in this application is described below:

[0007] This application provides a wire wrapping device, including: a wrapping table, a wire feeding assembly, a heat exchange assembly, at least one set of wrapping assemblies, and a wire pulling assembly; The wire feeding assembly, the heat-pressing assembly, the at least one set of adhesive wrapping paper assemblies, and the wire pulling assembly are sequentially arranged on the adhesive wrapping paper table. The wire pulling assembly is used to clamp the wire and drive the wire to move sequentially from the wire feeding assembly to the heat-pressing assembly and the at least one set of adhesive wrapping paper assemblies along the processing direction. The adhesive wrapping paper assembly includes an adhesive wrapping paper holder, an adhesive wrapping paper feeding assembly, an adhesive wrapping paper cutting assembly, an adhesive roll shaft, an adhesive wrapping drive component, and adhesive wrapping paper clamping claws. The adhesive roll is rotatably mounted on the adhesive paper support and forms an adhesive channel with the adhesive paper support. The adhesive wrapping drive is fixed on the adhesive wrapping paper bracket and is connected to the adhesive roll shaft for driving the adhesive roll shaft to rotate around the adhesive wrapping channel. The adhesive paper clamping claws are located on both sides of the adhesive roll; The adhesive paper feeding assembly is fixed on the adhesive paper support, and the discharge end of the adhesive paper feeding assembly faces the adhesive coating channel, which is used to convey the adhesive paper to the adhesive coating channel. The adhesive paper cutting assembly is disposed between the discharge end of the adhesive paper feeding assembly and the adhesive winding shaft, and is used to cut the adhesive paper conveyed to the adhesive wrapping channel into a preset length, so that the adhesive winding shaft drives the adhesive paper of the preset length to wrap around the surface of the wire.

[0008] Optionally, the wire feeding assembly includes a wire feeding frame, a wire feeding wheel, a wire pressing wheel, a pressure wheel drive, and a wire feeding drive. The wire feeder is fixed to the adhesive paper wrapping table; The wire feeding wheel and the wire pressing wheel are arranged in parallel on the wire feeding frame; The wire feeding drive is fixed to one side of the wire feeding frame and is connected to the wire feeding wheel via a transmission. The pressure roller drive is fixed on the wire feeder and is used to drive the pressure roller to slide vertically.

[0009] Optionally, the pull wire assembly includes a pull wire drive, a pull wire screw, a pull wire rail, a slide block, and a pull wire clamping claw; The wire guide is fixed to the adhesive paper platform; The lead screw is fixed to the lead rail and is arranged parallel to the lead rail; The wire clamping claw is fixed to the slide block; The slide block is movably connected to the lead screw and slidably connected to the lead rail; The wire pulling drive component is connected to the wire pulling screw and is used to drive the slide to move horizontally along the wire pulling rail.

[0010] Optionally, the adhesive wrapping assembly further includes an adhesive wrapping length adjustment element; The adhesive tape length adjustment component is fixed on the adhesive tape support and is connected to the adhesive tape cutting assembly for adjusting the cutting length of the adhesive tape.

[0011] Optionally, the hot ironing assembly includes a hot ironing head, a hot ironing drive component, a hot ironing wire clamp, a hot ironing wire rail, and a blocking block; The hot stamping rail is fixed to the adhesive paper wrapping table; The hot iron head is slidably disposed on the hot iron rail and is connected to the hot iron driving component for transmission. The blocking block is disposed on the hot ironing rail to limit excessive movement of the hot ironing head; The hot-heating wire rail is provided with hot-heating wire clamps on both sides for clamping the wire.

[0012] Optionally, at least one set of wire assembly is provided between the wire feeding assembly, the heat-sealing assembly, the at least one set of adhesive wrapping paper assemblies and the wire pulling assembly, the wire assembly being used to support and guide the wire.

[0013] Optionally, it also includes a wire feeding assembly, which includes a wire feeding frame, a tensioning wheel, a sensor switch, and a wire feeding drive. The wire feeding frame is located at the wire inlet end of the wire feeding assembly, the tensioning wheel is mounted on the wire feeding frame, and the wire feeding drive is connected to the wire coil on the wire feeding frame. The inductive switch is electrically connected to the wire feeding drive and is used to control the wire feeding drive to adjust the wire feeding speed according to the position of the tensioning wheel.

[0014] Optionally, a wire cutting component is provided at the bottom of the wire pulling assembly, the wire cutting component including a wire cutting clamp, a cutting blade, a cutting slide rail and a cutting drive component; The cutting slide rail is fixed to the adhesive paper wrapping table, and the cutting blades are respectively provided at both ends of the cutting slide rail and are slidably connected to the cutting blades; The cutting drive component is connected to the cutting blade via a transmission; The cutting clamps are fixed to the adhesive paper table and located on both sides of the middle part of the cutting slide rail.

[0015] Optionally, the wire cutting assembly is provided with a collection box at its discharge end, which is used to collect finished wire products.

[0016] Optionally, the bottom of the adhesive wrapping table is equipped with several sliding wheels.

[0017] As can be seen from the above technical solutions, this application has the following beneficial effects: 1. The adhesive wrapping assembly includes an adhesive wrapping feeding assembly, a cutting assembly, an adhesive winding shaft, and adhesive wrapping paper clamping claws. The adhesive wrapping feeding assembly conveys the adhesive paper to the wrapping channel, the cutting assembly cuts the adhesive paper to a preset length, and the adhesive winding shaft drives the preset length of adhesive paper to rotate and wrap around the wire. This ensures that the adhesive paper conveying, cutting, and wrapping processes work together, improving the accuracy of adhesive paper length control, reducing the problem of adhesive paper being too long or too short, improving the quality of wire wrapping, and thus improving the efficiency of wire wrapping. At the same time, multiple sets of adhesive wrapping assemblies can be set on the adhesive wrapping table, which can realize continuous automatic wrapping of wire at different positions and meet the processing needs of different wrapping positions, different adhesive paper lengths, or different wrapping requirements, improving the applicability of the equipment and the efficiency of wire wrapping.

[0018] 2. A wire feeding assembly, a heat-pressing assembly, at least one set of adhesive wrapping paper assemblies, and a wire pulling assembly are sequentially set on the adhesive wrapping paper table. The wire pulling assembly clamps the wire and drives the wire to move sequentially to each processing station along the processing direction, realizing continuous conveying of the wire between each station. There is no need for manual repeated positioning and transfer, which improves the automation level of the equipment and the adhesive wrapping efficiency of the wire.

[0019] 3. By setting adhesive paper clamping claws on both sides of the adhesive roll, the wire is clamped and fixed during the adhesive wrapping process, which can reduce the displacement or shaking of the wire and ensure that the adhesive paper can be stably wound around the predetermined position of the wire, thereby improving the quality of adhesive paper wrapping. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 A schematic diagram of the wire coating equipment provided in this application; Figure 2 A schematic diagram of the adhesive wrapping paper assembly in the wire coating paper equipment provided in this application; Figure 3 A schematic diagram of the wire feeding assembly in the wire coating paper equipment provided in this application; Figure 4 A schematic diagram of the wire feeding assembly in the wire coating paper equipment provided in this application; Figure 5 A schematic diagram of the wire cutting assembly in the wire wrapping paper equipment provided in this application; Figure 6 A schematic diagram of the heat-sealing component in the wire wrapping paper equipment provided in this application; Figure 7 A schematic diagram of the wire pulling assembly in the wire coating equipment provided in this application. Detailed Implementation

[0022] In this application, the terms "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal" and other terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only used to describe the relative positional relationship between the components or parts and do not specifically limit the specific installation orientation of each component or part.

[0023] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0024] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0025] Furthermore, the structures, proportions, sizes, etc., drawn in the accompanying drawings of this application are only used to complement the content disclosed in the specification for those skilled in the art to understand and read, and are not intended to limit the conditions under which this application can be implemented. Therefore, they have no substantial technical significance. Any modification to the structure, change in the proportional relationship, or adjustment of the size, without affecting the effects and purposes that this application can produce, should still fall within the scope of the technical content disclosed in this application.

[0026] The technical solutions of this application will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0027] See Figures 1 to 7 This application first provides an embodiment of a wire-coating paper device, which includes: 1. Adhesive wrapping table; 2. Wire feeding assembly; 3. Heat pressing assembly; 4. At least one set of adhesive wrapping assembly; and 5. Wire pulling assembly. The wire feeding assembly 2, the heat-pressing assembly 3, at least one set of adhesive paper wrapping assembly 4 and the wire pulling assembly 5 are sequentially arranged on the adhesive paper wrapping table 1. The wire pulling assembly 5 is used to clamp the wire and drive the wire to move sequentially from the wire feeding assembly 2 to the heat-pressing assembly 3 and at least one set of adhesive paper wrapping assembly 4 along the processing direction. The adhesive wrapping assembly 4 includes an adhesive wrapping support 6, an adhesive wrapping feeding assembly 7, an adhesive wrapping cutting assembly 8, an adhesive roll 9, an adhesive wrapping drive 10, and an adhesive wrapping wire clamping claw 11. The adhesive roll 9 is rotatably mounted on the adhesive paper support 6 and forms an adhesive channel with the adhesive paper support 6. The adhesive wrapping drive 10 is fixed on the adhesive wrapping paper bracket 6 and is connected to the adhesive roll 9 for driving the adhesive roll 9 to rotate around the adhesive wrapping channel. The adhesive paper clamping claws 11 are located on both sides of the adhesive roll 9; The adhesive paper feeding assembly 7 is fixed on the adhesive paper support 6, and the discharge end of the adhesive paper feeding assembly 7 faces the adhesive coating channel, which is used to convey the adhesive paper to the adhesive coating channel. The adhesive paper cutting assembly 8 is located between the discharge end of the adhesive paper feeding assembly 7 and the adhesive winding shaft 9. It is used to cut the adhesive paper conveyed to the adhesive coating channel into a preset length so that the adhesive winding shaft 9 can drive the adhesive paper of the preset length to wrap around the surface of the wire.

[0028] Working principle: When the wire coating equipment is working, the wire feeding assembly 2 conveys the wire into the equipment. The wire pulling assembly 5 clamps the wire and moves it along the processing direction, so that the wire passes through the heat-pressing assembly 3 and each set of coating paper assemblies 4 in sequence. When the wire moves to the heat-pressing assembly 3, the heat-pressing assembly 3 heats the wire to improve the surface condition of the wire and improve the adhesion effect of the subsequent adhesive paper on the surface of the wire. Then, the wire pulling assembly 5 moves the wire to the coating paper assembly 4. The coating paper clamping claw 11 is connected to the coating paper clamping claw drive component. The coating paper clamping claw drive component controls the coating paper clamping claw 11 to clamp and fix the wire. The coating paper feeding assembly 7 conveys the adhesive paper to the coating channel. The coating paper feeding assembly 7 can be a roller conveying structure. The coating paper cutting assembly 8 cuts the adhesive paper into a preset length. The coating drive component 10 drives the coating shaft 9 to rotate around the coating channel, so that the cut adhesive paper is wrapped around the surface of the wire. When multiple sets of adhesive wrapping paper assemblies 4 are provided, the preset adhesive paper length of each set of adhesive wrapping paper assemblies 4 can be different. Each set of adhesive wrapping paper assemblies 4 can simultaneously wrap different parts of the wire, or the wire can be driven by the wire pulling assembly 5 to move from the first set of adhesive wrapping paper assemblies 4 to the next set of adhesive wrapping paper assemblies 4, repeating the wrapping process until the wrapping operation of each designated position of the wire is completed.

[0029] In this embodiment, the adhesive wrapping paper assembly 4 includes an adhesive wrapping paper feeding assembly 7, a cutting assembly, an adhesive winding shaft 9, and adhesive wrapping paper clamping claws 11. The adhesive wrapping paper feeding assembly 7 conveys the adhesive paper to the coating channel, the cutting assembly cuts the adhesive paper into a preset length, and the adhesive winding shaft 9 drives the adhesive paper of the preset length to rotate and wind around the wire. This makes the adhesive paper feeding, cutting, and winding processes work together, improving the accuracy of adhesive paper length control, reducing the problem of adhesive paper being too long or too short, improving the quality of wire coating, and thus improving the efficiency of wire coating. At the same time, multiple sets of adhesive wrapping paper assemblies 4 can be set on the adhesive wrapping paper table 1, which can realize continuous automatic coating of wire at different positions and meet the processing needs of different coating positions, different adhesive paper lengths, or different coating requirements, improving the applicability of the equipment and the efficiency of wire coating. A wire feeding assembly 2, a heating assembly 3, at least one set of adhesive wrapping paper assemblies 4, and a wire pulling assembly 5 are sequentially arranged on the adhesive wrapping paper table 1. The wire pulling assembly 5 clamps the wire and drives it to move sequentially to each processing station along the processing direction, realizing continuous wire conveying between stations without the need for manual repositioning and transfer, thus improving the automation level of the equipment and the wire wrapping efficiency. By setting adhesive wrapping paper clamping claws 11 on both sides of the adhesive roll 9, the wire is clamped and fixed during the wrapping process, which can reduce wire displacement or shaking, and ensure that the adhesive paper can be stably wound around the predetermined position of the wire, thereby improving the adhesive paper winding quality.

[0030] In an optional embodiment, the wire feeding assembly 2 includes a wire feeding frame 12, a wire feeding wheel 13, a wire pressing wheel 14, a pressure wheel drive 15, and a wire feeding drive 16. The wire feeder 12 is fixed on the adhesive paper wrapping platform 1; The wire feeding wheel 13 and the wire pressing wheel 14 are arranged in parallel on the wire feeding frame 12; The wire feeding drive unit 16 is fixed to one side of the wire feeding frame 12 and is connected to the wire feeding wheel 13 for transmission. The pressure roller drive component 15 is fixed on the wire feeder 12 and is used to drive the pressure roller 14 to slide vertically.

[0031] In this embodiment, by placing the wire between the wire feeding wheel 13 and the wire pressing wheel 14, the pressure wheel drive 15 drives the wire pressing wheel 14 to move toward the wire feeding wheel 13 to clamp and fix the wire; subsequently, the wire feeding drive 16 drives the wire feeding wheel 13 to rotate, which in turn drives the wire pressing wheel 14 to rotate, thereby allowing the wire to be conveyed along the processing direction; when it is necessary to replace the wire or stop the wire feeding, the pressure wheel drive 15 drives the wire pressing wheel 14 away from the wire feeding wheel 13, so that the wire is released from the clamping state, which facilitates the installation, replacement or removal of the wire.

[0032] In this embodiment, by setting the wire feeding wheel 13 and the wire pressing wheel 14 to cooperate in clamping the wire, and driving the wire feeding wheel 13 to transport the wire by the wire feeding drive 16, the wire can be transported stably, reducing wire slippage or deviation. Moreover, the clamping and releasing of the wire pressing wheel 14 can be controlled by the pressure wheel drive 15, improving the convenience of wire clamping.

[0033] In an optional embodiment, the pull wire assembly 5 includes a pull wire drive 17, a pull wire screw 18, a pull wire rail 19, a slide 20, and a pull wire clamping claw 21; The wire guide 19 is fixed on the adhesive paper wrapping platform 1; The lead screw 18 is fixed to the lead rail 19 and is arranged parallel to the lead rail 19. The cable clamp 21 is fixed to the slide block 20; The slide block 20 is movably connected to the lead screw 18 and slidably connected to the lead rail 19. The wire pull drive 17 is connected to the wire pull screw 18 for driving the slide 20 to move horizontally along the wire pull rail 19.

[0034] In this embodiment, the wire pulling assembly 5 can achieve linear feeding of the wire through methods such as screw drive, synchronous belt drive, gear and rack drive, or linear motor drive. In this embodiment, screw drive and guide rail sliding are preferred. When the wire pulling assembly 5 is working, the wire is clamped in the wire pulling jaw 21. Then, the wire pulling drive 17 drives the wire pulling screw 18 to rotate. The slide 20 moves horizontally along the wire pulling rail 19 under the drive of the wire pulling screw 18, and drives the wire pulling jaw 21 and the wire to move synchronously, so that the wire passes through the heat-sealing assembly 3 and each adhesive paper wrapping assembly 4 to complete the corresponding process. When the wire moves to the predetermined processing position, the wire pulling drive 17 stops driving, and the wire pulling jaw 21 keeps the wire in a positioning state so that the heat-sealing assembly 3 or the adhesive paper wrapping assembly 4 can process the wire. After the processing at the current station is completed, the wire pulling drive 17 continues to drive the wire pulling screw 18 to rotate, so that the slide 20 moves to the next processing station until all processing steps of the wire are completed.

[0035] In this embodiment, by setting the wire pull screw 18, wire pull rail 19 and slide 20 to cooperate with each other, the wire pull drive component 17 drives the slide 20 to move the wire in a straight line, realizing the continuous conveying of the wire between each processing station, reducing manual handling and repeated positioning, improving the connection efficiency between each processing station, thereby improving the automation level of the whole machine and the wire coating efficiency.

[0036] In an optional embodiment, the adhesive wrapping assembly 4 further includes an adhesive wrapping length adjuster 22; The adhesive tape length adjustment component 22 is fixed on the adhesive tape support 6 and connected to the adhesive tape cutting assembly 8, and is used to adjust the cutting length of the adhesive tape.

[0037] In this embodiment, after the adhesive paper feeding assembly 7 conveys the adhesive paper to the cutting area, the adhesive paper cutting assembly 8 cuts the adhesive paper according to the parameters set by the adhesive paper length adjusting component 22. The adhesive paper length adjusting component 22 can be a control cylinder. By adjusting the adhesive paper length adjusting component, the cutting position or cutting stroke can be changed so that the length of the cut adhesive paper meets the coating requirements of different wire positions. Then, the adhesive paper is wound around the surface of the wire by the adhesive roll 9 to complete the coating process.

[0038] In this embodiment, by setting the adhesive tape length adjustment component 22 to cooperate with the adhesive tape cutting component 8, the adjustable control of the adhesive tape cutting length can be realized, so that the equipment can adapt to the processing requirements of different specifications of wires and different adhesive tape spacing, improve the versatility and adaptability of the equipment, and at the same time reduce the problem of excessive or insufficient adhesive tape due to inconsistent adhesive tape length, thereby improving the adhesive tape quality and processing stability.

[0039] In an optional embodiment, the hot ironing assembly 3 includes a hot ironing head 23, a hot ironing drive 24, a hot ironing wire clamp 25, a hot ironing wire rail 26, and a blocking block 27. The heat-sealing guide 26 is fixed on the adhesive paper wrapping table 1; The hot ironing head 23 is slidably disposed on the hot ironing rail 26 and is connected to the hot ironing drive component 24 for transmission. The blocking block 27 is provided on the hot ironing rail 26 to limit the excessive movement of the hot ironing head 23; Both sides of the heat-pressing rail 26 are provided with heat-pressing clamping claws 25 for clamping the wire.

[0040] In this embodiment, after the wire pulling assembly 5 conveys the wire to the processing station corresponding to the heat-pressing assembly 3, the heat-pressing clamping claw 25 first clamps and fixes the wire, keeping it in a positioned state. Then, the two heat-pressing driving components 24 drive the corresponding heat-pressing heads 23 to move relative to each other along the heat-pressing rail 26. The blocking block 27 on the heat-pressing rail 26 limits the maximum moving distance of the heat-pressing heads 23, preventing the two heat-pressing heads 23 from directly contacting each other. When the heat-pressing head 23 reaches the predetermined heat-pressing position of the wire, the wire is heat-pressed to improve the surface condition of the wire and improve the adhesion effect of the subsequent adhesive paper on the surface of the wire. After the heat-pressing is completed, the heat-pressing driving component 24 drives the heat-pressing head 23 to reset, the heat-pressing clamping claw 25 releases the wire, and the wire pulling assembly 5 continues to drive the wire to move.

[0041] In this embodiment, by setting the heating head 23, the heating drive 24, the heating wire clamping claw 25 and the blocking block 27 to cooperate with each other, the wire deviation during the heating process is reduced, the bonding effect between the subsequent adhesive paper and the wire is improved, and the quality of the wire coating is improved. At the same time, the blocking block 27 can limit the movement stroke of the heating head 23, prevent the heating head 23 from moving excessively, and improve the reliability of the heating assembly 3.

[0042] In an optional embodiment, at least one set of wire assembly 28 is provided between the wire feeding assembly 2, the heating assembly 3, at least one set of adhesive wrapping paper assembly 4 and the wire pulling assembly 5. The wire assembly 28 is used to support and guide the wire.

[0043] In this embodiment, the wire guide assembly 28 is disposed between the wire feeding assembly 2, the heat sealing assembly 3, the adhesive wrapping assembly 4, and the wire pulling assembly 5. The wire guide assembly consists of a bracket and guide wheels, used to support and guide the wire, allowing it to sequentially enter each processing station along a preset transmission path. During operation, the wire passes through each wire guide assembly 28 sequentially, and under the guidance of the wire guide assembly 28, enters the wire feeding assembly 2, the heat sealing assembly 3, the adhesive wrapping assembly 4, and the wire pulling assembly 5 to complete the corresponding processing steps. By setting the wire guide assembly 28, the transmission direction of the wire is restricted, reducing the phenomenon of swaying, deviation, or sagging of the wire during transmission, improving the positional accuracy of the wire entering each processing station, and simultaneously improving the reliability of continuous processing.

[0044] In an optional embodiment, the system further includes a wire feeding assembly 29, which includes a wire feeding frame 30, a tensioning wheel 31, a sensor switch 32, and a wire feeding drive 33. The wire feeding frame 30 is located at the wire inlet end of the wire feeding assembly 2, the tensioning wheel 31 is mounted on the wire feeding frame 30, and the wire feeding drive 33 is connected to the wire roll 34 on the wire feeding frame 30. The inductive switch 32 is electrically connected to the wire feeding drive 33 and is used to control the wire feeding drive 33 to adjust the wire feeding speed according to the position of the tensioning wheel 31.

[0045] In this embodiment, the wire feeding assembly 29 is used to continuously supply the wire to be processed to the wire feeding assembly 2, and is usually located at the wire inlet end of the wire feeding assembly 2. The wire feeding rack 30 is used to hold the wire roll. After the wire is unwound, it passes through the tension wheel 31 in sequence and enters the wire feeding assembly 2. As the wire feeding assembly 2 and the wire pulling assembly 5 continuously pull the wire, the position of the tension wheel 31 changes. The inductive switch 32 detects the position change of the tension wheel 31 in real time and sends a control signal to the wire feeding drive 33 to adjust the rotation speed of the wire feeding drive 33. For example, when the wire tension increases, the wire feeding drive 33 increases the wire feeding speed; when the wire tension decreases, the wire feeding drive 33 decreases the wire feeding speed. By cooperating with the tension wheel 31 and the inductive switch 32 to control the wire feeding speed of the wire feeding drive 33, the wire feeding speed can be automatically adjusted according to the actual tension of the wire, avoiding the wire from being unwound too quickly and causing slack or too slowly and causing stretching, thus improving the stability of the wire conveying.

[0046] In an optional embodiment, a wire cutting assembly 35 is provided at the bottom of the wire pulling assembly 5. The wire cutting assembly 35 includes a wire cutting clamp 36, a cutting blade 37, a cutting slide rail 38, and a cutting drive component. The cutting slide rail 38 is fixed on the adhesive paper table 1, and cutting blades 37 are respectively provided at both ends of the cutting slide rail 38 and are slidably connected to the cutting blades 37. The cutting drive is connected to the cutting blade 37 via a transmission. The cutting clamps 36 are fixed on the adhesive paper table 1 and located on both sides of the middle part of the cutting slide rail 38.

[0047] In this embodiment, after the wire has undergone heat treatment and coating, the wire pulling assembly 5 conveys the wire to the wire cutting assembly 35. The cutting clamping claw 36 first clamps and fixes the wire to prevent it from moving during the cutting process. Subsequently, the cutting drive unit drives the cutting blade 37 to move along the cutting slide rail 38 to cut the wire, separating the processed wire from the wire to be processed later. The cutting clamping claw 36 and the cutting blade 37 cooperate with each other to position the wire during the cutting process, reducing wire deviation and improving the accuracy of the cutting position. At the same time, the cutting blade 37 moves along the cutting slide rail 38 to complete the cutting action, allowing adjustments to be made according to the needs of wire production, thus improving the flexibility of wire processing.

[0048] In an optional embodiment, the output end of the wire cutting assembly 34 is provided with a collection box 39 for collecting finished wire products.

[0049] In this embodiment, after the wire cutting component 34 completes the wire cutting, the cut wire products fall into the collection box 39 under the action of gravity or external force for centralized collection, preventing the finished wire products from scattering on the equipment table. By setting up the collection box 39, the processed wire products are uniformly stored, reducing manual sorting time and improving the continuous processing capacity of the equipment.

[0050] In an optional embodiment, the bottom of the adhesive wrapping table 1 is equipped with a plurality of sliding wheels 40.

[0051] In this embodiment, the sliding wheel 40 is used to support the adhesive wrapping table 1 and facilitates the movement of the entire machine within the workplace. When the position of the equipment needs to be adjusted, the adhesive wrapping table 1 can be moved to the designated position by pushing it with the sliding wheel 40, improving the convenience of equipment movement and the flexibility of use. In addition, a locking structure can be provided on the sliding wheel 40. After the equipment is positioned, the equipment can be fixed by the locking mechanism to improve the safety of equipment use.

[0052] It should be noted that the above description of the disclosed embodiments enables those skilled in the art to implement or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A wire-coating paper wrapping device, characterized in that, include: A wrapping table, a wire feeding assembly, a heat exchange assembly, at least one set of wrapping assemblies, and a wire pulling assembly; The wire feeding assembly, the heat-pressing assembly, the at least one set of adhesive wrapping paper assemblies, and the wire pulling assembly are sequentially arranged on the adhesive wrapping paper table. The wire pulling assembly is used to clamp the wire and drive the wire to move sequentially from the wire feeding assembly to the heat-pressing assembly and the at least one set of adhesive wrapping paper assemblies along the processing direction. The adhesive wrapping paper assembly includes an adhesive wrapping paper holder, an adhesive wrapping paper feeding assembly, an adhesive wrapping paper cutting assembly, an adhesive roll shaft, an adhesive wrapping drive component, and adhesive wrapping paper clamping claws. The adhesive roll is rotatably mounted on the adhesive paper support and forms an adhesive channel with the adhesive paper support. The adhesive wrapping drive is fixed on the adhesive wrapping paper bracket and is connected to the adhesive roll shaft for driving the adhesive roll shaft to rotate around the adhesive wrapping channel. The adhesive paper clamping claws are located on both sides of the adhesive roll; The adhesive paper feeding assembly is fixed on the adhesive paper support, and the discharge end of the adhesive paper feeding assembly faces the adhesive coating channel, which is used to convey the adhesive paper to the adhesive coating channel. The adhesive paper cutting assembly is disposed between the discharge end of the adhesive paper feeding assembly and the adhesive roll shaft, and is used to cut the adhesive paper conveyed to the adhesive wrapping channel into a preset length, so that the adhesive roll shaft drives the adhesive paper of the preset length to wrap around the surface of the wire.

2. The wire coating equipment according to claim 1, characterized in that, The wire feeding assembly includes a wire feeding frame, a wire feeding wheel, a wire pressing wheel, a pressure wheel drive, and a wire feeding drive. The wire feeder is fixed to the adhesive paper wrapping table; The wire feeding wheel and the wire pressing wheel are arranged in parallel on the wire feeding frame; The wire feeding drive is fixed to one side of the wire feeding frame and is connected to the wire feeding wheel via a transmission. The pressure roller drive is fixed on the wire feeder and is used to drive the pressure roller to slide vertically.

3. The wire coating equipment according to claim 1, characterized in that, The pull wire assembly includes a pull wire drive, a pull wire screw, a pull wire rail, a slide block, and a pull wire clamping claw; The wire guide is fixed to the adhesive paper platform; The lead screw is fixed to the lead rail and is arranged parallel to the lead rail; The wire clamping claw is fixed to the slide block; The slide block is movably connected to the lead screw and slidably connected to the lead rail; The wire pulling drive component is connected to the wire pulling screw and is used to drive the slide to move horizontally along the wire pulling rail.

4. The wire coating equipment according to claim 1, characterized in that, The adhesive wrapping assembly also includes an adhesive wrapping length adjustment component; The adhesive tape length adjustment component is fixed on the adhesive tape support and is connected to the adhesive tape cutting assembly for adjusting the cutting length of the adhesive tape.

5. The wire coating equipment according to claim 1, characterized in that, The hot ironing assembly includes a hot ironing head, a hot ironing drive component, a hot ironing wire clamp, a hot ironing wire rail, and a blocking block. The hot stamping rail is fixed to the adhesive paper wrapping table; The hot iron head is slidably disposed on the hot iron rail and is connected to the hot iron driving component for transmission. The blocking block is disposed on the hot ironing rail to limit the excessive movement of the hot ironing head; The hot-heating wire rail is provided with hot-heating wire clamps on both sides for clamping the wire.

6. The wire coating equipment according to claim 1, characterized in that, At least one set of wire assembly is provided between the wire feeding assembly, the heat-sealing assembly, the at least one set of adhesive wrapping paper assemblies and the wire pulling assembly, and the wire assembly is used to support and guide the wire.

7. The wire coating equipment according to claim 1, characterized in that, It also includes a wire feeding assembly, which includes a wire feeding frame, a tensioning wheel, a sensor switch, and a wire feeding drive component; The wire feeding frame is located at the wire inlet end of the wire feeding assembly, the tensioning wheel is mounted on the wire feeding frame, and the wire feeding drive is connected to the wire coil on the wire feeding frame. The inductive switch is electrically connected to the wire feeding drive and is used to control the wire feeding drive to adjust the wire feeding speed according to the position of the tensioning wheel.

8. The wire coating equipment according to claim 1, characterized in that, The bottom of the pull-wire assembly is provided with a wire cutting assembly, which includes a wire cutting clamp, a cutting blade, a cutting slide rail, and a cutting drive component. The cutting slide rail is fixed to the adhesive paper wrapping table, and the cutting blades are respectively provided at both ends of the cutting slide rail and are slidably connected to the cutting blades; The cutting drive component is connected to the cutting blade via a transmission; The cutting clamps are fixed to the adhesive paper table and located on both sides of the middle part of the cutting slide rail.

9. The wire coating equipment according to claim 8, characterized in that, The wire cutting assembly is equipped with a collection box at its discharge end, which is used to collect finished wire products.

10. The wire coating equipment according to any one of claims 1 to 9, characterized in that, The bottom of the adhesive wrapping table is equipped with several sliding wheels.