Terminal insulation paper roll wrapping apparatus

CN224783390UActive Publication Date: 2026-09-22DONGGUAN CHENWEI AUTOMATION EQUIP TECH CO LTD
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Patent Information

Application Number
CN202522382556.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-10
Publication Date
2026-09-22
Estimated Expiration
2035-11-10

AI Technical Summary

Technical Problem

[0003]本实用新型的目的在于提供一种端子绝缘纸卷套设备,旨在解决现有技术中的传统的套设绝缘纸套方法通常依赖于人工操作,这种方法不仅效率低下,而且在长时间工作下可能导致操作人员疲劳,增加了生产成本的技术问题

Benefits of technology

[0013]本实用新型实施例提供的一种端子绝缘纸卷套设备中的上述一个或多个技术方案至少具有如下技术效果之一:该端子绝缘纸卷套设备中,机座提供了整体结构的基础支撑。上料机构负责将绝缘纸整齐地送至卷套机构,靠近卷套机构的一侧还装有剪裁机构。卷套机构则将上料机构上料的绝缘纸卷成套状,随后卷套机构所卷好套的绝缘纸被剪裁机构剪成所需的长度。整合机构则位于卷套机构的下方,用于整平卷套机构上的绝缘纸套,确保其整齐有序。工作原理方面,首先,绝缘纸通过上料机构导入,卷套机构自动将绝缘纸卷成紧密的绝缘纸套,经剪裁机构裁剪被卷套机构所卷套的绝缘纸。随后,卷好的绝缘纸套被整合机构进行整理。整个过程实现了从卷套到裁剪,再到整理的全自动化操作,极大提高了效率,减轻了人工劳动强度,同时确保了绝缘纸套的高质量和一致性。

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Abstract

The utility model belongs to the technical field of insulation paper roll sleeve, especially terminal insulation paper roll sleeve equipment, including frame, feeding mechanism, roll sleeve mechanism and integration mechanism. Feeding mechanism, roll sleeve mechanism and integration mechanism all are arranged on the frame, and feeding mechanism is located one side of roll sleeve mechanism, is used for feeding insulation paper to roll sleeve mechanism, and integration mechanism is located below roll sleeve mechanism, and integration mechanism is used for integrating insulation paper sleeve on roll sleeve mechanism, and roll sleeve mechanism is used for rolling insulation paper into sleeve roll. The feeding mechanism is provided with the cutting mechanism on the side close to the roll sleeve mechanism, and the cutting mechanism is used for cutting insulation paper. The whole process realizes the full automation operation from roll sleeve to cutting, to collation, greatly improves the efficiency, and reduces the artificial labor intensity, and simultaneously ensures the high quality and consistency of insulation paper sleeve.
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Description

Technical Field

[0001] This utility model belongs to the technical field of insulating paper rolls, and particularly relates to a terminal insulating paper roll device. Background Technology

[0002] In today's electronics manufacturing industry, terminals are an indispensable component. For many terminals, applying an insulating paper sleeve to the terminal head after manufacturing is a necessary step, which helps improve the terminal's durability and prevent short circuits. However, traditional methods of applying insulating paper sleeves usually rely on manual operation. This method is not only inefficient but can also lead to operator fatigue under prolonged work, increasing production costs. Furthermore, manual operation is susceptible to the operator's skill level, which may result in inconsistent sleeve application quality, affecting the overall product quality and posing certain safety hazards. Utility Model Content

[0003] The purpose of this invention is to provide a terminal insulating paper roll sleeve device, which aims to solve the technical problem that the traditional method of sleeve sleeve application in the prior art usually relies on manual operation. This method is not only inefficient, but may also cause operator fatigue and increase production costs during long-term work.

[0004] To achieve the above objectives, this utility model provides a terminal insulating paper roll-up device, including a base, a feeding mechanism, a rolling mechanism, and an integrating mechanism. The feeding mechanism, rolling mechanism, and integrating mechanism are all mounted on the base. The feeding mechanism is located on one side of the rolling mechanism and is used to feed insulating paper onto the rolling mechanism. The integrating mechanism is located below the rolling mechanism and is used to integrate the insulating paper rolls on the rolling mechanism. The rolling mechanism is used to roll the insulating paper into a roll. A cutting mechanism is provided on the side of the feeding mechanism near the rolling mechanism for cutting the insulating paper.

[0005] Furthermore, the winding mechanism includes an upper clamping plate, a lower clamping plate, a rotary motor, and a clamping assembly. The upper and lower clamping plates are parallel to each other and arranged vertically. One end of the upper and lower clamping plates is connected to the clamping assembly, which is used to drive the upper and lower clamping plates to move closer or further apart. The rotary motor is mounted on the machine base, and its drive end is connected to the clamping assembly. The rotary motor is used to drive the clamping assembly to rotate.

[0006] Furthermore, the clamping assembly includes an upper connecting block, a lower connecting block, a support cylinder, and a reset assembly. The lower connecting block is located at the lower end of the upper connecting block and is connected to the lower clamping plate. The upper connecting block is connected to the upper clamping plate. The reset assembly is located at the upper end of the upper connecting block and is used to drive the upper and lower connecting blocks closer together. The support cylinder is located at the lower end of the lower connecting block and is used to drive the upper and lower connecting blocks further apart.

[0007] Furthermore, the reset assembly includes a reset screw and a reset spring. The reset screw passes through the upper connecting block and connects to the lower connecting block, and the upper connecting block is slidably connected to the reset screw. The reset spring is sleeved on the reset screw, with one end of the reset spring abutting against the nut of the reset screw and the other end of the reset spring abutting against the upper connecting block.

[0008] Furthermore, the feeding mechanism includes an obstacle avoidance cylinder, a base plate, several guide rollers, and a pushing assembly. The obstacle avoidance cylinder is mounted on the machine base, and its drive end is connected to the base plate. The obstacle avoidance cylinder is used to drive the base plate to rise or fall. Each guide roller is mounted on the machine base and the base plate, respectively. The guide rollers are used to guide the insulating paper into the pushing assembly. The pushing assembly is mounted on the base plate and located at one end near the winding mechanism. The pushing assembly is used to pull the insulating paper into the winding mechanism.

[0009] Furthermore, the pushing assembly includes a pushing cylinder and a clamping assembly. The pushing cylinder is mounted on the base plate, and the clamping assembly is slidably mounted on the base plate. The driving end of the pushing cylinder is connected to the clamping assembly. The pushing cylinder is used to drive the clamping assembly to move closer to or away from the roll sleeve mechanism, and the clamping assembly is used to clamp or open the insulating paper.

[0010] Furthermore, the cutting mechanism is mounted on the base plate and is located between the clamping assembly and the roll-up mechanism. The cutting mechanism is used to cut the insulating paper between the clamping assembly and the roll-up mechanism.

[0011] Furthermore, the cutting mechanism includes a guide block, a cutter, and a cutting cylinder. The guide block is mounted on the base plate and located between the clamping assembly and the winding mechanism. The guide block has a guide groove for the insulating paper to pass through. The cutter is slidably mounted on the guide block. The cutting cylinder is mounted on the base plate, and the drive end of the cutting cylinder is connected to the cutter. The cutting cylinder drives the cutter to slide on the guide block to cut the insulating paper.

[0012] Furthermore, the integrated mechanism includes a heating block and a lifting cylinder. The lifting cylinder is mounted on the machine base, and the heating block is located below the winding mechanism and connected to the lifting cylinder. The lifting cylinder is used to drive the heating block to rise and abut against the winding mechanism or to drive the heating block to fall.

[0013] The terminal insulating paper rolling device provided in this utility model embodiment has at least one of the following technical effects: In this terminal insulating paper rolling device, the base provides the basic support for the overall structure. The feeding mechanism is responsible for neatly feeding the insulating paper to the rolling mechanism, and a cutting mechanism is also installed on the side near the rolling mechanism. The rolling mechanism rolls the insulating paper fed by the feeding mechanism into a sleeve shape, and then the rolled insulating paper is cut to the required length by the cutting mechanism. The integrating mechanism is located below the rolling mechanism and is used to flatten the insulating paper sleeves on the rolling mechanism to ensure that they are neat and orderly. In terms of working principle, firstly, the insulating paper is introduced through the feeding mechanism, the rolling mechanism automatically rolls the insulating paper into a tight insulating paper sleeve, and the cutting mechanism cuts the insulating paper rolled by the rolling mechanism. Subsequently, the rolled insulating paper sleeves are sorted by the integrating mechanism. The whole process realizes fully automated operation from rolling to cutting to sorting, which greatly improves efficiency, reduces manual labor intensity, and ensures the high quality and consistency of the insulating paper sleeves. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model, 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 utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a structural schematic diagram of a terminal insulating paper roll device provided in an embodiment of the present utility model.

[0016] Figure 2 This is a schematic diagram of the feeding mechanism of a terminal insulating paper roll device provided in an embodiment of the present utility model.

[0017] Figure 3 This is a schematic diagram of the roll mechanism structure of a terminal insulating paper roll device provided in an embodiment of the present utility model.

[0018] Reference numerals: 100, base; 200, feeding mechanism; 210, clearance cylinder; 220, base plate; 230, guide roller; 240, pushing assembly; 241, pushing cylinder; 242, clamping assembly; 300, winding mechanism; 310, upper clamping plate; 320, lower clamping plate; 330, rotary motor; 340, clamping assembly; 341, upper connecting block; 342, lower connecting block; 343, support cylinder; 344, reset assembly; 345, reset screw; 346, reset spring; 400, integration mechanism; 410, heating block; 420, lifting cylinder; 500, cutting mechanism; 510, guide block; 511, guide groove; 520, cutter; 530, cutting cylinder. Detailed Implementation

[0019] The embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the embodiments of the present invention, and should not be construed as limiting the present invention.

[0020] In the description of the embodiments of this utility model, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the embodiments of this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0021] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying 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. In the description of embodiments of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0022] In this embodiment of the invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; 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; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment of the invention according to the specific circumstances.

[0023] In one embodiment of this utility model, such as Figures 1-2As shown, a terminal insulating paper roll-up device is provided, including a base 100, a feeding mechanism 200, a rolling mechanism 300, and an integrating mechanism 400. The feeding mechanism 200, rolling mechanism 300, and integrating mechanism 400 are all mounted on the base 100. The feeding mechanism 200 is located on one side of the rolling mechanism 300 and is used to feed insulating paper onto the rolling mechanism 300. The integrating mechanism 400 is located below the rolling mechanism 300 and is used to integrate the insulating paper rolls on the rolling mechanism 300. The rolling mechanism 300 is used to roll the insulating paper into a roll. A cutting mechanism 500 is provided on the side of the feeding mechanism 200 near the rolling mechanism 300, and the cutting mechanism 500 is used to cut the insulating paper. In this embodiment, the base 100 provides the basic support for the overall structure of the terminal insulating paper roll-up device. The feeding mechanism 200 neatly delivers the insulating paper to the rolling mechanism 300. A cutting mechanism 500 is also installed near the rolling mechanism 300. The rolling mechanism 300 rolls the insulating paper fed by the feeding mechanism 200 into a sleeve shape. Then, the rolled insulating paper is cut to the required length by the cutting mechanism 500. The integrating mechanism 400 is located below the rolling mechanism 300 and is used to flatten the insulating paper sleeves on the rolling mechanism 300, ensuring they are neat and orderly. In terms of working principle, firstly, the insulating paper is introduced through the feeding mechanism 200. The rolling mechanism 300 automatically rolls the insulating paper into a tight insulating paper sleeve, and the cutting mechanism 500 cuts the insulating paper rolled by the rolling mechanism 300. Subsequently, the rolled insulating paper sleeves are arranged by the integrating mechanism 400. The entire process achieves fully automated operation from rolling to cutting to arrangement, greatly improving efficiency, reducing manual labor intensity, and ensuring the high quality and consistency of the insulating paper sleeves.

[0024] Furthermore, the winding mechanism 300 includes an upper clamping plate 310, a lower clamping plate 320, a rotary motor 330, and a clamping assembly 340. The upper clamping plate 310 and the lower clamping plate 320 are parallel to each other and arranged vertically. One end of the upper clamping plate 310 and the lower clamping plate 320 is connected to the clamping assembly 340, which is used to drive the upper clamping plate 310 and the lower clamping plate 320 to move closer or further apart. The rotary motor 330 is mounted on the machine base 100, and the driving end of the rotary motor 330 is connected to the clamping assembly 340. The rotary motor 330 is used to drive the clamping assembly 340 to rotate. In this embodiment, when the insulating paper is fed to one side of the winding mechanism 300 by the feeding mechanism 200, the clamping assembly 340 drives the upper clamping plate 310 and the lower clamping plate 320 to move away from each other, so that the insulating paper enters between the upper clamping plate 310 and the lower clamping plate 320. Then, the clamping assembly 340 drives the upper clamping plate 310 and the lower clamping plate 320 to move closer to each other, so that the upper clamping plate 310 and the lower clamping plate 320 clamp the insulating paper. The hand-held rotary motor 330 rotates and drives the insulating paper to wrap around the upper clamping plate 310 and the lower clamping plate 320, rotates to form a sleeve, and completes the winding action.

[0025] Furthermore, the clamping assembly 340 includes an upper connecting block 341, a lower connecting block 342, a support cylinder 343, and a reset assembly 344. The lower connecting block 342 is disposed at the lower end of the upper connecting block 341 and is connected to the lower clamping plate 320. The upper connecting block 341 is connected to the upper clamping plate 310. The reset assembly 344 is disposed at the upper end of the upper connecting block 341 and is used to drive the upper connecting block 341 and the lower connecting block 342 closer to each other. The support cylinder 343 is disposed at the lower end of the lower connecting block 342 and is used to drive the upper connecting block 341 and the lower connecting block 342 further away from each other. In this embodiment, the support cylinder 343 is located at the lower end of the lower connecting block 342. The support cylinder 343 is used to drive the upper connecting block 341 and the lower connecting block 342 away from each other. The reset component 344 is used to reset the upper connecting block 341 and the lower connecting block 342 to move closer to each other, thereby realizing the clamping and opening of the insulating paper by the upper clamping plate 310 and the lower clamping plate 320.

[0026] Furthermore, the reset assembly 344 includes a reset screw 345 and a reset spring 346. The reset screw 345 passes through the upper connecting block 341 and connects to the lower connecting block 342, and the upper connecting block 341 is slidably connected to the reset screw 345. The reset spring 346 is sleeved on the reset screw 345, with one end of the reset spring 346 abutting against the nut of the reset screw 345 and the other end of the reset spring 346 abutting against the upper connecting block 341. In this embodiment, when the support cylinder 343 drives the upper connecting block 341 and the lower connecting block 342 away from each other, the reset spring 346 is compressed and stores elastic potential energy. When the support cylinder 343 resets, the elastic potential energy of the reset spring 346 is released, causing the upper connecting block 341 and the lower connecting block 342 to move closer to each other, thereby causing the upper clamping plate 310 and the lower clamping plate 320 to clamp the insulating paper.

[0027] Furthermore, the feeding mechanism 200 includes a clearance cylinder 210, a base plate 220, several guide rollers 230, and a pushing assembly 240. The clearance cylinder 210 is mounted on the machine base 100, and its drive end is connected to the base plate 220. The clearance cylinder 210 is used to drive the base plate 220 to rise or fall. Each guide roller 230 is respectively mounted on the machine base 100 and the base plate 220. The guide rollers 230 are used to guide the insulating paper into the pushing assembly 240. The pushing assembly 240 is mounted on the base plate 220 and located at one end near the winding mechanism 300. The pushing assembly 240 is used to pull the insulating paper into the winding mechanism 300. In this embodiment, the avoidance cylinder 210 drives the base plate 220 to rise or fall, thereby controlling the height of the pusher cylinder 241, so that the pusher assembly 240 and the winding mechanism 300 are kept at the same height. The pusher assembly 240 is used to push the insulating paper into the winding mechanism 300, and the guide roller 230 is used to guide the insulating paper into the pusher assembly 240.

[0028] Furthermore, the pushing assembly 240 includes a pushing cylinder 241 and a clamping assembly 242. The pushing cylinder 241 is mounted on the base plate 220, and the clamping assembly 242 is slidably mounted on the base plate 220. The driving end of the pushing cylinder 241 is connected to the clamping assembly 242. The pushing cylinder 241 is used to drive the clamping assembly 242 to approach or move away from the winding mechanism 300, and the clamping assembly 242 is used to clamp or open the insulating paper. In this embodiment, the clamping assembly 242 is used to clamp or open the insulating paper, and the pushing cylinder 241 is used to drive the clamping assembly 242 to move on the base plate 220. First, the clamping assembly 242 opens, and the pushing cylinder 241 drives the clamping assembly 242 away from the winding mechanism 300. Then, the clamping cylinder clamps the insulating paper, and the pushing assembly 240 drives the clamping assembly 242 to move closer to the winding mechanism 300, bringing the insulating paper into the winding mechanism 300. After the insulating paper is released, the winding mechanism 300 begins winding. After winding is completed, the pushing cylinder 241 drives the clamping assembly 242 to move away from the winding mechanism 300, and the clamping assembly 242 clamps the insulating paper again. At this time, the cutting mechanism 500 cuts the wound insulating paper. The above steps are repeated to realize the automated feeding of insulating paper.

[0029] Furthermore, the cutting mechanism 500 is disposed on the base plate 220 and is located between the clamping assembly 242 and the winding mechanism 300. The cutting mechanism 500 is used to cut the insulating paper between the clamping assembly 242 and the winding mechanism 300. In this embodiment, the cutting mechanism 500 is used to cut the insulating paper between the clamping assembly 242 and the winding mechanism 300. After the insulating paper is wound, the cutting mechanism 500 cuts the insulating paper.

[0030] Furthermore, the cutting mechanism 500 includes a guide block 510, a cutter 520, and a cutting cylinder 530. The guide block 510 is disposed on the base plate 220 and located between the clamping assembly 242 and the winding mechanism 300. The guide block 510 has a guide groove 511 for the insulating paper to pass through. The cutter 520 is slidably disposed on the guide block 510. The cutting cylinder 530 is disposed on the base plate 220, and the driving end of the cutting cylinder 530 is connected to the cutter 520. The cutting cylinder 530 drives the cutter 520 to slide on the guide block 510 to cut the insulating paper. In this embodiment, the insulating paper enters the winding mechanism 300 through the guide groove 511 on the guide block 510. After winding is completed, the cutting cylinder 530 drives the cutter 520 to slide on the guide block 510, thereby cutting the insulating paper between the guide block 510 and the winding mechanism 300.

[0031] Furthermore, the integration mechanism 400 includes a heating block 410 and a lifting cylinder 420. The lifting cylinder 420 is mounted on the base 100, and the heating block 410 is positioned below the winding mechanism 300 and connected to the lifting cylinder 420. The lifting cylinder 420 is used to drive the heating block 410 to rise and abut against the winding mechanism 300 or to drive the heating block 410 to fall. In this embodiment, after the insulating paper is wound by the winding mechanism 300, the rotary motor 330 drives the insulating sleeve to rotate 90 degrees each time. After each rotation, the lifting cylinder 420 lifts the heating block 410 once, and the heating block 410 contacts the insulating sleeve, integrating the four sides of the insulating sleeve to make the perimeter of the insulating sleeve smoother.

[0032] The rest of this embodiment is the same as that in Embodiment 1. Features not explained in this embodiment are explained using the methods in Embodiment 1, and will not be repeated here.

[0033] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A terminal insulating paper roll sleeve device, characterized in that: The device includes a base, a feeding mechanism, a winding mechanism, and an integrating mechanism. The feeding mechanism, winding mechanism, and integrating mechanism are all mounted on the base. The feeding mechanism is located on one side of the winding mechanism and is used to feed insulating paper onto the winding mechanism. The integrating mechanism is located below the winding mechanism and is used to integrate the insulating paper sleeves on the winding mechanism. The winding mechanism is used to wind the insulating paper into a roll. The feeding mechanism has a cutting mechanism on the side near the winding mechanism, which is used to cut the insulating paper.

2. The terminal insulating paper roll sleeve device according to claim 1, characterized in that: The sleeve mechanism includes an upper clamping plate, a lower clamping plate, a rotary motor, and a clamping assembly. The upper clamping plate and the lower clamping plate are parallel to each other and arranged vertically. One end of the upper clamping plate and the lower clamping plate is connected to the clamping assembly. The clamping assembly is used to drive the upper clamping plate and the lower clamping plate to move closer or further apart. The rotary motor is mounted on the machine base, and the drive end of the rotary motor is connected to the clamping assembly. The rotary motor is used to drive the clamping assembly to rotate.

3. The terminal insulating paper roll sleeve device according to claim 2, characterized in that: The clamping assembly includes an upper connecting block, a lower connecting block, a support cylinder, and a reset assembly. The lower connecting block is located at the lower end of the upper connecting block and is connected to the lower clamping plate. The upper connecting block is connected to the upper clamping plate. The reset assembly is located at the upper end of the upper connecting block and is used to drive the upper connecting block and the lower connecting block closer to each other. The support cylinder is located at the lower end of the lower connecting block and is used to drive the upper connecting block and the lower connecting block further apart.

4. The terminal insulating paper roll sleeve device according to claim 3, characterized in that: The reset assembly includes a reset screw and a reset spring. The reset screw passes through the upper connecting block and is connected to the lower connecting block, and the upper connecting block is slidably connected to the reset screw. The reset spring is sleeved on the reset screw, with one end of the reset spring abutting against the nut of the reset screw and the other end of the reset spring abutting against the upper connecting block.

5. A terminal insulating paper roll sleeve device according to claim 2, characterized in that: The feeding mechanism includes an avoidance cylinder, a base plate, several guide rollers, and a pushing assembly. The avoidance cylinder is mounted on the machine base, and its drive end is connected to the base plate. The avoidance cylinder is used to drive the base plate to rise or fall. Each guide roller is mounted on the machine base and the base plate, and is used to guide the insulating paper into the pushing assembly. The pushing assembly is mounted on the base plate and located at one end near the winding mechanism. The pushing assembly is used to pull the insulating paper into the winding mechanism.

6. The terminal insulating paper roll sleeve device according to claim 5, characterized in that: The pushing assembly includes a pushing cylinder and a clamping assembly; the pushing cylinder is disposed on the base plate, and the clamping assembly is slidably disposed on the base plate. The driving end of the pushing cylinder is connected to the clamping assembly. The pushing cylinder is used to drive the clamping assembly to move closer to or away from the roll sleeve mechanism, and the clamping assembly is used to clamp or open the insulating paper.

7. A terminal insulating paper roll sleeve device according to claim 6, characterized in that: The cutting mechanism is disposed on the base plate and is located between the clamping assembly and the roll sleeve mechanism. The cutting mechanism is used to cut the insulating paper between the clamping assembly and the roll sleeve mechanism.

8. A terminal insulating paper roll sleeve device according to claim 7, characterized in that: The cutting mechanism includes a guide block, a cutter, and a cutting cylinder. The guide block is disposed on the base plate and located between the clamping assembly and the roll-up mechanism. The guide block has a guide groove for the insulating paper to pass through. The cutter is slidably disposed on the guide block. The cutting cylinder is disposed on the base plate. The driving end of the cutting cylinder is connected to the cutter. The cutting cylinder drives the cutter to slide on the guide block to cut the insulating paper.

9. A terminal insulating paper roll sleeve device according to claim 1, characterized in that: The integrated mechanism includes a heating block and a lifting cylinder. The lifting cylinder is mounted on the machine base, and the heating block is located below the winding mechanism and connected to the lifting cylinder. The lifting cylinder is used to drive the heating block to rise and abut against the winding mechanism or to drive the heating block to fall.