Sticky dust paper roll production device and production method

By coordinating the control of the cutting mechanism and the movement speed of the adhesive paper roll, and combining the universal wheels and photoelectric mechanism, the problems of tube bursting and high cost in the production of adhesive paper rolls have been solved, achieving high-quality and high-efficiency production.

CN117819317BActive Publication Date: 2026-05-12SHAOXING SANCI HOUSEHOLD PROD CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHAOXING SANCI HOUSEHOLD PROD CO LTD
Filing Date
2023-12-26
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing adhesive paper roll production equipment is prone to tube bursting when increasing the number of paper roll layers, and the cost is high, making it difficult to achieve high-quality and efficient production.

Method used

The cutting mechanism is controlled by a drive mechanism and a control device to move at the same speed as the adhesive paper roll. The speed is adjusted in real time by using casters, photoelectric mechanism and encoder to ensure the flatness and stability of the cut surface.

Benefits of technology

It improved the flatness of the cut surface, increased the number of paper roll layers to 110, reduced costs, and improved production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117819317B_ABST
    Figure CN117819317B_ABST
Patent Text Reader

Abstract

The application discloses a dust-sticking paper roll production device and a production method. The device comprises a paper tube forming mechanism, a dust-sticking paper winding mechanism, a cutting mechanism and a control device. The paper tube forming mechanism is used to drive the paper tube to move linearly along the axis of the paper tube forming shaft. The dust-sticking paper winding mechanism is used to wind the dust-sticking paper on the paper tube to form a dust-sticking paper roll semi-product. The cutting mechanism moves in the same direction as the paper tube. The cutting mechanism is connected with a driving mechanism. The driving mechanism is connected with the control device to control the movement speed of the cutting mechanism to be the same as the movement speed of the dust-sticking paper roll semi-product when the cutting mechanism cuts the dust-sticking paper roll. The dust-sticking paper roll production device and the production method can improve the quality of the dust-sticking paper roll.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of processing technology, and in particular to an apparatus and method for producing adhesive paper rolls. Background Technology

[0002] Sticky cleaning wipes are a type of cleaning product used for vacuuming. They utilize the principle of electrostatic adsorption, attracting dust particles through the static electricity on the paper surface, resulting in a powerful cleaning effect. To use, the wipe roll is pushed using a paper roll holder, allowing the adsorption effect on the roll's surface to quickly clean surfaces such as desktops and cabinets. A single roll can contain dozens of layers of sticky paper; after each use, the outermost layer is removed for continued use. This convenient and quick method of cleaning, which is also non-destructive, offers significant advantages in both environmental friendliness and efficiency, making it widely used in various aspects of production and daily life.

[0003] In the production of adhesive paper products, adhesive paper rolls are an important category. The process involves winding dozens of layers of adhesive paper onto a paper tube, followed by paper tube forming and adhesive paper winding processes. First, the paper tube is formed by winding on a paper tube forming mechanism. Then, the paper tube is conveyed along the guide shaft of the adhesive paper winding mechanism, where the adhesive paper is wound onto the paper tube during this process. Finally, the winding adhesive paper roll is cut to the appropriate length by a cutting mechanism. During the cutting process, the paper tube moves along the guide shaft, pushing against the cutting mechanism to ensure a smooth cut surface. Existing equipment typically only produces 90-layer rolls. As the number of layers increases, the torsional and forward thrust on the kraft paper (the core of the roll) becomes very large, leading to tube bursting without increasing the number of kraft paper layers. Increasing the number of kraft paper layers increases costs. Summary of the Invention

[0004] The purpose of this application is to provide an apparatus and method for producing adhesive paper rolls, which can improve the processing quality of adhesive paper rolls.

[0005] In a first aspect, this application provides an adhesive paper roll production apparatus, including a paper tube forming mechanism, an adhesive paper winding mechanism, a cutting mechanism, and a control device. The paper tube forming mechanism is used for forming a paper tube and driving the paper tube to move linearly along the axis of the paper tube forming shaft. The adhesive paper winding mechanism is used for winding the adhesive paper onto the paper tube to form a semi-finished adhesive paper roll. The cutting mechanism moves in the same direction as the paper tube. The cutting mechanism is connected to a driving mechanism, and the driving mechanism is connected to the control device to control the movement speed of the cutting mechanism to be the same as the movement speed of the semi-finished adhesive paper roll when the cutting mechanism cuts the adhesive paper roll.

[0006] By adopting the above technical solution, the drive mechanism drives the cutting mechanism, reducing the load on the adhesive paper roll. The speed of the cutting mechanism is adjusted through the coordinated control of the drive mechanism and the control device, ensuring that the cutting mechanism and the semi-finished adhesive paper roll move at the same speed when cutting. This eliminates relative displacement between the cutting mechanism and the semi-finished adhesive paper roll during cutting, improving the flatness of the cut surface and enhancing product quality. Through comparative testing, without increasing the thickness of the paper roll, existing adhesive paper roll production equipment can produce 90-layer paper rolls (90 layers of adhesive paper), while the equipment of this application can produce 110-layer paper rolls.

[0007] In conjunction with the first aspect, a further solution is to provide a caster wheel between the winding mechanism and the cutting mechanism. The caster wheel is used to support the adhesive paper roll and rotates synchronously with the linear movement of the adhesive paper roll.

[0008] By adopting the above technical solution and using the universal wheels for guidance, the stability of the movement of the adhesive paper roll can be improved, making it easier for the adhesive paper roll to enter the cutting mechanism and making the cutting more stable.

[0009] In conjunction with the first aspect, a further solution is to provide an encoder on the universal wheel, which is connected to the control device to obtain the movement speed of the adhesive paper roll in real time.

[0010] By adopting the above technical solution, there is no relative movement between the caster and the adhesive paper roll. The rotation of the caster is synchronized with the linear motion of the adhesive paper roll. The encoder obtains the linear motion speed of the adhesive paper roll by acquiring the rotation speed and radius information of the caster, which is convenient to feed back to the control device to control the speed of the drive mechanism.

[0011] In conjunction with the first aspect, a further solution is that the cutting mechanism is connected to a photoelectric mechanism, which is used to detect the relative position of the adhesive paper roll semi-finished product and the cutting mechanism.

[0012] By adopting the above technical solution, the photoelectric mechanism can accurately detect the relative position between the cutting mechanism and the adhesive paper roll. Determining a uniform relative position can achieve dimensional stability and consistency in cutting.

[0013] In conjunction with the first aspect, a further solution is that when the adhesive paper roll semi-finished product exceeds the relative position, the control device adjusts the parameters of the drive mechanism to increase the movement speed of the cutting mechanism.

[0014] In conjunction with the first aspect, a further solution is that when the adhesive paper roll semi-finished product has not reached the relative position, the control device adjusts the parameters of the drive mechanism to reduce the movement speed of the cutting mechanism or to stop the drive mechanism from driving the cutting mechanism.

[0015] In conjunction with the first aspect, a further solution is that when the adhesive paper roll semi-finished product is located in the relative position, the control device adjusts the parameters of the drive mechanism so that the movement speed of the cutting mechanism is the same as the movement speed of the adhesive paper roll.

[0016] In conjunction with the first aspect, a further solution is provided whereby the cutting mechanism is connected to a photoelectric mechanism, which is used to detect the relative position of the adhesive paper roll semi-finished product and the cutting mechanism. The control device adjusts the parameters of the drive mechanism based on the signal feedback from the photoelectric mechanism and the encoder to maintain the same movement speed between the drive mechanism and the cutting mechanism.

[0017] By adopting the above technical solution, and through the coordinated control of the photoelectric mechanism, encoder, drive mechanism and control device, the consistency of the relative position between the cutting mechanism and the adhesive paper roll and the flatness of the cutting surface can be achieved.

[0018] Secondly, this application provides another method for producing adhesive paper rolls, applicable to the adhesive paper roll production apparatus of the first aspect, the method comprising the following steps:

[0019] The paper tube forming mechanism winds the paper tube and drives the paper tube to move in a linear motion.

[0020] The adhesive paper winding mechanism winds adhesive paper onto the paper tube;

[0021] Obtain the movement speed of the adhesive paper roll;

[0022] Obtain the relative position of the adhesive paper roll and the cutting mechanism;

[0023] Adjust the speed of the drive mechanism to drive the cutting mechanism;

[0024] The cutting mechanism cuts the adhesive paper roll.

[0025] In conjunction with the second aspect, a further solution includes the step of adjusting the movement speed of the drive mechanism, which includes:

[0026] When the adhesive paper roll exceeds the relative position, the control device adjusts the drive mechanism parameters to increase the movement speed of the cutting mechanism;

[0027] When the adhesive paper roll has not reached the relative position, the control device adjusts the driving mechanism parameters to reduce the movement speed of the cutting mechanism or to stop the driving mechanism from driving the cutting mechanism.

[0028] When the adhesive paper roll is in the relative position, the control device adjusts the drive mechanism parameters so that the movement speed of the cutting mechanism is the same as the movement speed of the adhesive paper roll;

[0029] The step of the cutting mechanism cutting the adhesive paper roll includes: when the movement speed of the cutting mechanism is the same as the movement speed of the adhesive paper roll, the cutting mechanism cuts the adhesive paper roll.

[0030] By adopting the above technical solution, the sticky paper roll is driven by the forward driving force generated when the paper tube and sticky paper are wound. One end of the sticky paper roll rests against the front cutting mechanism, pushing the entire cutting mechanism forward to ensure that the length of each paper roll is constant during the cutting process. This results in two huge load forces on the entire paper roll, which can easily cause the kraft paper roll to burst. By using a drive mechanism to drive the cutting mechanism at the same speed, the movement speed of the cutting mechanism and the sticky paper roll is made the same, reducing the load on the sticky paper roll and improving the flatness of the cut. Through comparative testing, without increasing the thickness of the paper tube, existing sticky paper roll production equipment can produce 90-layer paper rolls (90 layers of sticky paper), while the equipment of this application can produce 110-layer paper rolls.

[0031] In summary, this application has at least one of the following beneficial technical effects:

[0032] 1. The adhesive paper roll production apparatus of this application can improve the flatness of the cut surface and enhance the quality of the product.

[0033] 2. The adhesive paper roll production apparatus of this application increases the production capacity of the original adhesive paper roll from 90 layers to 110 layers without increasing the thickness of the paper roll, thereby reducing costs and increasing output.

[0034] 3. The adhesive paper roll production device of this application has a high degree of automation, high production efficiency, and stable product quality.

[0035] 4. The production method of the adhesive paper roll of this application improves product quality and production efficiency. Attached Figure Description

[0036] Figure 1 This is a schematic diagram of the adhesive paper roll production apparatus of this application;

[0037] Figure 2 This is a schematic diagram of the cutting mechanism of this application;

[0038] Figure 3 This is a structural schematic diagram showing the details of the cutting mechanism in this application;

[0039] Figure 4 This is a structural schematic diagram of the universal wheel in its working state according to this application;

[0040] Figure 5 This is a structural schematic diagram of the universal wheel of this application.

[0041] Figure label:

[0042] 1. Paper tube forming mechanism; 2. Adhesive paper winding mechanism; 3. Cutting mechanism; 31. Cutting cabinet; 32. Cutting motor; 321. Transmission mechanism; 33. Swing cylinder; 331. Push rod; 332. Lever; 34. Cutting blade assembly; 341. Cutting shaft; 35. Guide rail; 36. Collection port; 37. Rotary motor; 371. Rotary roller; 38. Support plate; 381. Bracket; 4. Control device; 5. Drive mechanism; 6. Caster wheel; 61. Guide wheel assembly; 611. First guide wheel; 612. Second guide wheel; 62. Guide wheel frame; 7. Semi-finished product; 8. Photoelectric mechanism; 9. Encoder. Detailed Implementation

[0043] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0044] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0045] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; 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; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0046] In the description of this application, it should be understood that the terms "upper", "lower", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application 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, and therefore should not be construed as a limitation of this application.

[0047] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. Unless otherwise specified, the features in the following embodiments can be combined with each other. Example 1

[0048] Please see Figure 1This embodiment discloses a dust-adhesive paper roll production apparatus, which includes a paper tube forming mechanism 1, a dust-adhesive paper winding mechanism 2, a cutting mechanism 3, and a control device 4. The paper tube forming mechanism 1 is used for forming the paper tube and driving the paper tube to move linearly along the axis of the paper tube forming shaft. The dust-adhesive paper winding mechanism 2 is used to wind the dust-adhesive paper onto the paper tube to form a semi-finished dust-adhesive paper roll 7. The cutting mechanism 3 moves in the same direction as the paper tube. The cutting mechanism 3 is connected to a driving mechanism 5, which is connected to the control device 4 to control the movement speed of the cutting mechanism 3 when cutting the dust-adhesive paper roll, so that the movement speed of the cutting mechanism 3 is the same as the movement speed of the semi-finished dust-adhesive paper roll 7, ensuring that the cutting surface is neat and flat when the cutting mechanism 3 cuts the semi-finished dust-adhesive paper roll 7, and reducing the roughness caused by relative misalignment of the cutting surface. In this embodiment, the driving mechanism 5 is a servo motor.

[0049] A caster wheel 6 is provided between the winding mechanism and the cutting mechanism 3. The caster wheel 6 is used to support the adhesive paper roll semi-finished product 7 and rotate synchronously with the linear movement of the adhesive paper roll. The caster wheel 6 can also keep the adhesive paper roll semi-finished product 7 straight so that the adhesive paper roll semi-finished product 7 can enter the cutting mechanism 3 more smoothly and the cutting is more stable.

[0050] Please see Figure 2 and Figure 3 The cutting mechanism 3 includes a cutting cabinet 31, and a control device 4 is installed inside the cutting cabinet 31. The cutting cabinet 31 is equipped with a guide rail 35, a support plate 38, and a drive mechanism 5. A cutting motor 32, a swing motor, and a cutting blade assembly 34 are connected to the support plate 38. The support plate 38 is slidably connected to the guide rail 35. A lead screw mechanism connects the drive mechanism 5 to the support plate 38, and the drive mechanism 5 drives the support plate 38 to slide along the guide rail 35 by rotating the lead screw mechanism. A collection port 36 is provided at the end of the cutting cabinet 31 away from the drive mechanism 5. After the cut adhesive paper rolls fall, they enter the collection port 36 for centralized collection.

[0051] See Figure 3A bracket 381 is fixed on the support plate 38. Two parallel rotating rollers 371 are rotatably connected to the bracket 381. The rotating rollers 371 are driven to rotate by a rotary motor 37 mounted on the support plate 38. The semi-finished adhesive paper roll 7 is supported between the two rotating rollers 371 and rotates along with them. A lever 332 is also rotatably connected to the bracket 381. One end of the lever 332 is rotatably connected to a cutting shaft 341, and a cutting blade assembly 34 is fixedly connected to the cutting shaft 341. The other end of the lever 332 is rotatably connected to a push rod 331, and a cutting motor 32 is fixed to the lever 332. The cutting motor 32 drives the cutting shaft 341 to rotate via a transmission mechanism 321, which in turn drives the cutting blade assembly 34 to rotate, thus achieving cutting. The transmission mechanism 321 can be a chain drive, a belt drive, or a gear drive. The push rod 331 is connected to the swing cylinder 33. The drive end of the swing cylinder 33 is connected to the push rod 331. The swing cylinder 33 drives the push rod 331 to rotate the lever 332 around the bracket 381, thereby causing the cutting shaft 341 to move the cutting blade assembly 34 closer to or away from the adhesive paper roll semi-finished product 7. When the cutting blade assembly 34 approaches and abuts against the adhesive paper roll semi-finished product 7, the rotating cutting blade assembly 34 cuts the adhesive paper roll semi-finished product 7. With the action of the swing cylinder 33, the cutting blade assembly 34 passes through the adhesive paper and cuts through the paper tube. Because the rotary motor 37 drives the rotating roller 371 to rotate continuously, the cutting blade assembly 34 completes one revolution of cutting the adhesive paper roll semi-finished product 7, and evenly cuts the adhesive paper roll semi-finished product 7 into multiple segments of adhesive paper roll.

[0052] The cutting mechanism 3 is connected to a photoelectric mechanism 8, which is located on the side of the support 381. The photoelectric mechanism 8 is used to detect the relative position of the adhesive paper roll semi-finished product 7 and the cutting mechanism 3. The relative position is the positional relationship between the end face of the adhesive paper roll semi-finished product 7 and the side of the support 381. In this embodiment, the relative position is set to be that the end face of the adhesive paper roll semi-finished product 7 is flush with the side of the support 381. The photoelectric mechanism 8, the drive mechanism 5, the cutting motor 32, the swing cylinder 33, and the rotary motor 37 are all electrically connected to the control device 4. The photoelectric mechanism 8 is a photoelectric switch.

[0053] Please see Figure 4 The caster wheel 6 includes a guide wheel assembly 61 and a guide wheel frame 62. The guide wheel assembly 61 is rotatably connected to the end of the guide wheel frame 62 away from the ground. The semi-finished adhesive paper roll 7 is in contact with the guide wheel assembly 61. During its linear motion, the semi-finished adhesive paper roll 7 drives the guide wheel assembly 61 to rotate synchronously. An encoder 9 is connected to the guide wheel assembly 61. The encoder 9 is connected to the control device 4 and can convert the rotational speed of the guide wheel assembly 61 into the linear motion speed of the semi-finished adhesive paper roll 7, thereby obtaining the movement speed of the adhesive paper roll in real time.

[0054] Please see Figure 3 and Figure 4The control device 4 adjusts the parameters of the drive mechanism 5 based on the signal feedback from the photoelectric mechanism 8 and the encoder 9 to maintain the same movement speed between the drive mechanism 5 and the cutting mechanism 3. When the adhesive paper roll semi-finished product 7 exceeds the relative position, the control device 4 adjusts the parameters of the drive mechanism 5 to increase the movement speed of the cutting mechanism 3. When the adhesive paper roll semi-finished product 7 has not reached the relative position, the control device 4 adjusts the parameters of the drive mechanism 5 to decrease the movement speed of the cutting mechanism 3 or to stop the drive mechanism 5 from driving the cutting mechanism 3. When the adhesive paper roll semi-finished product 7 is in the relative position, the control device 4 adjusts the parameters of the drive mechanism 5 to make the movement speed of the cutting mechanism 3 the same as the movement speed of the adhesive paper roll and drives the swing cylinder 33 to actuate, causing the cutting blade assembly 34 to cut the adhesive paper roll semi-finished product 7.

[0055] Please see Figure 5 The guide wheel assembly 61 includes two opposing guide wheel rings composed of multiple first guide wheels 611 and multiple second guide wheels 612. The rotation axes of the opposing first guide wheels 611 and second guide wheels 612 are parallel and perpendicular to the rotation axis of the guide wheel assembly 61. This structure can both synchronize the rotation of the guide wheel assembly 61 with the linear movement of the adhesive paper roll semi-finished product 7, and ensure smooth axial rotation of the adhesive paper roll semi-finished product 7 during linear movement. Example 2

[0056] This embodiment provides a method for producing adhesive paper rolls, applicable to the adhesive paper roll production apparatus described in the above embodiments. The method includes the following steps:

[0057] The paper tube forming mechanism 1 winds the paper tube and drives the paper tube to make linear motion;

[0058] The adhesive paper winding mechanism 2 winds adhesive paper onto the paper tube;

[0059] Obtain the movement speed of the adhesive paper roll semi-finished product 7;

[0060] Obtain the relative position of the adhesive paper roll semi-finished product 7 and the cutting mechanism 3;

[0061] Adjust the speed of the drive mechanism 5 to drive the cutting mechanism 3;

[0062] The cutting mechanism 3 cuts the semi-finished adhesive paper roll 7;

[0063] Cutting mechanism 3 is reset.

[0064] The steps for adjusting the movement speed of the drive mechanism 5 include:

[0065] When the adhesive paper roll semi-finished product 7 exceeds the relative position, the control device 4 adjusts the parameters of the drive mechanism 5 to increase the movement speed of the cutting mechanism 3.

[0066] When the adhesive paper roll semi-finished product 7 has not reached the relative position, the control device 4 adjusts the parameters of the drive mechanism 5 to reduce the movement speed of the cutting mechanism 3 or to stop the drive mechanism 5 from driving the cutting mechanism 3.

[0067] When the adhesive paper roll semi-finished product 7 is in a relative position, the control device 4 adjusts the parameters of the drive mechanism 5 so that the movement speed of the cutting mechanism 3 is the same as the movement speed of the adhesive paper roll semi-finished product 7.

[0068] The cutting mechanism 3 cuts the adhesive paper roll semi-finished product 7 by: when the movement speed of the cutting mechanism 3 is the same as the movement speed of the adhesive paper roll semi-finished product 7, the cutting mechanism 3 cuts the adhesive paper roll semi-finished product 7.

[0069] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes, modifications, substitutions, and variations can be made to the present invention without departing from its spirit and scope, and all such changes, modifications, substitutions, and variations fall within the scope of the present invention as claimed.

Claims

1. A device for producing adhesive paper rolls, characterized in that, The device includes a paper tube forming mechanism, an adhesive paper winding mechanism, a cutting mechanism, and a control device. The paper tube forming mechanism is used for forming the paper tube and driving the paper tube to move linearly along the axis of the paper tube forming shaft. The adhesive paper winding mechanism is used for winding the adhesive paper onto the paper tube to form a semi-finished adhesive paper roll. The cutting mechanism moves in the same direction as the paper tube. The cutting mechanism is connected to a driving mechanism, and the driving mechanism is connected to the control device to control the speed of the cutting mechanism to be the same as the speed of the semi-finished adhesive paper roll when the cutting mechanism cuts the adhesive paper roll. A caster wheel is provided between the winding mechanism and the cutting mechanism. The caster wheel is used to support the adhesive paper roll and rotates synchronously with the linear movement of the adhesive paper roll. The omnidirectional wheel includes a guide wheel assembly and a guide wheel frame. The guide wheel assembly is rotatably connected to the end of the guide wheel frame away from the ground. The guide wheel assembly includes two opposing guide wheel rings composed of multiple first guide wheels and multiple second guide wheels. The rotation axes of the opposing first guide wheels and second guide wheels are parallel and perpendicular to the rotation axis of the guide wheel assembly. The universal wheel is equipped with an encoder, which is connected to the control device to obtain the movement speed of the adhesive paper roll in real time.

2. The adhesive paper roll production apparatus according to claim 1, characterized in that, The cutting mechanism is connected to a photoelectric mechanism, which is used to detect the relative position of the adhesive paper roll semi-finished product and the cutting mechanism.

3. The adhesive paper roll production apparatus according to claim 2, characterized in that, When the adhesive paper roll semi-finished product exceeds the relative position, the control device adjusts the drive mechanism parameters to increase the movement speed of the cutting mechanism.

4. The adhesive paper roll production apparatus according to claim 2, characterized in that, When the adhesive paper roll semi-finished product has not reached the relative position, the control device adjusts the drive mechanism parameters to reduce the movement speed of the cutting mechanism or to stop the drive mechanism from driving the cutting mechanism.

5. The adhesive paper roll production apparatus according to claim 2, characterized in that, When the adhesive paper roll semi-finished product is in the relative position, the control device adjusts the drive mechanism parameters so that the movement speed of the cutting mechanism is the same as the movement speed of the adhesive paper roll.

6. The adhesive paper roll production apparatus according to claim 1, characterized in that, The cutting mechanism is connected to a photoelectric mechanism, which is used to detect the relative position of the adhesive paper roll semi-finished product and the cutting mechanism. The control device adjusts the drive mechanism parameters according to the signal feedback from the photoelectric mechanism and the encoder to keep the movement speed of the cutting mechanism the same as the movement speed of the adhesive paper roll.

7. A method for producing adhesive paper rolls, characterized in that, The adhesive paper roll production apparatus according to any one of claims 1-6, the adhesive paper roll production method comprising the following steps: The paper tube forming mechanism winds the paper tube and drives the paper tube to move in a linear motion. The adhesive paper winding mechanism winds adhesive paper onto the paper tube; The speed at which the semi-finished adhesive paper roll is obtained; Obtain the relative position of the adhesive paper roll semi-finished product and the cutting mechanism; Adjust the speed of the drive mechanism to drive the cutting mechanism; The cutting mechanism cuts the semi-finished adhesive paper roll.

8. The method for producing adhesive paper rolls according to claim 7, characterized in that, The step of adjusting the motion speed of the drive mechanism includes: When the adhesive paper roll semi-finished product exceeds the relative position, the control device adjusts the drive mechanism parameters to increase the movement speed of the cutting mechanism; When the adhesive paper roll semi-finished product has not reached the relative position, the control device adjusts the driving mechanism parameters to reduce the movement speed of the cutting mechanism or to stop the driving mechanism from driving the cutting mechanism. When the adhesive paper roll semi-finished product is in the relative position, the control device adjusts the driving mechanism parameters so that the movement speed of the cutting mechanism is the same as the movement speed of the adhesive paper roll semi-finished product; The step of the cutting mechanism cutting the adhesive paper roll semi-finished product includes: when the movement speed of the cutting mechanism is the same as the movement speed of the adhesive paper roll semi-finished product, the cutting mechanism cuts the adhesive paper roll semi-finished product.