Special-shaped sleeve cutting device for tipping paper

By designing a special-shaped tipping paper cutting device, and utilizing a combination of ball screws and cylinders, the problem of tipping paper being difficult to fall naturally inside the special-shaped cutter was solved, achieving automated ejection and improving cutting efficiency and safety.

CN224074545UActive Publication Date: 2026-04-03ZHEJIANG BENKE TESHUI PINE PAPER CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

During the process of cutting tipping paper with irregular-shaped cutters, the high friction makes it difficult for the tipping paper inside the cutter to fall naturally, affecting the cutting efficiency. It needs to be manually removed, which reduces production efficiency.

Method used

A device for cutting irregularly shaped tipping paper was designed. By using a combination of ball screw, cylinder and plumb rod, the tipping paper in the irregularly shaped cutter is automatically ejected, avoiding manual operation and improving cutting efficiency.

Benefits of technology

The automated device enables the automatic ejection of tipping paper from the irregular-shaped cutter, improving cutting efficiency, reducing manual intervention, and enhancing production efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a tipping paper special-shaped sleeve cutting device, and relates to the technical field of tipping paper sleeve cutting, the tipping paper special-shaped sleeve cutting device comprises a vertical plate, an operation table, a sleeve cutting groove, a side stop lever, a stop block, a fixed rod, a ball screw, a motor, a movable seat, a first air cylinder, a top plate, a vertical rod, a special-shaped cutter, a through hole, a vertical rod, a mounting plate, a second air cylinder and a through groove. The output end of the second air cylinder can keep cut tipping paper in the special-shaped cutter all the time, after the special-shaped cutter is completely separated from the tipping paper placed on the operation table, the special-shaped cutter continues to move upwards along with the special-shaped cutter, when a vertical rod is about to make contact with the tipping paper in the special-shaped cutter, the special-shaped cutter continues to move upwards, and the tipping paper in the special-shaped cutter is cut off. The output end of the second air cylinder is kept still, then the tipping paper in the special-shaped cutter is ejected out through the vertical rod, and the tipping paper ejected out by water is clamped by the output end of the second air cylinder and the vertical rod, so that the tipping paper of the special-shaped cutter does not need to be taken out manually, and the sleeving and cutting efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of tipping paper cutting technology, specifically a tipping paper irregular shape cutting device. Background Technology

[0002] During the processing of tipping paper, for decorative purposes, the desired material needs to be cut from the whole sheet of tipping paper using a special-shaped cutter. Due to the use of the special-shaped cutter, the friction between the special-shaped cutter and the tipping paper cut out is relatively large, causing the tipping paper inside the special-shaped cutter to not fall naturally under the action of gravity. It is necessary to manually remove the tipping paper inside the special-shaped cutter, which affects the cutting efficiency. Utility Model Content

[0003] The purpose of this invention is to provide a cork paper irregular shape cutting device, which aims to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: The cork paper shaped cutting device includes two upright plates, an operating table on each upright plate, a plurality of cutting grooves on the operating table, a side stop bar and a plurality of stop blocks on the operating table, a fixed rod and a ball screw on the operating table, a motor for driving the ball screw to rotate on one side of the operating table, and a movable seat, which is slidably connected to the fixed rod and threadedly connected to the ball screw. A first cylinder is mounted on the movable seat, a top plate is mounted on the output end of the first cylinder, and uprights are mounted on the lower surfaces of both ends of the top plate. The uprights pass through the movable seat and are slidably connected to it. The device also includes a shaped cutter, which is fixedly connected to the uprights and has a through hole. A vertical rod is mounted on the lower surface of the movable seat, and a mounting plate is mounted on the movable seat. A second cylinder is mounted on the mounting plate and is located below the operating table. A through groove is provided at the cutting groove of the operating table.

[0005] Preferably, the outer surface of the irregular cutter is provided with an extension plate, and also includes an annular pressure plate. The upper surface of the pressure plate is provided with a plurality of guide rods. The guide rods pass through the extension plate and are slidably connected to the extension plate. An anti-detachment block is provided at the upper end of the guide rod. A spring is sleeved on the guide rod, and the spring is located between the extension plate and the pressure plate.

[0006] Preferably, a support plate is provided on one side of the mounting plate, and a material picking plate is provided on the support plate. The material picking plate is slidably connected to the support plate, and a through groove is provided at the end of the material picking plate near the operating table.

[0007] Preferably, limit plates are provided at both ends of the material receiving plate.

[0008] Preferably, the upper end of the material receiving plate is provided with a handle.

[0009] The beneficial effects of this utility model are:

[0010] When in use, this device keeps the cut tip paper inside the shaped cutter via the output end of the second cylinder. After the shaped cutter is completely separated from the tip paper placed on the operating table, as the shaped cutter continues to move upward, the shaped cutter continues to move upward when the plumb rod is about to contact the tip paper inside the shaped cutter. The output end of the second cylinder remains stationary, and then the plumb rod pushes the tip paper out of the shaped cutter. The pushed-out tip paper is then clamped by the output end of the second cylinder and the plumb rod, thus eliminating the need to manually remove the tip paper from the shaped cutter and improving the cutting efficiency. Attached Figure Description

[0011] Figure 1 This is a structural schematic diagram of a specific embodiment of the present invention.

[0012] Figure 2 This is a schematic diagram of the internal structure of the control panel.

[0013] Figure 3 This is a front view of a specific embodiment of the present utility model.

[0014] Figure 4 This is a structural diagram of the mounting plate.

[0015] Figure 5 This is a schematic diagram of a slotted structure.

[0016] In the diagram: 1. Vertical plate; 2. Operating table; 3. Tinder paper; 4. Cutting groove; 5. Side stop bar; 6. Stop block; 7. Fixing rod; 8. Ball screw; 9. Motor; 10. Movable seat; 11. First cylinder; 12. Top plate; 13. Vertical rod; 14. Irregular cutter; 15. Vertical rod; 16. Mounting plate; 17. Second cylinder; 18. Through groove; 19. Outer extension plate; 20. Pressure plate; 21. Guide rod; 22. Anti-detachment block; 23. Spring; 24. Support plate; 25. Material picking plate; 26. Limiting plate; 27. Handle. Detailed Implementation

[0017] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings.

[0018] like Figure 1-5As shown, a special-shaped cutting device for cork paper includes two upright plates 1, with an operating table 2 on each plate 1. The operating table 2 has several cutting slots 4, side stops 5, and several stops 6. A fixed rod 7 and a ball screw 8 are also mounted on the operating table 2. A motor 9 for driving the ball screw 8 is located on one side of the operating table 2. The device also includes a movable seat 10, which is slidably connected to the fixed rod 7 and threadedly connected to the ball screw 8. A first cylinder 11 is mounted on the movable seat 10. The output end of cylinder 11 is provided with a top plate 12, and the lower surfaces of both ends of the top plate 12 are provided with uprights 13. The uprights 13 pass through the movable seat 10 and are slidably connected to the movable seat 10. It also includes a shaped cutter 14. The uprights 13 are fixedly connected to the shaped cutter 14. The shaped cutter 14 has a through hole. The lower surface of the movable seat 10 is provided with a vertical rod 15. The movable seat 10 is provided with a mounting plate 16. The mounting plate 16 is provided with a second cylinder 17. The second cylinder 17 is located below the operating table 2. The operating table 2 has a through groove 18 at the sleeve cutting groove 4.

[0019] When cutting the tipping paper 3, multiple sheets of tipping paper 3 are first neatly stacked on the operating table 2. At this time, the irregular-shaped cutter 14 is not above the position where the tipping paper 3 is placed, but outside the position where the tipping paper 3 is placed, so as to avoid the presence of the irregular-shaped cutter 14 affecting the stacking of the tipping paper 3. When stacking the tipping paper 3, it is necessary to keep the adjacent sides of the tipping paper 3 in contact with the side stop bar 5 and the stop block 6 respectively. After the stacking of the tipping paper 3 is completed, the motor 9 is started. The motor 9 drives the ball screw 8 to rotate. Due to the threaded connection between the movable seat 10 and the ball screw 8, and the restriction of the fixed rod 7, the movable seat 10 can move linearly along the fixed rod 7. When the movable seat 10 drives the irregular-shaped cutter 14 to rotate, the motor 9 starts to rotate. When the cutter 14 moves directly above the first cutting groove 4, the motor 9 stops operating and then the first cylinder 11 is activated. The output end of the first cylinder 11 drives the top plate 12 to move downward, and also drives the two uprights 13 and the irregular cutter 14 to move downward. During the downward movement, the irregular cutter 14 can cut the tipping paper 3 located below. During the cutting process, the operator can apply downward pressure to the stacked tipping paper 3 with a hand tool to prevent the tipping paper 3 from changing position due to compression deformation during the cutting process. If the position of the tipping paper 3 changes, the tipping paper 3 can be neatly stacked again after the irregular cutter 14 is raised.

[0020] Before the irregular cutter 14 is lifted after completing the cut of the tipping paper 3, the output ends of the first cylinder 11 and the second cylinder 17 are extended simultaneously. After the output end of the first cylinder 11 extends, it will drive the irregular cutter 14 to move upward. At the same time, the output end of the second cylinder 17 will push the tipping paper 3 inside the irregular cutter 14 to move upward with the irregular cutter 14, so as to prevent the tipping paper 3 inside the irregular cutter 14 from falling off during the upward movement of the irregular cutter 14. During this process, the operator can use a hand tool to continuously press down the tipping paper 3 on the operating table 2 to prevent the tipping paper 3 that has been cut off from moving upward with the tipping paper 3 on the operating table 2.

[0021] When the irregular cutter 14 is completely detached from the tipping paper 3 on the operating table 2 and rises to a certain height, the output end of the second cylinder 17 remains stationary. At this time, the lower end of the plumb rod 15 also contacts the tipping paper 3 inside the irregular cutter 14 and works with the output end of the second cylinder 17 to squeeze the tipping paper 3. Subsequently, the irregular cutter 14 continues to rise. During the rising process, the plumb rod 15 can push out the tipping paper 3 inside the irregular cutter 14. The pushed-out tipping paper 3 is located between the output end of the plumb rod 15 and the second cylinder 17, thereby realizing the separation of the tipping paper 3 from the irregular cutter 14. The operator only needs to hold the tipping paper 3 first and then control the output end of the second cylinder 17 to reset to remove the tipping paper located between the plumb rod 15 and the second cylinder 17.

[0022] When cutting the tipping paper 3 at the next position, the motor 9 drives the ball screw 8 to continue rotating, so that the shaped cutter 14 can move to the next position. At the same time, the cutting groove 4 is larger than the shaped cutter 14, so that even if the shaped cutter 14 cannot move precisely to the top of the cutting groove 4, within the allowable error range, the shaped cutter 14 can still smoothly enter the cutting groove 4 and extend downward by at least 0.5mm, and the surface of the shaped cutter 14 will not contact the cutting groove 4, so that all the tipping paper 3 can be cut by the shaped cutter 14.

[0023] Furthermore, the outer surface of the irregular cutter 14 is provided with an extension plate 19, and also includes an annular pressure plate 20. The upper surface of the pressure plate 20 is provided with a plurality of guide rods 21. The guide rods 21 pass through the extension plate 19 and are slidably connected to the extension plate 19. The upper end of the guide rod 21 is provided with an anti-detachment block 22. A spring 23 is sleeved on the guide rod 21. The spring 23 is located between the extension plate 19 and the pressure plate 20.

[0024] As the irregular cutter 14 moves downward, the pressure plate 20 also moves downward. At the same time, the pressure plate 20 will first come into contact with the tipping paper 3 and squeeze the tipping paper 3 through the spring 23. At this time, the operator does not need to apply downward pressure to the tipping paper 3 separately. After the irregular cutter 14 completely disengages from the tipping paper 3, the pressure plate 20 will move away from the tipping paper 3. When the irregular cutter 14 cuts the tipping paper 3, the tipping paper 3 will not be deformed and thus will not shift. Therefore, it is less necessary to repeatedly adjust the tipping paper 3 placed on the operating table 2.

[0025] As the pressure plate 20 moves downward, the position of the stop block 6 can be optimized to prevent the pressure plate 20 from contacting the stop block 6 during the downward movement, thus ensuring that the pressure plate 20 can press the cork paper 3 on the operating table 2.

[0026] A crossbeam is provided between the two upright plates 1, which can support the mounting plate 16 to ensure the stability of the mounting plate 16 and the second cylinder 17.

[0027] Furthermore, a support plate 24 is provided on one side of the mounting plate 16, and a material-receiving plate 25 is provided on the support plate 24. The material-receiving plate 25 is slidably connected to the support plate 24. A through groove 18 is opened at the end of the material-receiving plate 25 near the operating table 2. When the output end of the second cylinder 17 pushes the tipped paper 3 into the irregular cutter 14, and the vertical rod 15 has not yet pushed the tipped paper 3 out of the irregular cutter 14, the material-receiving plate 25 can be pushed along the support plate 24 towards the tipped paper 3, and the second cylinder 17 can be activated. The output end enters the through groove 18. At this time, the output end of the second cylinder 17 can retract and reset. Then, the irregular cutter 14 moves upward under the action of the first cylinder 11. The vertical rod 15 pushes out the water-filled paper 3 in the irregular cutter 14. The pushed-out water-filled paper 3 falls onto the picking plate 25. The picking plate 25 is pushed outward from the operating table 2, and the water-filled paper 3 is moved out from under the interesting 14. Thus, the staff does not need to catch the falling water-filled paper 3 by hand, thereby improving the safety of the work.

[0028] Furthermore, limit plates 26 are provided at both ends of the material taking plate 25. The limit plates 26 can prevent the material taking plate 25 from slipping off the support plate 24. At the same time, the limit plate 26 on one end of the through groove 18 of the material taking plate 25 is in an open state, which does not affect the output end of the second cylinder 17 from entering the through groove 18.

[0029] Furthermore, a handle 27 is provided at the upper end of the material picking plate 25 to facilitate the control of the movement of the material picking plate 25.

[0030] In the description of this utility model, 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 utility model based on the specific circumstances.

Claims

1. A device for cutting irregular shapes of tipping paper, characterized in that, The device includes two upright plates, each with an operating platform. Each operating platform has several sets of cutting grooves, side stops, and several blocks. A fixed rod and a ball screw are also mounted on the operating platform. A motor for driving the ball screw is located on one side of the operating platform. The device also includes a movable seat, which is slidably connected to the fixed rod and threadedly connected to the ball screw. A first cylinder is mounted on the movable seat, with a top plate at its output end. Uprights are mounted on the lower surfaces of both ends of the top plate, passing through and slidably connecting to the movable seat. The device also includes a shaped cutter, which is fixedly connected to the uprights and has through holes. A vertical rod is mounted on the lower surface of the movable seat, and a mounting plate is mounted on the movable seat. A second cylinder is mounted on the mounting plate, located below the operating platform. Through slots are formed at the cutting grooves on the operating platform.

2. The cork paper profile cutting device according to claim 1, characterized in that, The outer surface of the irregular cutter is provided with an extension plate and also includes an annular pressure plate. The upper surface of the pressure plate is provided with a plurality of guide rods. The guide rods pass through the extension plate and are slidably connected to the extension plate. An anti-detachment block is provided at the upper end of the guide rod. A spring is sleeved on the guide rod and the spring is located between the extension plate and the pressure plate.

3. The cork paper profile cutting device according to claim 1, characterized in that, A support plate is provided on one side of the mounting plate, and a material picking plate is provided on the support plate. The material picking plate is slidably connected to the support plate, and a through groove is provided at the end of the material picking plate near the operating table.

4. The cork paper profile cutting device according to claim 3, characterized in that, Limiting plates are provided at both ends of the material receiving plate.

5. The cork paper profile cutting device according to claim 3, characterized in that, The material receiving plate is equipped with a handle at its upper end.