An automatic positioning feeding adhesive tape paper tube cutting device

CN224809644UActive Publication Date: 2026-09-29ZHEJIANG SANLING NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202522241985.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2026-09-29
Estimated Expiration
2035-10-23

AI Technical Summary

Technical Problem

胶带纸管的制造通常是先卷制成连续的长管,再根据实际需求切割成单根所需长度,胶带纸管的生产通常是批量性的,若采用手动送料,工人需逐根将纸管放置到切割位置,且需等待切割完成后再进行下一次操作,节奏慢、间隔长,难以匹配切割装置的高速切割能力,切割装置的核心部件属于高危区域,手动送料时,工人需近距离将纸管推送至切割点,手部易意外接触切割部件,导致划伤、割伤等安全事故,因此需要提出一种自动定位送料的胶带纸管切割装置

Benefits of technology

本实用新型通过设置上料框至L型挡板二便于自动对纸管进行上料,并通过电机四至推板将纸管推送至切割区域并通过调节框至内撑杆将纸管夹持固定住,并通过电机二带动转盘转动从而带动纸管进行转动,从而可以配合切割机构对纸管进行切割,通过上述结构可实现连续化输送,可以将纸管依次、有序地送入切割区域,大幅缩短单根纸管的加工间隔,显著提升整体生产效率。

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Abstract

The utility model relates to adhesive tape paper tube cutting technical field especially, relate to a kind of automatic positioning feeding's adhesive tape paper tube cutting device.The technical scheme of it includes: left workstation and right workstation, the top surface of left workstation is provided with cutting mechanism, the bottom surface of left workstation is provided with motor one, the output end of motor one extends to the top surface of left workstation and is provided with vertical plate.The utility model is by setting up material loading frame to L-shaped baffle two to facilitate automatic paper tube loading, and by motor four to push plate, paper tube is pushed to cutting area and is clamped and fixed by adjusting frame to inner bracing bar, and by motor two drives carousel rotation to drive paper tube rotation, to cooperate cutting mechanism to cut paper tube, by the above structure, continuous conveying can be realized, paper tube can be sequentially and orderly sent into cutting area, the processing interval of single paper tube is greatly shortened, and the overall production efficiency is significantly improved.
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Description

Technical Field

[0001] This utility model relates to the field of tape and paper tube cutting technology, and in particular to an automatic positioning and feeding tape and paper tube cutting device. Background Technology

[0002] Adhesive tape tubes are tubular structures made of paper materials. They are the core components for the winding and carrying of adhesive tape. They are mostly hollow cylinders, and their specifications are designed according to the type of adhesive tape and the usage scenario. The core function of adhesive tape tubes is to serve as the "support carrier" of adhesive tape. Through their own tubular structure, they enable the orderly winding, stable storage, convenient transportation and efficient use of adhesive tape. They are an indispensable supporting component for adhesive tape products. The manufacturing of adhesive tape tubes typically involves first rolling them into continuous long tubes, and then cutting them into individual lengths according to actual needs. Adhesive tape tube production is usually done in batches. If manual feeding is used, workers need to place each tube at the cutting position and wait for each cut to be completed before proceeding to the next operation. This is slow, with long intervals, and is difficult to match the high-speed cutting capabilities of the cutting device. The core components of the cutting device are in high-risk areas. When feeding manually, workers need to push the tubes to the cutting point at close range, and their hands are prone to accidental contact with the cutting components, leading to safety accidents such as scratches and cuts. Therefore, an automatic positioning and feeding adhesive tape tube cutting device is needed. Utility Model Content

[0003] The purpose of this invention is to address the problems existing in the background technology by proposing an automatic positioning and feeding tape paper tube cutting device.

[0004] The technical solution of this utility model: An automatic positioning and feeding tape and paper tube cutting device includes a left worktable and a right worktable. A cutting mechanism is provided on the top surface of the left worktable, and a motor is provided on the bottom surface of the left worktable. The output end of the motor extends through to the top surface of the left worktable and is mounted on a vertical plate. A motor is provided on the left side of the vertical plate, and the output end of the motor extends through to the right side of the vertical plate and is mounted on a turntable. An adjustment frame is provided on the right side of the turntable, and a motor is provided on the front side of the adjustment frame. A bidirectional screw is provided on the front side of the adjustment frame, and the output end of the motor extends through to the interior of the adjustment frame. Both ends of the bidirectional screw are threadedly connected to threaded blocks. Each threaded block has an inner support rod on its right side. A sliding groove is provided through the upper and lower parts of the right worktable. A motor is provided on the right side of the right worktable, and the output of the motor is... The end extends through the interior of the slide groove and is equipped with a one-way screw. The outer ring of the right end of the one-way screw is threadedly connected to a threaded block two. The top surface of the threaded block two is equipped with a push plate. A feeding frame is provided on the rear side of the right worktable. Fixed plate one and fixed plate two are provided on the right side of the feeding frame. An L-shaped plate is provided on the bottom surface of fixed plate two. Motor five is provided on the bottom surface of L-shaped plate. The output end of motor five extends through the interior of L-shaped plate and is equipped with a large gear. A small gear is rotatably provided on the bottom surface of fixed plate two. A reciprocating screw is provided on the inner ring of the small gear. The top end of the reciprocating screw extends through the space between fixed plate one and fixed plate two and is threadedly connected to a reciprocating block. A connecting plate is provided on the front side of the reciprocating block. L-shaped baffle one and L-shaped baffle two are provided on the left side of the connecting plate. Both L-shaped baffle one and L-shaped baffle two are slidably connected to the feeding frame.

[0005] Preferably, the top surface of the left worktable is lower than that of the right worktable, and the top surface of the right worktable is an arc-shaped concave surface.

[0006] Preferably, the cutting mechanism includes an electric guide rail, a slide table is slidably arranged at the middle end of the electric guide rail, an L-shaped support frame is arranged on the top surface of the slide table, a cylinder push rod is arranged on the top surface of the L-shaped support frame, the output end of the cylinder push rod extends through to the bottom surface of the L-shaped support frame and is provided with a U-shaped frame, a motor is arranged on the left side of the U-shaped frame, and the output end of the motor extends through to the interior of the U-shaped frame and is provided with a cutting blade.

[0007] Preferably, the top surface of the U-shaped frame is provided with two guide rods, the top end of each guide rod extending through to the top surface of the L-shaped support frame and slidably connected to the L-shaped support frame.

[0008] Preferably, the left end of the one-way screw is rotatably connected to the right side of the left worktable.

[0009] Preferably, the feeding frame is inclined.

[0010] Preferably, the large gear and the small gear are meshed together.

[0011] Compared with the prior art, the present invention has the following beneficial technical effects: This invention facilitates automatic feeding of paper tubes by setting a feeding frame to an L-shaped baffle. A motor pushes the paper tube to the cutting area, and an adjusting frame clamps and fixes the paper tube to the inner support rod. The motor drives the turntable to rotate, thereby rotating the paper tube. This allows the paper tube to be cut in conjunction with the cutting mechanism. The above structure enables continuous conveying, allowing paper tubes to be fed into the cutting area sequentially and orderly, significantly shortening the processing interval of a single paper tube and significantly improving overall production efficiency. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a partial cross-sectional structural diagram of the present invention; Figure 3 This is a schematic diagram of a portion of the structure of this utility model; Figure 4 This is a cross-sectional schematic diagram of a portion of the feeding frame in this utility model.

[0013] Reference numerals: 1. Left worktable; 2. Right worktable; 3. Cutting mechanism; 301. Electric guide rail; 302. Slide table; 303. L-shaped support frame; 304. Cylinder push rod; 305. U-shaped frame; 306. Motor 6; 307. Cutting blade; 4. Motor 1; 5. Vertical plate; 6. Motor 2; 7. Turntable; 8. Adjustment frame; 9. Motor 3; 10. Bidirectional screw; 11. Threaded block 1; 12. Inner support rod; 13. Motor 4; 14. Unidirectional screw; 15. Threaded block 2; 16. Push plate; 17. Feeding frame; 18. Fixed plate 1; 19. Fixed plate 2; 20. L-shaped plate; 21. Motor 5; 22. Large gear; 23. Small gear; 24. Reciprocating screw; 25. Reciprocating block; 26. Connecting plate; 27. L-shaped baffle 1; 28. L-shaped baffle 2; 29. ​​Guide rod. Detailed Implementation

[0014] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments. Example

[0015] like Figures 1 to 4As shown, the present invention proposes an automatic positioning and feeding tape paper tube cutting device, including a left worktable 1 and a right worktable 2. The top surface of the left worktable 1 is lower than that of the right worktable 2, which facilitates pushing the paper tube on the surface of the right worktable 2 to the outside of the two inner support rods 12 on the left worktable 1. The top surface of the right worktable 2 is an arc-shaped concave surface, which facilitates limiting the position of the paper tube. A cutting mechanism 3 is provided on the top surface of the left worktable 1. The cutting mechanism 3 includes an electric guide rail 301. The bottom surface of the electric guide rail 301 is flush with the left worktable 1. The top surface of platform 1 is fixedly connected. A slide table 302 is slidably installed at the middle of the electric guide rail 301. An L-shaped support frame 303 is installed on the top surface of the slide table 302. The top surface of the slide table 302 is fixedly connected to the bottom surface of the L-shaped support frame 303. A cylinder push rod 304 is installed on the top surface of the L-shaped support frame 303. The top surface of the L-shaped support frame 303 is fixedly connected to the bottom surface of the cylinder push rod 304. The output end of the cylinder push rod 304 extends through to the bottom surface of the L-shaped support frame 303 and is equipped with a U-shaped frame 305. The output end of the cylinder push rod 304 is slidably connected to the L-shaped support frame 303, and the output end of the cylinder push rod 304 is fixedly connected to the top surface of the U-shaped frame 305. Two guide rods 29 are provided on the top surface of the U-shaped frame 305, and the bottom end of the guide rods 29 is fixedly connected to the top surface of the U-shaped support frame 303. The top end of each guide rod 29 extends through to the top surface of the L-shaped support frame 303 and is slidably connected to the L-shaped support frame 303, facilitating the guidance and limitation of the running trajectory of the U-shaped frame 305 via the guide rods 29. In position, a motor 306 is provided on the left side of the U-shaped frame 305. The left side of the U-shaped frame 305 is fixedly connected to the right side of the motor 306. The output end of the motor 306 extends through into the interior of the U-shaped frame 305 and is provided with a cutting blade 307. The output end of the motor 306 is rotatably connected to the U-shaped frame 305. The output end of the motor 306 is fixedly connected to the cutting blade 307. A motor 4 is provided on the bottom surface of the left worktable 1. The bottom surface of the left worktable 1 is fixedly connected to the top surface of the motor 4. The output end of motor 4 extends through to the top surface of the left worktable 1 and is provided with a vertical plate 5. The output end of motor 4 is rotatably connected to the left worktable 1 and is fixedly connected to the vertical plate 5. Motor 6 is provided on the left side of the vertical plate 5 and is fixedly connected to the right side of motor 6. The output end of motor 6 extends through to the right side of the vertical plate 5 and is provided with a turntable 7. The output end of motor 6 is rotatably connected to the vertical plate 5 and is fixedly connected to the left side of the turntable 7. An adjustment frame 8 is provided on the right side of the turntable 7 and is fixedly connected to the left side of the adjustment frame 8. Motor 9 is provided on the front side of the adjustment frame 8 and is fixedly connected to the rear side of motor 9. The output end of motor 9 extends through to the interior of the adjustment frame 8 and is provided with a bidirectional screw 10. The output end of motor 9 is rotatably connected to the adjustment frame 8 and is fixedly connected to the bidirectional screw 10. Threaded blocks 11 are threadedly connected to the outer rings of both ends of the bidirectional screw 10. Each threaded block 11 has an inner support rod 12 on its right side. The threaded block 11 is fixedly connected to the inner support rod 12. A sliding groove is provided through the upper and lower parts of the right worktable 2. A motor 4 13 is provided on the right side of the right worktable 2. The right side of the right worktable 2 is fixedly connected to the left side of the motor 4 13. The output end of the motor 4 13 extends through the interior of the sliding groove and is provided with a one-way screw 14. The output end of the motor 4 13 is fixedly connected to the one-way screw 14. The left end of the one-way screw 14 is connected to the right side of the left worktable 1. The screw 14 is rotatably connected to facilitate support and fixation. The outer ring of the right end of the screw 14 is threaded with a threaded block 15. A push plate 16 is provided on the top surface of the threaded block 15. The top surface of the threaded block 15 is fixedly connected to the bottom surface of the push plate 16. By moving the push plate 16 to the left, the paper tube located on the top surface of the right worktable 2 can be pushed to the outside of the two inner support rods 12. A feeding frame 17 is provided on the rear side of the right worktable 2. The rear side of the right worktable 2 is fixedly connected to the front side of the feeding frame 17. The feeding frame 17 is inclined to facilitate the rapid feeding of paper tubes onto the surface of the right worktable 2 using gravitational potential energy. A fixing plate 18 and a fixing plate 29 are located on the right side of the feeding frame 17, and the feeding frame 17 is fixedly connected to both fixing plates 18 and 29. An L-shaped plate 20 is located on the bottom surface of fixing plate 29, and the bottom surface of fixing plate 29 is fixedly connected to the top surface of L-shaped plate 20. A motor 5 21 is located on the bottom surface of L-shaped plate 20, and L-shaped plate 20 is fixedly connected to motor 5 21. The output end of motor 21 extends through the interior of L-shaped plate 20 and is equipped with a large gear 22. The output end of motor 5 21 is rotatably connected to L-shaped plate 20, and the output end of motor 5 21 is fixedly connected to the large gear 22. A small gear 23 is rotatably provided on the bottom surface of fixed plate 2 19. The large gear 22 and the small gear 23 are meshed, so that the rotation of the large gear 22 can drive the small gear 23 to rotate. A reciprocating screw 24 is provided on the inner ring of the small gear 23, and the inner ring of the small gear 23 is fixedly connected to the reciprocating screw 24. The top end of the reciprocating screw 24 extends through and between the first fixed plate 18 and the second fixed plate 19, and is threadedly connected to a reciprocating block 25. Rotation of the reciprocating screw 24 drives the reciprocating block 25 to reciprocate along the screw 24. A connecting plate 26 is provided on the front side of the reciprocating block 25, and the front side of the reciprocating block 25 is fixedly connected to the rear side of the connecting plate 26. An L-shaped baffle 1 27 and an L-shaped baffle 28 are provided on the left side of the connecting plate 26, and the left side of the connecting plate 26 is fixedly connected to both the L-shaped baffle 1 27 and the L-shaped baffle 28. The reciprocating block... 25 The reciprocating movement of the reciprocating screw 24 can drive the connecting plate 26 to reciprocate. Both L-shaped baffle 1 27 and L-shaped baffle 28 are slidably connected to the feeding frame 17. When L-shaped baffle 1 27 moves upward, it can cause the lowest paper tube inside the feeding frame 17 to roll down to the top surface of the right worktable 2. At the same time, L-shaped baffle 28 moves upward to prevent the second paper tube from rolling down. Then, the downward movement of L-shaped baffle 1 27 and L-shaped baffle 28 will cause the second paper tube to roll down to the lowest point and limit the paper tube through L-shaped baffle 1 27.

[0016] In this embodiment, when using this device, the paper tube first needs to be inserted into the feeding frame 17 so that the L-shaped baffle 27 limits the lowest paper tube. Then, when feeding, motor 21 needs to be run. The output of motor 21 drives the large gear 22 to rotate. The rotation of the large gear 22 drives the small gear 23 to rotate. The rotation of the small gear 23 drives the reciprocating screw 24 to rotate. The rotation of the reciprocating screw 24 drives the reciprocating block 25 to move upward along the reciprocating screw 24, thereby driving the connecting plate 26 to move upward. The upward movement of the connecting plate 26 drives the L-shaped baffle 27 and the L-shaped baffle 28 to move upward, which can release the limitation on the lowest paper tube and cause the L-shaped baffle 28 to move upward to limit the second paper tube, preventing two from rolling down at once. The lowest paper tube will follow the right worktable 2. The concave surface slides down to its lowest point, and then motor 413 is activated. The output of motor 413 drives the unidirectional screw 14 to rotate, which causes the threaded block 215 to move the push plate 16 to the left. This pushes the paper tube on the surface of the right worktable 2 to the top surface of the left worktable 1, so that the paper tube fits on the outside of the two inner support rods 12. Then motor 39 is activated, which drives the bidirectional screw 10 to rotate, so that the two threaded blocks 11 move closer or further apart along the bidirectional screw 10, thus supporting and fixing the paper tube from the inside. Then motor 26 drives the turntable 7 to rotate, which in turn drives the paper tube to rotate. Then the cutting mechanism 3 is activated, which moves the cutting blade 307 left and right to cut the paper tube. After the cutting is completed, motor 4 drives the vertical plate 5 to rotate, so that the cut paper tube segment can be unloaded.

[0017] The above-described specific embodiments are merely preferred embodiments of the present invention. Based on the technical solution of the present invention and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above-described specific embodiments.

Claims

1. An automatic positioning and feeding tape paper tube cutting device, comprising a left worktable (1) and a right worktable (2), characterized in that: The top surface of the left worktable (1) is provided with a cutting mechanism (3), and the bottom surface of the left worktable (1) is provided with a motor (4). The output end of the motor (4) extends through to the top surface of the left worktable (1) and is provided with a vertical plate (5). The left side of the vertical plate (5) is provided with a motor (6). The output end of the motor (6) extends through to the right side of the vertical plate (5) and is provided with a turntable (7). The right side of the turntable (7) is provided with an adjustment frame (8). The front side of the adjustment frame (8) is provided with a motor (9). The output end of the ) extends through the interior of the adjustment frame (8) and is provided with a bidirectional screw (10). Both ends of the bidirectional screw (10) are threaded with threaded blocks (11). Each threaded block (11) is provided with an inner support rod (12) on its right side. The right worktable (2) is provided with a sliding groove extending through its upper and lower parts. The right worktable (2) is provided with a motor (13) on its right side. The output end of the motor (13) extends through the interior of the sliding groove and is provided with a unidirectional screw (14). The right end of the unidirectional screw (14) is threaded with a threaded rod. A threaded block two (15) is connected, and a push plate (16) is provided on the top surface of the threaded block two (15). A loading frame (17) is provided on the rear side of the right worktable (2). A fixing plate one (18) and a fixing plate two (19) are provided on the right side of the loading frame (17). An L-shaped plate (20) is provided on the bottom surface of the fixing plate two (19). A motor five (21) is provided on the bottom surface of the L-shaped plate (20). The output end of the motor five (21) extends through into the interior of the L-shaped plate (20) and is provided with a large gear (22). The fixing plate two (19) The bottom surface of the feed frame (17) is provided with a small gear (23) for rotation. The inner ring of the small gear (23) is provided with a reciprocating screw (24). The top end of the reciprocating screw (24) extends through to the space between the first fixed plate (18) and the second fixed plate (19) and is threadedly connected to a reciprocating block (25). The front side of the reciprocating block (25) is provided with a connecting plate (26). The left side of the connecting plate (26) is provided with an L-shaped baffle (27) and an L-shaped baffle (28). Both the L-shaped baffle (27) and the L-shaped baffle (28) are slidably connected to the feed frame (17).

2. The tape and paper tube cutting device with automatic positioning and feeding according to claim 1, characterized in that, The top surface of the left worktable (1) is lower than that of the right worktable (2), and the top surface of the right worktable (2) is an arc-shaped concave surface.

3. The tape and paper tube cutting device with automatic positioning and feeding according to claim 1, characterized in that, The cutting mechanism (3) includes an electric guide rail (301), a slide table (302) is slidably arranged at the middle end of the electric guide rail (301), an L-shaped support frame (303) is arranged on the top surface of the slide table (302), a cylinder push rod (304) is arranged on the top surface of the L-shaped support frame (303), the output end of the cylinder push rod (304) extends through to the bottom surface of the L-shaped support frame (303) and is provided with a U-shaped frame (305), a motor six (306) is arranged on the left side of the U-shaped frame (305), the output end of the motor six (306) extends through to the interior of the U-shaped frame (305) and is provided with a cutting blade (307).

4. The tape and paper tube cutting device with automatic positioning and feeding according to claim 3, characterized in that, The top surface of the U-shaped frame (305) is provided with two guide rods (29), the top end of each guide rod (29) extends through to the top surface of the L-shaped support frame (303) and is slidably connected to the L-shaped support frame (303).

5. The tape and paper tube cutting device with automatic positioning and feeding according to claim 1, characterized in that, The left end of the one-way screw (14) is rotatably connected to the right side of the left worktable (1).

6. The tape and paper tube cutting device with automatic positioning and feeding according to claim 1, characterized in that, The feeding frame (17) is set at an angle.

7. The tape and paper tube cutting device with automatic positioning and feeding according to claim 1, characterized in that, The large gear (22) and the small gear (23) are meshed together.