Glue tearing device

By designing a limiting shell and scraper assembly for the adhesive removal device, and utilizing hydraulic drive and flexible airflow circulation, efficient and synchronous removal of the adhesive film from the silver-coated plate was achieved. This solves the problem of time-consuming adhesive removal in existing technologies and improves processing efficiency and the applicability of adhesive removal.

CN120961482APending Publication Date: 2025-11-18JIANGXI CHENCHUANG ELECTRONIC MATERIALS CO LTD
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Patent Information

Application Number
CN202511134474.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-14
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

In the existing technology, the process of removing the adhesive film from silver-plated plates is time-consuming, which affects processing efficiency and cannot efficiently process silver-plated plates with different layers.

Method used

A glue-removing device was designed, including components such as a limiting shell, a collecting shell, a scraper, and a hydraulic rod. The scraper is driven by hydraulic pressure to move downwards synchronously, so as to remove the glue film on both sides of the silver-adhesive plate at the same time. A flexible bellows and a drive roller are used to accelerate the removal of the glue film. Combined with a flexible silicone tapping plate and airflow circulation, the glue removal efficiency is improved.

Benefits of technology

It achieves efficient synchronous adhesive removal without the need for material feeding, and is suitable for silver-plated boards with adhesive film on one or both sides, improving processing efficiency and the versatility of adhesive removal, and simplifying the operation process.

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Abstract

The invention discloses a glue tearing device, and relates to the technical field of electronic manufacturing, the glue tearing device comprises a limiting shell, a collecting shell is slidably connected in the limiting shell, a guide shell is fixedly connected to the top of the collecting shell, and a plurality of first scrapers are fixedly connected to the top of the guide shell at equal intervals; according to the device, the sliding limiting shell clamps the material frame body between the two ends of the [-shaped frame as a whole, and after a second hydraulic rod is started to drive the guide shell to be aligned with silver dipping plates of different layers, two third hydraulic rods can be started to drive the material frame body to be close to each other through a clamping plate, so that a first scraper and a second scraper are arranged on the two sides of the silver dipping plates; a first hydraulic rod is started to drive a first clamping plate to be matched with a second clamping plate to clamp the upper end of the silver-stained plate, then a second hydraulic rod is started to drive a plurality of first scrapers and second scrapers to move downwards synchronously, adhesive films on the two sides of the silver-stained plate can be torn off synchronously, the silver-stained plate does not need to be discharged in the process, the adhesive removing efficiency is higher, and the machining efficiency of the silver-stained plate is improved conveniently; the use is convenient.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of silver dipping, in particular to a glue tearing device. BACKGROUND

[0002] The silver dipping plate is a tool used in the process of dipping silver into the magnetic core, which is provided with a plurality of accommodating cavities, and an adhesive is arranged in each accommodating cavity. The magnetic core is fixed in the accommodating cavity through the adhesive to facilitate the silver dipping operation. The silver-dipped magnetic core is then subjected to subsequent processing. During production, storage and transportation, the adhesive film can effectively block impurities such as dust, particulate matter and oil stains, thereby preventing the silver-dipping surface of the silver dipping plate from being contaminated, so as to ensure the quality and performance of the silver dipping of the magnetic core. After the silver dipping of the magnetic core is completed, the adhesive film needs to be removed.

[0003] The common storage methods of the silver dipping plate include tray storage, rack storage and box storage. The rack storage is to hang the silver dipping plate on the rack through hooks or clamps. In this way, the space can be fully utilized, and the friction between the plate and the rack can be avoided. However, when the adhesive film on the silver dipping plate is removed, the silver dipping plate needs to be unloaded, the adhesive is removed, and then the silver dipping plate is reloaded and transported to the area where processing is required, which is time-consuming. SUMMARY

[0004] The purpose of the present application is to provide a glue tearing device to solve the problems in the background art.

[0005] To solve the above technical problems, the present application provides a glue tearing device, which comprises,

[0006] A limiting shell is internally connected with a collecting shell through sliding, the top of the collecting shell is fixedly connected with a guide shell, the top of the guide shell is fixedly connected with a plurality of scraper one at equal intervals, and the top of the guide shell is connected with a plurality of scraper two through sliding at equal intervals.

[0007] Further, the top of the guide shell is fixedly connected with a positioning plate, one side of the positioning plate is fixedly connected with a plurality of connecting rods one at equal intervals, one end of the connecting rod one is fixedly sleeved with a clamping plate one, and the clamping plate one is fixedly connected with the adjacent scraper one.

[0008] Further, the top of the positioning plate is connected with a sliding rod through sliding, one side of the sliding rod is fixedly connected with a plurality of connecting rods two at equal intervals, one end of the connecting rod two is fixedly sleeved with a clamping plate two, the clamping plate two is fixedly connected with the adjacent scraper two, the top of the guide shell is fixedly connected with a hydraulic rod one, and the output end of the hydraulic rod one is fixedly connected with the adjacent sliding rod.

[0009] Further, the front side of the collecting shell is connected with two flap doors through a hinge, a sliding sleeve is fixedly sleeved on the outer wall of the collecting shell, the sliding sleeve is slidably connected with the limiting shell, two second hydraulic rods are fixedly connected on the inner bottom surface of the limiting shell, and the output end of the second hydraulic rod is fixedly connected with the collecting shell.

[0010] Further, the rear side of the limiting shell is provided with a type frame, a T-shaped block is slidably connected on the inner wall of the type frame, the T-shaped block is fixedly connected with the limiting shell, a first screw rod is rotatably connected in the type frame, the first screw rod penetrates through the T-shaped block and is screw-connected with the T-shaped block, one end of the type frame is fixedly connected with a motor, and the output end of the motor is fixedly connected with the first screw rod.

[0011] Further, the two sides of the type frame are movably provided with clamping plates, the two sides of the type frame are fixedly connected with third hydraulic rods, the output end of the third hydraulic rod is fixedly connected with a fixed plate, the fixed plate is slidably connected with the adjacent clamping plate, one side of the fixed plate is rotatably connected with a second screw rod, and the second screw rod penetrates through the clamping plate and is screw-connected with the clamping plate.

[0012] Further, the top of the collecting shell is provided with an inlet corresponding to the end of the scraper one.

[0013] A driving roller is rotatably arranged in the collecting shell, a plurality of beating plates are arranged on the outer side surface of the driving roller, and the beating plates are operable to beat the adhesive film.

[0014] A rack is fixedly arranged on the inner side wall of the limiting shell, the rack is parallel to the second hydraulic rod, gears are fixedly arranged at the two ends of the driving roller, and the gears are engaged with the rack.

[0015] Further, the beating plates are made of flexible silica gel material.

[0016] Further, rotary vanes are fixedly arranged at the two ends of the driving roller, and the blades of the rotary vanes are parallel to the rotation shaft of the driving roller.

[0017] A flow guide plate is arranged at the lower end in the collecting shell, and the flow guide plate is hingedly arranged at the flap door.

[0018] Further, a flexible air bellow is arranged in the limiting shell, one end of the flexible air bellow is sealingly connected with the lower end of the collecting shell, the other end of the flexible air bellow is sealingly connected with the lower end of the limiting shell, the second hydraulic rod is located in the flexible air bellow, the air inlet of the flexible air bellow is located at the lower end of the limiting shell, the air outlet of the flexible air bellow is located at the lower end of the collecting shell, the air outlet of the flexible air bellow is in communication with the inside of the collecting shell, and the air inlet and the air outlet of the flexible air bellow are provided with one-way valves.

[0019] The end face array of the deflector plate is provided with a plurality of air holes, the inside of the collecting shell is provided with a transverse partition plate, the transverse partition plate is located between the driving roller and the deflector plate, when the deflector plate is turned up to contact with the transverse partition plate, the air holes are directed to the flap door.

[0020] Compared with the prior art, the present application has the following advantages:

[0021] The sliding limiting shell integrally clamps the rack body between the two ends of the U-shaped frame. After the two hydraulic rods drive the guide shell to align the silver-coated plates of different layers, the two hydraulic rods are started to drive the rack body to move close through the clamping plates, so that the scraper one and the scraper two are placed on both sides of the silver-coated plate. The hydraulic rod one drives the clamping plate one to clamp the upper end of the silver-coated plate in cooperation with the clamping plate two. Then, the hydraulic rod two drives the plurality of scrapers one and scrapers two to move downward synchronously, so that the adhesive films on both sides of the silver-coated plate are synchronously removed. In the process, the silver-coated plate does not need to be unloaded, the adhesive removal efficiency is higher, and the processing efficiency of the silver-coated plate is improved. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0023] Figure 2 It is a schematic diagram of the side cross-sectional structure of the limiting shell in the present application;

[0024] Figure 3 It is a schematic diagram of the structure of the scraper one in the present application;

[0025] Figure 4 It is a schematic diagram of the side cross-sectional structure of the U-shaped frame in the present application;

[0026] Figure 5 It is a schematic diagram of the cross-sectional structure of the clamping plate in the present application;

[0027] Figure 6 It is a cross-sectional view of the limiting shell in the present application;

[0028] Figure 7 It is a cross-sectional view of the limiting shell in the present application.

[0029] In the figure: 10, limit shell; 101, roller; 11, guide shell; 111, scraper one; 112, scraper two; 113, positioning plate; 114, connecting rod one; 115, clamping plate one; 116, sliding rod; 117, connecting rod two; 118, clamping plate two; 119, hydraulic rod one; 12, collection shell; 121, flap door; 122, sliding sleeve; 123, hydraulic rod two; 13, U-shaped frame; 131, T-shaped block; 132, lead screw one; 133, motor; 134, clamping plate; 135, hydraulic rod three; 136, fixed plate; 137, lead screw two; 20, rack body; 21, feed inlet; 22, drive roller; 23, beating plate; 24, rack; 25, gear; 26, rotating fan blade; 27, deflector; 28, flexible bellows; 29, air hole; 30, transverse partition. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0031] Please refer to Figures 1-5 The present application provides a technical solution: a glue tearing device, comprising a limit shell 10, a collection shell 12 is slidably connected inside the limit shell 10, a guide shell 11 is fixedly connected to the top of the collection shell 12, a plurality of scraper ones 111 are equidistantly fixedly connected to the top of the guide shell 11, and a plurality of scraper twos 112 are equidistantly slidably connected to the top of the guide shell 11.

[0032] In specific implementation, when the limiting shell 10 and the rack body 20 are butted, the sliding limiting shell 10 clamps the rack body 20 between the two ends of the U-shaped frame 13, and then the two screw rods two 137 drive the clamping plates 134 to slide and clamp the rear side of the rack body 20. In the subsequent process, after the hydraulic rod two 123 drives the guide shell 11 to align the silver-coated plates of different layers, the two hydraulic rods three 135 can be started to drive the rack body 20 to move close through the clamping plates 134, so that the scraper one 111 and the scraper two 112 are located on both sides of the silver-coated plate. The hydraulic rod one 119 drives the sliding rod 116 to drive the clamping plate two 118 to move, so that the clamping plate one 115 cooperates with the clamping plate two 118 to clamp the upper end of the silver-coated plate and does not contact the adhesive film, so that the scraper one 111 and the scraper two 112 are located at the upper ends of the two adhesive films, and the tips of the scraper one 111 and the scraper two 112 contact the outer wall of the silver-coated plate. Then, the hydraulic rod two 123 drives the plurality of scrapers one 111 and scrapers two 112 to move downward synchronously, which can synchronously tear off the adhesive films on both sides of the silver-coated plate. Part of the silver-coated plate has an adhesive film on one side, and part of the silver-coated plate has adhesive films on both sides. The present scheme can synchronously remove the adhesive films of the above two kinds of silver-coated plates, and has stronger universality. The adhesive film scraped by the scraper one 111 cooperates with the scraper two 112 is guided to the inside of the collecting shell 12 through the inclined section of the scraper one 111 for collection. The collected adhesive film can be uniformly taken out by opening the flap door 121.

[0033] Referring to Figures 1-3 The top of the guide shell 11 is fixedly connected with a positioning plate 113. A plurality of connecting rods one 114 are fixedly connected on one side of the positioning plate 113 at equal intervals. One end of the connecting rod one 114 is fixedly sleeved with a clamping plate one 115, and the clamping plate one 115 is fixedly connected with the adjacent scraper one 111.

[0034] The top of the positioning plate 113 is slidably connected with a sliding rod 116. A plurality of connecting rods two 117 are fixedly connected on one side of the sliding rod 116 at equal intervals. One end of the connecting rod two 117 is fixedly sleeved with a clamping plate two 118, and the clamping plate two 118 is fixedly connected with the adjacent scraper two 112. The top of the guide shell 11 is fixedly connected with a hydraulic rod one 119, and the output end of the hydraulic rod one 119 is fixedly connected with the adjacent sliding rod 116.

[0035] In specific implementation, the plurality of scrapers 111 and the scrapers 112 are staggered, after the guide shell 11 is adjusted to the specified height, the moving rack body 20 is moved so that the silver plate is located between adjacent scrapers 111 and scrapers 112, the hydraulic rod 119 is started to drive the sliding rod 116 to move the clamping plate 118, so that the clamping plate 115 cooperates with the clamping plate 118 to clamp the upper end of the silver plate and does not contact the adhesive film, so that the scrapers 111 and the scrapers 112 are located at the upper ends of the two adhesive films respectively, and the tips of the scrapers 111 and the scrapers 112 are in contact with the outer wall of the silver plate, then the hydraulic rod 123 is started to drive the plurality of scrapers 111 and the scrapers 112 to move downward synchronously, so that the adhesive films on both sides of the silver plate are synchronously removed, part of the silver plate has the adhesive film on one side only, and part of the silver plate has the adhesive film on both sides, and the present scheme can synchronously remove the adhesive film for the above two kinds of silver plates, and has stronger universality.

[0036] Referring to Figure 2 The front side of the collecting shell 12 is hingedly connected with two flap doors 121, a sliding sleeve 122 is fixedly sleeved on the outer wall of the collecting shell 12, the sliding sleeve 122 is slidably connected with the limiting shell 10, two hydraulic rods 123 are fixedly connected to the inner bottom surface of the limiting shell 10, and output ends of the hydraulic rods 123 are fixedly connected with the collecting shell 12.

[0037] In specific implementation, the sliding of the collecting shell 12 and the components thereon in the vertical direction is limited by the limiting of the limiting shell 10 on the sliding sleeve 122, the two hydraulic rods 123 are started to drive the collecting shell 12 to move up and down for regulation and control, the adhesive films scraped by the scrapers 111 and the scrapers 112 are guided to the inside of the collecting shell 12 through the inclined sections of the scrapers 111 for collection, and the collected adhesive films can be uniformly taken out by opening the flap doors 121.

[0038] Referring to Figures 2-5 A plurality of rollers 101 are rotatably connected to the bottom of the limiting shell 10.

[0039] The rear side of the limiting shell 10 is provided with a U-shaped frame 13, a T-shaped block 131 is slidably connected to the inner wall of the U-shaped frame 13, the T-shaped block 131 is fixedly connected with the limiting shell 10, a lead screw 132 is rotatably connected to the inside of the U-shaped frame 13, the lead screw 132 penetrates through and is screw-connected with the T-shaped block 131, and a motor 133 is fixedly connected to one end of the U-shaped frame 13.

[0040] Clamping plates 134 are movably arranged on the two sides of the U-shaped frame 13, hydraulic rods 135 are fixedly connected to the two sides of the U-shaped frame 13, fixed plates 136 are fixedly connected to the output ends of the hydraulic rods 135, the fixed plates 136 are slidably connected with adjacent clamping plates 134, a lead screw 137 is rotatably connected to one side of the fixed plate 136, and the lead screw 137 penetrates through and is screw-connected with the clamping plate 134.

[0041] Specifically, when the limiting shell 10 and the rack body 20 are docked, the sliding limiting shell 10 as a whole clamps the rack body 20 between the two ends of the Z-shaped frame 13, and then the two screw rods two 137 are rotated to drive the clamping plates 134 to slide and clamp the rear side of the rack body 20. In the subsequent process, after the guide shell 11 is driven by the hydraulic rod two 123 to align the silver-coated plates of different layers, the two hydraulic rods three 135 can be started to drive the rack body 20 to move close, so that the scraper one 111 and the scraper two 112 are placed on both sides of the silver-coated plate.

[0042] Working principle: when the limiting shell 10 and the rack body 20 are docked, the sliding limiting shell 10 as a whole clamps the rack body 20 between the two ends of the Z-shaped frame 13, and then the two screw rods two 137 are rotated to drive the clamping plates 134 to slide and clamp the rear side of the rack body 20. In the subsequent process, after the guide shell 11 is driven by the hydraulic rod two 123 to align the silver-coated plates of different layers, the two hydraulic rods three 135 can be started to drive the rack body 20 to move close, so that the scraper one 111 and the scraper two 112 are placed on both sides of the silver-coated plate, the hydraulic rod one 119 is started to drive the sliding rod 116 to drive the clamping plate two 118 to move, so that the clamping plate one 115 cooperates with the clamping plate two 118 to clamp the upper end of the silver-coated plate and does not contact the adhesive film, so that the scraper one 111 and the scraper two 112 are respectively located at the upper end of the two adhesive films, and the tips of the scraper one 111 and the scraper two 112 are in contact with the outer wall of the silver-coated plate. Then the multiple scrapers one 111 and the scrapers two 112 are driven by the hydraulic rod two 123 to move downward synchronously, which can synchronously tear off the adhesive films on both sides of the silver-coated plate. Some silver-coated plates have adhesive films on one side, and some silver-coated plates have adhesive films on both sides. The present scheme can synchronously remove the adhesive films of the above two kinds of silver-coated plates, and has stronger universality. The adhesive film scraped off by the scraper one 111 cooperates with the scraper two 112 and is guided to the inside of the collecting shell 12 through the inclined section of the scraper one 111 for collection. The collected adhesive film can be uniformly taken out by opening the flap door 121.

[0043] Preferably, as shown in Figure 6 , Figure 7 , the top of the collecting shell 12 is provided with an inlet 21 corresponding to the end of the scraper one 111, for receiving the scraped adhesive film;

[0044] A horizontally rotating drive roller 22 is rotatably arranged inside the collecting shell 12. A plurality of beating plates 23 are arrayed on the outer side of the drive roller 22. The beating plates 23 can be operated to beat the adhesive film. The contact surface between the beating plate 23 and the adhesive film is designed as an arc-shaped structure to enhance the beating effect and prevent the adhesive film from being damaged by the beating plate 23. The beating plate 23 is made of flexible silica gel material.

[0045] The internal side wall of the limiting shell 10 is fixedly provided with a rack 24, which is parallel to the hydraulic rod two 123. The two ends of the drive roller 22 are fixedly provided with a gear 25, which is engaged with the rack 24 to form a transmission mechanism.

[0046] After the adhesive film is torn off by the scraper one 111 and the scraper two 112, the adhesive film enters the collection shell 12 through the feed port 21. When the hydraulic rod two 123 pushes the collection shell 12 to move up and down, the drive roller 22 rotates synchronously through the gear 25-rack 24 linkage. The beating plate 23 beats the adhesive film flexibly under the elastic effect of the silica gel material, disperses the adhesive force of the adhesive film by the buffering characteristics of the flexible silica gel, accelerates the adhesive film to separate from the silver-coated plate, and falls to the bottom of the collection shell 12.

[0047] The two ends of the drive roller 22 are fixedly provided with rotating vanes 26, the blades of which are parallel to the rotating shaft of the drive roller 22. The material of the rotating vanes 26 is lightweight polypropylene plastic.

[0048] The lower end of the collection shell 12 is provided with a flow guide plate 27, which is hingedly arranged at the flap door 121. The end surface of the flow guide plate 27 is arrayed with a plurality of air holes 29 with a diameter of 5-8 mm. The air holes 29 are uniformly distributed. The collection shell 12 is provided with a transverse partition plate 30 between the drive roller 22 and the flow guide plate 27. When the flow guide plate 27 is turned up to contact the transverse partition plate 30, the air holes 29 are directed towards the flap door 121.

[0049] As shown in Figure 6 , Figure 7 The inside of the limiting shell 10 is provided with a flexible air bellow 28, which is similar to a telescopic corrugated pipe structure and is made of pressure-resistant rubber. One end of the flexible air bellow 28 is sealingly connected to the lower end of the collection shell 12. The other end of the flexible air bellow 28 is sealingly connected to the lower end of the limiting shell 10. The hydraulic rod two 123 is located inside the flexible air bellow 28. The air inlet of the flexible air bellow 28 is located at the lower end of the limiting shell 10. The air outlet of the flexible air bellow 28 is located at the lower end of the collection shell 12. The air outlet of the flexible air bellow 28 communicates with the inside of the collection shell 12. The air inlet and the air outlet of the flexible air bellow 28 are both provided with a one-way valve.

[0050] A vertical groove 31 is arranged on the internal side wall of the limiting shell 10. The rack 24 is embedded in the groove 31 to prevent interference between the flexible air bellow 28 and the rack 24 during the up-and-down movement of the flexible air bellow 28.

[0051] During the lifting process of the hydraulic rod 123 driving the collecting shell 12, the flexible air bellow 28 generates dynamic air pressure changes due to compression or stretching, combined with the rotation of the driving roller 22 driving the rotating fan blade 26 to generate auxiliary air flow, forming stable air flow circulation; after the adhesive film is torn off by the scraper 1 and the scraper 2, the one-way valve of the flexible air bellow 28 controls the air flow direction, so that the air flow is sprayed towards the flap door 121 through the air hole 29 of the guide plate 27, accelerating the adhesive film to slide along the flap door 121 and collect; the blade design of the rotating fan blade 26 further strengthens the air flow disturbance, preventing the adhesive film from adhering to the inner wall of the collecting shell 12. The overturning action of the guide plate 27 is automatically adjusted by air pressure or gravity, ensuring that the air hole 29 is always aligned with the flap door 121, improving the adhesive film discharge efficiency.

[0052] The above description is only an embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation, or direct or indirect application in other related technical fields, which is based on the content of the specification and drawings of the present application, is also included in the patent protection scope of the present application.

Claims

1. A glue-tearing device, characterized in that, include, A limiting shell (10) is provided, and a collecting shell (12) is slidably connected inside the limiting shell (10). A guide shell (11) is fixedly connected to the top of the collecting shell (12). A plurality of scrapers (111) are fixedly connected at equal intervals to the top of the guide shell (11). A plurality of scrapers (112) are slidably connected at equal intervals to the top of the guide shell (11).

2. The adhesive-removing device as described in claim 1, characterized in that: The top of the guide shell (11) is fixedly connected to a positioning plate (113), and a plurality of connecting rods (114) are fixedly connected at equal intervals on one side of the positioning plate (113). One end of the connecting rod (114) is fixedly sleeved with a clamping plate (115), and the clamping plate (115) is fixedly connected to the adjacent scraper (111).

3. The adhesive-removing device as described in claim 2, characterized in that: The top of the positioning plate (113) is slidably connected to a slide rod (116), and a plurality of connecting rods (117) are fixedly connected at equal intervals on one side of the slide rod (116). One end of the connecting rod (117) is fixedly sleeved with a clamping plate (118), and the clamping plate (118) is fixedly connected to the adjacent scraper (112). The top of the guide shell (11) is fixedly connected to a hydraulic rod (119), and the output end of the hydraulic rod (119) is fixedly connected to the adjacent slide rod (116).

4. The adhesive-removing device as described in claim 1, characterized in that: The front side of the collecting shell (12) is rotatably connected to two flap doors (121) by hinges. A sliding sleeve (122) is fixedly sleeved on the outer wall of the collecting shell (12). The sliding sleeve (122) is slidably connected to the limiting shell (10). Two hydraulic rods (123) are fixedly connected to the inner bottom surface of the limiting shell (10). The output end of the hydraulic rods (123) is fixedly connected to the collecting shell (12).

5. The adhesive-removing device as described in claim 4, characterized in that: A U-shaped frame (13) is provided on the rear side of the limiting shell (10). A T-shaped block (131) is slidably connected to the inner wall of the U-shaped frame (13). The T-shaped block (131) is fixedly connected to the limiting shell (10). A lead screw (132) is rotatably connected inside the U-shaped frame (13). The lead screw (132) passes through the T-shaped block (131) and is screwed to it. A motor (133) is fixedly connected to one end of the U-shaped frame (13). The output end of the motor (133) is fixedly connected to the lead screw (132).

6. The adhesive-removing device as described in claim 5, characterized in that: Both sides of the U-shaped frame (13) are movably provided with clamping plates (134), and both sides of the U-shaped frame (13) are fixedly connected with hydraulic rods three (135). The output end of the hydraulic rods three (135) is fixedly connected with a fixing plate (136). The fixing plate (136) is slidably connected to the adjacent clamping plate (134). One side of the fixing plate (136) is rotatably connected with a lead screw two (137). The lead screw two (137) passes through the clamping plate (134) and is screwed to it.

7. The adhesive-removing device as described in claim 6, characterized in that: The top of the collecting shell (12) is provided with a feed inlet (21) corresponding to the end of the scraper (111); The collection shell (12) is rotatably equipped with a drive roller (22), and the outer side of the drive roller (22) is arrayed with multiple tapping plates (23), which can operably tap the adhesive film; A rack (24) is fixedly provided on the inner side wall of the limiting shell (10). The rack (24) is parallel to the hydraulic rod (123). Gears (25) are fixedly provided at both ends of the drive roller (22). The gears (25) mesh with the rack (24).

8. The adhesive-removing device as described in claim 7, characterized in that: The patting plate (23) is made of flexible silicone.

9. The adhesive-removing device as described in claim 7, characterized in that: Rotating fan blades (26) are fixedly provided at both ends of the drive roller (22), and the blades of the rotating fan blades (26) are arranged parallel to the rotating shaft of the drive roller (22); A guide plate (27) is provided at the lower end of the inside of the collection shell (12), and the guide plate (27) is hinged to the flap door (121).

10. The adhesive-removing device as described in claim 9, characterized in that: The limiting shell (10) is provided with a flexible air box (28). One end of the flexible air box (28) is sealed to the lower end of the collecting shell (12), and the other end of the flexible air box (28) is sealed to the lower end of the limiting shell (10). The hydraulic rod (123) is located inside the flexible air box (28). The air inlet of the flexible air box (28) is located at the lower end of the limiting shell (10), and the air outlet of the flexible air box (28) is located at the lower end of the collecting shell (12). The air outlet of the flexible air box (28) is connected to the inside of the collecting shell (12). Both the air inlet and the air outlet of the flexible air box (28) are provided with one-way valves. The end face array of the guide plate (27) is provided with a plurality of vent holes (29). The inside of the collection shell (12) is provided with a transverse partition (30). The transverse partition (30) is located between the drive roller (22) and the guide plate (27). When the guide plate (27) is flipped upward to contact the transverse partition (30), the vent holes (29) face the flap door (121).