Die cutting machine with automatic waste stripping and collecting function

By using a three-point positioning layout of limiting guide rollers, positioning rollers, and collecting rollers, the angle of the peeling component is adaptively adjusted, and the mechanical friction of the transfer and separation component is combined with airflow blowing, which solves the problems of incomplete peeling and collection of waste materials and environmental pollution in die-cutting equipment, and achieves efficient and stable waste material treatment.

CN122275102APending Publication Date: 2026-06-26KUNSHAN FUYUANDA ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
KUNSHAN FUYUANDA ELECTRONICS CO LTD
Filing Date
2026-05-15
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

Existing die-cutting equipment suffers from problems such as incomplete waste removal, easy adhesion and blockage during collection, difficulty in adapting to substrates of different thicknesses, and waste scattering and polluting the environment, which affect production efficiency and product quality.

Method used

The system employs a three-point positioning layout consisting of a limiting guide roller, a positioning roller, and a collecting roller. The angle of the stripping component is adaptively adjusted, and the mechanical friction of the transfer and separation component is combined with airflow blowing. The anti-stick coating design enables precise stripping, stable conveying, and efficient collection of waste materials.

Benefits of technology

It significantly improves the success rate of waste stripping, avoids equipment blockage, maintains production continuity, ensures product quality, and reduces environmental pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a die-cutting machine with automatic waste peeling and collection functions, relating to the field of double-sided tape die-cutting waste removal technology. It includes: a die-cutting device; a connecting slide rail and a fixed panel fixed to the rear side; a feeding roller, movably mounted on the connecting slide rail and located on the input side of the die-cutting device; an output guide surface fixed to the top of the output end of the die-cutting device; a waste roller, movably mounted on the connecting slide rail and located on the output side of the die-cutting device; a guide collection device, located on the output side of the die-cutting device and connected to the fixed panel on the rear side; a peeling device, located on the side of the guide collection device away from the die-cutting device; and a waste collection trough fixed diagonally below the peeling device. This invention can adapt to different specifications of double-sided tape, achieving fully automated processing of waste from automatic lifting and precise peeling to stable conveying and thorough collection, significantly improving the efficiency, yield, and continuity of die-cutting production.
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Description

Technical Field

[0001] This invention relates to the field of double-sided tape die-cutting waste removal technology, and more specifically, to a die-cutting machine with automatic waste peeling and collection function. Background Technology

[0002] In the production of double-sided tape, the removal and collection of waste generated after the die-cutting process has always been a critical link affecting production efficiency and product quality. Existing die-cutting equipment faces the following main technical problems in waste handling: First, waste removal is incomplete, especially with blocky waste easily remaining on the double-sided tape surface, affecting product yield; second, waste collection is prone to adhesion and blockage, leading to frequent equipment shutdowns for cleaning; third, traditional peeling mechanisms often use a fixed-angle design, making it difficult to adapt to double-sided tape products of different thicknesses and substrates, requiring manual adjustments when changing product specifications, resulting in low efficiency; fourth, waste is easily scattered during transportation, polluting the working environment and increasing the difficulty of subsequent cleaning. Furthermore, the peeling and conveying mechanisms of existing equipment are often separate designs, allowing waste to easily fall during handover, leading to incomplete collection. Therefore, it is necessary to provide a die-cutting machine with automatic waste peeling and collection functions to solve the problems mentioned in the background. Summary of the Invention

[0003] To achieve the above objectives, the present invention provides the following technical solution: a die-cutting machine with automatic waste stripping and collection function, comprising:

[0004] Die-cutting device; a connecting slide rail and a fixed panel are fixed on the rear side;

[0005] The feeding roller is movably mounted on the connecting slide rail and is located on the input side of the die-cutting device;

[0006] The output guide surface is fixed at the top of the output end of the die-cutting device;

[0007] The waste roller is movably mounted on the connecting slide rail and is located on the output side of the die-cutting device;

[0008] A guide collection device is installed on the output side of the die-cutting device and connected to the fixed panel on the rear side;

[0009] The peeling device is located on the side of the guide collection device away from the die-cutting device;

[0010] The waste collection trough is fixed at an angle below the stripping device.

[0011] Furthermore, preferably, the guiding collection device includes:

[0012] The limiting guide roller is located on the side of the output guide surface and consists of a fixed roller and a movable roller. The fixed roller is located at the bottom and is supported by a support column; the movable roller is located at the top, fits against the fixed roller, and is fixed to the fixed panel.

[0013] The positioning roller is located to the lower right of the limiting guide roller, adjacent to the peeling device;

[0014] The collecting roller, located to the lower left of the positioning roller, collects the finished double-sided adhesive tape.

[0015] Furthermore, preferably, the stripping device includes:

[0016] Two support columns are symmetrically distributed front and back, vertically positioned, and located to the right of the guide collection device;

[0017] The lifting slider is slidably positioned on the outside of the support column;

[0018] The connecting shaft is vertically positioned, with both ends rotatably connected to the lifting slider.

[0019] The peeling component is fixed at one end to the connecting shaft and at the other end to the guide collection device;

[0020] The transfer separation component is fixed between the support columns, and its left side is in contact with the peeling component.

[0021] Furthermore, preferably, the stripping assembly includes:

[0022] The connecting frame is an open frame, with the side corresponding to the open side fixed to the connecting shaft;

[0023] Two fixing blocks are symmetrically distributed at the front and back, and are fixed to the open end of the connecting frame;

[0024] The connecting seat is arranged longitudinally and fixed between the fixing blocks, and the connecting seat is provided with multiple spaced grooves;

[0025] Multiple peeling components are arranged longitudinally and are movably mounted on the groove of the connecting seat. The side of the peeling component corresponding to the guiding and collecting device is inclined.

[0026] Furthermore, preferably, the transfer separation component includes:

[0027] Two fixed shafts are symmetrically distributed front and back and fixed to the inner side of the support column, and the fixed shafts are hollow structures;

[0028] A connecting circular surface is fixed inside a fixed shaft, and the fixed shaft is connected to the connecting circular surface;

[0029] A fixed arc body is fixed between the connecting circular surfaces and corresponds to the peeling component;

[0030] The rotating separation mechanism has its end rotatably mounted inside a fixed shaft on one side, with its outer wall fitting against the inner wall of the fixed arc body;

[0031] The fixed airflow mechanism is fixed at one end inside the fixed shaft on the other side, and its outer wall is in contact with the inner wall of the rotating separation mechanism.

[0032] Furthermore, preferably, the rotating separation mechanism includes:

[0033] The rotating shaft is rotatably mounted within a fixed shaft on one side.

[0034] The hollow cylindrical body is fixedly connected to the rotating shaft at one end and rotatably connected to the connecting circular surface at the other end, and is located between the fixed arc body and the fixed airflow mechanism.

[0035] Furthermore, as a preferred embodiment, a plurality of micro cones are fixed on the outer surface of the hollowed-out cylinder, and the micro cones are staggered with the hollowed-out area.

[0036] Furthermore, preferably, the fixed airflow mechanism includes:

[0037] A pressure shaft is fixed inside a fixed shaft on the other side, corresponding to the rotating shaft, and the pressure shaft is connected to an external gas pressurization pump;

[0038] The guide arc body has one end of its inner arc fixedly connected to the pressure shaft, and the other end is in contact with the connecting surface of the rotating shaft and the hollow cylinder.

[0039] Compared with the prior art, the beneficial effects of the present invention are:

[0040] In this invention, by using the three-point positioning layout of the limiting guide roller, positioning roller and collecting roller in the guiding collection device, the double-sided tape is kept flat during the conveying process and forms a reverse pull-back angle, so that the edge of the block waste is slightly raised, which significantly reduces the working difficulty of the peeling device and improves the peeling success rate.

[0041] By connecting the two ends of the connecting shaft to the lifting slider and setting the lifting slider to move up and down along the support column, the peeling component can automatically adjust the cutting angle according to the product thickness and adhesive properties when it comes into contact with the double-sided adhesive. This achieves adaptive matching between small-angle light-touch peeling of thin products and large-angle lever peeling of thick products, avoiding product damage or incomplete peeling caused by improper angle.

[0042] By independently controlling multiple peeling parts on the connecting seat and setting the peeling parts' inclined surfaces toward the waste boundary line, point-to-point precise peeling of blocky waste can be achieved. Force is applied only to the location of the waste, avoiding unnecessary contact that could damage the product. This is especially suitable for products with irregular waste distribution.

[0043] By coordinating the rotating separation mechanism and the fixed airflow mechanism in the transfer and separation assembly, and by setting the micro cone on the outer surface of the hollow cylinder, the dual guarantee of mechanical friction conveying and airflow blowing separation is achieved. This ensures that the waste is subjected to multi-point and multi-directional frictional forces during the conveying process, making the conveying stable and reliable. The waste that is not blown off is forcibly scraped off by the edge of the fixed arc body, ensuring that the waste enters the collection tank.

[0044] By setting up anti-stick coatings on the peeling parts, connecting seats, and hollow cylinder surface, as well as the staggered distribution of micro cones and hollow parts in the hollow cylinder, adhesive residue and waste material adhesion are effectively prevented. This ensures smooth flow of waste material throughout the peeling, transfer, conveying, and separation process, avoiding equipment blockage and downtime for cleaning caused by adhesion, and improving the continuity and automation of production. Attached Figure Description

[0045] Figure 1 This is a schematic diagram of the overall structure of a die-cutting machine with automatic waste stripping and collection functions;

[0046] Figure 2 Schematic diagram of the guiding collection device structure Figure 1 ;

[0047] Figure 3 Schematic diagram of the guiding collection device structure Figure 2 ;

[0048] Figure 4 This is a schematic diagram of the stripping device structure;

[0049] Figure 5 Schematic diagram of the component structure to be stripped Figure 1 ;

[0050] Figure 6 Schematic diagram of the component structure to be stripped Figure 2 ;

[0051] Figure 7 This is a schematic diagram of the transfer separation component structure;

[0052] Figure 8 This is a schematic diagram of the rotating separation mechanism and the fixed airflow mechanism.

[0053] In the diagram: 1. Die-cutting device; 2. Feeding roller; 3. Output guide surface; 4. Waste roller; 5. Guide collection device; 6. Peeling device; 7. Waste collection trough; 51. Limiting guide roller; 52. Positioning roller; 53. Collection roller; 61. Support column; 62. Lifting slider; 63. Connecting shaft; 64. Peeling assembly; 65. Transfer and separation assembly; 641. Connecting frame; 642. Fixing block; 643. Connecting seat; 644. Peeling component; 651. Fixing shaft; 652. Connecting circular surface; 653. Fixing arc body; 654. Rotating separation mechanism; 655. Fixing airflow mechanism; 6541. Rotating shaft; 6542. Hollowed-out cylinder; 6551. Pressure shaft; 6552. Guide arc body. Detailed Implementation

[0054] Please see Figures 1 to 8 In this embodiment of the invention, a die-cutting machine with automatic waste stripping and collection function includes:

[0055] Die-cutting device 1; a connecting slide rail and a fixed panel are fixed on the rear side;

[0056] The feeding roller 2 is movably mounted on the connecting slide rail and is located on the input side of the die-cutting device 1;

[0057] Output guide surface 3 is fixed to the top of the output end of die-cutting device 1;

[0058] The waste roller 4 is movably mounted on the connecting slide rail and is located on the output side of the die-cutting device 1;

[0059] The guide collection device 5 is set on the output side of the die-cutting device 1 and connected to the fixed panel on the rear side;

[0060] The peeling device 6 is located on the side of the guide collection device 5 away from the die-cutting device 1;

[0061] Waste collection tank 7 is fixed below the stripping device 6 at an angle.

[0062] In this embodiment, the guiding collection device 5 includes:

[0063] The limiting guide roller 51 is disposed on the side of the output guide surface 3 and consists of a fixed roller and a movable roller. The fixed roller is located at the lower part and is supported by a support column; the movable roller is located at the upper part, fits against the fixed roller, and is fixed on the fixed panel.

[0064] The positioning roller 52 is located to the lower right of the limiting guide roller 51, adjacent to the peeling device 6;

[0065] The collecting roller 53 is located to the lower left of the positioning roller 52 and collects the finished double-sided adhesive tape.

[0066] In other words, after the double-sided tape is die-cut by the die-cutting device 1, it is output from the output guide surface 3. During output, the waste material of the continuous edge is collected by the waste roller 4. Then, the double-sided tape first enters the limiting guide roller 51. When the double-sided tape passes through, the moving roller can automatically adjust the gap between itself and the fixed roller according to the actual thickness of the double-sided tape to ensure that an appropriate clamping force is formed on the double-sided tape. This allows the guiding and collecting device 5 to adapt to double-sided tape products of different thicknesses without manual adjustment, improving the versatility and automation of the equipment. Subsequently, the double-sided tape is guided by the limiting guide roller 51 to the positioning roller 52. After passing the positioning roller 52, the double-sided tape changes direction and is conveyed to the collecting roller 53 located at the lower left, forming a reverse pull-back tilt angle. During the process of conveying the double-sided tape from the positioning roller 52 to the collecting roller 53, the peeling device 6 peels off the individual block-shaped waste material. Finally, the collecting roller 53 collects the finished double-sided tape after the waste material has been peeled off. In the above process, the three-point positioning of the limiting guide roller 51, the positioning roller 52 and the collecting roller 53 forms a stable conveying path, ensuring that the double-sided tape remains flat during the conveying process and avoiding wrinkles or deviations, thus creating conditions for subsequent precise peeling. Moreover, the positional arrangement of the positioning roller 52 and the collecting roller 53 causes the double-sided tape to form a reverse pull-back angle when it is conveyed to the collecting roller 53. This angle causes the edge of the block-shaped waste material to slightly curl up, creating a tendency to separate from the main body of the double-sided tape, which significantly reduces the working difficulty of the peeling device 6 and improves the peeling success rate.

[0067] In this embodiment, the peeling device 6 includes:

[0068] Two support columns 61 are symmetrically distributed front and back, vertically arranged, and located on the right side of the guide collection device 5;

[0069] The lifting slider 62 is slidably disposed on the outside of the support column 61;

[0070] The connecting shaft 63 is arranged longitudinally, with both ends rotatably connected to the lifting slider 62;

[0071] The peeling component 64 is fixed at one end to the connecting shaft 63 and at the other end to the guide collection device 5;

[0072] The transfer separation component 65 is fixed between the support columns 61, and its left side is attached to the peeling component 64.

[0073] In other words, during operation, the two ends of the connecting shaft 63 are rotatably connected to the lifting slider 62, allowing the peeling component 64 to rotate around the axis of the connecting shaft 63. The lifting slider 62 drives the connecting shaft 63 to move up and down, enabling the peeling component 64 to automatically adjust its angle when contacting the double-sided adhesive, ensuring optimal contact with the waste material and preventing incomplete peeling or product damage due to improper angle. It is important to note that during the adjustment of the angle between the peeling component 64 and the double-sided adhesive, to ensure the peeling component 64 remains in contact with the transfer and separation component 65 and that the waste material is smoothly conveyed to the transfer and separation component 65, the angle between the peeling component 64 and the double-sided adhesive is at its maximum initially. As the lifting slider 62 moves upward and the connecting shaft 63 moves downward... As the clock hand rotates, the angle between the peeling component 64 and the double-sided tape gradually decreases to accommodate different specifications of double-sided tape products. For example, thin double-sided tape has low rigidity, and a smaller cutting angle can avoid piercing the adhesive layer, only lifting the edge of the waste material; thick double-sided tape requires a larger wedging force to separate the waste material, and a larger angle can create a stronger leverage effect. After the peeling component 64 peels the waste material from the double-sided tape, the waste material is directly transferred to the transfer and separation component 65 that is attached to it. The transfer and separation component 65 then transports the waste material to the waste collection tank 7. The attached design of the peeling component 64 and the transfer and separation component 65 enables the direct transfer of waste material. After being peeled off, the waste material immediately enters the conveying channel, preventing the waste material from falling or scattering during the transfer process and maintaining a clean working environment.

[0074] In this embodiment, the peeling component 64 includes:

[0075] The connecting frame 641 is an open frame, and the side corresponding to the open side is fixed on the connecting shaft 63;

[0076] Two fixing blocks 642 are symmetrically distributed at the front and back, and are fixed to the open end of the connecting frame 641;

[0077] The connecting seat 643 is arranged longitudinally and fixed between the fixing blocks 642, and the connecting seat 643 is provided with a plurality of spaced grooves;

[0078] Multiple peeling parts 644 are arranged longitudinally and are movably disposed on the groove of the connecting seat 643, and the side of the peeling part 644 corresponding to the guiding and collecting device 5 is inclined.

[0079] In other words, the connecting frame 641 is fixedly connected to the connecting shaft 63. The connecting shaft 63 rotates, causing the peeling assembly 64 to rotate as a whole via the connecting frame 641. This ensures that the connecting seat 643 and the transfer / separation assembly 65 remain in contact, guaranteeing continuous waste material transport. During the operation of the die-cutting device 1, the double-sided tape is continuously transported. When the double-sided tape is transported to the collecting roller 53, the control system, based on the position of the blocky waste on the double-sided tape, controls the corresponding peeling piece 644 to extend from the groove of the connecting seat 643. The extended peeling piece 644, with its inclined surface facing the boundary between the waste and the product, creates a wedge effect upon contact with the waste, easily cutting into the tiny gap between the waste and the product. This achieves waste peeling with minimal force, reducing the pulling on the double-sided tape body, and thus ensuring the double-sided tape is properly separated. During the adhesive transfer process, waste material is scraped off. The independent control design of multiple peeling elements 644 allows the peeling assembly 64 to selectively extend the corresponding peeling element 644 according to the specific location of the waste material, achieving precise point-to-point peeling and avoiding unnecessary contact that could damage the product. This is particularly suitable for products with irregular waste distribution. The scraped waste material stays on the connecting seat 643. Since the right side of the connecting seat 643 is in contact with the transfer and separation assembly 65, the waste material is smoothly transported to the transfer and separation assembly 65 through the connecting seat 643. Both the peeling element 644 and the connecting seat 643 are specially surface-treated with anti-stick coating technology to effectively prevent adhesive residue and ensure that the waste material can be smoothly removed from the peeling element 644 after being peeled off, avoiding the accumulation of waste material on the peeling element 644 and affecting subsequent peeling work.

[0080] In this embodiment, the transfer separation component 65 includes:

[0081] Two fixed shafts 651 are symmetrically distributed front and back, and are fixed to the inner side of the support column 61. The fixed shafts 651 are hollow structures.

[0082] A connecting circular surface 652 is fixed to the inner side of a fixed shaft 651, and the fixed shaft 651 is connected to the connecting circular surface 652.

[0083] The fixed arc body 653 is fixed between the connecting circular surfaces 652 and corresponds to the peeling component 64;

[0084] The rotating separation mechanism 654 has its end rotatably mounted inside a fixed shaft 651 on one side, and its outer wall is in contact with the inner wall of the fixed arc body 653.

[0085] The fixed airflow mechanism 655 is fixedly installed at its end inside the fixed shaft 651 on the other side, and its outer wall is in contact with the inner wall of the rotating separation mechanism 654.

[0086] In other words, the waste material transferred from the stripping component 64 moves along with the rotating separation mechanism 654 under the guidance of the fixed arc body 653. The rotating separation mechanism 654 rotates continuously, driving the waste material to move. When the waste material moves to the position corresponding to the fixed airflow mechanism 655, the airflow ejected by the fixed airflow mechanism 655 blows the waste material off and into the waste collection tank 7. The waste material that is not blown off continues to rotate with the rotating separation mechanism 654 to the fixed arc body 653 and is scraped off by the edge of the fixed arc body 653. Through the combined action of the rotating separation mechanism 654 and the fixed airflow mechanism 655, the mechanical friction conveying and airflow blowing are combined, which not only ensures the reliable conveying of waste material, but also achieves efficient separation. This overcomes the defects of unstable conveying or incomplete separation that exist in a single method. Furthermore, the fixed arc body 653 serves as a mechanical scraping structure, forming a dual protection mechanism. For the small amount of waste material that is not blown off, it is forcibly scraped off when it rotates to the fixed arc body 653.

[0087] In this embodiment, the rotating separation mechanism 654 includes:

[0088] The rotating shaft 6541 is rotatably mounted within a fixed shaft 651 on one side.

[0089] The hollow cylindrical body 6542 is fixedly connected at one end to the rotating shaft 6541 and rotatably connected at the other end to the connecting circular surface 652, and is located between the fixed arc body 653 and the fixed airflow mechanism 655.

[0090] In this embodiment, a plurality of micro cones are fixed on the outer surface of the hollowed-out cylindrical body 6542, and the micro cones are staggered with the hollowed-out area.

[0091] In other words, driven by the rotating shaft 6541, the hollow cylinder 6542 rotates between the fixed arc body 653 and the fixed airflow mechanism 655. Blocky waste material enters the hollow cylinder 6542 via the connecting seat 643. The micro-cones on its outer surface increase the friction with the waste material, causing it to move along the inner wall of the fixed arc body 653. It should be noted that to prevent the waste material from sticking to the hollow cylinder 6542, the surface of the hollow cylinder 6542 is also treated with a special anti-stick coating. The miniature cone, through multi-point contact, increases friction to drive the waste material to rotate with the hollow cylinder 6542. When the waste material moves to the position corresponding to the fixed airflow mechanism 655, the airflow ejected by the fixed airflow mechanism 655 blows the waste material down and into the waste collection trough 7. Furthermore, the staggered distribution design of the miniature cone and the hollow part avoids the cone blocking the hollow hole, ensuring that the hollow part can effectively perform its function and blow the waste material down. At the same time, the waste material is subjected to multi-point and multi-directional friction during the movement, making the conveying more stable.

[0092] In this embodiment, the fixed airflow mechanism 655 includes:

[0093] Pressure shaft 6551 is fixed inside another fixed shaft 651 and is correspondingly arranged with rotation shaft 6541. Pressure shaft 6551 is connected to an external gas pressurization pump.

[0094] The guide arc body 6552 has one end of its inner arc fixedly connected to the pressure shaft 6551, and the other end is in contact with the connecting surface of the rotating shaft 6541 and the hollow cylinder 6542.

[0095] In other words, the pressure shaft 6551 of the fixed airflow mechanism 655 is connected to an external gas pressurization pump, and the guide arc 6552 precisely directs the airflow to the location of the waste material to avoid airflow dispersion. The airflow fully contacts the waste material through the hollow hole, improving the blowing efficiency and allowing the waste material to enter the waste collection tank 7. The waste material that is not blown off continues to rotate with the rotating separation mechanism 654 to the fixed arc 653, where it is scraped off by the edge of the fixed arc 653. It should be noted that the opening side of the guide arc 6552 corresponds to the lower right arc area of ​​the hollow cylinder 6542, ensuring that the blown-off waste material can fall directly into the waste collection tank 7.

[0096] In practice, the feeding roller 2 first feeds the assembled double-sided tape into the die-cutting device 1. The die-cutting device 1 then sequentially die-cuts the double-sided tape according to predetermined specifications. The resulting continuous edge waste is collected by the waste roller 4. The die-cut double-sided tape is then output through the output guide surface 3 and enters the guide collection device 5. In the guide collection device 5, the double-sided tape first passes through the limiting guide roller 51, which consists of a fixed roller and a moving roller. The moving roller automatically adjusts the clamping force according to the thickness of the double-sided tape. Subsequently, the double-sided tape is guided by the limiting guide roller 51 to the positioning roller 52. After the positioning roller 52 changes direction, it conveys the material to the collecting roller 53 located to the lower left, forming a reverse pull-back tilt angle, causing the edges of the blocky waste to slightly curl up. When the double-sided tape is conveyed to the collecting roller 53, the peeling device 6 starts to work. The lifting slider 62 moves up and down along the support column 61, and drives the peeling assembly 64 to adjust to a suitable height through the connecting shaft 63. At the same time, the rotational connection between the two ends of the connecting shaft 63 and the lifting slider 62 allows the peeling assembly 64 to automatically rotate around the axis of the connecting shaft 63, contacting the waste at the optimal angle. Subsequently, the control system adjusts the position of the blocky waste according to the... The peeling element 644, corresponding to the position control, extends from the groove of the connecting seat 643, with its inclined surface facing the boundary line between waste and product. During the movement of the double-sided tape, it scrapes off the waste. The scraped waste remains on the connecting seat 643. Because the right side of the connecting seat 643 is in contact with the top of the fixed arc 653 of the transfer and separation assembly 65, the waste is smoothly transferred to the transfer and separation assembly 65. In the transfer and separation assembly 65, the rotating shaft 6541 drives the hollow cylinder 6542 to rotate continuously. The micro-cones on the outer surface of the hollow cylinder 6542 increase friction, driving... The waste material moves along with the hollow cylinder 6542. When the waste material moves to the position corresponding to the fixed airflow mechanism 655, the external gas pressurization pump connected to the pressure shaft 6551 guides the airflow precisely to the waste material through the guide arc 6552, blowing it into the waste material collection tank 7. The waste material that is not blown off continues to rotate with the hollow cylinder 6542 to the fixed arc 653 and is scraped off by its edge, also falling into the waste material collection tank 7. Finally, the finished double-sided tape after the waste material is peeled off is collected by the collection roller 53, completing the entire automated production process of die-cutting, peeling, and collection.

[0097] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A die cutting machine with automatic waste peeling and collecting function, characterized in that: include: Die-cutting device (1); a connecting slide rail and a fixed panel are fixed on the rear side; The feeding roller (2) is movably mounted on the connecting slide rail and is located on the input side of the die-cutting device (1); The output guide surface (3) is fixed to the top of the output end of the die-cutting device (1); The waste roller (4) is movably mounted on the connecting slide rail and located on the output side of the die-cutting device (1); The guide collection device (5) is set on the output side of the die-cutting device (1) and connected to the fixed panel on the rear side; The peeling device (6) is located on the side of the guide collection device (5) away from the die-cutting device (1); Waste collection tank (7) is fixed below the stripping device (6) at an angle.

2. The die cutting machine with automatic waste peeling and collecting function according to claim 1, characterized in that: The guiding collection device (5) includes: The limiting guide roller (51) is set on the side of the output guide surface (3) and consists of a fixed roller and a movable roller. The fixed roller is located at the bottom and is supported by a support column; the movable roller is located at the top, fits against the fixed roller, and is fixed on the fixed panel. The positioning roller (52) is located to the right and below the limiting guide roller (51), adjacent to the peeling device (6). The collecting roller (53) is located to the lower left of the positioning roller (52) to collect the finished double-sided adhesive tape.

3. The die cutting machine with automatic waste peeling and collecting function according to claim 1, characterized in that: The stripping device (6) includes: Two support columns (61) are symmetrically distributed front and back, vertically positioned, and located to the right of the guide collection device (5); The lifting slider (62) is slidably disposed on the outside of the support column (61); The connecting shaft (63) is set longitudinally, and its two ends are rotatably connected to the lifting slider (62); The peeling assembly (64) is fixed at one end to the connecting shaft (63) and at the other end to the guide collection device (5); The transfer separation component (65) is fixed between the support columns (61) and its left side is in contact with the peeling component (64).

4. The die cutting machine with automatic waste peeling and collecting function according to claim 3, characterized in that: The stripping assembly (64) includes: The connecting frame (641) is an open frame, and the side corresponding to the open side is fixed on the connecting shaft (63); Two fixing blocks (642) are symmetrically distributed at the front and back, and are fixed to the open end of the connecting frame (641); The connecting seat (643) is arranged longitudinally and fixed between the fixing blocks (642), and the connecting seat (643) is provided with a plurality of spaced grooves; Multiple peeling parts (644) are arranged longitudinally and are movably disposed on the groove of the connecting seat (643). The peeling part (644) is inclined on the side corresponding to the guiding collection device (5).

5. The die cutting machine with automatic waste peeling and collecting function according to claim 4, characterized in that: The transfer separation assembly (65) includes: Two fixed shafts (651) are symmetrically distributed front and back and fixed on the inner side of the support column (61), and the fixed shafts (651) are hollow structures; The connecting circular surface (652) is fixed inside the fixed shaft (651), and the fixed shaft (651) is connected to the connecting circular surface (652). A fixed arc body (653) is fixed between the connecting circular surfaces (652) and corresponds to the peeling assembly (64); The rotating separation mechanism (654) has its end rotatably mounted inside a fixed shaft (651) on one side, and its outer wall is in contact with the inner wall of the fixed arc body (653). The fixed airflow mechanism (655) is fixedly installed at its end inside the fixed shaft (651) on the other side, and its outer wall is in contact with the inner wall of the rotating separation mechanism (654).

6. The die cutting machine with automatic waste peeling and collecting function according to claim 5, characterized in that: The rotating separation mechanism (654) includes: The rotating shaft (6541) is rotatably mounted within a fixed shaft (651) on one side; The hollow cylindrical body (6542) is fixedly connected at one end to the rotating shaft (6541) and rotatably connected at the other end to the connecting circular surface (652), and is located between the fixed arc body (653) and the fixed airflow mechanism (655).

7. The die cutting machine with automatic waste peeling and collecting function according to claim 6, characterized in that: Multiple micro cones are fixed on the outer surface of the hollow cylinder (6542), and the micro cones are staggered with the hollow area.

8. The die cutting machine with automatic waste peeling and collecting function according to claim 6, characterized in that: The fixed airflow mechanism (655) includes: The pressure shaft (6551) is fixed inside the fixed shaft (651) on the other side, and is arranged corresponding to the rotating shaft (6541). The pressure shaft (6551) is connected to an external gas pressurization pump. The guide arc body (6552) has one end of its inner arc fixedly connected to the pressure shaft (6551), and the other end is in contact with the connecting surface of the rotating shaft (6541) and the hollow cylinder (6542).