Environment-friendly recycling equipment for waste materials generated during cutting of heat transfer printing films

By designing a thermal transfer film cut waste environmentally friendly recycling equipment with motor drive, using deinking solution and aeration head, the efficient deinking and reuse of the thermal transfer film is achieved, and the problem of low recycling and processing efficiency in the prior art is solved.

CN120394442APending Publication Date: 2025-08-01JIANGSU XUETAI PRINTING
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Patent Information

Application Number
CN202510572204.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

In the prior art, the waste recycling and processing efficiency of the thermal transfer film after cutting is low, and the conventional methods are cumbersome and time-consuming, resulting in waste of resources.

Method used

Design an environmentally friendly waste recycling equipment for cutting the thermal transfer film. The rotating shaft is driven by the motor, and the rotating shaft drives the net bag to move in the deinking tank, so that the thermal transfer film is immersed in the deinking solution, and the surface ink is removed by using the deinking solution, combining aeration and spraying the nozzle to achieve uninterrupted deinking treatment.

Benefits of technology

It improves the recycling and processing efficiency of thermal transfer film, ensures effective removal of ink, saves costs, and realizes efficient reuse of thermal transfer film.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides environment-friendly recovery equipment for waste materials generated after heat transfer printing film cutting, and relates to the technical field of waste material recovery. A deinking solution is stored in the deinking pond, a rotating shaft is connected in the deinking pond, a motor is fixedly installed outside the deinking pond, a chain is connected outside the motor, and the chain is connected with the rotating shaft; a net bag is connected outside the rotating shaft and is in contact with the ink removal tank; and the net bag is internally connected with a net plate. The net bag is driven by the rotating shaft to move in the ink removing pond, ink on the surface layer of the heat transfer printing film is removed through the ink removing solution in the ink removing pond, the heat transfer printing film can be continuously subjected to ink removing treatment, and the heat transfer printing film recycling treatment efficiency is improved. The invention relates to a heat transfer film cutting waste recovery device, and solves the problems that the whole process is tedious, time-consuming and relatively low in treatment efficiency as a conventional method for recovering the heat transfer film cutting waste is to directly put a crushed heat transfer film into a pool, remove ink on the heat transfer film and then take out the deinked heat transfer film by using a tool.
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Description

Technical Field

[0001] The present invention relates to the technical field of waste recycling, and particularly to an environmental protection recycling device for waste materials cut from a heat transfer film. Background Art

[0002] The heat transfer decoration process is a process of transferring the decorative pattern on the heat transfer film onto the surface of the decorated building material by heating the heat transfer film once, forming a high-quality decorative film; in order to meet the actual transfer requirements, the heat transfer film needs to be cut, and the waste heat transfer film cut off will cause waste if directly discarded, and usually needs to be recycled so that it can be used again.

[0003] At present, the recycling work of the waste materials cut from the heat transfer film is still in the primary stage, and the equipment is imperfect. The conventional method is to directly put the crushed heat transfer film into the pool, and use the deinking solution in the pool to remove the ink on the heat transfer film, and then use tools to fish out the heat transfer film that has completed deinking. The whole process is both cumbersome and time-consuming, resulting in low recycling efficiency of the waste heat transfer film. Summary of the Invention

[0004] The present invention relates to an environmental protection recycling device for waste materials cut from a heat transfer film. The rotation of a rotating shaft is driven by a motor, and the rotating shaft drives a mesh bag to move in a deinking pool, so that the heat transfer film in the mesh bag is immersed in the deinking solution, and the ink on the surface layer of the heat transfer film is removed by the deinking solution, and the deinking treatment of the heat transfer film can be carried out continuously, improving the recycling efficiency of the heat transfer film.

[0005] In a first aspect of the present invention, an environmental protection recycling device for waste materials cut from a heat transfer film is provided, which specifically includes: a deinking pool, a rotating shaft, a motor, a chain, a mesh bag, a mesh plate, an air pipe, an aeration head, a baffle, a liquid pipe, a spray head, a Y-shaped member and an opposed photoelectric switch; the deinking solution is stored inside the deinking pool, the rotating shaft is connected inside the deinking pool, the motor is fixedly installed outside the deinking pool, the chain is connected outside the motor, and the chain is connected to the rotating shaft; the mesh bag is connected outside the rotating shaft, and the mesh bag contacts the deinking pool; the mesh plate is connected inside the mesh bag; the air pipe is installed outside the bottom of the deinking pool and is connected to an air pump through a control valve, and the aeration head is installed inside the bottom of the deinking pool; the baffle is fixedly installed at the top of the deinking pool, the liquid pipe is installed outside the baffle and is connected to a delivery pump through a control valve, and the spray head is installed inside the baffle; the Y-shaped member is installed at the end of the rotating shaft, and the opposed photoelectric switch is connected outside the deinking pool.

[0006] Further, two connecting holes are arranged at the handle position at the top of the mesh bag, a pull rod is arranged at the top of the mesh plate, the pull rod slidably penetrates through the connecting holes, and the mesh plate is located at the mouth of the mesh bag.

[0007] Furthermore, two springs A are mounted on the outside of the pull rod, the top end of the spring A contacts the top handle of the net bag, and the bottom end of the spring A contacts the top side of the mesh plate. After the broken thermal transfer film is placed in the net bag, the mesh plate is sealed at the mouth of the net bag under the thrust of the spring A, effectively preventing the thermal transfer film from floating up.

[0008] Furthermore, a large sprocket is provided at the end of the rotating shaft, and a small sprocket is provided on the driving shaft of the motor. The small sprocket is connected to the large sprocket through a chain. The rotating shaft is driven to rotate by the motor, and the rotating shaft drives the net bag to move in the deinking pool, so that the thermal transfer film in the net bag is immersed in the deinking solution, and the deinking solution is used to remove the ink on the surface of the thermal transfer film.

[0009] Furthermore, the rotating shaft is rotatably connected to the deinking pool, two wheel frames are symmetrically arranged on the outside of the rotating shaft, three U-shaped grooves are arranged in a surrounding shape on the outside of the wheel frame, and long connecting blocks are arranged at both ends of the net bag, and the long connecting blocks are located in the U-shaped grooves.

[0010] Furthermore, two C-shaped ridges are symmetrically arranged on the inner side of the deinking pool. The angle of the C-shaped ridge is 260 degrees. The end of the long connecting block is in sliding contact with the C-shaped ridge. When the rotating shaft drives the net bag to rotate to the bottom, the notch of the U-shaped groove faces downward, and the long connecting block contacts the C-shaped ridge to prevent the long connecting block from separating from the U-shaped groove; when the rotating shaft drives the net bag to rotate to the top, the notch of the U-shaped groove faces upward, the long connecting block is separated from the C-shaped ridge, and the net bag can be removed from the top of the rotating shaft.

[0011] Furthermore, the aeration heads are arranged in an array at the bottom of the deinking tank, the aeration heads are connected to the air pipe, the nozzles are arranged on the inner side of the baffle, and the nozzles are connected to the liquid pipe. When the rotating shaft drives the net bag to move downward, the nozzles pre-spray the deinking solution onto the thermal transfer film inside the net bag. When the thermal transfer film is immersed in the deinking solution, the aeration heads discharge bubbles, which promotes the circulation of the deinking solution in the deinking tank, so that the thermal transfer film can fully contact with the deinking solution.

[0012] Furthermore, the end of the Y-shaped part is movable in the opposing switch, two vertical guide rods are symmetrically arranged on the outside of the deinking pool, and two sliding holes are symmetrically arranged on the outside of the opposing switch. The vertical guide rods slide through the sliding holes, and the opposing switch is connected to the motor through a circuit. The opposing switch is guided by sliding cooperation between the vertical guide rods and the sliding holes.

[0013] Furthermore, a spring B is mounted on the outside of the vertical guide rod, the top end of the spring B is in contact with the opposing switch, and the bottom end of the spring B is in contact with the deinking pool. Every time the motor drives the rotating shaft to rotate one-third of a circle, the surface deinking operation of the thermal transfer film inside a net bag is completed. The end of the Y-shaped part moves to the opposing switch, and the opposing switch controls the motor to stop running. The net bag at the top of the rotating shaft can be removed and replaced with a net bag storing the undeinked thermal transfer film.

[0014] The present invention provides an environmentally friendly recycling device for waste materials cut from a thermal transfer film, which has the following beneficial effects: When the present invention is in use, after the thermal transfer film to be broken is placed in the mesh bag, the mesh plate is blocked at the mouth of the mesh bag under the influence of the thrust of spring A, effectively avoiding the floating of the thermal transfer film and ensuring the removal effect of the surface ink during the soaking process of the thermal transfer film; the motor drives the rotation of the rotating shaft, and the rotating shaft drives the mesh bag to move in the deinking tank, so that the thermal transfer film in the mesh bag is soaked in the deinking solution, and the surface ink of the thermal transfer film is removed by using the deinking solution, enabling continuous deinking treatment of the thermal transfer film and improving the recycling efficiency of the thermal transfer film; when the rotating shaft drives the mesh bag to rotate to the bottom, the notch of the U-shaped groove faces downward, and the long connecting block contacts the C-shaped convex strip, preventing the long connecting block from separating from the U-shaped groove, and the rotating shaft can always drive the mesh bag to move; when the rotating shaft drives the mesh bag to rotate to the top, the notch of the U-shaped groove faces upward, and the long connecting block separates from the C-shaped convex strip, and then the mesh bag can be removed from the top of the rotating shaft, and the deinked thermal transfer film inside the mesh bag can be poured out, enabling the thermal transfer film to be recycled and reused, effectively saving costs.

[0015] In addition, during the process of the rotating shaft driving the mesh bag to move downward, the spray head pre-sprays the deinking solution onto the thermal transfer film inside the mesh bag to ensure the deinking effect on the surface of the thermal transfer film; during the process of the thermal transfer film being soaked in the deinking solution, the aeration head discharges bubbles to promote the circulation of the deinking solution in the deinking tank, enabling the thermal transfer film to fully contact the deinking solution and improving the deinking effect on the surface of the thermal transfer film.

[0016] In addition, through the sliding fit between the vertical guide rod and the sliding hole, the moving direction of the opposed switch is guided; every time the motor drives the rotating shaft to rotate one-third of a circle, the surface deinking operation of the thermal transfer film inside one mesh bag is completed. When the end of the Y-shaped part moves to the opposed switch, the opposed switch controls the motor to stop running, and then the mesh bag at the top of the rotating shaft can be removed and replaced with a mesh bag storing the non-deinked thermal transfer film; when the mesh bag is placed on the top of the rotating shaft, pull down the opposed switch, spring B is compressed, and the end of the Y-shaped part separates from the opposed switch. The opposed switch controls the motor to run. When the end of the Y-shaped part moves away from above the opposed switch, release the opposed switch, and the opposed switch moves upward and resets itself under the influence of the thrust of spring B, ensuring the control effect of the opposed switch on the motor.

[0017] Other advantages, objectives, and features of the present invention will be partially reflected by the following description and partially understood by those skilled in the art through the research and practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0020] In the accompanying drawings: Figure 1 The overall top-axis side structural schematic diagram of the present application is shown; Figure 2 The overall bottom-axis side structural schematic diagram of the present application is shown; Figure 3 The internal aeration head installation structural schematic diagram of the deinking tank of the present application is shown; Figure 4 The split structural schematic diagram of the deinking tank and the opposed switch of the present application is shown; Figure 5 The connection structural schematic diagram of the rotating shaft and the mesh bag of the present application is shown; Figure 6 The split structural schematic diagram of the rotating shaft and the Y-shaped part of the present application is shown; Figure 7 The connection structural schematic diagram of the mesh bag and the mesh plate of the present application is shown; Figure 8 The split structural schematic diagram of the mesh bag and the mesh plate of the present application is shown; Figure 9 The internal spray head installation structural schematic diagram of the baffle of the present application is shown.

[0021] Reference numerals: 1. Deinking tank; 101. C-shaped convex strip; 102. Vertical guide rod; 2. Rotating shaft; 201. Large sprocket; 202. Wheel frame; 2021. U-shaped groove; 4. Motor; 401. Small sprocket; 5. Chain; 6. Mesh bag; 601. Connecting hole; 602. Long connecting block; 7. Mesh plate; 701. Pull rod; 8. Spring A; 9. Air pipe; 10. Aeration head; 11. Baffle; 12. Liquid pipe; 13. Spray head; 14. Y-shaped part; 15. Opposed switch; 1501. Sliding hole; 16. Spring B. Detailed implementation manners

[0022] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0023] Please refer to Figures 1 to 9 : Embodiment 1: The present invention provides an environmental protection recycling device for waste materials cut from a thermal transfer film, comprising: a deinking tank 1, a rotating shaft 2, a motor 4, a chain 5, a mesh bag 6, a mesh plate 7, an air pipe 9, an aeration head 10, a baffle 11, a liquid pipe 12, a spray head 13, a Y-shaped member 14 and an opposed switch 15; the deinking tank 1 stores a deinking solution inside, the rotating shaft 2 is connected inside the deinking tank 1, the motor 4 is fixedly installed outside the deinking tank 1, the chain 5 is connected outside the motor 4, and the chain 5 is connected to the rotating shaft 2; the rotating shaft 2 is connected with the mesh bag 6 outside, and the mesh bag 6 contacts the deinking tank 1; the mesh plate 7 is connected inside the mesh bag 6; the air pipe 9 is installed outside the bottom of the deinking tank 1, the air pipe 9 is connected to an air pump through a control valve, and the aeration head 10 is installed inside the bottom of the deinking tank 1; the baffle 11 is fixedly installed at the top of the deinking tank 1, the liquid pipe 12 is installed outside the baffle 11 and is connected to a delivery pump through a control valve, and the spray head 13 is installed inside the baffle 11; the Y-shaped member 14 is installed at the end of the rotating shaft 2, and the opposed switch 15 is connected outside the deinking tank 1; two connecting holes 601 are arranged at the handle position at the top of the mesh bag 6, a pull rod 701 is arranged at the top of the mesh plate 7, the pull rod 701 slidably penetrates through the connecting holes 601, and the mesh plate 7 is located at the mouth of the mesh bag 6; two spring A8s are sleeved outside the pull rod 701, the top end of the spring A8 contacts the handle at the top of the mesh bag 6, and the bottom end of the spring A8 contacts the top side of the mesh plate 7; after the thermal transfer film to be broken is placed in the mesh bag 6, the mesh plate 7 is blocked at the mouth of the mesh bag 6 under the influence of the thrust of the spring A8, effectively avoiding the floating condition of the thermal transfer film and ensuring the removal effect of the surface ink during the soaking process of the thermal transfer film.

[0024] In this embodiment, a large sprocket 201 is arranged at the end of the rotating shaft 2, a small sprocket 401 is arranged on the driving shaft of the motor 4, the small sprocket 401 is in transmission connection with the large sprocket 201 through the chain 5, the rotating shaft 2 is rotatably connected with the deinking tank 1, two wheel frames 202 are symmetrically arranged outside the rotating shaft 2, three U-shaped grooves 2021 are arranged in a surrounding manner outside the wheel frames 202, long connecting blocks 602 are arranged at both ends of the mesh bag 6, the long connecting blocks 602 are located in the U-shaped grooves 2021, two C-shaped convex strips 101 are symmetrically arranged inside the deinking tank 1, the angle of the C-shaped convex strips 101 is 260 degrees, and the end of the long connecting block 602 is in sliding contact with the C-shaped convex strip 101; With the above technical solution, the motor 4 drives the rotating shaft 2 to rotate, and the rotating shaft 2 drives the mesh bag 6 to move in the deinking tank 1, so that the thermal transfer film in the mesh bag 6 is immersed in the deinking solution. The ink on the surface layer of the thermal transfer film is removed by the deinking solution, and the deinking treatment of the thermal transfer film can be carried out continuously, improving the recycling efficiency of the thermal transfer film; when the rotating shaft 2 drives the mesh bag 6 to rotate to the bottom, the notch of the U-shaped groove 2021 faces downward, and the long connecting block 602 contacts the C-shaped convex strip 101, preventing the long connecting block 602 from separating from the U-shaped groove 2021, and the rotating shaft 2 can always drive the mesh bag 6 to move; when the rotating shaft 2 drives the mesh bag 6 to rotate to the top, the notch of the U-shaped groove 2021 faces upward, and the long connecting block 602 separates from the C-shaped convex strip 101, so that the mesh bag 6 can be taken off from the top of the rotating shaft 2, and the thermal transfer film with the deinking completed inside the mesh bag 6 can be poured out, enabling the thermal transfer film to be recycled and reused, effectively saving costs.

[0025] In this embodiment, the aeration heads 10 are arranged at the bottom inside the deinking tank 1, the aeration heads 10 are communicated with the air pipe 9, the nozzles 13 are arranged in a row inside the baffle 11, and the nozzles 13 are communicated with the liquid pipe 12; With the above technical solution, during the process of the rotating shaft 2 driving the mesh bag 6 to move downward, the nozzles 13 pre-spray the deinking solution onto the thermal transfer film inside the mesh bag 6 to ensure the deinking effect on the surface layer of the thermal transfer film; during the process of the thermal transfer film being immersed in the deinking solution, the aeration heads 10 discharge air bubbles to promote the circulation of the deinking solution in the deinking tank 1, enabling the thermal transfer film to fully contact the deinking solution and improving the deinking effect on the surface layer of the thermal transfer film.

[0026] Embodiment 2, on the basis of Embodiment 1, the end of the Y-shaped part 14 moves inside the opposed switch 15. Two vertical guide rods 102 are symmetrically arranged outside the deinking tank 1. Two sliding holes 1501 are symmetrically arranged outside the opposed switch 15. The vertical guide rods 102 slide through the sliding holes 1501. The opposed switch 15 is connected to the motor 4 through a circuit. A spring B16 is sleeved outside the vertical guide rods 102. The top end of the spring B16 contacts the opposed switch 15, and the bottom end of the spring B16 contacts the deinking tank 1; With the above technical solution, the vertical guide rod 102 and the sliding hole 1501 are slidably matched to guide the movement of the opposed switch 15; every time the motor 4 drives the rotating shaft 2 to rotate one-third of a circle, the surface deinking operation of the thermal transfer film inside the net pocket 6 is completed. When the end of the Y-shaped part 14 moves to the opposed switch 15, the opposed switch 15 controls the motor 4 to stop running, and then the net pocket 6 at the top of the rotating shaft 2 can be removed and replaced with a net pocket 6 storing an undeinked thermal transfer film; when the net pocket 6 is placed on the top of the rotating shaft 2, pull down the opposed switch 15, the spring B16 is stressed and contracts, the end of the Y-shaped part 14 separates from the opposed switch 15, the opposed switch 15 controls the motor 4 to run, when the end of the Y-shaped part 14 is far away from above the opposed switch 15, release the opposed switch 15, and the opposed switch 15 moves upward and resets itself under the influence of the thrust of the spring B16, ensuring the control effect of the opposed switch 15 on the motor 4.

[0027] Working principle of this embodiment: First, after placing the broken thermal transfer film into the net pocket 6, the net plate 7 is blocked at the mouth of the net pocket 6 under the influence of the thrust of the spring A8, effectively avoiding the floating of the thermal transfer film; Next, place the net pocket 6 on the top of the rotating shaft 2, the long connecting block 602 is located in the U-shaped groove 2021, the motor 4 drives the rotating shaft 2 to rotate, the rotating shaft 2 drives the net pocket 6 to move in the deinking tank 1, so that the thermal transfer film in the net pocket 6 is immersed in the deinking solution, and the surface ink of the thermal transfer film is removed by the deinking solution; When the rotating shaft 2 drives the net pocket 6 to rotate to the bottom, the opening of the U-shaped groove 2021 faces downward, and the long connecting block 602 contacts the C-shaped convex strip 101, preventing the long connecting block 602 from separating from the U-shaped groove 2021, and the rotating shaft 2 can always drive the net pocket 6 to move; When the rotating shaft 2 drives the net pocket 6 to rotate to the top, the opening of the U-shaped groove 2021 faces upward, and the long connecting block 602 separates from the C-shaped convex strip 101, then the net pocket 6 can be removed from the top of the rotating shaft 2, pour out the thermal transfer film with deinking completed inside the net pocket 6, so that the thermal transfer film can be recycled; During the process of the rotating shaft 2 driving the net pocket 6 to move downward, the nozzle 13 sprays the deinking solution onto the thermal transfer film inside the net pocket 6 in advance to ensure the surface deinking effect of the thermal transfer film; During the process of the thermal transfer film being immersed in the deinking solution, the aeration head 10 discharges bubbles to promote the circulation of the deinking solution in the deinking tank 1, so that the thermal transfer film can fully contact the deinking solution; Every time the motor 4 drives the rotating shaft 2 to rotate one-third of a circle, the surface deinking operation of the thermal transfer film inside the net pocket 6 is completed. When the end of the Y-shaped part 14 moves to the opposed switch 15, the opposed switch 15 controls the motor 4 to stop running, and then the net pocket 6 at the top of the rotating shaft 2 can be removed and replaced with a net pocket 6 storing an undeinked thermal transfer film; when the net pocket 6 is placed on the top of the rotating shaft 2, pull down the opposed switch 15, the spring B16 is stressed and contracts, the end of the Y-shaped part 14 separates from the opposed switch 15, the opposed switch 15 controls the motor 4 to run, when the end of the Y-shaped part 14 is far away from above the opposed switch 15, release the opposed switch 15, and the opposed switch 15 moves upward and resets itself under the influence of the thrust of the spring B16.

[0028] In this article, the following points need to be noted: 1. The accompanying drawings of the embodiments of the present invention only relate to the structures involved in the embodiments of the present invention, and other structures can refer to the general design.

[0029] 2. Without conflict, the embodiments of the present invention and the features in the embodiments can be combined with each other to obtain new embodiments.

[0030] The above is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of changes or substitutions, which should all be covered by the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.

Claims

1. An environmentally friendly recycling device for waste materials cut from a thermal transfer film, comprising: Deinking tank (1), rotating shaft (2), motor (4), chain (5), mesh bag (6), mesh plate (7), air pipe (9), aeration head (10), baffle (11), liquid pipe (12), spray head (13), Y-shaped part (14) and opposed photoelectric switch (15); It is characterized in that the deinking tank (1) stores deinking solution inside, the rotating shaft (2) is connected inside the deinking tank (1), the motor (4) is fixedly installed outside the deinking tank (1), the chain (5) is connected outside the motor (4), and the chain (5) is connected to the rotating shaft (2); The mesh bag (6) is connected outside the rotating shaft (2), and the mesh bag (6) contacts the deinking tank (1); The mesh plate (7) is connected inside the mesh bag (6); The air pipe (9) is installed outside the bottom of the deinking tank (1), the air pipe (9) is connected to an air pump through a control valve, and the aeration head (10) is installed inside the bottom of the deinking tank (1); The baffle (11) is fixedly installed at the top of the deinking tank (1), the liquid pipe (12) is installed outside the baffle (11) and is connected to a delivery pump through a control valve, and the spray head (13) is installed inside the baffle (11); The Y-shaped part (14) is installed at the end of the rotating shaft (2), and the opposed photoelectric switch (15) is connected outside the deinking tank (1).

2. The environmentally friendly recycling equipment for waste materials cut from a thermal transfer film according to claim 1, characterized in that Two connecting holes (601) are provided at the handle position at the top of the mesh bag (6), a pull rod (701) is provided at the top of the mesh plate (7), the pull rod (701) slidably penetrates through the connecting holes (601), and the mesh plate (7) is located at the mouth of the mesh bag (6).

3. The environmentally friendly recycling equipment for waste materials cut from a thermal transfer film according to claim 2, characterized in that Two spring A (8) are sleeved outside the pull rod (701), the top end of the spring A (8) contacts the handle at the top of the mesh bag (6), and the bottom end of the spring A (8) contacts the top side of the mesh plate (7).

4. The environmentally friendly recycling equipment for waste materials cut from a thermal transfer film according to claim 1, characterized in that A large sprocket (201) is provided at the end of the rotating shaft (2), a small sprocket (401) is provided on the drive shaft of the motor (4), and the small sprocket (401) is in transmission connection with the large sprocket (201) through the chain (5).

5. The environmentally friendly recycling equipment for waste materials cut from a thermal transfer film according to claim 1, characterized in that The rotating shaft (2) is rotatably connected to the deinking tank (1), two wheel brackets (202) are symmetrically arranged outside the rotating shaft (2), three U-shaped grooves (2021) are arranged in a surrounding shape outside the wheel brackets (202), and long connecting blocks (602) are arranged at both ends of the mesh bag (6), and the long connecting blocks (602) are located in the U-shaped grooves (2021).

6. The environmentally friendly recycling equipment for waste materials cut from a thermal transfer film according to claim 1, characterized in that Two C-shaped convex strips (101) are symmetrically arranged inside the deinking tank (1), the angle of the C-shaped convex strips (101) is 260 degrees, and the end of the long connecting block (602) is in sliding contact with the C-shaped convex strip (101).

7. An environmental protection recycling device for waste materials cut from a thermal transfer film according to claim 1, characterized in that the aeration heads (10) are arranged at the bottom inside the deinking tank (1), the aeration heads (10) are communicated with the air pipe (9), the spray heads (13) are arranged inside the baffle (11), and the spray heads (13) are communicated with the liquid pipe (12).

8. An environmental protection recycling device for waste materials cut from a thermal transfer film according to claim 1, characterized in that the end of the Y-shaped member (14) is movably arranged inside the opposed switch (15), two vertical guide rods (102) are symmetrically arranged outside the deinking tank (1), two sliding holes (1501) are symmetrically arranged outside the opposed switch (15), the vertical guide rods (102) slide through the sliding holes (1501), and the opposed switch (15) is connected to the motor (4) through a circuit.

9. An environmental protection recycling device for waste materials cut from a thermal transfer film according to claim 8, characterized in that a spring B (i6) is sleeved outside the vertical guide rod (102), the top end of the spring B (16) contacts the opposed switch (15), and the bottom end of the spring B (16) contacts the deinking tank (1).