A tape waste recycling and processing equipment

By designing a tape waste recycling and processing equipment, and combining a hydrolysis dosing component and a crushing component with a degumming and separation component, the problem of low tape waste separation efficiency was solved, and efficient separation and recycling of the adhesive layer and base paper was achieved.

CN120439477BActive Publication Date: 2026-04-03JIANGSU AISI AIXIN MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing technologies have low efficiency in separating tape waste, cumbersome separation equipment, low efficiency in treating adhesive layer and adhesive base waste, complex separation equipment, low efficiency in separating adhesive layer and substrate waste, cumbersome separation equipment, low decomposition efficiency of separation equipment, excessively low separation efficiency of separation equipment, low efficiency in separating adhesive layer and substrate, and low efficiency in recycling and processing tape waste.

Method used

The design includes a tape waste recycling and processing equipment, comprising a hydrolysis dosing component and a crushing component. The hydrolysis dosing component ensures that the mixed chemical solution fully contacts the interface between the adhesive layer and the base paper. The crushing component breaks the tape waste into small pieces. Combined with the degumming and separation component, the active and driven bevel gears drive the connecting shaft and the drive turntable to rotate, forming a cross shear force field to accelerate the separation of the adhesive layer and the base paper.

Benefits of technology

It achieves efficient separation of the adhesive layer and the base paper, shortens the separation time, improves the recycling efficiency, and enables the separate collection of adhesive residue and base paper fibers, simplifying the recycling process.

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Patent Text Reader

Abstract

This invention discloses a tape waste recycling and processing device, belonging to the field of tape waste processing technology. The device includes a support base, with support frames fixedly connected to the four corners of the upper surface of the support base. An installation plate is fixedly installed at the end of each support frame away from the support base. An installation bracket is provided at the lower end of the installation plate, and an installation box is fixedly installed at the lower end of the installation bracket. A hydrolysis dosing component is fixedly installed at the upper end of the installation plate, and a crushing component is fixedly connected to the upper end of the hydrolysis dosing component. A feed guide box is fixedly connected to the upper end of the crushing component, and a degumming separation component is fixedly installed at the upper end of the fixed support. This invention accelerates the separation between the adhesive layer and the base paper interface of the tape waste by designing the degumming separation component, improving recycling efficiency. Furthermore, by designing a hydraulic cylinder and a water outlet pipe, the base paper fiber water and the adhesive residue suspended in the upper layer can be separately recycled within the installation box.
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Description

Technical Field

[0001] This invention belongs to the field of tape waste treatment technology, specifically relating to a tape waste recycling and treatment device. Background Technology

[0002] Adhesive tape is a viscous, strip-shaped material made by coating an adhesive (such as acrylic glue or rubber) onto a substrate (such as plastic film, paper, or cloth). It is widely used in industry, daily life, and medical fields. Its core function is to achieve connection, fixation, protection, and identification through the adhesive's stickiness. During the slitting and rewinding process, tape easily generates edge waste. Because the substrate and adhesive layer of tape are usually made of different materials with significant differences in physicochemical properties, tape needs to be separated during recycling. Common tape waste recycling methods typically use washing machines to separate the substrate and adhesive layer. The waste tape is fed into the washing machine, where rotation and cleaning separate the adhesive layer from the substrate.

[0003] However, this method has low separation efficiency and requires a long time of rotation and cleaning to complete the separation between the adhesive layer and the substrate, which is too time-consuming and costly. At the same time, the mixed water of the separated adhesive layer and substrate needs to be taken out from the cleaning machine and transferred to subsequent separation equipment. The recycling process is cumbersome, which leads to a long processing cycle and low recycling efficiency. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to overcome the shortcomings of the prior art and provide a tape waste recycling and processing device.

[0005] The technical solution adopted to solve the above-mentioned technical problems is as follows: a tape waste recycling and processing equipment, including a support base, support frames fixedly connected to the four corners of the upper surface of the support base, an installation plate fixedly installed at the end of the support frame away from the support base, an installation bracket provided at the lower end of the installation plate, an installation box fixedly installed at the lower end of the installation bracket, an annular sliding groove opened in the installation box, and a fixed bracket fixedly connected to the upper surface of the support base; a hydrolysis dosing component fixedly installed at the upper end of the installation plate, a crushing component fixedly connected to the upper end of the hydrolysis dosing component, a feed guide box fixedly connected to the upper end of the crushing component, and a degumming separation component fixedly installed at the upper end of the fixed bracket; the crushing component includes a crushing box fixedly connected to the feed guide box, and a discharge guide box fixedly installed at the lower end of the crushing box.

[0006] Through the above technical solution, the combined use of the hydrolysis dosing component and the crushing component enables the mixed agent water to come into more full contact with the interface between the adhesive layer and the base paper. Furthermore, through the use of the hydrolysis dosing component, the adhesive layer hydrolysant can be thrown out through multiple sets of discharge holes, and then pre-mixed with the water flowing inside the dosing tank, so that the adhesive layer decomposing agent and the water flow can be fully mixed and reacted in the shortest possible time.

[0007] Furthermore, hydraulic cylinders are fixedly connected to the four corners of the upper surface of the support base, and the output end of the hydraulic cylinders is fixedly connected to the mounting bracket.

[0008] With the above technical solution, after the water in the base paper fiber is completely drained, only the filtered glue residue remains on the drive turntable. The hydraulic cylinder is activated, and the output end of the hydraulic cylinder drives the mounting frame to move downward. The mounting frame drives the turntable to slide through the mounting box, thereby removing the obstruction of the outer casing from the drive turntable, making it convenient for workers to clean the separated glue residue.

[0009] Furthermore, two crushing rollers are symmetrically rotatably connected inside the crushing chamber. A drive gear is fixedly connected to one end of one of the crushing rollers, and a driven gear is meshed with the drive gear on one side. The driven gear is fixedly connected to the crushing roller on the other side. A fixed seat is installed on the side of the crushing chamber near the drive gear. The fixed seat is fixed to the crushing chamber by multiple sets of fixing bolts. A second drive motor is fixedly connected to the fixed seat. The output end of the second drive motor is fixedly connected to the drive gear. Both the drive gear and the driven gear are rotatably connected to the crushing chamber.

[0010] Through the above technical solution, the output end of the second drive motor will drive the corresponding drive gear to rotate. Due to the meshing transmission between the drive gear and the driven gear, the two crushing rollers will rotate synchronously, thereby squeezing and crushing the tape waste accumulated in the crushing box. This can break the tape waste into small pieces, increase the surface area of ​​each small piece of waste in contact with the mixed agent water, and enable the mixed agent water to contact the adhesive layer and the base paper interface more fully.

[0011] Furthermore, the hydrolysis dosing assembly includes a fixed housing fixedly connected to the discharge guide box, a liquid outlet pipe fixedly connected inside the fixed housing, a connecting pipe fixedly connected to one end of the liquid outlet pipe, and a dosing housing fixedly connected to the other end of the connecting pipe. An inlet pipe is fixedly connected to the end of the dosing housing away from the connecting pipe, and the inlet pipe communicates with the dosing housing and the connecting pipe. An installation cylinder is rotatably connected inside the dosing housing, and multiple sets of dispensing holes are evenly opened on the circumference of the installation cylinder. A first drive motor is fixedly connected to the lower end of the dosing housing, and the output end of the first drive motor is fixedly connected to the lower end of the installation cylinder. A dosing base is fixedly connected to the upper end of the dosing housing, and a water pump is fixedly installed at one end of the inlet pipe.

[0012] With the above technical solution, when the installation cylinder is rotating, the adhesive layer hydrolysant inside can be thrown out through multiple sets of discharge holes, and then pre-mixed with the water flowing inside the dosing tank, so that the water and adhesive layer hydrolysant can be evenly added to the installation tank.

[0013] Furthermore, the degumming and separation assembly includes a drive box fixedly connected to a fixed bracket. A driving bevel gear is rotatably connected to the lower end of the inner wall of the drive box. A third drive motor is fixedly connected to the fixed bracket, and the output end of the third drive motor is fixedly connected to the driving bevel gear. An auxiliary bevel gear is rotatably connected inside the drive box. A driven bevel gear is located on the side of the auxiliary bevel gear away from the driving bevel gear. The auxiliary bevel gear meshes with both the driving bevel gear and the driven bevel gear. A drive turntable is fixedly connected to the upper end of the driven bevel gear. The drive turntable is rotatably connected to the drive box. A guide plate is fixedly connected to the circumference of the drive turntable. A connecting shaft is fixedly connected to the driving bevel gear, passing through the driven bevel gear and the drive turntable, and rotatably connected to them. A linkage frame is fixedly connected to the upper end of the connecting shaft, and a fixing block is fixedly connected to the end of the linkage frame away from the connecting shaft.

[0014] Through the above technical solution, the output end of the third drive motor drives the active bevel gear to rotate. Due to the meshing between the active bevel gear and the auxiliary bevel gear, and the meshing transmission between the auxiliary bevel gear and the driven bevel gear, the active bevel gear and the driven bevel gear can drive the connecting shaft and the drive turntable to rotate, thereby transmitting power to the linkage frame on the connecting shaft and the guide plate on the drive turntable.

[0015] Furthermore, a rotating ring is rotatably connected inside the annular groove, and the rotating ring is fixedly connected to the rotating box. Multiple sets of fixed protrusions are fixedly connected to the inner circumference of the rotating box. A connecting seat is fixedly connected to the upper end of the rotating box. A groove is opened in the connecting seat corresponding to the position of the fixed block. The groove is slidably connected to the fixed block.

[0016] Through the above technical solution, the driving bevel gear and the driven bevel gear can drive the connecting shaft and the drive turntable to rotate, thereby transmitting power to the linkage frame on the connecting shaft and the guide plate on the drive turntable. At the same time, the linkage frame drives the rotating box to rotate through the fixed block, and the rotation of the rotating box drives the fixed protrusion to rotate, so that the fixed protrusion and the drive turntable rotate in opposite directions.

[0017] Furthermore, a connecting ring is slidably connected to the lower end of the rotating box, and multiple sets of water outlet pipes are uniformly and fixedly connected to the inner circumference of the connecting ring. Each set of water outlet pipes is equipped with a filter screen, and a valve is fixedly installed on the water outlet pipe.

[0018] Through the above technical solution, the upper suspended glue residue can be blocked outside the filter screen, thereby realizing the separate collection of base paper fiber water and glue residue.

[0019] Furthermore, a liquid collection tank is fixedly connected to the upper end of the fixed bracket, and a guide plate is fixedly connected to one side of the liquid collection tank, with the guide plate being inclined.

[0020] With the above technical solution, when the adhesive layer and the base paper in the tape waste are separated, and the base paper is decomposed into base paper fibers mixed into the water under the action of the degumming and separation component, the separated adhesive residue will be suspended on the water surface. When the valve on the water outlet pipe is opened, the base paper fiber water in the installation box flows out through the water outlet pipe and flows out through the liquid collection tank and the guide plate to the centralized collection device.

[0021] The beneficial effects of the present invention are as follows: (1) The present invention, through the design of a matching hydrolysis dosing component and a crushing component, can crush the tape waste into small pieces, increase the surface area of ​​each small piece of waste in contact with the mixed agent water, so that the mixed agent water can more fully contact the interface between the adhesive layer and the base paper. Then, through the rotation of the mounting cylinder, the adhesive layer hydrolysant inside can be thrown out through multiple sets of discharge holes, and then pre-mixed with the water flowing inside the dosing box, so that the adhesive layer decomposing agent and the water flow can be fully mixed and reacted in the shortest time; (2) The present invention, through the design of a degumming separation component, the active bevel gear and the driven bevel gear can drive the connecting shaft and the drive turntable to rotate, and then transmit the power to the linkage frame on the connecting shaft and the guide plate on the drive turntable. At the same time, the linkage frame is fixed The block drives the rotating box to rotate, and the rotating box in turn drives the fixed protrusion to rotate. This makes the fixed protrusion and the drive turntable rotate in opposite directions. The relative motion of the two forces the water flow to generate eddies in both clockwise and counterclockwise directions, forming a cross shear force field, which can then directly act on the interface between the adhesive layer and the base paper of the tape waste, accelerating the separation of the two and improving the recycling efficiency; (3) By designing a hydraulic cylinder and a water outlet pipe, the present invention enables the base paper fiber water and the glue residue suspended on the upper layer in the installation box to be recycled separately. The base paper fiber water flows out through the water outlet pipe and flows out through the liquid collection tank and the guide plate to the centralized collection device. The glue residue can be driven by the installation box to slide the rotating box, so that the drive turntable loses the obstruction of the outer box and cleans the separated glue residue. Attached Figure Description

[0022] Figure 1 This is a first-view perspective three-dimensional structural diagram of the present invention;

[0023] Figure 2 This is a second-view perspective three-dimensional structural diagram of the present invention;

[0024] Figure 3 This is a cross-sectional view of the present invention;

[0025] Figure 4 This is a diagram of the internal structure of the rotating box of the present invention;

[0026] Figure 5 This is an internal structural diagram of the mounting box of the present invention;

[0027] Figure 6 This is the present invention. Figure 5 Enlarged view of the structure at point A;

[0028] Figure 7 This is a three-dimensional structural diagram of the degumming and separation component of the present invention;

[0029] Figure 8 This is a three-dimensional structural diagram of the crushing component and the feed guide box of the present invention;

[0030] Figure 9 This is a three-dimensional structural diagram of the hydrolysis dosing component of the present invention;

[0031] Figure 10 This is a cross-sectional view of the hydrolysis dosing assembly of the present invention;

[0032] Figure 11 This is a diagram of the internal structure of the crushing chamber of this invention.

[0033] Reference numerals: 1. Support base; 10. Support frame; 11. Mounting plate; 12. Mounting bracket; 13. Mounting box; 14. Fixed bracket; 15. Liquid collection tank; 16. Guide plate; 17. Annular chute; 18. Hydraulic cylinder; 2. Hydrolysis dosing assembly; 20. Fixed box; 21. Liquid outlet pipe; 22. Connecting pipe; 23. Dosing box; 24. Liquid inlet pipe; 25. Dosing seat; 26. Mounting cylinder; 27. Dosing hole; 28. First drive motor; 3. Crushing assembly; 30. Discharge guide box; 31. Crushing box; 32. Fixing bolt; 33. 34. Crushing roller; 35. Drive gear; 36. Driven gear; 37. Fixed seat; 4. Second drive motor; 5. Feed guide box; 6. Degumming and separation assembly; 7. Drive box; 8. Driven bevel gear; 9. Third drive motor; 10. Auxiliary bevel gear; 11. Driven bevel gear; 12. Driven bevel gear; 13. Drive turntable; 14. Guide plate; 15. Connecting shaft; 16. Linkage frame; 17. Fixed block; 18. Connecting seat; 19. Turning box; 20. Fixed protrusion; 10. Rotating ring; 11. Slide groove; 12. Connecting ring; 13. Water outlet pipe. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0035] like Figures 1-2As shown, a tape waste recycling and processing device of this embodiment includes a support base 1. Support frames 10 are fixedly connected to the four corners of the upper surface of the support base 1. An mounting plate 11 is fixedly installed at the end of the support frame 10 away from the support base 1. An mounting bracket 12 is provided at the lower end of the mounting plate 11. An mounting box 13 is fixedly installed at the lower end of the mounting bracket 12. An annular groove 17 is provided inside the mounting box 13. A fixed bracket 14 is fixedly connected to the upper surface of the support base 1. A hydrolysis dosing component 2 is fixedly installed at the upper end of the mounting plate 11. A crushing component 3 is fixedly connected to the upper end of the hydrolysis dosing component 2. A feed guide box 4 is fixedly connected to the upper end of the crushing component 3. A degumming separation component 5 is fixedly installed at the upper end of the fixed bracket 14. The crushing component 3 includes a crushing box body 31 fixedly connected to the feed guide box 4. A discharge guide box 30 is fixedly installed at the lower end of the crushing box body 31. Hydrolysis dosing... The combined use of component 2 and crushing component 3 allows the mixed chemical water to come into more full contact with the interface between the adhesive layer and the base paper. With the use of hydrolysis dosing component 2, the adhesive layer hydrolysant can be thrown out through multiple sets of dosing holes 27, and then pre-mixed with the water flowing inside the dosing tank 23, so that the adhesive layer decomposing agent and water can be fully mixed and reacted in the shortest time. Hydraulic cylinders 18 are fixedly connected to the four corners of the upper surface of the support base 1, and the output end of the hydraulic cylinder 18 is fixedly connected to the mounting frame 12. After the base paper fiber water is drained, only the filtered adhesive residue remains on the drive turntable 55. When the hydraulic cylinder 18 is started, the output end of the hydraulic cylinder 18 drives the mounting frame 12 to move downward. The mounting frame 12 drives the turntable 511 to slide through the mounting box 13, so that the drive turntable 55 is no longer blocked by the outer box, making it convenient for the staff to clean the separated adhesive residue.

[0036] like Figures 1-11 As shown, two crushing rollers 33 are symmetrically rotatably connected inside the crushing box 31. A drive gear 34 is fixedly connected to one end of one crushing roller 33. A driven gear 35 is meshed with the drive gear 34 on one side, and the driven gear 35 is fixedly connected to the other crushing roller 33. A fixing seat 36 is installed on the side of the crushing box 31 near the drive gear 34. The fixing seat 36 is fixed to the crushing box 31 by multiple sets of fixing bolts 32. A second drive motor 37 is fixedly connected to the fixing seat 36. The output end of the second drive motor 37 is connected to... The drive gear 34 is fixedly connected, and both the drive gear 34 and the driven gear 35 are rotatably connected to the crushing box 31. The output end of the second drive motor 37 will drive the corresponding drive gear 34 to rotate. Due to the meshing transmission between the drive gear 34 and the driven gear 35, the two crushing rollers 33 will rotate synchronously, thereby squeezing and crushing the tape waste accumulated in the crushing box 31. This can break the tape waste into small pieces, increase the surface area of ​​each small piece of waste in contact with the mixed agent water, and enable the mixed agent water to contact the adhesive layer and the base paper interface more fully.

[0037] like Figures 1-10As shown, the hydrolysis dosing assembly 2 includes a fixed housing 20 fixedly connected to the discharge guide box 30. A liquid outlet pipe 21 is fixedly connected inside the fixed housing 20. One end of the liquid outlet pipe 21 is fixedly connected to a connecting pipe 22, and the other end of the connecting pipe 22 is fixedly connected to the dosing tank 23. An inlet pipe 24 is fixedly connected to the end of the dosing tank 23 away from the connecting pipe 22. The inlet pipe 24 communicates with the dosing tank 23 and the connecting pipe 22. An installation cylinder 26 is rotatably connected inside the dosing tank 23. The installation cylinder 26 has a circumference evenly distributed... Multiple sets of dispensing holes 27 are evenly opened. A first drive motor 28 is fixedly connected to the lower end of the dosing tank 23. The output end of the first drive motor 28 is fixed to the lower end of the mounting cylinder 26. A dosing seat 25 is fixedly connected to the upper end of the dosing tank 23. A water pump is fixedly installed at one end of the liquid inlet pipe 24. When the mounting cylinder 26 is rotating, the colloidal hydrolysant inside can be thrown out through the multiple sets of dispensing holes 27, and then pre-mixed with the water flowing inside the dosing tank 23, so that the water and colloidal hydrolysant can be evenly added to the mounting tank 13.

[0038] like Figures 1-3 As shown, the degumming and separation assembly 5 includes a drive box 50 fixedly connected to a fixed bracket 14. A drive bevel gear 51 is rotatably connected to the lower end of the inner wall of the drive box 50. A third drive motor 52 is fixedly connected to the fixed bracket 14, and the output end of the third drive motor 52 is fixedly connected to the drive bevel gear 51. An auxiliary bevel gear 53 is rotatably connected inside the drive box 50. A driven bevel gear 54 is located on the side of the auxiliary bevel gear 53 away from the drive bevel gear 51. The auxiliary bevel gear 53 meshes with both the drive bevel gear 51 and the driven bevel gear 54. A drive turntable 55 is fixedly connected to the upper end of the driven bevel gear 54. The drive turntable 55 is rotatably connected to the drive box 50. A guide plate 5 is fixedly connected to the circumference of the drive turntable 55. 6. A connecting shaft 57 is fixedly connected to the driving bevel gear 51. The connecting shaft 57 passes through the driven bevel gear 54 and the drive turntable 55 and is rotatably connected to them. A linkage frame 58 is fixedly connected to the upper end of the connecting shaft 57. A fixing block 59 is fixedly connected to the end of the linkage frame 58 away from the connecting shaft 57. The output end of the third drive motor 52 drives the driving bevel gear 51 to rotate. Since the driving bevel gear 51 meshes with the auxiliary bevel gear 53, and the auxiliary bevel gear 53 meshes with the driven bevel gear 54, the driving bevel gear 51 and the driven bevel gear 54 can drive the connecting shaft 57 and the drive turntable 55 to rotate, thereby transmitting power to the linkage frame 58 on the connecting shaft 57 and the guide plate 56 on the drive turntable 55.

[0039] like Figures 1-4As shown, a rotating ring 513 is rotatably connected inside the annular groove 17. The rotating ring 513 is fixedly connected to the rotating box 511. Multiple sets of fixing protrusions 512 are fixedly connected to the inner circumference of the rotating box 511. A connecting seat 510 is fixedly connected to the upper end of the rotating box 511. A groove 514 is opened in the connecting seat 510 corresponding to the position of the fixing block 59. The groove 514 is slidably connected to the fixing block 59. The driving bevel gear 51 and the driven bevel gear 54 can drive the connecting shaft 57 and the drive turntable 55 to rotate, thereby transmitting power to the linkage frame 58 on the connecting shaft 57 and the guide plate 5 on the drive turntable 55. 6. Simultaneously, the linkage frame 58 drives the rotating box 511 to rotate through the fixed block 59. The rotation of the rotating box 511 in turn drives the fixed protrusion 512 to rotate, so that the fixed protrusion 512 and the drive turntable 55 rotate in opposite directions. The lower end of the rotating box 511 is slidably connected to a connecting ring 515. Multiple sets of water outlet pipes 516 are evenly fixedly connected to the inner circumference of the connecting ring 515. Each set of water outlet pipes 516 is equipped with a filter screen. A valve is fixedly installed on the water outlet pipe 516. The upper suspended glue residue can be blocked outside the filter screen under the action of the filter screen, thereby realizing the separate collection of water and glue residue from the base paper fiber.

[0040] like Figures 1-7 As shown, a liquid collection tank 15 is fixedly connected to the upper end of the fixed bracket 14, and a guide plate 16 is fixedly connected to one side of the liquid collection tank 15. The guide plate 16 is set at an inclination. When the adhesive layer and the base paper in the tape waste are separated, and the base paper is decomposed into base paper fibers mixed into the water under the action of the degumming and separation component 5, the separated adhesive residue will be suspended on the water surface. When the valve on the water outlet pipe 516 is opened, the base paper fiber water in the installation box 13 flows out through the water outlet pipe 516 and flows out through the liquid collection tank 15 and the guide plate 16 to the centralized collection device.

[0041] The working principle of this embodiment is as follows: the staff puts the tape waste into the feeding guide box 4. The falling tape waste will enter the crushing box 31. The power of the second drive motor 37 is turned on. The output of the second drive motor 37 will drive the corresponding drive gear 34 to rotate. Since the drive gear 34 and the driven gear 35 mesh and transmit, the two crushing rollers 33 will rotate synchronously, thereby squeezing and crushing the tape waste accumulated in the crushing box 31, breaking the tape waste into small pieces, and sending them into the mounting box 13 below.

[0042] Turn on the water pump that is fixedly connected to the inlet pipe 24. The water pump will pump the external water source into the inlet pipe 24. The pumped water will enter the dosing tank 23 through the inlet pipe 24. At the same time, the gel hydrolysate that the staff added in advance to the dosing seat 25 will also enter the installation cylinder 26 through the dosing seat 25. Since there are multiple sets of evenly distributed outlet holes 27 on the outer wall of the installation cylinder 26, and the installation cylinder 26 is driven to rotate by the output end of the first drive motor 28, when the power of the first drive motor 28 is turned on, the gel hydrolysate inside the installation cylinder 26 can be thrown out through the multiple sets of outlet holes 27, and then pre-mixed with the water flowing inside the dosing tank 23, so that the water and gel hydrolysate can be evenly added to the installation tank 13.

[0043] When the third drive motor 52 is started, the output end of the third drive motor 52 drives the active bevel gear 51 to rotate. Since the active bevel gear 51 meshes with the auxiliary bevel gear 53, and the auxiliary bevel gear 53 meshes with the driven bevel gear 54, the active bevel gear 51 and the driven bevel gear 54 can drive the connecting shaft 57 and the drive turntable 55 to rotate respectively, thereby transmitting power to the linkage frame 58 on the connecting shaft 57 and the guide plate 56 on the drive turntable 55. At the same time, the linkage frame 58 drives the rotating box 511 to rotate through the fixed block 59. The rotation of the rotating box 511 drives the fixed protrusion 512 to rotate, so that the fixed protrusion 512 and the drive turntable 55 rotate in opposite directions.

[0044] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention.

Claims

1. A tape waste recycling and processing device, comprising a support base (1), characterized in that, Support frames (10) are fixedly connected to the four corners of the upper surface of the support base (1). An installation plate (11) is fixedly installed at the end of the support frame (10) away from the support base (1). An installation frame (12) is provided at the lower end of the installation plate (11). An installation box (13) is fixedly installed at the lower end of the installation frame (12). An annular groove (17) is provided in the installation box (13). A fixed bracket (14) is fixedly connected to the upper surface of the support base (1). The upper end of the mounting plate (11) is fixedly installed with a hydrolysis dosing component (2), the upper end of the hydrolysis dosing component (2) is fixedly connected with a crushing component (3), the upper end of the crushing component (3) is fixedly connected with a feed guide box (4), and the upper end of the fixed bracket (14) is fixedly installed with a degumming separation component (5). The crushing assembly (3) includes a crushing box (31) fixedly connected to the feed guide box (4), and a discharge guide box (30) is fixedly installed at the lower end of the crushing box (31). The degumming and separation assembly (5) includes a drive box (50) fixedly connected to a fixed bracket (14). A drive bevel gear (51) is rotatably connected to the lower end of the inner wall of the drive box (50). A third drive motor (52) is fixedly connected to the fixed bracket (14). The output end of the third drive motor (52) is fixedly connected to the drive bevel gear (51). An auxiliary bevel gear (53) is rotatably connected inside the drive box (50). A driven bevel gear (54) is provided on the side of the auxiliary bevel gear (53) away from the drive bevel gear (51). The auxiliary bevel gear (53) is connected to the drive bevel gear (51) and the driven bevel gear (54) respectively. A bevel gear (54) meshes with the driven bevel gear (54), and a drive turntable (55) is fixedly connected to the upper end of the driven bevel gear (54). The drive turntable (55) is rotatably connected to the drive box (50). A guide plate (56) is fixedly connected to the circumference of the drive turntable (55). A connecting shaft (57) is fixedly connected to the driving bevel gear (51). The connecting shaft (57) passes through the driven bevel gear (54) and the drive turntable (55) and is rotatably connected to them. A linkage frame (58) is fixedly connected to the upper end of the connecting shaft (57). A fixing block (59) is fixedly connected to the end of the linkage frame (58) away from the connecting shaft (57). A rotating ring (513) is rotatably connected inside the annular groove (17). The rotating ring (513) is fixedly connected to the rotating box (511). Multiple sets of fixed protrusions (512) are fixedly connected to the inner circumference of the rotating box (511). A connecting seat (510) is fixedly connected to the upper end of the rotating box (511). A groove (514) is opened in the connecting seat (510) corresponding to the position of the fixed block (59). The groove (514) is slidably connected to the fixed block (59). The lower end of the rotating box (511) is slidably connected to a connecting ring (515), which is rotatably connected to the drive turntable (55). Multiple sets of water outlet pipes (516) are uniformly fixedly connected to the inner circumference of the connecting ring (515). Each set of water outlet pipes (516) is equipped with a filter screen, and a valve is fixedly installed on the water outlet pipes (516).

2. The tape waste recycling and processing equipment according to claim 1, characterized in that, Hydraulic cylinders (18) are fixedly connected to the four corners of the upper surface of the support base (1), and the output end of the hydraulic cylinder (18) is fixedly connected to the mounting bracket (12).

3. The tape waste recycling and processing equipment according to claim 1, characterized in that, The crushing box (31) contains two symmetrically rotating crushing rollers (33). One end of one crushing roller (33) is fixedly connected to a drive gear (34). A driven gear (35) is meshed with the drive gear (34) on one side. The driven gear (35) is fixedly connected to the crushing roller (33) on the other side. A fixed seat (36) is installed on the side of the crushing box (31) near the drive gear (34). The fixed seat (36) is fixed to the crushing box (31) by multiple sets of fixing bolts (32). A second drive motor (37) is fixedly connected to the fixed seat (36). The output end of the second drive motor (37) is fixedly connected to the drive gear (34). Both the drive gear (34) and the driven gear (35) are rotatably connected to the crushing box (31).

4. The tape waste recycling and processing equipment according to claim 1, characterized in that, The hydrolysis dosing assembly (2) includes a fixed housing (20) fixedly connected to the discharge guide box (30). A liquid outlet pipe (21) is fixedly connected inside the fixed housing (20). One end of the liquid outlet pipe (21) is fixedly connected to a connecting pipe (22), and the other end of the connecting pipe (22) is fixedly connected to the dosing tank (23). An inlet pipe (24) is fixedly connected to the end of the dosing tank (23) away from the connecting pipe (22). The inlet pipe (24) is connected to the dosing tank (23). The connecting pipes (22) are interconnected. The dosing tank (23) is rotatably connected to the mounting cylinder (26). Multiple sets of drug outlet holes (27) are evenly opened on the circumference of the mounting cylinder (26). The lower end of the dosing tank (23) is fixedly connected to the first drive motor (28). The output end of the first drive motor (28) is fixed to the lower end of the mounting cylinder (26). The upper end of the dosing tank (23) is fixedly connected to the dosing seat (25). One end of the liquid inlet pipe (24) is fixedly installed with a water pump.

5. The tape waste recycling and processing equipment according to claim 1, characterized in that, The upper end of the fixed bracket (14) is fixedly connected to a liquid collection tank (15), and a guide plate (16) is fixedly connected to one side of the liquid collection tank (15). The guide plate (16) is inclined.

Citation Information

Patent Citations

  • Adhesive tape production waste treatment device

    CN213860176U