Waste crushing device for film recovery of bubble cap machine

By designing a waste crushing device for blister film recycling, the elliptical motion and vibration screening of the crushing chamber combined with the lifting motor re-pull, the problems of poor screening effect and low degree of automation of existing devices are solved, and efficient re-pull and screening of plastic particles is achieved.

CN120481135AActive Publication Date: 2025-08-15SHIJIAZHUANG YUCAI PHARM PACKAGING MATERIAL CO LTD +1
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Patent Information

Application Number
CN202510776786.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-08-15
Estimated Expiration
2045-06-11

AI Technical Summary

Technical Problem

The screening effect of existing plastic crushing devices is average. When there are many crushed particles, it is easy to accumulate on the screen, the degree of automation is low, and plastic particles with larger particle sizes cannot be re-mixed.

Method used

A waste crushing device for blister film recycling is designed, including an operating table, a cutting rack, a horizontal motion rack, a crushing chamber, a vibrating rack and a lifting motor. Through the elliptical motion and vibration screening of the crushing chamber, the plastic fragments are re-milled and screened, and the lifting motor and cylinder are used to realize the re-milling function of the dump bucket.

Benefits of technology

The stability and screening efficiency of the plastic crushing device are improved, the re-milling of large particles is achieved, the degree of automation is enhanced, and the practicality of waste recycling and crushing effect are improved.

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Abstract

The invention discloses a waste crushing device for film recovery of a bubble cap machine, and belongs to the technical field of waste crushing and recovery. A first horizontal movement frame which reciprocates left and right is movably arranged between discharging frames, a crushing bin is fixedly arranged in the middle of a second horizontal movement frame, and a vibration frame located below the crushing bin is movably installed on a screening frame; a conical screen is installed in the vibration frame, and an inclined edge part is further arranged between the screen and the vibration frame. Threaded rods are arranged at the output ends of the lifting motors, a lifting frame is installed between the threaded rods in a threaded mode, and a tipping bucket is movably installed at the top of the lifting frame. A gathering bin is arranged on the outer wall of the vibration frame, and a slide facing the tipping bucket is arranged at the bottom of the gathering bin. Plastic film waste can be efficiently smashed through the smashing bin, when a driven wheel drives a first mounting frame and a second mounting frame to rotate, a meshing frame can also drive a linkage swing arm to rotate, then the smashing bin is driven to move along an oval track, and the stability and the screening efficiency are improved through the design.
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Description

Technical Field

[0001] The invention relates to the technical field of waste crushing and recycling, in particular to a waste crushing device for recycling blister machine films. Background Art

[0002] Blister packaging machines form blisters from transparent plastic film or sheeting, sealing the product between the blister and a base plate using methods such as heat sealing and gluing. These machines generate a significant amount of waste plastic film during use. As the consumption of film products continues to grow, so too does the amount of waste film. Improper use and post-processing of waste film can damage the environment and harm public health. Therefore, recycling and reusing waste film is crucial, turning waste into valuable resources.

[0003] Chinese patent application publication number CN113172798A discloses a plastic product crushing device and crushing method thereof, belonging to the technical field of crushing devices. A plastic product crushing device and crushing method thereof include a crushing box, a motor fixedly mounted on the lower end of the crushing box via a bracket, a rotating shaft fixedly connected to the output end of the motor extending into the crushing box, a plurality of evenly distributed first blades mounted on the outer wall of the rotating shaft, a plurality of second blades fixedly mounted on the inner wall of the crushing box, staggered with the first blades, the gap between the first and second blades decreasing progressively from top to bottom, a discharge port provided on the lower side wall of the crushing box, an inner bottom of the crushing box inclined toward the discharge port, and an anti-clogging screening device connected to the output end of the discharge port; the crushing box in this invention can achieve better crushing of plastic products, and the mesh is less likely to become clogged when screening plastic particles, resulting in higher screening efficiency.

[0004] However, the screening effect of the plastic crushing device disclosed above is average. When there are many crushed particles, they are easily accumulated on the screen. In addition, the degree of automation is average, and the plastic particles with larger particle sizes after crushing cannot be crushed again. Summary of the Invention

[0005] The purpose of the present invention is to provide a waste crushing device for blister machine film recycling in order to solve the problems that the screening effect of the existing plastic crushing device is general, when there are many crushed particles, they are easily accumulated on the screen, and the degree of automation is general, and plastic particles with larger particle sizes cannot be crushed again after crushing.

[0006] To achieve the above-mentioned object, the technical solution of the present invention is as follows: a waste crushing device for recycling blister machine film, comprising an operating table, a feeding rack is provided on the top of the operating table, and a screening rack is provided in the middle of the operating table; a horizontal motion rack 1 is movably provided between the feeding racks for left and right reciprocating motion, and a horizontal motion rack 2 is movably provided between the horizontal motion racks for front and back reciprocating motion; a crushing bin is fixedly provided in the middle of the horizontal motion rack 2, and a vibrating rack is movably mounted on the screening rack and is located below the crushing bin; a conical screen is installed inside the vibrating rack, and an inclined edge is provided between the screen and the vibrating rack; multiple groups of lifting motors are further provided on the side of the operating table, and threaded rods are provided at the output ends of the lifting motors, and lifting racks are threadedly mounted between the threaded rods, and a tipping bucket is movably mounted on the top of the lifting rack; a gathering bin is provided on the outer wall of the vibrating rack, and a slide is provided at the bottom of the gathering bin towards the tipping bucket; the larger plastic fragments screened by the vibrating rack are returned to the crushing bin for further screening through the tipping bucket.

[0007] As a further solution of the present invention: a symmetrical first sliding rod is arranged inside the unloading rack, and the horizontal motion frame 1 is slidably arranged between the first sliding rods; symmetrical vertical plates are arranged on the front and rear sides of the horizontal motion frame 1, and the horizontal motion frame 2 includes a symmetrical second sliding rod, and the horizontal motion frame 2 is slidably arranged between the vertical plates through the second sliding rod.

[0008] As a further solution of the present invention: a feed port is provided on the top of the crushing bin, a material collecting cover is also provided on the top of the crushing bin, a discharge port is provided on the bottom of the crushing bin; and a material guide arc plate facing the tipping bucket is provided on the material collecting cover.

[0009] As a further solution of the present invention: limiting piles are provided at the diagonals of the screening frame, and a lifting cylinder cooperating with the limiting piles is provided at the bottom of the vibration frame; multiple groups of symmetrical vibration motors are installed on the screening frame, and a knocking arm is installed at the output end of the vibration motor.

[0010] As a further solution of the present invention: a control valve is installed in the middle of the slide, and a control panel is provided on the outer wall of the operating table.

[0011] As a further solution of the present invention: a horizontal hanging plate is provided on the outer wall of the operating table, a fixed rod is provided on the hanging plate, and a bevel gear seat is provided on the top of the fixed rod; a sleeve is movably installed on the outside of the fixed rod, and a mounting frame 1 is provided on the top of the sleeve, a horizontal linkage shaft 1 is movably installed in the middle of the mounting frame 1, and a linkage main bevel gear engaged with the bevel gear seat is installed in the middle of the linkage shaft 1; a mounting frame 2 is fixedly provided on the side of the mounting frame 1, the linkage shaft 1 passes through the mounting frame 2 and a linkage slave bevel gear is installed at its end; a vertical linkage shaft 2 is movably installed inside the mounting frame 2, and a driving bevel gear engaged with the linkage slave bevel gear is installed at the bottom of the linkage shaft 2.

[0012] As a further solution of the present invention: a linkage swing arm is movably installed on the outer wall of the second horizontal motion frame, an engaging frame cooperating with the linkage swing arm is provided on the top of the second linkage shaft, and bolts are threadedly installed on both sides of the engaging frame.

[0013] As a further solution of the present invention: a driven wheel is fixedly provided at the bottom of the sleeve, a motion motor is also installed at the bottom of the suspension plate, a driving wheel is installed at the output end of the motion motor, and the driving wheel is connected to the driven wheel through a belt.

[0014] As a further solution of the present invention: threaded sleeves cooperating with the threaded rods are provided at the diagonals of the lifting frame, symmetrical swing seats are provided at the top of the lifting frame, and the tipping bucket is movably installed between the swing seats; a lifting cylinder is installed at the bottom of the lifting frame, the output end of the lifting cylinder abuts against the bottom of the tipping bucket, and multiple groups of return springs are also connected to the top of the lifting frame, and the top of the return spring is connected to the bottom of the tipping bucket.

[0015] As a further solution of the present invention: a collection box located below the screen is also installed at the bottom of the operating table.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. The present invention utilizes a crushing chamber to efficiently crush the plastic film waste remaining after the blister machine operation, with the crushed particles falling into the vibrating frame below. During the crushing process, the motion motor is activated. When the driven wheel drives the first and second mounting frames to rotate, the meshing frame, in conjunction with the linkage slave and driving bevel gears, also drives the linkage swing arm to rotate, thereby driving the crushing chamber to move in an elliptical trajectory, further evenly distributing the crushed particles onto the screen. This design improves the stability and screening efficiency of the waste crushing device for blister machine film recovery.

[0018] 2. After screening, qualified particles fall into the collection bin below. Particles with larger diameters accumulate along the edge of the collection bin before falling into the tipping bucket via a slide. The lifting motor is then activated, and when the lifting frame drives the tipping bucket upward to the side of the guide arc plate, the lifting cylinder throws the particles in the tipping bucket into the crushing bin for further crushing. This design improves the practicality and crushing effect of the waste crushing device for blister film recycling. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further explained below in conjunction with the accompanying drawings and examples:

[0020] Figure 1 It is a three-dimensional structural diagram of the present invention;

[0021] Figure 2 yes Figure 1 A magnified view of the structure at point A;

[0022] Figure 3 It is a three-dimensional structural diagram of the operating table in the present invention;

[0023] Figure 4 This is a three-dimensional structural diagram of the crushing bin in the present invention;

[0024] Figure 5 It is a three-dimensional structural diagram of the vibration frame in the present invention;

[0025] Figure 6 is a cross-sectional view of the vibration frame of the present invention;

[0026] Figure 7 It is a three-dimensional structural diagram of the mounting frame 1 and the mounting frame 2 in the present invention;

[0027] Figure 8 It is a three-dimensional structural diagram of the tipping bucket in the present invention.

[0028] Description of reference numerals:

[0029] 1. Operation table; 2. Screening rack; 3. Unloading rack; 4. First slide bar; 5. Horizontal motion rack 1; 6. Vertical plate; 7. Second slide bar; 8. Crushing bin; 9. Feeding port; 10. Unloading port; 11. Guide arc plate; 12. Control panel; 13. Limit pile; 14. Vibration rack; 15. Lifting cylinder; 16. Screen; 17. Edge; 18. Collection bin; 19. Slide; 20. Control valve; 21. Vibration motor; 22. Beating arm; 23. Collection box; 24. Linkage swing arm; 25. Suspension plate; 26. Fixing rod; 27. Cone Gear seat; 28. Sleeve; 29. Driven wheel; 30. Mounting frame 1; 31. Linkage shaft 1; 32. Linkage main bevel gear; 33. Mounting frame 2; 34. Linkage slave bevel gear; 35. Linkage shaft 2; 36. Driving bevel gear; 37. Engaging frame; 38. Bolt; 39. Motion motor; 40. Driving wheel; 41. Belt; 42. Lifting motor; 43. Threaded rod; 44. Threaded sleeve; 45. Lifting frame; 46. Swing seat; 47. Tipping bucket; 48. Lifting cylinder; 49. Return spring; 50. Horizontal motion frame 2; 51. Collecting cover. DETAILED DESCRIPTION

[0030] The following will be combined with the Figures 1 to 8 The technical solutions of the present invention are clearly and completely described. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0031] The present invention provides a waste crushing device for blister machine film recycling through improvement, such as Figures 1-8 As shown, it includes an operating table 1, a material unloading rack 3 is provided on the top of the operating table 1, and a screening rack 2 is provided in the middle of the operating table 1; a horizontal motion rack 1 5 that moves back and forth is movably provided between the material unloading racks 3, and a horizontal motion rack 2 50 that moves back and forth is movably provided between the horizontal motion racks 1 5; a crushing bin 8 is fixedly provided in the middle of the horizontal motion rack 2, and a vibration rack 14 located below the crushing bin 8 is movably installed on the screening rack 2; a conical screen 16 is installed inside the vibration rack 14, and the screen 16 is connected to the vibration rack 14 is also provided with an inclined edge portion 17; the side of the operating table 1 is also provided with multiple groups of lifting motors 42, the output end of the lifting motor 42 is provided with a threaded rod 43, a lifting frame 45 is threadedly installed between the threaded rod 43, and a tipping bucket 47 is movably installed on the top of the lifting frame 45; a gathering bin 18 is provided on the outer wall of the vibration frame 14, and a slide 19 facing the tipping bucket 47 is provided at the bottom of the gathering bin 18; the larger plastic fragments screened by the vibration frame 14 are returned to the crushing bin 8 through the tipping bucket 47 for re-screening.

[0032] In this embodiment, the waste shredding device for blister film recycling primarily consists of two components: an operating table 1 and a tipping bucket 47. To operate the device, waste plastic is first added to the collection hood 51, and the motion motor 39 and vibration motor 21 are activated. The plastic, crushed by the crushing bin 8, falls through the discharge port 10 onto the screen 16 below. When the driven wheel 29 drives the first and second mounting frames 30 and 33 to rotate, the meshing frame 37, in conjunction with the interlocking slave bevel gears 34 and drive bevel gears 36, also rotates the interlocking swing arm 24, thereby driving the crushing bin 8 in an elliptical motion, evenly distributing the crushed plastic fragments onto the screen 16. When the vibration motor 21 intermittently vibrates the bottom of the vibration frame 14 via the striking arm 22, larger fragments that have passed through the screening fall along the screen 16 onto the edge 17, where they are then collected in the collection bin 18. When the lifting frame 45 drives the tipping bucket 47 upward to the side of the guide arc plate 11, the particles in the tipping bucket 47 are thrown into the crushing bin 8 through the lifting cylinder 48 for further crushing.

[0033] See attached Figure 3 -Attached Figure 4 A symmetrical first slide bar 4 is provided inside the unloading rack 3, and the horizontal motion rack 1 5 is slidably set between the first slide bars 4; symmetrical vertical plates 6 are provided on the front and rear sides of the horizontal motion rack 1 5, and the horizontal motion rack 2 50 includes a symmetrical second slide bar 7, and the horizontal motion rack 2 50 is slidably set between the vertical plates 6 through the second slide bar 7.

[0034] In this embodiment, to ensure that horizontal motion frame 1 5 can freely move left and right relative to unloading frame 3, horizontal motion frame 1 5 is slidably disposed between first slide bars 4. To ensure that horizontal motion frame 2 50 can freely move forward and backward relative to horizontal motion frame 1 5, horizontal motion frame 2 50 is slidably disposed between vertical plates 6 via second slide bars 7. The cooperation between horizontal motion frame 1 5 and horizontal motion frame 2 50 enables complex movement of crushing bin 8.

[0035] See attached Figure 1 and attached Figure 4 A feed port 9 is provided at the top of the crushing bin 8 , a material collecting cover 51 is also provided at the top of the crushing bin 8 , and a material discharge port 10 is provided at the bottom of the crushing bin 8 ; a material guide arc plate 11 facing the tipping bucket 47 is provided on the material collecting cover 51 .

[0036] In this embodiment, when the tipping bucket 47 throws the crushed materials into the collecting cover 51, since the crushing bin 8 and the horizontal motion frame 2 50 are moving, in order to ensure that the crushed materials can accurately fall into the collecting cover 51 when thrown, a material guide arc plate 11 structure is designed.

[0037] See attached Figure 3 and attached Figure 5A limiting pile 13 is set at the diagonal position of the screening frame 2, and a lifting cylinder 15 that cooperates with the limiting pile 13 is set at the bottom of the vibration frame 14; multiple groups of symmetrical vibration motors 21 are installed on the screening frame 2, and a knocking arm 22 is installed at the output end of the vibration motor 21.

[0038] In this embodiment, when the vibration motor 21 intermittently vibrates the bottom of the vibration frame 14 via the striking arm 22, the vibration frame 14 reciprocates up and down along the stopper 13, thereby efficiently screening the debris. Because the center of the screen 16 is higher than the edge 17, the larger debris that has been screened falls along the screen 16 into the edge 17. Because the edge 17 is tilted toward the collection bin 18, the debris accumulates along the edge 17 into the collection bin 18.

[0039] See attached Figure 3 and attached Figure 5 A control valve 20 is installed in the middle of the slide 19, and a control panel 12 is provided on the outer wall of the operating platform 1.

[0040] In this embodiment, when the crushed material is thrown into the crushing bin 8 by the tipping bucket 47, a control valve 20 is provided to prevent larger plastic fragments from continuing to fall along the slide 19. In order to control the operation of the device, a control panel 12 is provided.

[0041] See attached Figure 1 -Attached Figure 2 and attached Figure 7 A horizontal hanging plate 25 is provided on the outer wall of the operating table 1, and a fixed rod 26 is provided on the hanging plate 25, and a bevel gear seat 27 is provided on the top of the fixed rod 26; a sleeve 28 is movably installed on the outside of the fixed rod 26, and a mounting frame 30 is provided on the top of the sleeve 28, and a horizontal linkage shaft 31 is movably installed in the middle of the mounting frame 30, and a linkage main bevel gear 32 engaged with the bevel gear seat 27 is installed in the middle of the linkage shaft 31; a mounting frame 2 33 is fixedly provided on the side of the mounting frame 1 30, and the linkage shaft 1 31 passes through the mounting frame 2 33 and a linkage slave bevel gear 34 is installed at its end; a vertical linkage shaft 2 35 is movably installed inside the mounting frame 2 33, and a driving bevel gear 36 engaged with the linkage slave bevel gear 34 is installed at the bottom of the linkage shaft 2 35.

[0042] In this embodiment, when the motion motor 39 drives the sleeve 28 to rotate, the mounting frame 1 30 also rotates with it. At this time, under the meshing of the bevel gear seat 27, the linkage main bevel gear 32 drives the linkage shaft 1 31 to rotate. At this time, the linkage slave bevel gear 34 drives the linkage shaft 2 35 and the top engagement frame 37 to rotate relative to the mounting frame 2 33.

[0043] See attached Figure 1 -Attached Figure 2 and attached Figure 7A linkage swing arm 24 is movably mounted on the outer wall of the horizontal motion frame 50 , and an engagement frame 37 cooperating with the linkage swing arm 24 is provided on the top of the linkage shaft 35 , and bolts 38 are threadedly mounted on both sides of the engagement frame 37 .

[0044] In this embodiment, when the horizontal motion frame 2 50 performs an elliptical motion relative to the unloading frame 3, the motion trajectory of the crushing bin 8, namely, the lengths of its major and minor axes, can be further adjusted by adjusting the relative position between the linkage swing arm 24 and the engagement frame 37. When the engagement frame 37 is positioned closer to the end relative to the linkage swing arm 24, the major and minor axes of the ellipse also lengthen synchronously, thereby expanding the unloading range of the crushing bin 8.

[0045] See attached Figure 3 and attached Figure 7 A driven wheel 29 is fixedly provided at the bottom of the sleeve 28, and a motion motor 39 is also installed at the bottom of the suspension plate 25. A driving wheel 40 is installed at the output end of the motion motor 39, and the driving wheel 40 is connected to the driven wheel 29 through a belt 41.

[0046] In this embodiment, a motion motor 39 is provided to drive the first mounting frame 30 and the second mounting frame 33 to rotate automatically, thereby further driving the second horizontal motion frame 50 and the crushing bin 8 to move.

[0047] See attached Figure 1 and attached Figure 8 A threaded sleeve 44 cooperating with the threaded rod 43 is provided at the diagonal portion of the lifting frame 45, and a symmetrical swing seat 46 is provided at the top of the lifting frame 45, and the tipping bucket 47 is movably installed between the swing seats 46; a lifting cylinder 48 is installed at the bottom of the lifting frame 45, and the output end of the lifting cylinder 48 abuts against the bottom of the tipping bucket 47. The top of the lifting frame 45 is also connected to multiple groups of return springs 49, and the top of the return spring 49 is connected to the bottom of the tipping bucket 47.

[0048] In this embodiment, when the amount of plastic debris in the bucket 47 is high, the lifting motor 42 is activated. The lifting frame 45 drives the bucket 47 upward to the side of the guide arc plate 11. The lifting cylinder 48 then throws the particles in the bucket 47 into the crushing chamber 8 for further crushing. After the throwing is completed, the lifting cylinder 48 is turned off, and the bucket 47 returns to its original position under the action of the return spring 49.

[0049] See attached Figure 1 and attached Figure 3 A collecting box 23 below the screen 16 is also installed at the bottom of the operating table 1.

[0050] In this embodiment, a collection box 23 is designed to collect the plastic particles that meet the requirements after screening and then carry out further processing and recycling.

[0051] The working principle of the present invention is as follows: when the device is in use, waste plastics are first added to the collecting cover 51, and the motion motor 39 and the vibration motor 21 are started. The plastic crushed by the crushing bin 8 falls into the screen 16 below through the discharge port 10. When the driven wheel 29 drives the mounting frame 1 30 and the mounting frame 2 33 to rotate, the meshing frame 37 will also drive the linkage swing arm 24 to rotate under the cooperation of the linkage slave bevel gear 34 and the driving bevel gear 36, and then drive the crushing bin 8 to move in an elliptical trajectory, so that the crushed plastic fragments are evenly spread on the screen 16. When the vibration motor 21 intermittently vibrates the bottom of the vibration frame 14 through the knocking arm 22, the larger fragments after screening fall into the edge portion 17 along the screen 16, and the fragments gather in the gathering bin 18 along the edge portion 17. When the lifting frame 45 drives the tipping bucket 47 upward to the side of the guide arc plate 11, the particles in the tipping bucket 47 are thrown into the crushing bin 8 through the lifting cylinder 48 for further crushing.

[0052] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and inventive features disclosed herein.

Claims

1. A waste crushing device for recycling blister film, comprising an operating table (1), characterized in that: A material discharging rack (3) is provided on the top of the operating table (1), and a screening rack (2) is provided in the middle of the operating table (1); a horizontal motion rack (5) for left-right reciprocating motion is movably provided between the material discharging racks (3), and a horizontal motion rack (50) for front-back reciprocating motion is movably provided between the horizontal motion racks (5); a crushing bin (8) is fixedly provided in the middle of the horizontal motion rack (50), and a vibration rack (14) located below the crushing bin (8) is movably installed on the screening rack (2); a conical screen (16) is installed inside the vibration rack (14), and an inclined edge portion (17) is further provided between the screen (16) and the vibration rack (14); The side of the operating table (1) is also provided with multiple groups of lifting motors (42), the output end of the lifting motor (42) is provided with a threaded rod (43), a lifting frame (45) is threadedly installed between the threaded rods (43), and a tipping bucket (47) is movably installed on the top of the lifting frame (45); a gathering bin (18) is provided on the outer wall of the vibration frame (14), and a slide (19) facing the tipping bucket (47) is provided at the bottom of the gathering bin (18); the larger plastic fragments screened by the vibration frame (14) are returned to the crushing bin (8) through the tipping bucket (47) for re-screening.

2. The waste crushing device for recycling blister film according to claim 1, characterized in that: A symmetrical first slide bar (4) is provided inside the unloading rack (3), and the horizontal motion rack 1 (5) is slidably provided between the first slide bars (4); symmetrical vertical plates (6) are provided on the front and rear sides of the horizontal motion rack 1 (5), and the horizontal motion rack 2 (50) includes a symmetrical second slide bar (7), and the horizontal motion rack 2 (50) is slidably provided between the vertical plates (6) via the second slide bar (7).

3. The waste crushing device for recycling blister film according to claim 1, characterized in that: The top of the crushing bin (8) is provided with a feed port (9), the top of the crushing bin (8) is also provided with a material collecting cover (51), and the bottom of the crushing bin (8) is provided with a material discharge port (10); the material collecting cover (51) is provided with a material guide arc plate (11) facing the tipping bucket (47).

4. The waste crushing device for recycling blister film according to claim 1, characterized in that: A limiting pile (13) is provided at the diagonal position of the screening frame (2), and a lifting cylinder (15) cooperating with the limiting pile (13) is provided at the bottom of the vibration frame (14); a plurality of symmetrical vibration motors (21) are installed on the screening frame (2), and a knocking arm (22) is installed at the output end of the vibration motor (21).

5. A waste crushing device for recycling blister film according to any one of claims 1 to 4, characterized in that: A control valve (20) is installed in the middle of the slide (19), and a control panel (12) is provided on the outer wall of the operating platform (1).

6. The waste crushing device for recycling blister film according to claim 1, characterized in that: A horizontal hanging plate (25) is provided on the outer wall of the operating table (1), a fixing rod (26) is provided on the hanging plate (25), and a bevel gear seat (27) is provided on the top of the fixing rod (26); a sleeve (28) is movably installed on the outside of the fixing rod (26), a mounting frame (30) is provided on the top of the sleeve (28), a horizontal linkage shaft (31) is movably installed in the middle of the mounting frame (30), and the middle of the linkage shaft (31) is installed There is a linkage main bevel gear (32) meshed with the bevel gear seat (27); a mounting frame 2 (33) is fixedly provided on the side of the mounting frame 1 (30); the linkage shaft 1 (31) passes through the mounting frame 2 (33) and a linkage slave bevel gear (34) is installed at its end; a vertical linkage shaft 2 (35) is movably installed inside the mounting frame 2 (33); a driving bevel gear (36) meshed with the linkage slave bevel gear (34) is installed at the bottom of the linkage shaft 2 (35).

7. The waste crushing device for recycling blister film according to claim 6, characterized in that: A linkage swing arm (24) is movably mounted on the outer wall of the second horizontal motion frame (50), and an engagement frame (37) cooperating with the linkage swing arm (24) is provided on the top of the second linkage shaft (35), and bolts (38) are threadedly mounted on both sides of the engagement frame (37).

8. The waste crushing device for recycling blister film according to claim 6, characterized in that: A driven wheel (29) is fixedly provided at the bottom of the sleeve (28), a motion motor (39) is also installed at the bottom of the suspension plate (25), a driving wheel (40) is installed at the output end of the motion motor (39), and the driving wheel (40) is connected to the driven wheel (29) through a belt (41).

9. A waste crushing device for recycling blister film according to any one of claims 1 to 4, characterized in that: A threaded sleeve (44) cooperating with the threaded rod (43) is provided at the diagonal position of the lifting frame (45), and a symmetrical swing seat (46) is provided at the top of the lifting frame (45), and the tipping bucket (47) is movably installed between the swing seats (46); a lifting cylinder (48) is installed at the bottom of the lifting frame (45), and the output end of the lifting cylinder (48) abuts against the bottom of the tipping bucket (47); the top of the lifting frame (45) is also connected to multiple groups of return springs (49), and the top of the return spring (49) is connected to the bottom of the tipping bucket (47).

10. A waste crushing device for recycling blister film according to any one of claims 1 to 4, characterized in that: The bottom of the operating table (1) is also provided with a collecting box (23) located below the screen (16).

Citation Information

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