Coated paper processing waste crushing device

By combining the design of the waste crushing device for coated paper processing, the problems of dust pollution and uneven waste distribution during the crushing process are solved, achieving efficient and environmentally friendly waste treatment, reducing energy consumption and realizing the recycling of water resources.

CN224100784UActive Publication Date: 2026-04-10安徽壹普环保科技有限公司
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing waste crushing equipment for coated paper processing is prone to dust pollution during the crushing process, has low crushing efficiency, and uneven waste distribution, which affects the crushing quality and fails to effectively carry out subsequent processing.

Method used

By combining components such as a feeding elevator, a feeding vibration mechanism, a crushing mechanism, and a drain conveyor, the system achieves the lifting and conveying of waste materials, uniform feeding, dust suppression crushing, and drain discharge. Dust is reduced through atomized spraying and high-pressure water spraying, and the water separation mechanism enables the recycling of clean water.

Benefits of technology

It enables continuous waste treatment, reduces dust pollution, improves crushing efficiency, prevents waste from sticking, reduces energy consumption, and realizes the recycling of water resources.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224100784U_ABST
    Figure CN224100784U_ABST
Patent Text Reader

Abstract

The utility model provides a coated paper processing waste crushing device, belongs to the field of waste treatment, and solves the technical problems of serious dust pollution, non-uniform feeding and the like when coated paper waste is crushed. Comprising a feeding elevator, an equipment supporting rack and a draining conveyor, a smashing mechanism is arranged above the equipment supporting rack, the draining conveyor is located below the smashing mechanism, a feeding vibration mechanism is arranged above the smashing mechanism, the feeding elevator is located on the rear side of the feeding vibration mechanism, and a feeding hopper is arranged below the rear side of the feeding elevator; a water distribution mechanism is arranged below the equipment supporting rack and connected with the feeding vibration mechanism, the smashing mechanism and the draining conveyor through pipelines. Through mutual cooperation of all the mechanisms, a series of continuous treatment such as lifting and conveying, uniform feeding, dust falling and smashing and draining and discharging of the damp-proof coated paper waste is achieved, dust falling and water filtering are achieved at the same time, water is recycled, and energy consumption is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to waste material processing technical field relates to a kind of membrane-coated paper processing waste crushing device. BACKGROUND

[0002] Membrane-coated paper is a kind of composite material, which is covered with a layer of plastic film on the surface of paper through the process of membrane-coating. It has the characteristics of waterproof, moisture-proof and oil-proof, and is commonly used in food packaging, medicine packaging, electronic packaging and building materials. With the increasing demand for membrane-coated paper in various industries, the amount of waste generated during its production process is also increasing. How to efficiently dispose of these wastes not only affects the production cost of enterprises, but also has important significance for environmental protection.

[0003] On the one hand, the traditional crushing device is prone to produce a large amount of dust during the crushing process, which not only pollutes the working environment and harms the health of the operators, but also may cause dust explosion and other safety hazards. On the other hand, the crushed waste is not effectively treated. Moreover, the existing device has uneven distribution of waste during feeding, which affects the crushing efficiency and quality.

[0004] After searching, a kind of raw material crushing device for membrane-coated paper processing with adjustable is disclosed in Chinese patent literature

Application Number: 201921946206.8; Publication Number: CN211246900U

[0005] Although the raw material crushing device for membrane-coated paper processing with adjustable disclosed in this patent can manually adjust the equipment to the appropriate height for different height operators to use, making the use of the equipment more convenient, it does not solve the problem of serious dust pollution during the crushing of membrane-coated paper waste, and it is not conducive to the subsequent separation of paper and film of membrane-coated paper.

[0006] Therefore, we propose a kind of membrane paper processing waste crushing device, by the cooperation of each mechanism, realize the lifting conveying of damp-proof membrane paper waste, uniform feeding, dust crushing, drainage discharge and a series of continuous processing, while effectively reducing dust, filter water. The utility model discloses a kind of membrane paper processing waste crushing device, which is used to solve the technical problems of the prior art, i.e., how to realize the lifting conveying of damp-proof membrane paper waste, uniform feeding, dust crushing, drainage discharge and a series of continuous processing, while effectively reducing dust, filter water.

[0007] The utility model discloses a kind of membrane paper processing waste crushing device, which is used to solve the technical problems of the prior art, i.e., how to realize the lifting conveying of damp-proof membrane paper waste, uniform feeding, dust crushing, drainage discharge and a series of continuous processing, while effectively reducing dust, filter water.

[0008] The utility model discloses a kind of membrane paper processing waste crushing device, which is used to solve the technical problems of the prior art, i.e., how to realize the lifting conveying of damp-proof membrane paper waste, uniform feeding, dust crushing, drainage discharge and a series of continuous processing, while effectively reducing dust, filter water.

[0009] A kind of membrane paper processing waste crushing device, including feeding elevator, equipment support rack and drainage conveyor, the upper portion of the equipment support rack is equipped with crushing mechanism, drainage conveyor is located in the inner side of equipment support rack and is located below crushing mechanism, the upper portion of crushing mechanism is equipped with feeding vibration mechanism, feeding elevator is located in the rear side of feeding vibration mechanism, feeding elevator is connected with feeding vibration mechanism, the rear side below of feeding elevator is equipped with feeding hopper, the lower portion of equipment support rack is equipped with water separation mechanism, water separation mechanism is connected with feeding vibration mechanism, crushing mechanism and drainage conveyor respectively by pipeline.

[0010] The utility model discloses a kind of membrane paper processing waste crushing device, which is used to solve the technical problems of the prior art, i.e., how to realize the lifting conveying of damp-proof membrane paper waste, uniform feeding, dust crushing, drainage discharge and a series of continuous processing, while effectively reducing dust, filter water.

[0011] The utility model discloses a kind of membrane paper processing waste crushing device, which is used to solve the technical problems of the prior art, i.e., how to realize the lifting conveying of damp-proof membrane paper waste, uniform feeding, dust crushing, drainage discharge and a series of continuous processing, while effectively reducing dust, filter water.

[0012] The crushing mechanism comprises a crusher frame fixed at the upper end of the equipment support frame, a crushing motor fixed on the crusher frame, a plurality of equidistantly distributed high-pressure connectors penetrating the crusher frame, the high-pressure connectors being connected to the water distribution mechanism through pipelines at one end and being provided with corresponding high-pressure nozzles at the other end, two symmetrically arranged high-pressure mounting seats provided at the upper end of the inside of the crusher frame, the high-pressure nozzles being arranged at the upper end of the corresponding high-pressure mounting seats, the high-pressure nozzles being capable of being adjusted in angle, two tooth roller transmission shafts being rotatably arranged in the inside of the crusher frame, the tooth roller transmission shafts penetrating the crusher frame, a transmission gear being fixed at one end of each of the tooth roller transmission shafts, the two transmission gears being engaged, a chain coupling being arranged between the driving shaft of the crushing motor and the other end of the tooth roller transmission shaft, corresponding crushing tooth rollers being fixed on the tooth roller transmission shafts, the two crushing tooth rollers being engaged with each other and rotating, and a discharge hopper being fixed at the lower end of the crusher frame.

[0013] With the above structure, the driving shaft of the crushing motor drives one of the tooth roller transmission shafts to rotate through the chain coupling, thereby driving the corresponding transmission gear of the tooth roller transmission shaft to rotate, the two transmission gears being engaged with each other to rotate towards each other, thereby driving the two crushing tooth rollers to rotate towards each other, the waste material being crushed under the mutual extrusion and shearing action of the two crushing tooth rollers after entering the crusher frame from above, and the crushed waste material being discharged from the discharge hopper, at the same time, the high-pressure connectors being connected to the water distribution mechanism through the pipelines, the water distribution mechanism sending the clean water of the water draining conveyor to the high-pressure nozzles, the high-pressure nozzles spraying water to the two crushing tooth rollers at regular time intervals, and the water sprayed by the high-pressure nozzles being capable of cleaning and flushing the two crushing tooth rollers after crushing and adhering to the waste material.

[0014] The inlet vibrating mechanism comprises a vibrating base fixed at the upper end of the crusher frame, the vibrating base being hollow inside, a vibrating frame fixed above the vibrating base, a spring support fixed inside the vibrating frame, two feeding plates fixed at the lower end of the spring support, the two feeding plates being V-shaped, a plurality of spring rods provided on the spring support, a vibrating box fixed at the upper end of the spring rods, a vibrating motor fixed on the vibrating box, a uniform material plate fixed at the top end of the vibrating box, the uniform material plate being located below the inlet of the vibrating frame, two inlet baffles provided above the inlet, a plurality of equidistantly arranged atomizing connectors provided at the top end of the inside of the vibrating frame, the atomizing connectors being connected to the water distribution mechanism through pipelines at one end and penetrating the vibrating frame, and an atomizing nozzle being provided at the other end of each of the atomizing connectors.

[0015] With the above structure, the waste material enters the feeding port of the vibrating frame between the two feeding baffles, the vibrating motor drives the vibration box to vibrate, thereby driving the uniform material plate to vibrate, so that the waste material is uniformly distributed in the vibrating frame, facilitating subsequent crushing treatment. During the vibrating process, the waste material passes through the V-shaped feeding plate and is guided to the crushing tooth roller for transmission, and finally orderly enters the crushing mechanism below, realizing uniform feeding. At the same time, the water separation mechanism sends the clean water of the water drainage conveyor to the atomizing joint, so that the atomizing nozzle sprays and atomizes, reduces dust flying, removes static electricity and facilitates subsequent treatment.

[0016] The feeding elevator comprises an elevator base, a main body of the elevator is fixed above the elevator base, a feeding hopper is arranged at a rear feeding port of the main body of the elevator, an elevator motor is arranged on the main body of the elevator, a driving shaft of the elevator motor is in transmission connection with the main body of the elevator, a feeding pipe is fixed on a discharging port of the main body of the elevator, and the feeding pipe is connected at a feeding port of the vibrating frame.

[0017] With the above structure, the waste material is first poured into the feeding hopper, the driving shaft of the elevator motor is in transmission connection with the main body of the elevator, and the waste material is lifted upward in the main body of the elevator by the elevator motor. After reaching the top, the waste material enters the feeding pipe and finally falls into the feeding port of the vibrating frame below.

[0018] The water drainage conveyor comprises a conveyor frame, a water drainage conveyor belt, a water filter disc and a water collecting tank are sequentially arranged in the conveyor frame from top to bottom, the water collecting tank is connected with the water separation mechanism through a pipeline, the water collecting tank is connected with the water separation mechanism, a discharging frame is fixed at a discharging end of the conveyor frame, and an adjusting scraper is rotatably arranged on the discharging frame and abuts against the water drainage conveyor belt during work.

[0019] With the above structure, the crushed waste material falls on the water drainage conveyor belt. During the conveying process, the moisture in the waste material penetrates through the water drainage conveyor belt and drips into the water filter disc below. The water filter disc filters the collected water, and the filtered clean water flows to the water collecting tank for collection, facilitating subsequent recycling. The water separation mechanism sends the clean water in the water collecting tank to the atomizing joint and the high-pressure joint through the pipeline for spraying and high-pressure water spraying. At the same time, the water drainage conveyor belt conveys the water-drained waste material to the discharging frame, and the adjusting scraper is rotated to scrape off the waste material when the waste material is adhered to the water drainage conveyor belt.

[0020] The water separation mechanism comprises a submersible pump, a multi-way joint and a plurality of electromagnetic valves. The submersible pump is located in the interior of the water collecting tank, the water outlet end of the submersible pump is connected with the multi-way joint, and the remaining joints of the multi-way joint are respectively connected with the atomizing joint and the high-pressure joint through a plurality of pipelines.

[0021] Adopt above structure, submersible pump will collect water tank's inside clear water delivery to the water inlet joint of multi-way joint, the water outlet joint of multi-way joint is delivered to atomization joint and high pressure joint respectively through the pipeline of being connected, the pipeline is equipped with corresponding solenoid valve, control the flow rate and switch of clear water.

[0022] Compared with the prior art, the present coating paper processing waste crushing device has the following advantages:

[0023] 1. The waste is stably lifted and transported to the feeding vibration mechanism by the feeding elevator;

[0024] 2. The waste is uniformly vibrated by the feeding vibration mechanism, so that the waste is uniformly distributed into the crushing mechanism, facilitating efficient crushing;

[0025] 3. The water distribution mechanism cooperates with the feeding vibration mechanism and the crushing mechanism respectively, reduces dust pollution, realizes dust reduction and static electricity removal, and prevents the coating paper from adhering to the inside of the crushing mechanism;

[0026] 4. The waste is efficiently crushed by the crushing mechanism;

[0027] 5. The waste is transported and drained by the draining conveyor, the drained liquid is filtered, and the water distribution mechanism is cooperated to realize water recycling and reduce energy consumption. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is a schematic diagram of the three-dimensional structure of the present utility model.

[0029] Figure 2 is a schematic diagram of the cross-sectional structure of the present utility model.

[0030] Figure 3 is a schematic diagram of the three-dimensional structure of the feeding vibration mechanism in the present utility model.

[0031] Figure 4 is Figure 3 a schematic diagram of the cross-sectional structure of A-A in the present utility model.

[0032] Figure 5 is a schematic diagram of the three-dimensional structure of the crushing mechanism in the present utility model.

[0033] Figure 6 is a schematic diagram of the three-dimensional structure of the feeding hopper and the feeding elevator in the present utility model.

[0034] Figure 7 is a schematic diagram of the three-dimensional structure of the draining conveyor in the present utility model.

[0035] In the diagram, 1. Feeding elevator; 2. Feed hopper; 3. Feeding vibration mechanism; 4. Crushing mechanism; 5. Equipment support frame; 6. Drain conveyor; 7. Atomizing connector; 8. Feed baffle; 9. Vibrating frame; 10. Vibrating base; 11. Equalizing plate; 12. Vibrating box; 13. Spring bracket; 14. Atomizing nozzle; 15. Feeding plate; 16. Transmission gear; 17. Discharge hopper; 18. Crushing toothed roller; 19. High-pressure nozzle; 20. High-pressure connector; 21. Lifting motor; 22. Feeding pipe; 23. Lifting base; 24. Elevator body; 25. Conveyor frame; 26. Drain conveyor belt; 27. Adjusting scraper; 28. Discharge rack; 29. ​​Filter tray; 30. Crusher frame; 31. Toothed roller drive shaft; 32. Chain coupling; 33. Spring rod; 34. High-pressure mounting base. Detailed Implementation

[0036] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0037] like Figures 1-7 As shown, this waste crushing device for coated paper processing includes a feeding elevator 1, an equipment support frame 5, and a drain conveyor 6. A crushing mechanism 4 is located above the equipment support frame 5. The drain conveyor 6 is located inside the equipment support frame 5 and below the crushing mechanism 4. A feeding vibration mechanism 3 is located above the crushing mechanism 4. The feeding elevator 1 is located behind the feeding vibration mechanism 3 and is connected to the feeding vibration mechanism 3. A feeding hopper 2 is located below the rear side of the feeding elevator 1. A water distribution mechanism is located below the equipment support frame 5. The water distribution mechanism is connected to the feeding vibration mechanism 3, the crushing mechanism 4, and the drain conveyor 6 through pipes.

[0038] In this embodiment, the waste material cut during the coating paper processing is placed into the feed hopper 2 and enters the feeding elevator 1 through the feed hopper 2. The feeding elevator 1 lifts the waste material upward and conveys it to the feeding vibration mechanism 3. The waste material enters the feeding vibration mechanism 3, which makes the waste material enter the crushing mechanism 4 below evenly and stably. At the same time, the water distribution mechanism connects the drain conveyor 6 and the feeding vibration mechanism 3. The water distribution mechanism delivers clean water from the drain conveyor 6 to the feeding vibration mechanism 3. Atomized spraying is performed inside the feeding vibration mechanism 3 to reduce dust flying, remove static electricity, and facilitate subsequent processing. The crushing mechanism 4 crushes the waste material into smaller fragments. The crushing mechanism 4 has a timed cleaning function. The water distribution mechanism connects the drain conveyor 6 and the crushing mechanism 4. The water distribution mechanism delivers clean water from the drain conveyor 6 to the crushing mechanism 4. High-pressure timed cleaning is performed inside the crushing mechanism 4.

[0039] The crushed waste reaches the dewatering conveyor 6 below the crushing mechanism 4, the dewatering conveyor 6 conveys the crushed waste to the discharge end, and the dewatering conveyor 6 performs dewatering filtration, the clean water filtered by the dewatering conveyor 6 is conveyed to the crushing mechanism 4 and the feeding vibration mechanism 3 for recycling, realizing the whole waste crushing process.

[0040] The crushing mechanism 4 comprises a crushing frame 30 fixed to the upper end of the equipment support frame 5, a crushing motor fixed to the crushing frame 30, a plurality of equidistant high-pressure connectors 20 arranged on the crushing frame 30, the high-pressure connectors 20 penetrating the crushing frame 30, one end of the high-pressure connector 20 connected to the water distribution mechanism through a pipeline, the other end of the high-pressure connector 20 provided with a corresponding high-pressure nozzle 19, the upper end of the high-pressure nozzle 19 arranged on the corresponding high-pressure seat 34, the high-pressure nozzle 19 can be adjusted in angle, the crushing frame 30 is provided with two tooth roller transmission shafts 31 rotatingly arranged inside, one end of the tooth roller transmission shaft 31 fixed with a transmission gear 16, the two transmission gears 16 engaged, a chain coupling 32 arranged between the driving shaft of the crushing motor and the other end of the tooth roller transmission shaft 31, the tooth roller transmission shaft 31 fixed with a corresponding crushing tooth roller 18, the two crushing tooth rollers 18 engaged with each other, and the lower end of the crushing frame 30 fixed with a discharge hopper 17.

[0041] In this embodiment, the driving shaft of the crushing motor drives one of the tooth roller transmission shafts 31 to rotate through the chain coupling 32, thereby driving the corresponding transmission gear 16 of the tooth roller transmission shaft 31 to rotate, the two transmission gears 16 engaged with each other, so that the two transmission gears 16 rotate towards each other, thereby driving the two crushing tooth rollers 18 to rotate towards each other, the waste entering the crushing frame 30 from above is crushed under the mutual extrusion and shearing action of the two crushing tooth rollers 18, and the crushed waste is discharged from the discharge hopper 17, at the same time, the high-pressure connector 20 is connected to the water distribution mechanism through a pipeline, the water distribution mechanism sends the clean water of the dewatering conveyor 6 to the high-pressure nozzle 19, the high-pressure nozzle 19 sprays water to the two crushing tooth rollers 18 at regular intervals, and the water sprayed by the high-pressure nozzle 19 can clean and flush the two crushing tooth rollers 18 adhering with the crushed waste.

[0042] The feeding vibration mechanism 3 comprises a vibration base 10 fixed at the upper end of the crusher frame 30, the vibration base 10 is hollow inside, a vibration frame 9 is fixed above the vibration base 10, a spring support 13 is fixed inside the vibration frame 9, two feeding plates 15 are fixed at the lower end of the spring support 13, the two feeding plates 15 are V-shaped, a plurality of spring rods 33 are arranged on the spring support 13, a vibration box 12 is fixed at the upper end of the spring rods 33, a vibration motor is fixed on the vibration box 12, a uniform feeding plate 11 is fixed at the top inside of the vibration box 12, the uniform feeding plate 11 is located below the feeding port of the vibration frame 9, two feeding baffles 8 are arranged above the feeding port, a plurality of atomizing connectors 7 are arranged at equal intervals on the top of the vibration frame 9, one end of the atomizing connector 7 is connected with the water distribution mechanism through a pipeline, the atomizing connector 7 penetrates through the vibration frame 9, and the other end of the atomizing connector 7 is provided with an atomizing nozzle 14.

[0043] In the embodiment, the waste enters the feeding port of the vibration frame 9 between the two feeding baffles 8, the vibration motor drives the vibration box 12 to vibrate, thereby driving the uniform feeding plate 11 to vibrate, so that the waste is uniformly distributed in the vibration frame 9, and subsequent crushing treatment is facilitated, in the vibration process, the waste is guided to the crushing tooth roller 18 through the V-shaped feeding plate 15, and finally orderly enters the crushing mechanism 4 below, so that uniform feeding is realized, at the same time, the water distribution mechanism sends the clean water of the water draining conveyor 6 to the atomizing connector 7, so that the atomizing nozzle 14 sprays atomization, dust flying is reduced, static electricity is removed, and subsequent treatment is facilitated.

[0044] The feeding elevator 1 comprises an elevator base 23, an elevator body 24 is fixed above the elevator base 23, the feeding hopper 2 is arranged at the rear feeding port of the elevator body 24, the elevator body 24 is provided with an elevator motor 21, a driving shaft of the elevator motor 21 is in transmission connection with the elevator body 24, a feeding pipe 22 is fixed at the discharge port of the elevator body 24, and the feeding pipe 22 is connected at the feeding port of the vibration frame 9.

[0045] In the embodiment, the waste is first poured into the feeding hopper 2, the driving shaft of the elevator motor 21 is in transmission connection with the elevator body 24, the waste is lifted upwards in the elevator body 24 under the drive of the elevator motor 21, reaches the top, enters the feeding pipe 22, and finally falls into the feeding port of the vibration frame 9 below.

[0046] The water draining conveyor 6 comprises a conveyor frame 25, a water draining conveyor belt 26, a water filtering disc 29 and a water collecting tank are sequentially arranged inside the conveyor frame 25 from top to bottom, the water filtering disc 29 and the water collecting tank are connected through a pipeline, the water collecting tank is connected with the water distribution mechanism, a discharge frame 28 is fixed at the discharge end of the conveyor frame 25, an adjusting scraper 27 is rotatably arranged on the discharge frame 28, and the adjusting scraper 27 abuts against the water draining conveyor belt 26 when working.

[0047] In the embodiment, the crushed waste falls on the draining conveying belt 26, and the water in the waste is drained through the draining conveying belt 26 to the water filter tray 29 below during conveying, the water filter tray 29 filters the collected water, the filtered clean water flows to the water collecting tank through the pipeline for subsequent recycling, the water distribution mechanism conveys the clean water in the water collecting tank to the atomizing connector 7 and the high-pressure connector 20 through the pipeline for spraying and high-pressure water spraying, meanwhile, the draining conveying belt 26 conveys the drained waste to the discharge rack 28, and the rotating adjusting scraper 27 scrapes off the waste when the waste is adhered to the draining conveying belt 26.

[0048] The water distribution mechanism comprises a submersible pump, a multi-way connector and a plurality of electromagnetic valves, the submersible pump is located in the interior of the water collecting tank, the water outlet end of the submersible pump is connected with the multi-way connector, and the remaining a plurality of connectors of the multi-way connector are respectively connected with the atomizing connector 7 and the high-pressure connector 20 through a plurality of pipelines.

[0049] In the embodiment, the submersible pump conveys the clean water in the interior of the water collecting tank to the water inlet connector of the multi-way connector, the water outlet connector of the multi-way connector conveys the clean water to the atomizing connector 7 and the high-pressure connector 20 through the connected pipelines, and the pipelines are provided with corresponding electromagnetic valves for controlling the flow rate and on-off of the clean water.

[0050] The working principle of the utility model is: the waste cut in the processing of the coated paper is put into the feeding hopper 2, enters the feeding elevator 1 through the feeding hopper 2, the driving shaft of the lifting motor 21 is in transmission connection with the elevator main body 24, the lifting motor 21 drives the waste to be lifted upwards in the elevator main body 24, enters the feeding pipe 22 after reaching the top, and finally falls to the feeding port of the vibration machine frame 9 below, the waste enters the feeding port of the vibration machine frame 9 from between the two feeding baffles 8, the vibration motor drives the vibration box 12 to vibrate, thereby driving the uniform material plate 11 to vibrate, so that the waste is evenly distributed in the vibration machine frame 9, facilitating subsequent crushing treatment, in the vibration process, the waste is guided to the crushing tooth roller 18 through the V-shaped feeding plate 15, and finally orderly enters the crushing mechanism 4 below, realizing uniform feeding, meanwhile, the submersible pump conveys the clean water in the interior of the water collecting tank to the water inlet connector of the multi-way connector, the water outlet connector of the multi-way connector conveys the clean water to the atomizing connector 7 through the connected pipelines, the pipelines are provided with corresponding electromagnetic valves for controlling the flow rate and on-off of the clean water, so that the atomizing nozzle 14 sprays atomization, reduces dust flying, removes static electricity and facilitates subsequent treatment.

[0051] The driving shaft of the crushing motor drives one of the tooth roll transmission shafts 31 through a chain coupling 32 to rotate, thereby driving the corresponding transmission gear 16 of the tooth roll transmission shaft 31 to rotate, the two transmission gears 16 are engaged to rotate towards each other, thereby driving the two crushing tooth rolls 18 to rotate towards each other, and the waste material is crushed under the mutual extrusion and shearing action of the two crushing tooth rolls 18 after entering the crushing frame 30 from above, and the crushed waste material is discharged from the discharge hopper 17. At the same time, the high-pressure connector 20 is connected to the water distribution mechanism through a pipeline, and the submersible pump delivers clean water in the water collecting tank to the water inlet connector of the multi-way connector, and the water outlet connector of the multi-way connector delivers clean water to the atomizing connector 7 and the high-pressure connector 20 through the connected pipeline. The pipeline is provided with a corresponding electromagnetic valve to control the flow rate and switch of the clean water, so that the high-pressure nozzle 19 sprays water to the two crushing tooth rolls 18 at regular intervals, and the water sprayed by the high-pressure nozzle 19 can clean and flush the two crushing tooth rolls 18 after crushing and adhering to the waste material;

[0052] The crushed waste material falls on the draining conveyor belt 26, and in the conveying process, the water in the waste material drips through the draining conveyor belt 26 into the water filter tray 29 below, the water filter tray 29 filters the collected water, and the filtered clean water is collected in the water collecting tank through a pipeline for subsequent recycling, the submersible pump delivers clean water in the water collecting tank to the water inlet connector of the multi-way connector, and the water outlet connector of the multi-way connector delivers clean water to the atomizing connector 7 and the high-pressure connector 20 through the connected pipeline. The pipeline is provided with a corresponding electromagnetic valve to control the flow rate and switch of the clean water, and at the same time, the draining conveyor belt 26 transports the drained waste material to the discharge frame 28, and when the waste material is adhered to the draining conveyor belt 26, the rotating adjusting scraper 27 scrapes off the waste material, realizing the entire waste material crushing process.

[0053] In summary, the feeding elevator 1 stably lifts the waste material and delivers it to the feeding vibration mechanism 3;

[0054] The feeding vibration mechanism 3 uniformly vibrates the waste material to uniformly distribute the waste material into the crushing mechanism 4, facilitating efficient crushing;

[0055] The water distribution mechanism cooperates with the feeding vibration mechanism 3 and the crushing mechanism 4 respectively to reduce dust pollution, realize dust reduction and static electricity removal, and prevent the crushed film-coated paper from adhering to the inside of the crushing mechanism 4;

[0056] The crushing mechanism 4 efficiently crushes the waste material;

[0057] The draining conveyor 6 transports and drains the waste material, filters the collected draining liquid, and cooperates with the water distribution mechanism to realize water recycling and reduce energy consumption.

[0058] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art of the present application can make various modifications or supplements to the described specific embodiments or replace them with similar ways, but will not deviate from the spirit of the present application or exceed the scope defined by the appended claims.

Claims

1. A kind of coated paper processing waste crushing device, including feeding elevator (1), equipment support rack (5) and drain conveyor (6), it is characterized in that, The upper part of the equipment support frame (5) is provided with a crushing mechanism (4), the inside of the equipment support frame (5) and below the crushing mechanism (4) is provided with a draining conveyor (6), the upper part of the crushing mechanism (4) is provided with a feeding vibration mechanism (3), the rear side of the feeding vibration mechanism (3) is provided with a feeding elevator (1), the feeding elevator (1) is connected with the feeding vibration mechanism (3), the rear side of the feeding elevator (1) is provided with a feeding hopper (2), the lower part of the equipment support frame (5) is provided with a water distribution mechanism, and the water distribution mechanism is connected with the feeding vibration mechanism (3), the crushing mechanism (4) and the draining conveyor (6) through pipelines.

2. The device according to claim 1, wherein The crushing mechanism (4) comprises a crushing frame (30), the crushing frame (30) is fixed to the upper end of the equipment support frame (5), the crushing frame (30) is fixed with a crushing motor, a plurality of high-pressure connectors (20) are arranged on the crushing frame (30) at equal intervals, the high-pressure connectors (20) penetrate the crushing frame (30), one end of the high-pressure connector (20) is connected with the water distribution mechanism through a pipeline, the other end of the high-pressure connector (20) is provided with a corresponding high-pressure nozzle (19), the inside of the crushing frame (30) is provided with two symmetrical high-pressure seats (34) at the upper end, the high-pressure nozzle (19) is arranged at the upper end of the corresponding high-pressure seat (34), the angle of the high-pressure nozzle (19) can be adjusted, two tooth roller transmission shafts (31) are rotatably arranged in the crushing frame (30), one end of the tooth roller transmission shaft (31) is fixed with a transmission gear (16), the two transmission gears (16) are engaged, a chain coupling (32) is arranged between the driving shaft of the crushing motor and the other end of the tooth roller transmission shaft (31), corresponding crushing tooth rollers (18) are fixed on the tooth roller transmission shaft (31), and the two crushing tooth rollers (18) are engaged with each other and rotate, and a discharge hopper (17) is fixed to the lower end of the crushing frame (30).

3. The device according to claim 2, wherein The feeding vibration mechanism (3) comprises a vibration base (10), the vibration base (10) is fixed to the upper end of the crushing frame (30), the inside of the vibration base (10) is hollow, a vibration frame (9) is fixed to the upper part of the vibration base (10), a spring support (13) is fixed in the inside of the vibration frame (9), two feeding plates (15) are fixed to the lower end of the spring support (13), the two feeding plates (15) are V-shaped, a plurality of spring rods (33) are arranged on the spring support (13), a vibration box (12) is fixed to the upper end of the spring rod (33), a vibration motor is fixed to the vibration box (12), a uniform feeding plate (11) is fixed to the inside top end of the vibration box (12), the uniform feeding plate (11) is located below the feeding inlet of the vibration frame (9), two feeding baffles (8) are arranged above the feeding inlet, a plurality of atomization connectors (7) are arranged at equal intervals on the top end of the vibration frame (9), one end of the atomization connector (7) is connected with the water distribution mechanism through a pipeline, the atomization connector (7) penetrates the vibration frame (9), and the other end of the atomization connector (7) is provided with an atomization nozzle (14).

4. The waste crushing device for coated paper processing according to claim 3, characterized in that, The feeding elevator (1) comprises a lifting base (23), a lifting main body (24) fixed above the lifting base (23), a feeding hopper (2) arranged at a feeding inlet of the rear side of the lifting main body (24), a lifting motor (21) arranged on the lifting main body (24), a driving shaft of the lifting motor (21) in transmission connection with the lifting main body (24), and a feeding pipe (22) fixed on a discharging outlet of the lifting main body (24) and connected at a feeding inlet of the vibrating frame (9).

5. A paper processing waste shredding device according to claim 4, wherein, The water draining conveyor (6) comprises a conveyor frame (25), a water draining conveyor belt (26), a water filtering disc (29) and a water collecting tank arranged in the conveyor frame (25 from top to bottom, the water filtering disc (29) and the water collecting tank are connected through a pipeline, the water collecting tank is connected with a water distribution mechanism, a discharging frame (28) is fixed at a discharging end of the conveyor frame (25), and an adjusting scraper (27) is rotatably arranged on the discharging frame (28).

6. A paper processing waste shredding device according to claim 5, wherein, The water distribution mechanism comprises a submersible pump, a multi-way joint and a plurality of electromagnetic valves, the submersible pump is arranged in the water collecting tank, a water outlet of the submersible pump is connected with the multi-way joint, and the remaining joints of the multi-way joint are respectively connected with the atomizing joint (7) and the high-pressure joint (20) through a plurality of pipelines.

Citation Information

Patent Citations

  • Adjustable raw material crushing device for coated paper processing

    CN211246900U