A waste treatment device for carton production and a method of using the same
By combining vibrating screening, reflux conveying, and airflow adjustment mechanisms, the problem of large pieces of waste material being missed in the waste material processing device for cardboard box production has been solved, achieving more efficient waste material crushing and collection.
Patent Information
- Application Number
- CN202510089877.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2045-01-21
AI Technical Summary
Existing waste disposal equipment for cardboard box production is prone to missing large pieces of waste during the crushing process, resulting in incomplete subsequent processing and wasting time and manpower.
The system employs a vibrating screening mechanism, a reflux conveying mechanism, an airflow adjustment mechanism, and an angle adjustment mechanism. Through vibrating screening, reflux conveying, and airflow adjustment, it ensures that waste materials are fully crushed and reduces omissions.
It enables repeated crushing of missed waste materials, reduces manual refeeding, shortens time and manpower input, and improves the efficiency and integrity of waste treatment.
Smart Images

Figure CN119793864B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of waste treatment devices, and particularly relates to a waste treatment device for carton production and a use method thereof. BACKGROUND
[0002] The waste treatment device for carton production mainly comprises various types of equipment, aiming at effectively treating and recycling waste generated in the carton production process, such as waste collection and pretreatment equipment, waste crushing device, waste discharge and collection device, etc.
[0003] In general, the waste treatment device for carton production plays a crucial role in the carton production process, which not only helps to realize the reduction, recycling and harmless treatment of waste, but also helps to promote the sustainable development of the carton production industry.
[0004] The crushing device is one of the key equipment in the waste treatment of carton production, which can decompose the waste with a larger volume into smaller particles for subsequent processing and recycling, for example, by rotating two crushing rollers in opposite states to make the crushing blades crush the raw materials.
[0005] At present, during the waste treatment of carton production, the crushing blades installed on the crushing rollers are used to crush the carton waste, so that the carton waste is decomposed into smaller particles. However, when the crushing device encounters uneven wear of the crushing blades after long-term use, congestion of the crushing device due to one-time input of too much waste, incomplete treatment, and unreasonable design of the feed inlet, it is easy to cause large waste to be directly discharged without being crushed. When the existing crushing device repeatedly crushes the missed waste, it needs to be re-fed, which wastes a lot of time and manpower. Most of the existing crushing devices only crush the carton once, and large waste is generally not repeatedly treated. Therefore, it is difficult to completely crush the carton, and there will always be missed large waste, which is not conducive to the subsequent storage and treatment of waste.
[0006] The information disclosed in this section of the background art is only intended to increase the understanding of the overall background of the application and should not be considered as acknowledging or implying in any form that this information constitutes prior art known to those skilled in the art. SUMMARY
[0007] The purpose of the present application is to provide a waste treatment device for carton production and a use method thereof, which can solve the problem that most of the existing crushing devices only crush the carton once, and there will always be missed large waste, which is not conducive to the subsequent storage and treatment of waste.
[0008] In order to achieve the above-mentioned purpose, the technical scheme provided by an embodiment of the present application is as follows:
[0009] A waste treatment device for carton production, comprising a treatment device body, a vibrating screening mechanism, a backflow conveying mechanism, an airflow adjusting mechanism and an angle adjusting mechanism;
[0010] The treatment device body is provided with the vibrating screening mechanism, which comprises a vibrating screening support net, a vibrating screening motor is arranged on the vibrating screening support net, vibrating screening cams are fixedly installed at both ends of the vibrating screening motor, and a vibrating screening support shaft is rotatably installed in the vibrating screening support net.
[0011] The treatment device body is provided with the backflow conveying mechanism, which comprises a backflow conveying transmission belt, a plurality of uniformly distributed backflow conveying collection plates are fixedly installed on the backflow conveying transmission belt, a backflow conveying guide bin is arranged on one side of the backflow conveying transmission belt, and a backflow conveying collection block is arranged on the lower side of the backflow conveying transmission belt.
[0012] The lower side of the treatment device body is fixedly provided with the airflow adjusting mechanism, which comprises an airflow adjusting containing bin, an airflow adjusting fan is arranged on one side of the airflow adjusting containing bin, a pair of airflow adjusting protective covers are arranged outside the airflow adjusting fan, and an airflow adjusting guide net is fixedly installed on the airflow adjusting containing bin.
[0013] The airflow adjusting containing bin is fixedly provided with the angle adjusting mechanism on one side, which comprises an angle adjusting motor, an angle adjusting threaded rod is fixedly installed on the angle adjusting motor, and a plurality of uniformly distributed angle adjusting threaded blocks are installed on the angle adjusting threaded rod.
[0014] In one or more embodiments of the present application, a vibrating screening support frame is installed between the vibrating screening support net and the vibrating screening motor, which can support the vibrating screening motor, reduce the possibility of the vibrating screening motor hindering the paper box waste, provide corresponding space for the rotation of the vibrating screening cam, and facilitate the use of the vibrating screening motor.
[0015] The vibrating screening support shaft penetrates through the treatment device body, can better support the vibrating screening support net through the treatment device body, make the vibration of the vibrating screening support net more controllable, and guarantee the balance of the vibrating screening support net.
[0016] A vibrating screening mounting shaft is fixedly installed at the end of the vibrating screening support net away from the vibrating screening support shaft, which facilitates the rotation of the vibrating screening telescopic rod and the installation of the vibrating screening telescopic rod, and a vibrating screening telescopic rod is rotatably installed between the vibrating screening mounting shaft and the treatment device body, which can pull the vibration of the vibrating screening support net, limit the vibration range of the vibrating screening support net, and make the vibration of the vibrating screening support net more controllable.
[0017] In one or more embodiments of the present application, the backflow conveying and collecting block is fixedly connected with the air flow adjusting containing bin, which can improve the stability of the backflow conveying and collecting block, make the backflow conveying and collecting block better collect carton waste, and make the backflow conveying and collecting plate better convey carton scraps.
[0018] The backflow conveying connecting film is installed between the backflow conveying and collecting block and the vibrating screen branch support net, which connects the backflow conveying and collecting block and the vibrating screen branch support net, so that the carton waste on the vibrating screen branch support net can better enter the backflow conveying and collecting block, facilitating the conveying of the backflow conveying and collecting plate and reducing the difficulty of conveying of the backflow conveying and collecting plate.
[0019] The backflow conveying protection bin is fixedly installed on the processing device body, which can protect the backflow conveying and collecting plate, reduce the possibility of carton waste leakage, and make the carton waste better be input into the processing device body again.
[0020] The backflow conveying protection bin is fixedly connected with the backflow conveying guide bin, which facilitates the fixation of the backflow conveying guide bin, provides corresponding support for the installation of the backflow conveying guide bin, and facilitates the guidance of the backflow conveying guide bin to the carton waste.
[0021] In one or more embodiments of the present application, the backflow conveying protection bin is excavated with a guide groove matched with the backflow conveying guide bin, which facilitates the installation of the backflow conveying guide bin, and the processing device body is excavated with a conveying groove matched with the backflow conveying transmission belt, which facilitates the rotation of the backflow conveying transmission belt and provides corresponding space for the rotation of the backflow conveying transmission belt.
[0022] The backflow conveying transmission belt is provided with a pair of backflow conveying support shafts, which can facilitate the installation of the backflow conveying friction pad, support the balance of the backflow conveying friction pad, and drive the rotation of the backflow conveying transmission belt.
[0023] In one or more embodiments of the present application, the backflow conveying support shaft is fixedly installed with a backflow conveying friction pad outside, which can support the backflow conveying transmission belt, improve the stability of the backflow conveying transmission belt, and the backflow conveying support shaft penetrates the processing device body.
[0024] The backflow conveying protection bin is fixedly installed with a backflow conveying motor, which facilitates the rotation of the backflow conveying support shaft, provides corresponding power for the rotation of the backflow conveying support shaft, and the backflow conveying motor is fixedly connected with the backflow conveying support shaft.
[0025] In one or more embodiments of the present application, the air flow adjusting protection cover penetrates the air flow adjusting containing bin, which facilitates the installation of the air flow adjusting fan, improves the stability of the air flow adjusting fan, and facilitates the circulation of air.
[0026] The airflow adjusting dustproof net is capable of reducing dust from the outside into the airflow adjusting containing bin, and the airflow adjusting support frame can support the airflow adjusting fan, so that the balance of the airflow adjusting fan is guaranteed.
[0027] The airflow adjusting collecting bin is slidably installed on both sides of the airflow adjusting containing bin, which facilitates the collection of the paper box waste by the user, is arranged through the processing device body, facilitates the installation of the airflow adjusting collecting bin, improves the stability of the airflow adjusting collecting bin, and enables the airflow adjusting collecting bin to slide.
[0028] In one or more embodiments of the present application, the airflow adjusting motor is fixedly installed in the airflow adjusting containing bin, which can drive the rotation of the airflow adjusting driving leather wheel and provide corresponding power for the rotation of the airflow adjusting driving leather wheel.
[0029] The airflow adjusting motor is fixedly installed on the airflow adjusting motor, which can drive the rotation of the airflow adjusting driven leather wheel through the airflow adjusting transmission belt, and provide corresponding power for the rotation of the airflow adjusting driven leather wheel.
[0030] The airflow adjusting fan is fixedly installed on the airflow adjusting fan, and the airflow adjusting transmission belt is installed between the airflow adjusting driving leather wheel and the airflow adjusting driven leather wheel, which can play a transmission role, so that the airflow adjusting driving leather wheel can drive the rotation of the airflow adjusting driven leather wheel.
[0031] In one or more embodiments of the present application, the angle adjusting threaded rod is arranged through the airflow adjusting containing bin, which facilitates the installation of the angle adjusting threaded rod, improves the balance of the angle adjusting threaded rod, and improves the stability of the angle adjusting threaded rod.
[0032] The angle adjusting threaded rod is matched with the angle adjusting threaded block, and when the angle adjusting threaded rod rotates, the angle adjusting threaded block can be driven to displace, the angle adjusting guide plate is rotatably installed on the angle adjusting threaded block, can guide the air, and the air blows to the vibrating screen branch support net at a better angle.
[0033] The airflow adjusting containing bin is provided with a rotating groove matched with the angle adjusting guide plate, which facilitates the installation of the angle adjusting guide plate, facilitates the rotation of the angle adjusting guide plate, and provides a corresponding space for the rotation of the angle adjusting guide plate.
[0034] In one or more embodiments of the present invention, a pair of angle adjustment support plates are fixedly installed on the airflow adjustment receiving chamber, which facilitates the installation of the angle adjustment mounting block, improves the stability of the angle adjustment mounting block, and ensures the balance of the angle adjustment mounting block.
[0035] Angle adjustment positioning shafts are slidably installed on both sides of the angle adjustment guide plate, which facilitates the rotation of the angle adjustment guide plate and the sliding of the angle adjustment guide plate, and can position the angle adjustment guide plate.
[0036] The angle adjustment positioning shaft is rotatably mounted with an angle adjustment mounting block, which can position the angle adjustment positioning shaft and improve its stability. The angle adjustment mounting block is fixedly connected to the angle adjustment support plate.
[0037] A method of using a waste disposal device for cardboard box production includes the following steps:
[0038] S1. After the carton is processed by the processing device, it will fall on the upper side of the vibrating screen support mesh. Start the vibrating screen motor to make the vibrating screen cam rotate. The rotation of the vibrating screen cam will cause the vibrating screen support mesh to vibrate.
[0039] S2. The processed cardboard boxes are screened by the vibration of the vibrating screen support net. Some of the debris falls onto the airflow adjustment guide net through the vibrating screen support net. Guided by the airflow adjustment guide net, it enters the airflow adjustment protective cover and is collected by the airflow adjustment protective cover.
[0040] S3. Large pieces of waste material, through the vibration of the vibrating screen support mesh, fall onto the return conveyor connecting membrane, and are then guided by the return conveyor transmission belt and the return conveyor collection plate for transport.
[0041] S4. Large pieces of waste are transported to the return conveyor protection chamber, and then, guided by the return conveyor guide chamber, are processed again by the main body of the processing device, reducing the leakage of large pieces of waste.
[0042] S5. Start the airflow adjustment motor to make the airflow adjustment fan rotate, so that the airflow adjustment chamber draws air from the outside and injects it into the processing device body. By blowing air onto the bottom of the vibrating screen support mesh, the chance of the vibrating screen support mesh getting clogged can be reduced.
[0043] S6. The angle adjusting threaded rod can be rotated by starting the angle adjusting motor. The rotation of the angle adjusting threaded rod causes the angle adjusting threaded block to move on the angle adjusting threaded rod. The movement of the angle adjusting threaded rod allows the angle adjusting guide plate to adjust its angle.
[0044] S7. By adjusting the angle of the guide plate, the airflow can be directed towards the vibrating screen support mesh and the direction of the vibrating screen telescopic rod. This not only reduces the chance of clogging the vibrating screen support mesh, but also slows down the screening speed of cardboard waste and improves the screening effect.
[0045] S8. By adjusting the angle of the guide plate, the airflow can be directed towards the vibrating screen support mesh and the direction of the vibrating screen support shaft, which can increase the speed at which waste passes through the surface of the vibrating screen support mesh and improve the speed of reprocessing large pieces of waste.
[0046] Compared with the prior art, the waste processing device and its method for cardboard box production of the present invention, through the setting of corresponding mechanisms, enables the crushing device to repeatedly crush missed waste materials, reduces manual refeeding, saves a lot of time and manpower, allows large pieces of waste materials to be repeatedly processed, makes it easier to crush cardboard boxes, reduces missed waste materials, and is more conducive to the subsequent collection and processing of waste materials. Attached Figure Description
[0047] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0048] Figure 1 This is a partial three-dimensional view of a waste material treatment device for cardboard box production according to an embodiment of the present invention;
[0049] Figure 2 for Figure 1 Schematic diagram of the structure at point A in the middle;
[0050] Figure 3 for Figure 1 Schematic diagram of the structure at point B;
[0051] Figure 4 for Figure 1 Schematic diagram of the structure at point C;
[0052] Figure 5 for Figure 1 Schematic diagram of the structure at point D;
[0053] Figure 6 This is a perspective cross-sectional view of a waste treatment device for cardboard box production according to an embodiment of the present invention;
[0054] Figure 7 for Figure 6 Schematic diagram of the structure at point E in the middle;
[0055] Figure 8 for Figure 6 Schematic diagram of the structure at point F;
[0056] Figure 9 This is a perspective view of a waste treatment device for cardboard box production according to an embodiment of the present invention.
[0057] Explanation of key figure labels:
[0058] 1-Processing device body, 2-Vibrating screen mechanism, 201-Vibrating screen support net, 202-Vibrating screen motor, 203-Vibrating screen cam, 204-Vibrating screen support shaft, 205-Vibrating screen support frame, 206-Vibrating screen mounting shaft, 207-Vibrating screen telescopic rod, 3-Return conveying mechanism, 301-Return conveying transmission belt, 302-Return conveying collection plate, 303-Return conveying guide chamber, 304-Return conveying collection block, 305-Return conveying connecting membrane, 306-Return conveying protective chamber, 307-Return conveying support shaft, 308-Return conveying friction pad, 309-Return conveying motor, 309-Return conveying motor, 4- Airflow adjustment mechanism, 401-Airflow adjustment receiving chamber, 402-Airflow adjustment fan, 403-Airflow adjustment protective cover, 404-Airflow adjustment guide net, 405-Airflow adjustment dustproof net, 406-Airflow adjustment support frame, 407-Airflow adjustment collection chamber, 408-Airflow adjustment motor, 409-Airflow adjustment driving pulley, 410-Airflow adjustment driven pulley, 411-Airflow adjustment transmission belt, 5-Angle adjustment mechanism, 501-Angle adjustment motor, 502-Angle adjustment threaded rod, 503-Angle adjustment threaded block, 504-Angle adjustment guide plate, 505-Angle adjustment support plate, 506-Angle adjustment positioning shaft, 507-Angle adjustment mounting block. Detailed Implementation
[0059] To enable those skilled in the art to better understand the technical solutions of this invention, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this invention, and not all embodiments. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of this invention.
[0060] like Figures 1 to 9 As shown, a waste treatment device for cardboard box production in one embodiment of the present invention includes: a treatment device body 1, a vibrating screening mechanism 2, a return conveying mechanism 3, an airflow adjustment mechanism 4, and an angle adjustment mechanism 5.
[0061] like Figures 1 to 5As shown, the processing device body 1 is equipped with a vibrating screening mechanism 2, which includes a vibrating screening support net 201, and can screen cardboard waste, so that the crushed cardboard waste can be collected better and faster.
[0062] In addition, a vibrating screen motor 202 is provided on the vibrating screen support net 201, which can drive the rotation of the vibrating screen cam 203 and provide corresponding power for the rotation of the vibrating screen cam 203.
[0063] In addition, vibrating screen cams 203 are fixedly installed at both ends of the vibrating screen motor 202, which can drive the vibrating screen support net 201 to vibrate by rotating, so that the vibrating screen support net 201 can better screen cardboard waste.
[0064] The vibrating screen support net 201 is rotatably installed with a vibrating screen support shaft 204, which can support one end of the vibrating screen support net 201 and ensure the balance of the vibrating screen support net 201.
[0065] like Figures 1 to 5 As shown, a vibrating screen support frame 205 is installed between the vibrating screen support net 201 and the vibrating screen motor 202. This supports the vibrating screen motor 202, reducing the possibility of the vibrating screen motor 202 obstructing the paper box waste. At the same time, it provides the corresponding space for the rotation of the vibrating screen cam 203, which facilitates the use of the vibrating screen motor 202.
[0066] The vibrating screen support shaft 204 is installed through the processing device body 1, which can better support the vibrating screen support net 201 through the processing device body 1, making the vibration of the vibrating screen support net 201 more controllable and ensuring the balance of the vibrating screen support net 201.
[0067] In addition, a vibrating screen mounting shaft 206 is fixedly installed at the end of the vibrating screen support net 201 away from the vibrating screen support shaft 204, which facilitates the rotation of the vibrating screen telescopic rod 207 and the installation of the vibrating screen telescopic rod 207. The vibrating screen telescopic rod 207 is rotatably installed between the vibrating screen mounting shaft 206 and the processing device body 1, which can pull the vibration of the vibrating screen support net 201, thereby limiting the vibration range of the vibrating screen support net 201 and making the vibration of the vibrating screen support net 201 more controllable.
[0068] like Figures 1 to 6As shown, the processing device body 1 is provided with a return conveying mechanism 3. The return conveying mechanism 3 includes a return conveying transmission belt 301, which can drive the return conveying collection plate 302 to rotate continuously. Several evenly distributed return conveying collection plates 302 are fixedly installed on the return conveying transmission belt 301, which can convey the cardboard waste and crush the cardboard waste again.
[0069] In addition, a return conveying guide bin 303 is provided on one side of the return conveying belt 301, which can guide the cardboard waste and enable the cardboard waste to enter the processing device body 1 better. A return conveying collection block 304 is provided on the lower side of the return conveying belt 301, which can collect the cardboard waste and facilitate the conveying of the return conveying collection plate 302.
[0070] like Figures 1 to 7 As shown, the return conveying collection block 304 is fixedly connected to the airflow adjustment and receiving chamber 401, which can improve the stability of the return conveying collection block 304, enable the return conveying collection block 304 to better collect cardboard waste, and enable the return conveying collection plate 302 to better convey cardboard debris.
[0071] A return conveying connecting membrane 305 is installed between the return conveying collection block 304 and the vibrating screen support net 201, connecting the return conveying collection block 304 and the vibrating screen support net 201. This allows the cardboard waste on the vibrating screen support net 201 to enter the return conveying collection block 304 more effectively, facilitating the conveying of the return conveying collection plate 302 and reducing the difficulty of conveying the return conveying collection plate 302.
[0072] In addition, a return conveying protection chamber 306 is fixedly installed on the main body 1 of the processing device, which can protect the return conveying collection plate 302, reduce the possibility of leakage of cardboard waste, and allow the cardboard waste to be better fed back into the main body 1 of the processing device.
[0073] In addition, the return conveyor protection chamber 306 is fixedly connected to the return conveyor guide chamber 303, which facilitates the fixing of the return conveyor guide chamber 303, provides corresponding support for the installation of the return conveyor guide chamber 303, and facilitates the guidance of cardboard box waste by the return conveyor guide chamber 303.
[0074] like Figures 1 to 8 As shown, the return conveying protection chamber 306 is provided with a guide groove that matches the return conveying guide chamber 303, which facilitates the installation of the return conveying guide chamber 303. The processing device body 1 is provided with a conveying groove that matches the return conveying drive belt 301, which facilitates the rotation of the return conveying drive belt 301 and provides corresponding space for the rotation of the return conveying drive belt 301.
[0075] The return conveyor belt 301 is equipped with a pair of return conveyor support shafts 307, which facilitates the installation of the return conveyor friction pad 308, supports the balance of the return conveyor friction pad 308, and transmits the rotation of the return conveyor belt 301.
[0076] like Figures 1 to 9 As shown, a return conveying friction pad 308 is fixedly installed on the outside of the return conveying support shaft 307, which can support the return conveying transmission belt 301 and improve the stability of the return conveying transmission belt 301. The return conveying support shaft 307 is set through the processing device body 1.
[0077] In addition, a return conveyor motor 309 is fixedly installed on the return conveyor protection chamber 306, which facilitates the rotation of the return conveyor support shaft 307 and provides corresponding power for the rotation of the return conveyor support shaft 307. The return conveyor motor 309 is fixedly connected to the return conveyor support shaft 307.
[0078] like Figures 1 to 9 As shown, an airflow adjustment mechanism 4 is fixedly installed on the lower side of the processing device body 1. The airflow adjustment mechanism 4 includes an airflow adjustment receiving chamber 401. An airflow adjustment fan 402 is provided on one side of the airflow adjustment receiving chamber 401. A pair of airflow adjustment protective covers 403 are provided outside the airflow adjustment fan 402. An airflow adjustment guide net 404 is fixedly installed on the airflow adjustment receiving chamber 401.
[0079] like Figures 1 to 6 As shown, the airflow adjustment protective cover 403 is set through the airflow adjustment receiving chamber 401, which facilitates the installation of the airflow adjustment fan 402, improves the stability of the airflow adjustment fan 402, and facilitates air circulation.
[0080] Among them, an airflow adjustment dustproof net 405 and an airflow adjustment support frame 406 are installed between the airflow adjustment fan 402 and the airflow adjustment protective cover 403. The airflow adjustment dustproof net 405 can reduce the dust entering the airflow adjustment containment chamber 401 from the outside. The airflow adjustment support frame 406 can cooperate with the airflow adjustment dustproof net 405 to support the airflow adjustment fan 402 and ensure the balance of the airflow adjustment fan 402.
[0081] In addition, airflow adjustment collection bins 407 are slidably installed on both sides of the airflow adjustment receiving bin 401, which facilitates the collection of cardboard waste by the user. The airflow adjustment collection bin 407 is set through the main body 1 of the processing device, which facilitates the installation of the airflow adjustment collection bin 407, improves the stability of the airflow adjustment collection bin 407, and enables the airflow adjustment collection bin 407 to slide.
[0082] like Figures 1 to 4As shown, an airflow adjustment motor 408 is fixedly installed inside the airflow adjustment receiving chamber 401, which can drive the rotation of the airflow adjustment active pulley 409 and provide corresponding power for the rotation of the airflow adjustment active pulley 409.
[0083] In addition, an airflow adjustment drive pulley 409 is fixedly installed on the airflow adjustment motor 408, which can drive the rotation of the airflow adjustment driven pulley 410 through the airflow adjustment transmission belt 411, providing corresponding power for the rotation of the airflow adjustment driven pulley 410.
[0084] In addition, an airflow adjustment driven pulley 410 is fixedly installed on the airflow adjustment fan 402, and an airflow adjustment transmission belt 411 is installed between the airflow adjustment driving pulley 409 and the airflow adjustment driven pulley 410, which can play a transmission role, so that the airflow adjustment driving pulley 409 can drive the rotation of the airflow adjustment driven pulley 410.
[0085] like Figures 1 to 7 As shown, an angle adjustment mechanism 5 is fixedly installed on one side of the airflow adjustment receiving chamber 401. The angle adjustment mechanism 5 includes an angle adjustment motor 501, an angle adjustment threaded rod 502 is fixedly installed on the angle adjustment motor 501, and several evenly distributed angle adjustment threaded blocks 503 are installed on the angle adjustment threaded rod 502.
[0086] like Figures 1 to 8 As shown, the angle adjusting threaded rod 502 passes through the airflow adjusting receiving chamber 401, which facilitates the installation of the angle adjusting threaded rod 502, improves the balance of the angle adjusting threaded rod 502, and enhances the stability of the angle adjusting threaded rod 502.
[0087] Among them, the angle adjusting threaded rod 502 is matched with the angle adjusting threaded block 503. When the angle adjusting threaded rod 502 rotates, it can drive the displacement of the angle adjusting threaded block 503. An angle adjusting guide plate 504 is rotatably installed on the angle adjusting threaded block 503, which can guide the air and make the air blow towards the vibrating screen support mesh 201 at a better angle.
[0088] In addition, the airflow adjustment receiving chamber 401 has a rotating groove that matches the angle adjustment guide plate 504, which facilitates the installation of the angle adjustment guide plate 504, facilitates the rotation of the angle adjustment guide plate 504, and provides corresponding space for the rotation of the angle adjustment guide plate 504.
[0089] like Figures 1 to 9 As shown, a pair of angle adjustment support plates 505 are fixedly installed on the airflow adjustment receiving chamber 401, which facilitates the installation of the angle adjustment mounting block 507, improves the stability of the angle adjustment mounting block 507, and ensures the balance of the angle adjustment mounting block 507.
[0090] In addition, angle adjustment positioning shafts 506 are slidably installed on both sides of the angle adjustment guide plate 504, which facilitates the rotation of the angle adjustment guide plate 504 and the sliding of the angle adjustment guide plate 504, and can position the angle adjustment guide plate 504.
[0091] In addition, the angle adjustment positioning shaft 506 is rotatably mounted with an angle adjustment mounting block 507, which can position the angle adjustment positioning shaft 506 and improve the stability of the angle adjustment positioning shaft 506. The angle adjustment mounting block 507 is fixedly connected to the angle adjustment support plate 505.
[0092] A method of using a waste disposal device for cardboard box production includes the following steps:
[0093] S1. After the carton is processed by the processing device body 1, it will fall on the upper side of the vibrating screen support net 201. The vibrating screen motor 202 is started, causing the vibrating screen cam 203 to rotate. The rotation of the vibrating screen cam 203 causes the vibrating screen support net 201 to vibrate.
[0094] S2. The processed cardboard box is screened by the vibration of the vibrating screen support net 201. Some of the debris falls onto the airflow adjustment guide net 404 through the vibrating screen support net 201. Guided by the airflow adjustment guide net 404, it enters the airflow adjustment protective cover 403 and is collected by the airflow adjustment protective cover 403.
[0095] S3. Large pieces of waste material, through the vibration of the vibrating screen support mesh 201, fall onto the return conveyor connecting membrane 305. Guided by the return conveyor connecting membrane 305, they are conveyed by the return conveyor transmission belt 301 and the return conveyor collection plate 302.
[0096] S4. Large pieces of waste are transported to the return conveying protection chamber 306, and guided by the return conveying guide chamber 303, they are processed again by the processing device body 1, reducing the leakage of large pieces of waste.
[0097] S5. Start the airflow adjustment motor 408 to make the airflow adjustment fan 402 rotate, so that the airflow adjustment receiving chamber 401 draws air from the outside and injects it into the processing device body 1. By blowing air onto the bottom of the vibrating screen support mesh 201, the chance of the vibrating screen support mesh 201 being blocked can be reduced.
[0098] S6. The angle adjusting threaded rod 502 can be rotated by starting the angle adjusting motor 501. The rotation of the angle adjusting threaded rod 502 causes the angle adjusting threaded block 503 to move on the angle adjusting threaded rod 502. The displacement of the angle adjusting threaded rod 502 enables the angle adjusting guide plate 504 to adjust its angle.
[0099] S7. By adjusting the angle of the guide plate 504, the airflow can be directed towards the vibrating screen support net 201 and the vibrating screen telescopic rod 207. This not only reduces the chance of the vibrating screen support net 201 getting clogged, but also slows down the screening speed of cardboard waste and improves the screening effect.
[0100] S8. By adjusting the angle of the guide plate 504, the airflow can be blown towards the direction of the vibrating screen support net 201 and the vibrating screen support shaft 204, which can increase the speed at which waste passes through the surface of the vibrating screen support net 201 and improve the speed of reprocessing large pieces of waste.
[0101] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0102] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A waste disposal device for cardboard box production, characterized in that, include: Processing device body; A vibrating screening mechanism is located within the processing device body. The vibrating screening mechanism includes a vibrating screening support net, a vibrating screening motor is provided on the vibrating screening support net, vibrating screening cams are fixedly installed at both ends of the vibrating screening motor, and a vibrating screening support shaft is rotatably installed inside the vibrating screening support net. A return conveying mechanism is provided within the processing device body. The return conveying mechanism includes a return conveying drive belt, on which several evenly distributed return conveying collection plates are fixedly installed. A return conveying guide chamber is provided on one side of the return conveying drive belt, and a return conveying collection block is provided on the lower side of the return conveying drive belt. An airflow adjustment mechanism is fixedly installed on the lower side of the processing device body. The airflow adjustment mechanism includes an airflow adjustment receiving chamber, an airflow adjustment fan is provided on one side of the airflow adjustment receiving chamber, an airflow adjustment protective cover is provided outside the airflow adjustment fan, and an airflow adjustment guide net is fixedly installed on the airflow adjustment receiving chamber. An angle adjustment mechanism is fixedly installed on one side of the airflow adjustment receiving chamber. The angle adjustment mechanism includes an angle adjustment motor, an angle adjustment threaded rod fixedly installed on the angle adjustment motor, and several evenly distributed angle adjustment threaded blocks installed on the angle adjustment threaded rod. The angle adjustment threaded rod passes through the airflow adjustment receiving chamber and matches the angle adjustment threaded blocks. An angle adjustment guide plate is rotatably installed on the angle adjustment threaded blocks. A rotation groove matching the angle adjustment guide plate is chiseled in the airflow adjustment receiving chamber. A pair of angle adjustment support plates are fixedly installed on the airflow adjustment receiving chamber. An angle adjustment positioning shaft is slidably installed on both sides of the angle adjustment guide plate. An angle adjustment mounting block is rotatably installed on the angle adjustment positioning shaft and is fixedly connected to the angle adjustment support plate.
2. The waste treatment device for cardboard box production according to claim 1, characterized in that, A vibrating screen support frame is installed between the vibrating screen support net and the vibrating screen motor. The vibrating screen support shaft passes through the body of the processing device. A vibrating screen mounting shaft is fixedly installed at the end of the vibrating screen support net away from the vibrating screen support shaft. A vibrating screen telescopic rod is rotatably installed between the vibrating screen mounting shaft and the body of the processing device.
3. The waste treatment device for cardboard box production according to claim 2, characterized in that, The reflux conveying collection block is fixedly connected to the airflow adjustment and receiving chamber. A reflux conveying connecting membrane is installed between the reflux conveying collection block and the vibrating screen support mesh. A reflux conveying protection chamber is fixedly installed on the main body of the processing device. The reflux conveying protection chamber is fixedly connected to the reflux conveying guide chamber.
4. The waste treatment device for cardboard box production according to claim 3, characterized in that, The return conveyor protection chamber is provided with a guide groove that matches the return conveyor guide chamber, and the processing device body is provided with a conveying groove that matches the return conveyor belt. A pair of return conveyor support shafts are provided inside the return conveyor belt.
5. The waste treatment device for cardboard box production according to claim 4, characterized in that, A return conveying friction pad is fixedly installed on the outside of the return conveying support shaft. The return conveying support shaft passes through the body of the processing device. A return conveying motor is fixedly installed on the return conveying protection chamber. The return conveying motor is fixedly connected to the return conveying support shaft.
6. The waste treatment device for cardboard box production according to claim 5, characterized in that, The airflow adjustment protective cover is installed through the main body of the treatment device. An airflow adjustment dustproof net and an airflow adjustment support frame are installed between the airflow adjustment fan and the airflow adjustment protective cover. Airflow adjustment collection chambers are slidably installed on both sides of the airflow adjustment receiving chamber, and the airflow adjustment collection chambers are installed through the main body of the treatment device.
7. The waste treatment device for cardboard box production according to claim 6, characterized in that, An airflow adjustment motor is fixedly installed inside the airflow adjustment receiving chamber. An airflow adjustment driving pulley is fixedly installed on the airflow adjustment motor. An airflow adjustment driven pulley is fixedly installed on the airflow adjustment fan. An airflow adjustment transmission belt is installed between the airflow adjustment driving pulley and the airflow adjustment driven pulley.
8. A method of using the waste disposal device for cardboard box production as described in claim 7, characterized in that, Includes the following steps: S1. After the carton is processed by the processing device, it will fall on the upper side of the vibrating screen support mesh. Start the vibrating screen motor to make the vibrating screen cam rotate. The rotation of the vibrating screen cam will cause the vibrating screen support mesh to vibrate. S2. The processed cardboard boxes are screened by the vibration of the vibrating screen support net. Some of the debris falls onto the airflow adjustment guide net through the vibrating screen support net. Guided by the airflow adjustment guide net, it enters the airflow adjustment protective cover and is collected by the airflow adjustment protective cover. S3. Large pieces of waste material, through the vibration of the vibrating screen support mesh, fall onto the return conveyor connecting membrane, and are then guided by the return conveyor transmission belt and the return conveyor collection plate for transport. S4. Large pieces of waste are transported to the return conveyor protection chamber, and then, guided by the return conveyor guide chamber, are processed again by the main body of the processing device, reducing the leakage of large pieces of waste. S5. Start the airflow adjustment motor to make the airflow adjustment fan rotate, so that the airflow adjustment chamber draws air from the outside and injects it into the processing device body. By blowing the air on the bottom of the vibrating screen support mesh, the chance of the vibrating screen support mesh getting clogged is reduced. S6. Start the angle adjustment motor to rotate the angle adjustment threaded rod. The rotation of the angle adjustment threaded rod causes the angle adjustment threaded block to move on the angle adjustment threaded rod. The movement of the angle adjustment threaded rod allows the angle adjustment guide plate to adjust the angle. S7. By adjusting the angle of the guide plate, the airflow can be directed towards the vibrating screen support mesh and the direction of the vibrating screen telescopic rod. This not only reduces the chance of clogging of the vibrating screen support mesh, but also slows down the screening speed of cardboard waste and improves the screening effect. S8. By adjusting the angle of the guide plate, the airflow can be directed towards the vibrating screen support mesh and the direction of the vibrating screen support shaft, which can increase the speed at which waste passes through the surface of the vibrating screen support mesh and increase the speed of reprocessing large pieces of waste.
Citation Information
Patent Citations
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