Crushing and compacting device for plywood waste processing
By designing cleaning components and a crushing and compacting device for drying, the problem of residual adhesive in plywood waste was solved, improving the bonding strength and quality of recycled boards and saving on the use of adhesives.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- XUZHOU HUACHUANG WOOD IND CO LTD
- Filing Date
- 2026-02-03
- Publication Date
- 2026-04-21
AI Technical Summary
During the compaction process of plywood waste, residual adhesive weakens the bonding force between the crushed particles, affecting the quality of the recycled plywood.
A crushing and compacting device including a cleaning component was designed. Through the combination of a V-shaped storage rack, a counterweight shaft, a telescopic frame, and a cleaning shaft, it can effectively clean plywood waste. By using a spray tank and a servo cylinder, it can spray cleaning agent in all directions. Combined with drying treatment, it can ensure the complete removal of adhesive.
It effectively removes residual adhesive from plywood waste, improves the bonding strength of crushed particles, ensures the quality of recycled boards, and saves on the use of adhesives.
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Figure CN121892486A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of solid waste treatment technology, specifically referring to a crushing and compaction device for processing plywood waste. Background Technology
[0002] Plywood is a sheet material consisting of three or more layers of veneer made by rotary cutting or slicing logs and then gluing them together with adhesives. The grain direction of adjacent veneers is usually perpendicular to each other. This cross-laminated structure significantly improves the anisotropy of natural wood, making plywood perform well in terms of strength, stability and warping resistance. It also has advantages such as large size, convenient construction and saving wood resources.
[0003] In the manufacturing process of plywood, dried veneers coated with adhesive are assembled and then cured in a hot press under high temperature and pressure, followed by finishing processes such as edge trimming. The trimming waste generated in this process is usually recycled and re-crushed and compacted for reuse. However, the veneer surfaces of these waste materials have adhesive residue, which weakens the bonding force between the crushed particles, thus adversely affecting the quality of the final compacted recycled plywood. Summary of the Invention
[0004] In view of the above situation and to overcome the defects of the prior art, the purpose of the present invention is to treat the adhesive residue in the plywood waste during the compaction process and to provide a crushing and compaction device for processing plywood waste, so as to at least partially solve the problems mentioned in the background art.
[0005] The technical solution adopted by the present invention is as follows: a crushing and compaction device for processing plywood waste includes a pair of cleaning components and a cleaning chamber, wherein the cleaning components are respectively arranged inside the cleaning chamber.
[0006] Furthermore, the cleaning component includes a material guide.
[0007] Furthermore, the V-shaped storage rack is rotatably mounted inside the guide rack.
[0008] Furthermore, a pair of sliding columns are respectively arranged on the upper two sides of the V-shaped storage rack, and a counterweight shaft is sleeved on the outside of each sliding column, the counterweight shaft being used to slide back and forth along the sliding column.
[0009] Furthermore, multiple sets of telescopic frames for mixing crushed materials are provided, the telescopic frames being movably mounted on the lower part of the counterweight shaft, and the telescopic frames being able to extend and retract vertically.
[0010] Furthermore, a cleaning shaft is disposed on the upper part of the V-shaped storage rack, the cleaning shaft being used to spray a cleaning adhesive liquid onto the V-shaped storage rack.
[0011] Furthermore, the cleaning assembly also includes a mounting plate and a storage compartment.
[0012] Furthermore, a fixing plate is connected to the inner side of the counterweight shaft, and a storage compartment is installed at the lower part of the fixing plate for storing the telescopic frame.
[0013] Furthermore, the cleaning assembly also includes a mounting base, a spring, and a buffer plate.
[0014] Furthermore, the upper part of the V-shaped storage rack is provided with multiple sets of fixed seats. The inner side of the fixed seat is connected to the sliding column, and the outer side of the sliding column is fitted with a spring. One end of the spring is fixedly connected to the fixed seat, and the other end of the spring is fixedly connected to the buffer plate. The buffer plate is fitted on the outside of the sliding column.
[0015] Furthermore, the cleaning assembly also includes a first baffle cloth, a second baffle cloth, a rotating shaft, and gears.
[0016] Furthermore, one end of the V-shaped storage rack is connected to the guide rack via a first baffle cloth, and the other end of the V-shaped storage rack is connected to the guide rack via a second baffle cloth. Both the first and second baffle cloths are used to prevent the broken material from splashing. The V-shaped storage rack and the guide rack are rotatably connected via a rotating shaft, and gears are connected to the outside of the rotating shaft.
[0017] Furthermore, the cleaning assembly also includes a servo cylinder.
[0018] Furthermore, the servo cylinder is movably mounted on the upper part of the cleaning shaft, and a spray groove is opened inside the cleaning shaft. The servo cylinder is used to control the up and down rotation of the cleaning shaft.
[0019] Furthermore, the cleaning chamber includes a guide plate, a cleaning chamber body, an installation groove, and a vertical plate.
[0020] Furthermore, a vertical plate is provided at the center of the cleaning hopper, which divides the interior of the cleaning hopper into two cavities. The interior of the vertical plate has multiple sets of mounting slots, and each mounting slot is equipped with a set of cleaning components. A guide plate is provided at the top of the vertical plate.
[0021] Furthermore, the cleaning chamber also includes an electric cylinder, a drying chamber, and a partition plate.
[0022] Furthermore, the electric cylinder is installed on the outside of the cleaning hopper body, and the front end of the electric cylinder is provided with a telescopic rod, which meshes with a gear. The electric cylinder is used to control the rotation of the V-shaped storage rack. The lower two sides of the cleaning hopper body are provided with drying chambers, which are used to dry the cleaned debris. The interior of the drying chamber is provided with multiple sets of partitions, which are used to slow down the falling of debris.
[0023] Furthermore, the plywood waste processing crushing and compaction device proposed in this invention includes a compaction component, which is disposed in the lower part of the cleaning chamber, and is used to compact the processed waste material.
[0024] Furthermore, the plywood waste processing crushing and compaction device proposed in this invention includes a crushing component, which is disposed above the cleaning chamber and is used to crush the waste materials generated during the plywood production process.
[0025] Beneficial effects: (1) Through the multiple sets of cleaning components, the crushed material will enter the V-shaped storage rack for temporary storage. With the rotation of the V-shaped storage rack, the upper counterweight shaft will drive the telescopic frame to move due to gravity. With the liquid for cleaning glue set on one side, the crushed material in the V-shaped storage rack can be fully stirred and cleaned, so as to avoid the subsequent impact of residual adhesive on the bonding force between the crushed material particles.
[0026] (2) By setting a first baffle and a second baffle at both ends of the V-shaped storage rack, the overflow of broken materials can be prevented. With the rotatable cleaning shaft on the upper part, the inside of the V-shaped storage rack can be sprayed evenly, thereby improving the removal efficiency of adhesive and saving the use of raw materials. Attached Figure Description
[0027] Figure 1 This is a three-dimensional schematic diagram of a crushing and compacting device for processing plywood waste according to an embodiment of the present invention; Figure 2 This is a three-dimensional schematic diagram of the assembly of the cleaning chamber and cleaning components according to an embodiment of the present invention; Figure 3 This is a three-dimensional schematic diagram of the cleaning chamber proposed in an embodiment of the present invention; Figure 4 This is a three-dimensional schematic diagram of the cleaning component proposed in an embodiment of the present invention; Figure 5 This is a front view schematic diagram of the cleaning component proposed in an embodiment of the present invention; Figure 6 This is a three-dimensional schematic diagram of the pulverizing component proposed in an embodiment of the present invention; Figure 7 This is a three-dimensional schematic diagram of the compaction component proposed in an embodiment of the present invention; Figure 8 This is a cross-sectional schematic diagram of the cleaning chamber and cleaning component assembly proposed in an embodiment of the present invention.
[0028] The components include: 1. Cleaning chamber; 2. Crushing assembly; 3. Compaction assembly; 4. Cleaning assembly. 11. Guide plate; 12. Cleaning bin body; 13. Electric cylinder; 14. Telescopic rod; 15. Water supply bin; 16. Drying bin; 17. Mounting slot; 18. Partition plate; 19. Vertical plate; 21. Crushing chamber; 22. Feed inlet; 23. Crushing shaft; 24. Motor; 25. Transmission assembly; 26. Discharge outlet; 27. Support frame; 31. Compaction bin; 32. First pressure plate; 33. First hydraulic unit; 34. Second hydraulic unit; 35. Second pressure plate; 36. Conveyor belt; 41. V-shaped storage rack; 42. First baffle cloth; 43. Second baffle cloth; 44. Rotating shaft; 45. Gear; 46. Guide rack; 47. Fixed base; 48. Sliding column; 49. Counterweight shaft; 410. Spring; 411. Buffer plate; 412. Fixed plate; 413. Storage bin; 414. Telescopic frame; 415. Guide plate; 416. Connecting frame; 417. Cleaning shaft; 418. Spray tank; 419. Servo cylinder; 4110. Infusion pipeline; 4111. Storage bin.
[0029] The accompanying drawings are provided to further understand the embodiments and form part of the specification. They are used together with the embodiments for explanation and do not constitute a limitation on the embodiments. Detailed Implementation
[0030] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection.
[0031] In the description of the embodiments, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the embodiments and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments.
[0032] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 8As shown in the figure, an embodiment of the present invention proposes a crushing and compaction device for processing plywood waste, including a pair of cleaning components 4. Each cleaning component 4 includes a V-shaped storage rack 41, a first baffle cloth 42, a second baffle cloth 43, a rotating shaft 44, a gear 45, a guide rack 46, a fixed seat 47, a sliding column 48, a counterweight shaft 49, a spring 410, a buffer plate 411, a fixed plate 412, a storage bin 413, a telescopic frame 414, a guide plate 415, a connecting frame 416, a cleaning shaft 417, a spray tank 418, a servo cylinder 419, a liquid delivery pipe 4110, and a liquid storage bin 4111.
[0033] In this embodiment of the invention, the cleaning component 4 is disposed opposite to the cleaning chamber 12 and placed in the mounting slot 17 in the vertical plate 19, as shown in the figure. Figure 8 As shown, in the initial position, the cleaning component 4 and the vertical plate 19 are installed at an angle to facilitate the discharge of the crushed material after processing. The size of the guide frame 46 is the same as that of the mounting groove 17, and the two sides of the guide frame 46 are fixed to the inner wall of the mounting groove 17. The guide frame 46 has a slot inside, and a V-shaped storage rack 41 is movably installed inside the guide frame 46. The V-shaped storage rack 41 has a V-shaped cross-section on its side, which is used to temporarily store the crushed material from the crushing component 2. The V-shaped storage rack 41 rotates with the guide frame 46 via the rotating shafts 44 on both sides. The connection means that the V-shaped storage rack 41 can rotate around the rotating shaft 44 inside the guide rack 46. The two ends of the V-shaped storage rack 41 are respectively connected to the first baffle cloth 42 and the second baffle cloth 43, and the other ends of the first baffle cloth 42 and the second baffle cloth 43 are connected to the upper surface of the guide rack 46. The first baffle cloth 42 and the second baffle cloth 43 are made of deformable industrial elastic cloth. When the V-shaped storage rack 41 rotates, the first baffle cloth 42 and the second baffle cloth 43 can prevent the broken material from falling into the slot inside the guide rack 46.
[0034] Multiple sets of fixed seats 47 are installed on the upper part of the V-shaped storage rack 41. A sliding column 48 is provided inside each fixed seat 47, and a counterweight shaft 49 is movably mounted on the outside of the sliding column 48. The counterweight shaft 49 is sleeved on the outside of the sliding column 48, meaning it can slide back and forth along the sliding column 48. When the sliding column 48 is tilted, the counterweight shaft 49 moves outside the sliding column 48 due to its own weight. A spring 410 is fixedly connected to the inner side of the fixed seat 47, and the spring 410 is also sleeved on the sliding column 48. Externally, the other end of the spring 410 is fixedly connected to the buffer plate 411. The buffer plate 411 is movably disposed outside the sliding column 48. When the counterweight shaft 49 moves to its two sides on the sliding column 48, the buffer plate 411 can control the movement of the counterweight shaft 49 by compressing the spring 410. A fixing plate 412 is connected to the inner side of the counterweight shaft 49. A storage compartment 413 is installed at the lower part of the fixing plate 412. Multiple sets of telescopic frames 414 are movably disposed inside the storage compartment 413. 4. The storage compartments 413 are evenly distributed at equal intervals at the bottom. When an object presses against the telescopic frame 414, the telescopic frame 414 can move upward and enter the storage compartment 413. The storage compartment 413 and the telescopic frame 414 are slidably connected by a slide rail. Since the storage compartment 413 on the upper part of the telescopic frame 414 is fixed to the lower part of the fixed plate 412, and the fixed plate 412 is fixed to the inner side of a pair of counterweight shafts 49, when the counterweight shafts 49 slide back and forth on the sliding column 48, they can simultaneously drive the lower part of the counterweight shafts 49. The telescopic frame 414 moves, and during the movement, its bottom is always in close contact with the upper surface of the V-shaped storage rack 41. So when the scrap material enters the V-shaped storage rack 41, the counterweight shaft 49 will drive the telescopic frame 414 to move as the V-shaped storage rack 41 rotates. The movement of the telescopic frame 414 can reciprocate to stir the waste material stored in the V-shaped storage rack 41. With the telescopic frame 414 in close contact with the upper surface of the V-shaped storage rack 41, the problem of insufficient mixing of scrap material is largely solved.
[0035] A connecting frame 416 is provided on one side of the guide frame 46, and a guide plate 415 is fixed on the other side of the guide frame 46. The guide plate 415 is used to discharge the processed board debris. The connecting frame 416 is vertically set on the upper surface of the guide frame 46. A cross platform for fixing the cleaning shaft 417 is installed on the top of the connecting frame 416. The cleaning shaft 417 is rotatably connected to the cross platform. A servo cylinder 419 is movably installed above the cleaning shaft 417. The servo cylinder 419 is fixed on the upper part of the cross platform. The servo cylinder 419 can drive the cleaning shaft 417 to rotate. Inside the cleaning shaft 417, there is a spray tank 418 for spraying the adhesive removal liquid. The inside of the spray tank 418 is connected to multiple sets of infusion pipes 4110. The infusion pipes 4110 are fixed on the outside of the cross platform. The infusion pipeline 4110 is connected to a storage tank 4111, which stores the degumming agent. Since the spray tank 418 faces the inside of the V-shaped storage rack 41, the degumming agent can be sprayed out from the spray tank 418 after entering the infusion pipeline 4110, and finally sprayed into the inside of the V-shaped storage rack 41. During the process of the cleaning shaft 417 being rotated by the servo cylinder 419, the spray tank 418 sprays liquid from bottom to top all around the V-shaped storage rack 41, thereby accelerating the degumming process of the debris inside the V-shaped storage rack 41. The precise rotation of the spray tank 418 driven by the servo cylinder 419, together with the telescopic frame 414 stirring back and forth inside the V-shaped storage rack 41, allows the debris to be fully processed, and saves resources by reducing the use of degumming agent.
[0036] like Figure 1 , Figure 2 , Figure 3 and Figure 8 As shown in the figure, an embodiment of the present invention proposes a crushing and compaction device for processing plywood waste, including a cleaning chamber 1, which is disposed outside the cleaning component 4.
[0037] The cleaning chamber 1 includes a guide plate 11, a cleaning chamber body 12, an electric cylinder 13, a telescopic rod 14, a water conveying chamber 15, a drying chamber 16, an installation groove 17, a partition plate 18, and a vertical plate 19.
[0038] In this embodiment of the invention, a vertical plate 19 is fixedly installed inside the cleaning hopper 12. Multiple sets of mounting slots 17 are opened inside the vertical plate 19, and a cleaning component 4 is fixed inside each mounting slot 17. An inclined guide plate 11 is connected to the top of the vertical plate 19. The guide plate 11 is used to guide the crushed residue from the upper crushing component 2 to a cavity on one side. Multiple sets of electric cylinders 13 are fixed to the outer surface of the cleaning hopper 12. A telescopic rod 14 is connected to the front end of each electric cylinder 13. A gear 45 extends out of the outer surface of the cleaning hopper 12 and meshes with the telescopic rod 14. The electric cylinder 13 controls the forward and backward extension of the telescopic rod 14, thereby driving the V-shaped storage rack 41 to rotate back and forth. After the crushing component 2 crushes the plywood waste, it enters the guide plate 11 through the discharge port 26. The crushed material then falls onto the upper surface of the V-shaped storage rack 41. The electric cylinder 13 then rotates the V-shaped storage rack 41, causing the counterweight shaft 49 to agitate it internally. Combined with the cleaning shaft 417 on the upper part of the V-shaped storage rack 41, a descaling agent is sprayed onto the material, effectively removing any residual adhesive from the surface of the crushed material. Next, the electric cylinder 13 aligns one side of the V-shaped storage rack 41 parallel to the guide plate 46. At this point, the crushed material stored in the V-shaped storage rack 41 is poured out and discharged from the guide plate 415. Another cleaning component 4 is positioned opposite the lower part of the guide plate 415. Figure 8 As shown, the scrap material then enters the V-shaped storage rack 41 below for re-cleaning. Through the successive cleaning of these two sets of cleaning components 4, the residual glue on the surface of the scrap material can be completely removed. Drying chambers 16 are installed on both sides of the lower part of the cleaning chamber 12. The drying chambers 16 are connected to external heating devices. Multiple sets of partitions 18 are provided inside the drying chambers 16. The partitions 18 can slow down the falling of the upper scrap material. After the waste material has been de-gummed, there are still some reagents remaining on its outer surface. The waste material is dried by the drying chambers 16, and the waste material discharged from the cleaning chamber 1 is dry and clean.
[0039] like Figure 1 , Figure 6 and Figure 7 As shown in the figure, this embodiment of the invention proposes a crushing and compaction device for processing plywood waste, including a crushing component 2 and a compaction component 3. The crushing component 2 is disposed in the upper part of the cleaning chamber 1 and is used to crush the waste material generated during the plywood production process. The compaction component 3 is disposed in the lower part of the cleaning chamber 1 and is used to compact the processed crushed material.
[0040] The crushing assembly 2 includes a crushing chamber 21, a feed inlet 22, a crushing shaft 23, a motor 24, a transmission assembly 25, a discharge outlet 26, and a support frame 27. The compaction assembly 3 includes a compaction chamber 31, a first pressure plate 32, a first hydraulic actuator 33, a second hydraulic actuator 34, a second pressure plate 35, and a conveyor belt 36.
[0041] In this embodiment of the invention, the crushing chamber 21 is equipped with multiple crushing shafts 23 for crushing waste materials. An inlet 22 is located at the top of the crushing chamber 21, through which waste materials enter the crushing shafts 23. A transmission assembly 25 is connected to the outside of the crushing shafts 23, and a motor 24 is installed on the outside of the transmission assembly 25. The motor 24 drives the crushing shafts 23 to rotate, thus crushing the waste materials. A support frame 27 is connected to the outside of the crushing chamber 21. An outlet 26 is located at the bottom of the crushing chamber 21, connected to the top of the cleaning chamber 12. The dimensions of the cleaning chamber 12 and the outlet 26 are the same. The crushed material enters the cleaning chamber 12 and is treated by the cleaning assembly 4 for degumming. After being dried by the drying chamber 16, the material falls into the compaction chamber 31 below it. The compaction chamber 31 is fixed to the inside of the support frame 27. The compaction chamber 31 is equipped with first hydraulic actuators 33 on both sides. One end of the first hydraulic actuator 33 is connected to a first pressure plate 32 for pressing. The compaction chamber 31 is equipped with a compression cavity. When a certain amount of crushed material is accumulated in the compaction chamber 31, the first hydraulic actuator 33 controls the first pressure plate 32 to move relative to each other. A second hydraulic actuator 34 is set at the lower part of the first hydraulic actuator 33. A second pressure plate 35 is connected at the upper part of the second hydraulic actuator 34. During the movement of the first pressure plate 32, the second hydraulic actuator 34 controls the second pressure plate 35 to move upward. When the first pressure plate 32 and the second pressure plate 35 move, the baffle for sealing the inside of the compaction chamber 31 will complete the sealing of the cavity. Finally, the crushed waste will move downward as the second pressure plate 35 slowly descends. Finally, the operator will transport the compacted waste to the designated location through the conveyor belt 36 set on one side of the second hydraulic actuator 34.
[0042] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0043] The embodiments have been described above, and such description is not restrictive. The figures shown are only one embodiment, and the actual structure is not limited to this. In short, if a person skilled in the art is inspired by this description and designs a similar structure and embodiment without departing from the inventive spirit, such design should fall within the scope of protection.
Claims
1. A crushing and compacting device for processing plywood waste, characterized in that, include: A pair of cleaning components (4) and a cleaning chamber (1), wherein the cleaning components (4) are respectively disposed opposite to each other inside the cleaning chamber (1); The cleaning component (4) includes: Material guide rack (46); The V-shaped storage rack (41) is rotatably installed inside the guide rack (46); A pair of sliding columns (48) are respectively set on the upper two sides of the V-shaped storage rack (41), and a counterweight shaft (49) is sleeved on the outside of each sliding column (48). The counterweight shaft (49) is used to slide back and forth along the sliding column (48). Multiple sets of telescopic frames (414) for mixing crushed materials, the telescopic frames (414) are movably arranged at the lower part of the counterweight shaft (49), and the telescopic frames (414) can extend and retract vertically; A cleaning shaft (417) is provided on the upper part of the V-shaped storage rack (41), and the cleaning shaft (417) is used to spray cleaning glue liquid onto the position of the V-shaped storage rack (41).
2. The crushing and compacting device for processing plywood waste according to claim 1, characterized in that: The cleaning component (4) also includes a fixing plate (412) and a storage compartment (413). The inner side of the counterweight shaft (49) is connected to a fixing plate (412), and a storage compartment (413) is installed at the lower part of the fixing plate (412). The storage compartment (413) is used to store the telescopic frame (414).
3. The crushing and compacting device for processing plywood waste according to claim 1, characterized in that: The cleaning assembly (4) also includes a mounting base (47), a spring (410), and a buffer plate (411). The upper part of the V-shaped storage rack (41) is provided with multiple sets of fixed seats (47). The inner side of the fixed seat (47) is connected to the sliding column (48). The outer side of the sliding column (48) is fitted with a spring (410). One end of the spring (410) is fixedly connected to the fixed seat (47), and the other end of the spring (410) is fixedly connected to the buffer plate (411). The buffer plate (411) is fitted on the outside of the sliding column (48).
4. The crushing and compacting device for processing plywood waste according to claim 1, characterized in that: The cleaning assembly (4) also includes a first baffle (42), a second baffle (43), a rotating shaft (44), and a gear (45). One end of the V-shaped storage rack (41) is connected to the guide rack (46) via a first baffle cloth (42), and the other end of the V-shaped storage rack (41) is connected to the guide rack (46) via a second baffle cloth (43). The first baffle cloth (42) and the second baffle cloth (43) are both used to prevent the broken board from splashing. The V-shaped storage rack (41) and the guide rack (46) are rotatably connected via a rotating shaft (44), and a gear (45) is connected to the outside of the rotating shaft (44).
5. The crushing and compacting device for processing plywood waste according to claim 4, characterized in that: The cleaning component (4) also includes a servo cylinder (419). The servo cylinder (419) is movably disposed on the upper part of the cleaning shaft (417), and a spray groove (418) is opened inside the cleaning shaft (417). The servo cylinder (419) is used to control the cleaning shaft (417) to rotate up and down.
6. The crushing and compacting device for processing plywood waste according to claim 1, characterized in that: The cleaning chamber (1) includes a guide plate (11), a cleaning chamber body (12), an installation groove (17), and a vertical plate (19). The cleaning chamber (12) has a vertical plate (19) at its center. The vertical plate (19) divides the interior of the cleaning chamber (12) into two cavities. The vertical plate (19) has multiple sets of mounting slots (17) inside. Each mounting slot (17) has a set of cleaning components (4) installed inside. The upper part of the vertical plate (19) has a guide plate (11).
7. The crushing and compacting device for processing plywood waste according to claim 6, characterized in that: The cleaning chamber (1) also includes an electric cylinder (13), a drying chamber (16), and a partition plate (18). The electric cylinder (13) is installed on the outside of the cleaning hopper (12). The front end of the electric cylinder (13) is provided with a telescopic rod (14). The telescopic rod (14) meshes with the gear (45). The electric cylinder (13) is used to control the rotation of the V-shaped storage rack (41). The lower two sides of the cleaning hopper (12) are provided with drying chambers (16). The drying chambers (16) are used to dry the cleaned debris. The interior of the drying chambers (16) is provided with multiple sets of partition plates (18). The partition plates (18) are used to slow down the falling of debris.
8. The crushing and compacting device for processing plywood waste according to claim 1, characterized in that: It includes a compaction component (3), which is located at the bottom of the cleaning chamber (1) and is used to compact the processed fragments.
9. The crushing and compacting device for processing plywood waste according to claim 1, characterized in that: It includes a crushing component (2), which is located on the upper part of the cleaning chamber (1) and is used to crush waste materials in the plywood production process.