Carton processing, transporting and cleaning apparatus

By incorporating a flip-over cleaning roller and a multi-layer filter assembly, the problem of production line downtime caused by dust accumulation on the cleaning roller was solved, achieving efficient and automated cleaning and purification, and improving production efficiency and cleaning effect.

CN224294013UActive Publication Date: 2026-05-29CHONGQING ZHIZHEN PACKAGING PROD CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING ZHIZHEN PACKAGING PROD CO LTD
Filing Date
2025-08-19
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing cardboard box processing and transportation cleaning devices, the cleaning rollers accumulate dust after prolonged use, leading to a decrease in cleaning effectiveness. This necessitates machine shutdown for disassembly and replacement, which affects production efficiency.

Method used

Design a carton processing and transportation cleaning device that includes a flipping cleaning roller, a dust collection component, and a filter component. By alternating the operation of the flipping cleaning roller, combined with dust collection and multi-layer filtration, automated cleaning and purification can be achieved, reducing downtime.

Benefits of technology

It significantly improves the continuous operation efficiency of the production line, enhances cleaning efficiency and air purification effect, extends the service life of the cleaning roller, and ensures the stable operation of the production line.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a carton processing and conveying cleaning device, including device main part still includes setting conveying assembly on device main part, setting dust extraction assembly on device main part, install filter assembly on dust extraction assembly, first fixed bolster fixed mounting on device main part, first threaded rod on first fixed bolster is screwed, first knob fixed connection first threaded rod one end, first sliding seat sliding connection on device main part, first motor fixed mounting on first sliding seat. Through first motor work drive rotation axis and rotary support overturn, by installation component and cleaning roller body overturn alternation and carry out cleaning work, this alternation mechanism completely changed traditional single cleaning roller need to stop and dismantle replacement mode, will clean the roller replacement and cause production line interruption time to shorten greatly, avoid the production stagnation caused by long time stop, effectively guarantee the continuous operation of production line, thereby significantly improve overall production efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of cleaning device technology, specifically a cleaning device for cardboard box processing and transportation. Background Technology

[0002] In the industrial production process of cardboard box processing and transportation, the cleanliness of the cardboard box surface and transportation channels is an important factor in ensuring product quality and production continuity. In order to effectively remove paper scraps, dust and other tiny impurities generated during cardboard box processing, cardboard box processing and transportation cleaning devices have emerged and become an indispensable part of modern cardboard box production lines.

[0003] In existing technologies, the devices commonly used in the market often employ a single cleaning roller design. However, in practical applications, this design inevitably leads to the accumulation of dust and paper scraps on the cleaning roller during continuous operation as production time increases. These deposits not only gradually fill the tiny gaps on the surface of the cleaning roller, reducing its friction with the carton surface and thus affecting the cleaning effect, but more seriously, when the dust accumulates to a certain extent, it also forms an insulating layer, hindering effective contact between the cleaning roller and the carton, resulting in a significant decrease in cleaning efficiency. At this point, in order to ensure the cleanliness standards of the production line and product quality, the cleaning roller must be cleaned or replaced. However, disassembling and reinstalling the cleaning roller requires a certain amount of time for maintenance. During this time, the downtime of the conveyor device will undoubtedly have a significant impact on actual production efficiency. Utility Model Content

[0004] The purpose of this utility model is to provide a cardboard box processing and transportation cleaning device to solve the problem mentioned in the background art that when the cleaning roller is used for a long time and dust accumulates, resulting in a decrease in cleaning effect, it takes a certain amount of time to disassemble and replace the cleaning roller, during which the device is shut down for a long time, which seriously affects production efficiency.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a cardboard box processing and transportation cleaning device, comprising a device body, a conveying component disposed on the device body, a dust collection component disposed on the device body, a filter component disposed on the dust collection component, a first fixed bracket fixedly mounted on the device body, a first threaded rod threadedly connected to the first fixed bracket, a first knob fixedly connected to one end of the first threaded rod, a first sliding seat slidably connected to the device body, a first motor fixedly mounted on the first sliding seat, a rotating shaft fixedly connected to the output end of the first motor, a limiting component disposed on the rotating shaft, a rotating bracket fixedly connected to the rotating shaft, an installation component disposed on the rotating bracket, a cleaning roller body mounted on the installation component, a transmission component disposed on the first fixed bracket, and the end of the first threaded rod away from the first knob rotatably connected to the first sliding seat, the first motor being used to drive the rotating shaft and the rotating bracket to rotate, and the limiting component being used to restrict the rotation of the rotating shaft.

[0006] In a preferred embodiment of this technical solution, the first sliding seat has a limiting groove at the relative position of the first threaded rod, and the first threaded rod is rotatably connected to the groove.

[0007] According to the preferred embodiment of this technical solution, the limiting component includes a limiting block fixedly installed on the rotating shaft and a limiting seat fixedly installed on the first sliding seat. The rotation of the rotating shaft is limited by the cooperation between the limiting block and the limiting seat.

[0008] In a preferred embodiment of this technical solution, the installation assembly includes a first connecting bushing rotatably connected to a rotating bracket, a first fixed seat fixedly installed on the rotating bracket, a bidirectional threaded rod rotatably connected to the first fixed seat, a second knob fixedly connected to one end of the bidirectional threaded rod, a sliding bracket threadedly connected to the bidirectional threaded rod, and the sliding bracket slidably connected to the first fixed seat. The cleaning roller body is installed on the first connecting bushing, the sliding bracket is used to limit the movement of the cleaning roller body, and the second knob is used to adjust the rotation of the bidirectional threaded rod.

[0009] In a preferred embodiment of this technical solution, the transmission assembly includes a first push rod body fixedly mounted on a first fixed bracket, a second sliding seat fixedly mounted on one end of the first push rod body, a second motor fixedly mounted on the second sliding seat, a connecting block fixedly connected to one end of the second motor, the connecting block being movably connected to a first connecting bushing, the second sliding seat being slidably connected to the first fixed bracket, the first push rod body being used to adjust the movement of the second sliding seat, and the second motor being used to drive the connecting block to rotate.

[0010] Based on the preferred embodiment of this technical solution, the conveying assembly includes a third motor fixedly installed on the main body of the device, a conveying roller body fixedly connected to the output end of the third motor, a transmission wheel fixedly connected to the conveying roller body, and a transmission belt connected to the transmission wheel. The conveying roller body is rotatably connected to the main body of the device. The third motor is used to drive the conveying roller body to rotate. The transmission wheel and the transmission belt work together to drive the other conveying roller bodies to rotate. The rotation of the conveying roller body conveys the carton board forward.

[0011] According to the preferred embodiment of this technical solution, the dust collection assembly includes a second fixed bracket fixedly installed on the main body of the device, a second threaded rod threadedly connected to the second fixed bracket, a third knob fixedly connected to the second threaded rod, a guide rod slidably connected to the second fixed bracket, a connecting bracket fixedly connected to the guide rod, a dust collection port fixedly connected to the connecting bracket, a connecting pipe fixedly connected to the dust collection port, a first outer casing fixedly connected to the main body of the device, a connecting hose fixedly connected between the connecting pipe and the first outer casing, and a centrifugal fan fixedly installed on the first outer casing. The end of the second threaded rod away from the third knob is rotatably connected to the connecting bracket. The filter assembly is disposed on the first outer casing. The third knob is used to adjust the rotation of the second threaded rod, and the dust collection port is adjusted by rotating the second threaded rod.

[0012] According to the preferred embodiment of this technical solution, the filter assembly includes a sliding frame slidably connected to the first outer casing, a pre-filter plate disposed on the sliding frame, a dust filter plate disposed on the sliding frame, and an activated carbon filter plate disposed on the sliding frame.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. The first motor drives the rotating shaft and rotating bracket to rotate, and the installation components and the cleaning roller body rotate alternately to perform cleaning work. This alternating mechanism completely changes the traditional mode of stopping the machine to disassemble and replace a single cleaning roller. It greatly shortens the production line interruption time caused by cleaning roller replacement, avoids production stagnation caused by long-term shutdown, effectively ensures the continuous operation of the production line, and thus significantly improves the overall production efficiency.

[0015] 2. During the conveying of cardboard boxes, the dust collection component generates negative pressure through the height-adjustable dust collection port to remove surface dust, fine paper scraps, and loose impurities in advance. The two components work together to cover impurities of different types and adhesion strengths, avoiding the limitations of a single cleaning method. This significantly improves the dust removal rate on the cardboard box surface and reduces wear on the cleaning roller body caused by excessive impurities, indirectly extending its service life and ensuring long-term stable cleaning efficiency.

[0016] 3. The filter assembly utilizes the triple synergy of the pre-filter, dust filter, and activated carbon filter. This layered filtration design not only significantly improves air purification efficiency but also prevents dust pollution from affecting the workshop environment and the health of operators. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of one embodiment of the cardboard box processing and transportation cleaning device of this utility model;

[0018] Figure 2 for Figure 1 A rear view schematic diagram of the main body of the device and its connected components;

[0019] Figure 3 for Figure 1 Schematic diagram of the first fixed bracket and its connected components;

[0020] Figure 4 This is a schematic diagram of the limiting component structure of this utility model;

[0021] Figure 5 This is a schematic diagram of the installation component structure of this utility model;

[0022] Figure 6 This is a schematic diagram of the transmission component structure of this utility model;

[0023] Figure 7 This is a schematic diagram of the conveying component structure of this utility model;

[0024] Figure 8 This is a schematic diagram of the dust collection component structure of this utility model;

[0025] Figure 9 This is a schematic diagram of the filter assembly structure of this utility model.

[0026] In the diagram: 1. Main body of the device; 21. First fixed bracket; 22. First threaded rod; 23. First knob; 24. First sliding seat; 25. First motor; 26. Rotating shaft; 27. Rotating bracket; 28. Cleaning roller body; 29. ​​First connecting bushing; 210. First fixed seat; 211. Bidirectional threaded rod; 212. Second knob; 213. Sliding bracket; 214. First push rod body; 215. Second sliding seat; 216. Second motor; 217. Connecting block; 218. 219. Limiting block; 31. Limiting seat; 32. Third motor; 33. Conveyor roller body; 34. Transmission wheel; 35. Transmission belt; 36. Second fixed bracket; 37. Second threaded rod; 38. Third knob; 39. Guide rod; 30. Connecting bracket; 310. Dust suction port; 311. Connecting pipe; 312. First outer casing; 313. Connecting hose; 314. Centrifugal fan; 315. Sliding frame; 316. Pre-filter plate; 317. Dust filter plate; 318. Activated carbon filter plate. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] Please see Figure 1 - Figure 9 This utility model provides an embodiment of a cardboard box processing and transportation cleaning device, including a device body 1, a conveying assembly mounted on the device body 1, a dust collection assembly mounted on the device body 1, a filter assembly mounted on the dust collection assembly, a first fixed bracket 21 fixedly mounted on the device body 1, a first threaded rod 22 threadedly connected to the first fixed bracket 21, a first knob 23 fixedly connected to one end of the first threaded rod 22, a first sliding seat 24 slidably connected to the device body 1, a first motor 25 fixedly mounted on the first sliding seat 24, a rotating shaft 26 fixedly connected to the output end of the first motor 25, a limiting assembly mounted on the rotating shaft 26, a rotating bracket 27 fixedly connected to the rotating shaft 26, a mounting assembly mounted on the rotating bracket 27, a cleaning roller body 28 mounted on the mounting assembly, a transmission assembly mounted on the first fixed bracket 21, and the end of the first threaded rod 22 away from the first knob 23 rotatably connected to the first sliding seat 24. The first motor 25 is used to drive the rotating shaft 26 and the rotating bracket 27 to rotate, and the limiting assembly is used to control the rotation of the rotating shaft 26. During the processing and transportation of cardboard boxes, the conveying components enable automatic conveying of the cardboard boxes. When the boxes pass the dust collection components, the dust collection components clean the surface of the boxes. After the boxes move forward to the first fixed bracket 21, the transmission components drive the installation components and the cleaning roller body 28 to rotate. The cleaning roller body 28 further cleans the dust on the surface of the boxes. When one side of the cleaning roller body 28 has accumulated a lot of dust, resulting in a decrease in cleaning effect, the operator adjusts the transmission components away from the installation components. Then, the first motor 25 adjusts the rotating shaft 26 and the rotating bracket 27 to rotate. When the rotating shaft 26 rotates, the limit components restrict the rotation of the rotating shaft 26, causing the rotating shaft 26 to rotate 180 degrees. This allows the two sets of installation components and the cleaning roller body 28 to alternate. After adjusting the connection between the transmission components and the installation components, the transmission components continue to drive the second set of installation components and the cleaning roller body 28 to rotate to continue the installation work. After adjusting the installation components that have alternated on the other side to release the limit on the cleaning roller body 28, the cleaning roller body 28 can be removed for replacement.

[0029] Please see Figure 1 - Figure 3 A further solution based on this embodiment is as follows: the first sliding seat 24 has a limiting groove at the relative position of the first threaded rod 22, and the first threaded rod 22 is rotatably connected to the groove. This setting forms a stable limit on the first threaded rod 22 through the groove, ensuring that the first threaded rod 22 will not undergo axial displacement during rotation, thereby ensuring that the first sliding seat 24 can slide stably along the main body 1 of the device, avoiding the position displacement of the cleaning roller body 28 due to the shaking of the threaded rod, which would affect the cleaning effect, and at the same time improving the stability and reliability of the structure operation.

[0030] Please see Figure 1 - Figure 4 A further solution based on this embodiment is as follows: the limiting component includes a limiting block 218 fixedly installed on the rotating shaft 26 and a limiting seat 219 fixedly installed on the first sliding seat 24. The limiting block 218 and the limiting seat 219 cooperate to limit the rotation of the rotating shaft 26. When the rotating shaft 26 drives the rotating bracket 27 to flip, the limiting block 218 and the limiting seat 219 engage with each other, which can accurately limit the further rotation of the rotating shaft 26 and keep the cleaning roller body 28 stably at the preset working angle.

[0031] Please see Figure 1 - Figure 5 A further embodiment of this solution is as follows: the mounting assembly includes a first connecting sleeve 29 rotatably connected to the rotating bracket 27, a first fixed seat 210 fixedly installed on the rotating bracket 27, a bidirectional threaded rod 211 rotatably connected to the first fixed seat 210, a second knob 212 fixedly connected to one end of the bidirectional threaded rod 211, a sliding bracket 213 threadedly connected to the bidirectional threaded rod 211, and the sliding bracket 213 slidably connected to the first fixed seat 210. The cleaning roller body 28 is mounted on the first connecting sleeve 29 and slides... The bracket 213 is used to limit the cleaning roller body 28, and the second knob 212 is used to adjust the rotation of the bidirectional threaded rod 211. By rotating the second knob 212, the bidirectional threaded rod 211 is driven to rotate, which can drive the sliding bracket 213 to move closer or further away from the first fixed seat 210 in sync, so as to realize the quick clamping and loosening of the cleaning roller body 28, which facilitates the installation, disassembly and replacement of the cleaning roller body 28. At the same time, it ensures that the cleaning roller body 28 is tightly fitted with the first connecting bushing 29 during operation, avoids the phenomenon of separation, and ensures the stable operation of the cleaning operation.

[0032] Please see Figure 1 - Figure 6A further embodiment of this solution is as follows: the transmission assembly includes a first push rod body 214 fixedly mounted on a first fixed bracket 21, a second sliding seat 215 fixedly mounted on one end of the first push rod body 214, a second motor 216 fixedly mounted on the second sliding seat 215, a connecting block 217 fixedly connected to one end of the second motor 216, the connecting block 217 being movably connected to a first connecting bushing 29, the second sliding seat 215 being slidably connected to the first fixed bracket 21, the first push rod body 214 being used to adjust the movement of the second sliding seat 215, and the second motor 216 being... 6 is used to drive the connecting block 217 to rotate. When it is necessary to drive the cleaning roller body 28 to work, after adjusting the connecting block 217 to be aligned with the groove of the first connecting sleeve 29, the first push rod body 214 pushes the second sliding seat 215 to move, so that the connecting block 217 and the first connecting sleeve 29 are precisely engaged. At this time, the second motor 216 drives the first connecting sleeve 29 and the cleaning roller body 28 to rotate through the connecting block 217 to realize the cleaning function. When no drive is needed, the push rod drives the connecting block 217 to disengage, which does not affect the flipping adjustment of the rotating bracket 27. The structure ensures the stability of power transmission.

[0033] Please see Figure 1 - Figure 7 A further solution based on this embodiment is as follows: The conveying assembly includes a third motor 31 fixedly installed on the main body 1 of the device, a conveying roller body 32 fixedly connected to the output end of the third motor 31, a transmission wheel 33 fixedly connected to the conveying roller body 32, and a transmission belt 34 connected to the transmission wheel 33. The conveying roller body 32 is rotatably connected to the main body 1 of the device. The third motor 31 is used to drive the conveying roller body 32 to rotate. Through the cooperation of the transmission wheel 33 and the transmission belt 34, the other conveying roller bodies 32 are driven to rotate. The carton board is conveyed forward by the rotation of the conveying roller body 32. The third motor 31 drives multiple sets of conveying roller bodies 32 to rotate synchronously through the linkage of the transmission wheel 33 and the transmission belt 34, so as to realize the continuous and stable conveying of the carton board and ensure that the board is subjected to uniform force during the conveying process.

[0034] Please see Figure 1 - Figure 8A further embodiment of this solution is as follows: the vacuuming assembly includes a second fixed bracket 35 fixedly mounted on the device body 1, a second threaded rod 36 threadedly connected to the second fixed bracket 35, a third knob 37 fixedly connected to the second threaded rod 36, a guide rod 38 slidably connected to the second fixed bracket 35, a connecting bracket 39 fixedly connected to the guide rod 38, a vacuum port 310 fixedly connected to the connecting bracket 39, a connecting pipe 311 fixedly connected to the vacuum port 310, a first outer casing 312 fixedly connected to the device body 1, a connecting hose 313 fixedly connected between the connecting pipe 311 and the first outer casing 312, and a centrifugal fan 314 fixedly mounted on the first outer casing 312. The end of the second threaded rod 36 away from the third knob 37 rotates. Connected to the connecting bracket 39, the filter assembly is mounted on the first outer casing 312. The third knob 37 is used to adjust the rotation of the second threaded rod 36. The suction port 310 is adjusted by rotating the second threaded rod 36. Rotating the third knob 37 can drive the second threaded rod 36 to rotate. Under the limiting action of the guide rod 38, the connecting bracket 39 drives the suction port 310 to move up and down, realizing precise adjustment of the height of the suction port 310 to adapt to the dust collection needs of cardboard of different thicknesses. The negative pressure generated by the centrifugal fan 314 sucks the dust generated during cleaning into the first outer casing 312 through the suction port 310, connecting pipe 311 and connecting hose 313, effectively preventing dust from spreading and polluting the working environment. At the same time, the filter assembly purifies the intake air, ensuring the cleanliness of the exhaust air and improving the environmental friendliness of the working environment.

[0035] Please see Figure 1 - Figure 9 A further solution based on this embodiment is as follows: the filter assembly includes a sliding frame 315 slidably connected to the first outer casing 312, a pre-filter plate 316 disposed on the sliding frame 315, a dust filter plate 317 disposed on the sliding frame 315, and an activated carbon filter plate 318 disposed on the sliding frame 315. The pre-filter plate 316 can intercept larger particulate impurities to prevent them from clogging the subsequent filter structure; the dust filter plate 317 further filters fine dust to reduce the particulate matter content in the air; the activated carbon filter plate 318 further adsorbs fine particles in the air. The triple filtration structure significantly improves the air purification effect. Moreover, the sliding connection design between the sliding frame 315 and the first outer casing 312 allows the filter assembly to be pulled out as a whole, which is convenient for regular cleaning or replacement of the filter plates, ensuring long-term stability of filtration efficiency and extending the service life of the dust collection assembly.

[0036] Working principle: Before operation, based on the thickness of the cardboard, the first screw rod 22 is rotated by adjusting the first knob 23. Since the first screw rod 22 is threadedly connected to the first fixed bracket 21 and its end is rotatably connected in the groove of the first sliding seat 24, the rotation of the first screw rod 22 will drive the first sliding seat 24 to slide along the main body 1 of the device, thereby adjusting the lateral distance between the cleaning roller body 28 and the cardboard. Then, the third knob 37 is rotated to drive the second screw rod 36 to rotate. Under the limiting action of the guide rod 38, the connecting bracket 39 drives the dust suction port 310 to move up and down, adjusting the height position of the dust suction port 310.

[0037] During the processing and transportation of cardboard boxes, after the third motor 31 starts, its output end drives the connected conveyor roller body 32 to rotate. The transmission wheel 33 on the conveyor roller body 32 drives the other conveyor roller bodies 32 to rotate synchronously through the transmission belt 34. The cardboard boxes are placed on the conveyor roller bodies 32 and are smoothly conveyed forward with the rotation of the conveyor roller bodies 32. The centrifugal fan 314 generates negative pressure, and the dust and impurities generated during the cleaning process are sucked into the first outer box 312 through the connecting hose 313, connecting pipe 311 and dust suction port 310. The air sucked into the first outer box 312 is processed by the filter assembly. The pre-filter plate 316 first intercepts larger particulate impurities. The dust filter plate 317 further filters fine dust, and the activated carbon filter plate 318 adsorbs odors and residual fine particles in the air. The purified air is discharged to avoid environmental pollution. When the filter components need to be replaced, they can be pulled out from the first outer box 312 through the sliding frame 315 to clean or replace the filter plates. After the dust is collected, the board moves forward to the first fixed bracket 21, and the transmission component starts to work. The second motor 216 starts and drives the first connecting bushing 29 and the cleaning roller body 28 installed on it to rotate through the connecting block 217. The rotating cleaning roller body 28 cleans the surface of the carton board being transported to remove dust, impurities and other contaminants.

[0038] When the cleaning roller body 28 needs to be replaced, the first push rod body 214 drives the second sliding seat 215 to slide along the first fixed bracket 21. After the connecting block 217 at the output end of the second motor 216 disengages from the first connecting bushing 29 on the rotating bracket 27, the first motor 25 adjusts the rotation shaft 26 to rotate with the rotating bracket 27. When the rotation shaft 26 rotates, the limiting block 218 and the limiting seat 219 cooperate to limit the rotation shaft 26, causing the rotation shaft 26 to rotate 180 degrees. This allows the two sets of mounting components to alternate with the cleaning roller body 28, and the connecting block 217 and the groove of the first connecting bushing 29 are manually adjusted to be aligned. After alignment, the first push rod body 214 operates to connect the connecting block 217 to the first connecting sleeve 29. Then, the second motor 216 continues to drive the first connecting sleeve 29 and the cleaning roller body 28 to rotate. Next, adjust the alternate installation components on the other side. By rotating the second knob 212, the bidirectional threaded rod 211 is rotated, causing the sliding bracket 213 to slide along the first fixed seat 210 and disengage from the cleaning roller body 28. The old cleaning roller body 28 can then be removed. After replacing it with a new cleaning roller body 28, rotate the second knob 212 in the opposite direction. The sliding bracket 213 will then reposition and fix the cleaning roller body 28, thus completing the installation work.

[0039] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A cardboard box processing and transportation cleaning device, comprising a main body (1), characterized in that: It also includes a conveying assembly mounted on the main body (1), a dust collection assembly mounted on the main body (1), a filter assembly mounted on the dust collection assembly, a first fixed bracket (21) fixedly mounted on the main body (1), a first threaded rod (22) threadedly connected to the first fixed bracket (21), a first knob (23) fixedly connected to one end of the first threaded rod (22), a first sliding seat (24) slidably connected to the main body (1), a first motor (25) fixedly mounted on the first sliding seat (24), and a knob (23) fixedly connected to the output end of the first motor (25). A rotating shaft (26), a limiting component set on the rotating shaft (26), a rotating bracket (27) fixedly connected to the rotating shaft (26), a mounting component set on the rotating bracket (27), a cleaning roller body (28) mounted on the mounting component, a transmission component set on the first fixed bracket (21), a first threaded rod (22) rotatably connected at one end away from the first knob (23) to the first sliding seat (24), a first motor (25) for driving the rotating shaft (26) and the rotating bracket (27) to rotate, and a limiting component for limiting the rotation of the rotating shaft (26).

2. The cardboard box processing, transportation, and cleaning device according to claim 1, characterized in that: The first sliding seat (24) has a limiting groove at the relative position of the first threaded rod (22), and the first threaded rod (22) is rotatably connected to the groove.

3. The cardboard box processing, transportation, and cleaning device according to claim 1, characterized in that: The limiting assembly includes a limiting block (218) fixedly installed on the rotating shaft (26) and a limiting seat (219) fixedly installed on the first sliding seat (24). The limiting block (218) and the limiting seat (219) cooperate to limit the rotation of the rotating shaft (26).

4. The cardboard box processing, transportation, and cleaning device according to claim 1, characterized in that: The mounting assembly includes a first connecting bushing (29) rotatably connected to a rotating bracket (27), a first fixed seat (210) fixedly installed on the rotating bracket (27), a bidirectional threaded rod (211) rotatably connected to the first fixed seat (210), a second knob (212) fixedly connected to one end of the bidirectional threaded rod (211), a sliding bracket (213) threadedly connected to the bidirectional threaded rod (211), the sliding bracket (213) being slidably connected to the first fixed seat (210), the cleaning roller body (28) being mounted on the first connecting bushing (29), the sliding bracket (213) being used to limit the cleaning roller body (28), and the second knob (212) being used to adjust the rotation of the bidirectional threaded rod (211).

5. The cardboard box processing, transportation, and cleaning device according to claim 1, characterized in that: The transmission assembly includes a first push rod body (214) fixedly mounted on a first fixed bracket (21), a second sliding seat (215) fixedly mounted on one end of the first push rod body (214), a second motor (216) fixedly mounted on the second sliding seat (215), a connecting block (217) fixedly connected to one end of the second motor (216), the connecting block (217) being movably connected to a first connecting bushing (29), the second sliding seat (215) being slidably connected to the first fixed bracket (21), the first push rod body (214) being used to adjust the movement of the second sliding seat (215), and the second motor (216) being used to drive the connecting block (217) to rotate.

6. The cardboard box processing, transportation, and cleaning device according to claim 1, characterized in that: The conveying assembly includes a third motor (31) fixedly installed on the main body (1) of the device, a conveying roller body (32) fixedly connected to the output end of the third motor (31), a transmission wheel (33) fixedly connected to the conveying roller body (32), and a transmission belt (34) connected to the transmission wheel (33). The conveying roller body (32) is rotatably connected to the main body (1) of the device. The third motor (31) is used to drive the conveying roller body (32) to rotate. The transmission wheel (33) and the transmission belt (34) work together to drive the other conveying roller bodies (32) to rotate. The conveying roller body (32) rotates to convey the carton board forward.

7. The cardboard box processing, transportation, and cleaning device according to claim 1, characterized in that: The vacuuming assembly includes a second fixed bracket (35) fixedly mounted on the main body (1), a second threaded rod (36) threadedly connected to the second fixed bracket (35), a third knob (37) fixedly connected to the second threaded rod (36), a guide rod (38) slidably connected to the second fixed bracket (35), a connecting bracket (39) fixedly connected to the guide rod (38), a vacuum port (310) fixedly connected to the connecting bracket (39), a connecting pipe (311) fixedly connected to the vacuum port (310), and a fixed connection. The device body (1) has a first outer casing (312), a connecting hose (313) fixedly connected between the connecting pipe (311) and the first outer casing (312), a centrifugal fan (314) fixedly installed on the first outer casing (312), a second threaded rod (36) rotatably connected to a connecting bracket (39) at one end away from the third knob (37), a filter assembly set on the first outer casing (312), and a third knob (37) used to adjust the rotation of the second threaded rod (36). The dust suction port (310) is adjusted by rotating the second threaded rod (36).

8. The cardboard box processing, transportation, and cleaning device according to claim 1, characterized in that: The filter assembly includes a sliding frame (315) slidably connected to the first outer casing (312), a pre-filter plate (316) disposed on the sliding frame (315), a dust filter plate (317) disposed on the sliding frame (315), and an activated carbon filter plate (318) disposed on the sliding frame (315).