Surface cleaning device for BOPP laser film coating

By designing a surface cleaning device for BOPP laser film coating, an efficient double-sided cleaning process for the laser film is achieved by using an active motor to drive a cleaning brush and a water tank agitation combined with a water-absorbing cotton tube blowing component. This solves the problem of low cleaning efficiency in existing technologies and ensures cleaning quality and performance.

CN223960192UActive Publication Date: 2026-03-03无锡臻创包装新材料科技有限公司
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Patent Information

Application Number
CN202520469305.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-03-03
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

Existing double-sided cleaning processes for laser films are inefficient and fail to guarantee cleaning quality, resulting in residual dust, impurities, and dirt on the film surface, which affects optical performance and aesthetics, and reduces subsequent processing and usage performance.

Method used

Design a surface cleaning device for BOPP laser film coating. Driven by an active motor, the cleaning brush and active wheel rotate. Combined with a cleaning pool, absorbent cotton tube and blower assembly, it can achieve efficient double-sided cleaning of the laser film, including dust removal, stain removal and drying steps.

Benefits of technology

It improves cleaning efficiency, ensures cleaning quality, and guarantees the optical performance and aesthetics of the laser film, providing a strong guarantee for coating production.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223960192U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of laser film surface cleaning devices, in particular to a surface cleaning device for BOPP laser film coating. Comprising a supporting base, a cleaning water tank, a first guide mold frame, a second guide mold frame, a first guide mold roller, a second guide mold roller, a third guide mold roller, a driving motor, a driving shaft, a driving wheel, a mounting bracket, a driven shaft, a driven wheel, a transmission belt, a driven gear, a transmission gear, a transmission shaft, a first cleaning soft brush, a second cleaning soft brush, a first absorbent cotton cylinder, a second absorbent cotton cylinder and a cleaning assembly, the laser film surface cleaning device comprises a first cleaning soft brush arranged at one end of one transmission shaft, a first water absorption cotton barrel arranged at one end of the other transmission shaft, a second cleaning soft brush arranged at one end of a driving shaft, and two sets of second water absorption cotton barrels arranged on the inner wall of a second guide mold frame. Through mutual cooperation of the whole structure, the double-face cleaning process is completed, the cleaning efficiency is improved, and the cleaning quality is ensured.
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Description

Technical Field

[0001] This utility model relates to the technical field of laser film surface cleaning devices, and in particular to a surface cleaning device for BOPP laser film coating. Background Technology

[0002] BOPP laser film is a special material widely used in packaging, decoration and anti-counterfeiting fields. Its surface quality is crucial to the final presentation of the product. Surface cleaning is an indispensable part of the coating production process of BOPP laser film.

[0003] In practical use, there is a challenge of low efficiency and difficulty in guaranteeing the cleaning quality of double-sided cleaning of laser films. Specifically, existing cleaning methods often fail to achieve efficient, continuous and thorough cleaning of both sides of the laser film, resulting in residual dust, impurities and dirt on the film surface. This not only affects the optical performance and aesthetics of the laser film, but also reduces its performance in subsequent processing and use. Improvements are urgently needed to address the problem of inconvenience in achieving efficient and continuous double-sided cleaning of laser films.

[0004] Therefore, to address the aforementioned problem of inconvenience in achieving efficient and continuous double-sided cleaning of laser film, a surface cleaning device for BOPP laser film coating can be designed. During use, the laser film surface cleaning device first activates the winding assembly, which pulls one end of the laser film and guides it along a preset transport path. This path sequentially passes through the first guide mold frame, the first guide mold roller, the second guide mold roller, the third guide mold roller, and the second guide mold frame, finally being wound and wound by the winding assembly. When the laser film enters the cleaning water tank through the first guide mold roller, the device automatically starts the cleaning process. At this time, the active motor starts running, driving the second cleaning soft brush and the active wheel to rotate. The active wheel is connected to the driven wheels on both sides via a transmission belt, which in turn drives the driven shaft and driven gear to rotate. The meshing of the driven gear and the transmission gear causes the two sets of transmission shafts to also rotate. One end of each of these two sets of transmission shafts is equipped with a first cleaning soft brush, and the other end is connected to the transmission gear. As the transmission shafts rotate, the two sets of first cleaning soft brushes begin to clean both sides of the laser film. Dust removal effectively removes surface impurities and dirt. During the cleaning process, the cleaning components ensure cleaning effectiveness while preventing dust pollution. Subsequently, the laser film is guided by the second guide roller. At this time, the second cleaning brush driven by the drive shaft not only agitates the water in the cleaning pool but also further agitates and cleans the laser film. This step helps to thoroughly remove stubborn stains from the film surface. After cleaning, the laser film is exported through the third guide roller and then removed by the adsorption of two sets of first absorbent cotton tubes. Next, two sets of blowing components are activated to dry both sides of the laser film. Finally, the laser film is exported through the second guide frame, where two sets of second absorbent cotton tubes clean the film surface again to ensure the cleanliness of the final product. After this series of complex cleaning processes, the laser film is wound and rolled up by the winding component, thus completing the entire double-sided cleaning process. This device not only improves cleaning efficiency but also ensures cleaning quality, providing a strong guarantee for the coating production of BOPP laser film. Utility Model Content

[0005] To overcome the challenges faced by laser film surface cleaning devices during use, such as low efficiency and difficulty in guaranteeing cleaning quality for double-sided cleaning of laser films, specifically, existing cleaning methods often fail to achieve efficient, continuous, and thorough cleaning of both sides of the laser film, resulting in residual dust, impurities, and dirt on the film surface. This not only affects the optical performance and aesthetics of the laser film but also reduces its performance in subsequent processing and use, necessitating improvement to address the problem of inconvenience in achieving efficient and continuous double-sided cleaning of laser films.

[0006] The technical solution of this utility model is as follows: a surface cleaning device for BOPP laser film coating, comprising a support base, a cleaning water tank, a first guide mold frame, a second guide mold frame, a first guide mold roller, a second guide mold roller, a third guide mold roller, a drive motor, a drive shaft, a drive wheel, a mounting bracket, a driven shaft, a driven wheel, a transmission belt, a driven gear, a transmission gear, a transmission shaft, a first cleaning soft brush, a second cleaning soft brush, a first absorbent cotton tube, a second absorbent cotton tube, a cleaning assembly, a drying assembly, and a winding assembly. A first guide mold frame is arranged above one side of the support base, and a winding assembly is arranged above the other side of the support base. A cleaning water tank is arranged above the support base. A cleaning assembly is arranged on one side of the cleaning water tank, and a drying assembly is arranged on the other side of the cleaning water tank. A mounting bracket is arranged on the side wall of the cleaning water tank, and a drive motor is arranged on the side wall of the mounting bracket. A drive shaft is arranged at the output end of the drive motor, and a drive wheel is arranged on the side wall of the drive shaft. The washing pool has a drive wheel with a drive belt on its outside. The drive wheel is rotatably connected to the drive belt. Two sets of driven shafts are installed on the upper sides of both sides of the washing pool. Driven wheels are installed on the side walls of the driven shafts and are located inside the drive belts. The driven wheels are rotatably connected to the drive belts. A first guide roller is installed on one side of the washing pool. A driven gear is installed at one end of the driven shaft. Multiple sets of drive shafts are installed on the upper sides of both sides of the washing pool. A first cleaning brush is installed at one end of the drive shaft, and a drive gear is installed at the other end of the drive shaft. The driven gear meshes with the drive gear. A third guide roller is installed on the other side of the washing pool. A first absorbent cotton tube is installed at one end of another drive shaft. A second guide roller is installed inside the washing pool. A second cleaning brush is installed at one end of the drive shaft and is located below the second guide roller. A second guide frame is installed above the support base. Two sets of second absorbent cotton tubes are installed on the inner wall of the second guide frame.

[0007] Preferably, during the use of the laser film surface cleaning device, the winding assembly is first activated. This assembly is responsible for pulling one end of the laser film and guiding it along a preset transmission path. This path sequentially passes through the first guide mold frame, the first guide mold roller, the second guide mold roller, the third guide mold roller, and the second guide mold frame, and is finally wound up by the winding assembly. When the laser film enters the cleaning water tank through the first guide mold roller, the device automatically starts the cleaning process. At this time, the active motor starts running, driving the second cleaning soft brush and the active wheel to rotate. The active wheel is connected to the driven wheels on both sides through a transmission belt, which in turn drives the driven shaft and driven gear to rotate. The meshing action of the driven gear and the transmission gear causes the two sets of transmission shafts to also start rotating. One end of each of these two sets of transmission shafts is equipped with a first cleaning soft brush, and the other end is connected to the transmission gear. As the transmission shafts rotate, the two sets of first cleaning soft brushes begin to clean the dust on both sides of the laser film, effectively removing impurities and dirt from the surface. During the cleaning process... By activating the cleaning components, the cleaning effect is ensured while avoiding dust pollution to the environment. Subsequently, the laser film is guided by the second guide roller. At this time, the second cleaning soft brush driven by the drive shaft not only agitates the water in the cleaning pool but also further agitates and cleans the laser film. This step helps to thoroughly remove stubborn stains on the film surface. After cleaning, the laser film is exported through the third guide roller and then passes through the adsorption of two sets of first absorbent cotton tubes to remove surface water stains. Next, two sets of blowing components are activated to dry both sides of the laser film. Finally, the laser film is exported through the second guide frame. At this time, two sets of second absorbent cotton tubes clean the film surface again to ensure the cleanliness of the final product. After this series of complex cleaning processes, the laser film is wound and wound by the winding component, thus completing the entire double-sided cleaning process. This device not only improves cleaning efficiency but also ensures cleaning quality, providing a strong guarantee for the coating production of BOPP laser film.

[0008] Preferably, the cleaning assembly includes a cleaning chamber, a collection chamber, and a vacuum pipe. The cleaning chamber is located on one side of the cleaning pool, the collection chamber is located on one side of the cleaning chamber, and the vacuum pipe is located on one side of the collection chamber.

[0009] Preferably, the cleaning assembly also includes a vacuum cleaner and a vacuum head. The vacuum cleaner is installed on the side wall of the vacuum tube, and the vacuum head is installed at one end of the vacuum tube. The vacuum head is located inside the vacuum chamber, and the first cleaning soft brush is located inside the vacuum chamber.

[0010] Preferably, the drying assembly includes a drying chamber, a mounting side plate, and a blower. The drying chamber is located on the other side of the washing pool, and a mounting side plate is located on one side of the drying chamber. Two sets of blowers are installed on the side wall of the mounting side plate.

[0011] Preferably, the air-drying assembly also includes a blower pipe and a blower head. The blower pipe is provided on one side of the blower pipe and the blower head is provided at one end of the blower pipe. The two sets of blower heads are respectively provided on the upper and lower sides of the air-drying chamber, and the first absorbent cotton tube is provided inside the air-drying chamber.

[0012] Preferably, the winding assembly includes a drive motor, a drive shaft, a drive wheel, a winding bracket, and a rotating belt. The winding bracket is located above one side of the support base, the drive motor is located on the side wall of the winding bracket, the drive shaft is located at the output end of the drive motor, the drive wheel is located on the side wall of the drive shaft, and a rotating belt is located outside the drive wheel. The drive wheel and the rotating belt are rotatably connected.

[0013] Preferably, the winding assembly also includes a rotating shaft, a rotating wheel, and a winding roller. The rotating shaft is provided on the side wall of the winding bracket, and a rotating wheel is provided at one end of the rotating shaft. The rotating wheel is located inside the rotating belt and is rotatably connected to the rotating belt. A winding roller is provided at the other end of the rotating shaft.

[0014] The beneficial effects of this utility model are:

[0015] When the laser film surface cleaning device is in use, the winding assembly is first activated. This assembly pulls one end of the laser film and guides it along a preset transport path. This path passes sequentially through the first guide mold frame, the first guide mold roller, the second guide mold roller, the third guide mold roller, and the second guide mold frame, finally being wound and wound up by the winding assembly. When the laser film enters the cleaning water tank through the first guide mold roller, the device automatically starts the cleaning process. At this time, the active motor starts running, driving the second cleaning soft brush and the active wheel to rotate. The active wheel is connected to the driven wheels on both sides via a transmission belt, which in turn drives the driven shaft and driven gear to rotate. The meshing of the driven gear and the transmission gear causes the two sets of transmission shafts to also start rotating. One end of each of these two sets of transmission shafts is equipped with a first cleaning soft brush, and the other end is connected to the transmission gear. As the transmission shafts rotate, the two sets of first cleaning soft brushes begin to clean the dust on both sides of the laser film, effectively removing impurities and dirt from the surface. During the cleaning process, through The activation of the cleaning components ensures effective cleaning while preventing dust pollution. Subsequently, the laser film is guided by the second guide roller. At this point, the second cleaning brush, driven by the drive shaft, not only agitates the water in the cleaning tank but also further agitates and cleans the laser film. This step helps to thoroughly remove stubborn stains from the film surface. After cleaning, the laser film is exported through the third guide roller and then passes through two sets of first absorbent cotton tubes to remove surface water. Next, two sets of blowing components are activated to dry both sides of the laser film. Finally, the laser film is exported through the second guide frame, where two sets of second absorbent cotton tubes clean the film surface again to ensure the cleanliness of the final product. After this series of complex cleaning processes, the laser film is wound and rolled up by the winding component, thus completing the entire double-sided cleaning process. This device not only improves cleaning efficiency but also ensures cleaning quality, providing a strong guarantee for the coating production of BOPP laser film. Attached Figure Description

[0016] Figure 1 The diagram shown is a first three-dimensional structural schematic of a surface cleaning device for BOPP laser film coating according to this utility model.

[0017] Figure 2 The diagram shown is a partial three-dimensional structural schematic of a surface cleaning device for BOPP laser film coating according to this utility model.

[0018] Figure 3 The diagram shown is a partial three-dimensional structural schematic of a surface cleaning device for BOPP laser film coating according to the present invention.

[0019] Figure 4 The diagram shown is a partial three-dimensional structural schematic of a surface cleaning device for BOPP laser film coating according to this utility model.

[0020] Figure 5 The diagram shown is a partial three-dimensional structural schematic of a surface cleaning device for BOPP laser film coating according to the present invention.

[0021] Explanation of reference numerals in the attached drawings: 1. Support base; 2. Cleaning water tank; 3. First guide mold frame; 4. Second guide mold frame; 5. First guide mold roller; 6. Second guide mold roller; 7. Third guide mold roller; 8. Drive motor; 9. Drive shaft; 10. Drive wheel; 11. Mounting bracket; 12. Driven shaft; 13. Driven wheel; 14. Transmission belt; 15. Driven gear; 16. Transmission gear; 17. Transmission shaft; 18. First cleaning soft brush; 19. Second cleaning soft brush; 20. First water absorber 21. Second absorbent cotton tube; 101. Cleaning chamber; 102. Collection chamber; 103. Suction hose; 104. Vacuum cleaner; 105. Suction head; 201. Drying chamber; 202. Mounting side panel; 203. Hair dryer; 204. Air hose; 205. Hair dryer head; 301. Drive motor; 302. Drive shaft; 303. Drive wheel; 304. Rewinding bracket; 305. Rotating belt; 306. Rotating shaft; 307. Rotating wheel; 308. Rewinding roller. Detailed Implementation

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] Please see Figures 1-5This utility model provides an embodiment: a surface cleaning device for BOPP laser film coating, comprising a support base 1, a cleaning water tank 2, a first mold guide frame 3, a second mold guide frame 4, a first mold guide roller 5, a second mold guide roller 6, a third mold guide roller 7, a drive motor 8, a drive shaft 9, a drive wheel 10, a mounting bracket 11, a driven shaft 12, a driven wheel 13, a transmission belt 14, a driven gear 15, a transmission gear 16, a transmission shaft 17, a first cleaning soft brush 18, a second cleaning soft brush 19, a first absorbent cotton tube 20, and a second absorbent cotton tube 21. 1. A cleaning assembly, a drying assembly, and a winding assembly are provided. A first guide mold frame 3 is installed above one side of the support base 1, and a winding assembly is installed above the other side of the support base 1. A cleaning water tank 2 is installed above the support base 1. A cleaning assembly is installed on one side of the cleaning water tank 2, and a drying assembly is installed on the other side of the cleaning water tank 2. A mounting bracket 11 is installed on the side wall of the cleaning water tank 2. An active motor 8 is installed on the side wall of the mounting bracket 11. An active shaft 9 is installed at the output end of the active motor 8. An active wheel 10 is installed on the side wall of the active shaft 9. A drive belt 14 is provided on the outside of the cleaning pool 10, and the drive wheel 10 is rotatably connected to the drive belt 14. Two sets of driven shafts 12 are provided on the upper sides of the cleaning pool 2. Driven wheels 13 are provided on the side walls of the driven shafts 12 and are located inside the drive belt 14. Driven wheels 13 are rotatably connected to the drive belt 14. A first guide roller 5 is provided on one side of the cleaning pool 2. A driven gear 15 is provided at one end of the driven shaft 12. Multiple sets of drive shafts 17 are provided on the upper sides of the cleaning pool 2. A first cleaning wheel 17 is provided at one end of the drive shaft 17. A soft brush 18 is provided at one end of the drive shaft 17, and a drive gear 16 is provided at the other end of the drive shaft 17. The driven gear 15 meshes with the drive gear 16. A third guide roller 7 is provided on the other side of the cleaning pool 2. A first absorbent cotton tube 20 is provided at one end of another drive shaft 17. A second guide roller 6 is provided inside the cleaning pool 2. A second cleaning soft brush 19 is provided at one end of the drive shaft 9. The second cleaning soft brush 19 is located below the second guide roller 6. A second guide frame 4 is provided above the support base 1. Two sets of second absorbent cotton tubes 21 are provided on the inner wall of the second guide frame 4.

[0024] Please see Figure 2The cleaning assembly includes a cleaning chamber 101, a collection chamber 102, and a suction pipe 103. The cleaning chamber 101 is located on one side of the washing pool 2, the collection chamber 102 is located on one side of the cleaning chamber 101, and the suction pipe 103 is located on one side of the collection chamber 102. Dust collected during cleaning is sucked into the collection chamber 102 for storage via the suction pipe 103. The cleaning assembly also includes a vacuum cleaner 104 and a suction head 105. The vacuum cleaner 104 is located on the side wall of the suction pipe 103, and the suction head 105 is located at one end of the suction pipe 103, inside the suction chamber. The first cleaning... The soft brush 18 is located inside the dust collection chamber. During the cleaning process, the vacuum cleaner 104 is started simultaneously. The vacuum head 105 is located inside the dust collection chamber and sucks in the dust collected through the vacuum tube 103 and collects and stores it in the collection chamber 102. The drying assembly includes a drying chamber 201, a mounting side plate 202, and a blower 203. The drying chamber 201 is located on the other side of the washing pool 2. The mounting side plate 202 is located on one side of the drying chamber 201. Two sets of blowers 203 are located on the side wall of the mounting side plate 202. The two sets of blowers 203 are started to deliver air into the drying chamber 201.

[0025] Please see Figures 3-5The drying assembly also includes a blower pipe 204 and a blower head 205. The blower pipe 204 is located on one side of the blower 203, and the blower head 205 is located at one end of the blower pipe 204. Two sets of blower heads 205 are respectively located on the upper and lower sides of the drying chamber 201. The first absorbent cotton cylinder 20 is located inside the drying chamber 201. When the two blowers 203 are activated, they deliver air to the two sets of blower heads 205 through the blower pipe 204, and the blown air dries both sides of the laser film. The winding assembly includes a drive motor 301, a drive shaft 302, a drive wheel 303, a winding bracket 304, and a rotating belt 305. The winding bracket 304 is positioned above one side of the support base 1. The drive motor 301 is mounted on the side wall of the winding bracket 304. The drive shaft 302 is located at the output end of the drive motor 301. The drive wheel 303 is mounted on the side wall of the drive shaft 302. A rotating belt 305 is mounted on the outside of the drive wheel 303. The drive wheel 303 rotates with the rotating belt 305. The belt 305 is rotatably connected. When the drive motor 301 is started, its output end drives the drive shaft 302 to start rotating, which in turn drives the drive wheel 303 to rotate synchronously. Through the rotation of the drive wheel 303, the rotating belt 305 is also driven and starts to run. The winding assembly also includes a rotating shaft 306, a rotating wheel 307, and a winding roller 308. The rotating shaft 306 is provided on the side wall of the winding bracket 304. One end of the rotating shaft 306 is provided with a rotating wheel 307, which is located inside the rotating belt 305 and is rotatably connected to the rotating belt 305. The other end of the rotating shaft 306 is provided with a winding roller 308. At the same time, as the rotating belt 305 runs, the rotating wheel 307 is also driven to start rotating, and then the rotational power is transmitted to the winding roller 308 through the rotating shaft 306. Finally, under the continuous rotation of the winding roller 308, the laser film is wound up in an orderly and tight manner, achieving an efficient and stable winding effect.

[0026] When the laser film surface cleaning device is in use, the drive motor 301 is first started, and its output drives the drive shaft 302 to rotate, which in turn drives the drive wheel 303 to rotate synchronously. The rotation of the drive wheel 303 drives the rotating belt 305 to start running. Simultaneously, as the rotating belt 305 rotates, the rotating wheel 307 is also driven to rotate, and the rotational power is transmitted to the take-up roller 308 through the rotating shaft 306. Finally, under the continuous rotation of the take-up roller 308, the laser film is wound up in an orderly and tight manner, achieving a highly efficient and stable winding effect.

[0027] This component is responsible for pulling one end of the laser film and making it travel along a preset transport path. This path passes sequentially through the first guide mold frame 3, the first guide mold roller 5, the second guide mold roller 6, the third guide mold roller 7, and the second guide mold frame 4, and is finally wound up by the take-up roller 308.

[0028] When the laser film enters the cleaning water tank 2 through the first guide roller 5, the device automatically starts the cleaning process. At this time, the active motor 8 starts running, driving the second cleaning soft brush 19 and the active wheel 10 to rotate. The active wheel 10 is connected to the driven wheels 13 on both sides through the transmission belt 14, which in turn drives the driven shaft 12 and the driven gear 15 to rotate. The meshing action of the driven gear 15 and the transmission gear 16 causes the two sets of transmission shafts 17 to also start rotating. One end of each of these two sets of transmission shafts 17 is equipped with a first cleaning soft brush 18, and the other end is connected to the transmission gear 16. As the transmission shafts 17 rotate, the two sets of first cleaning soft brushes 18 begin to clean the dust on both sides of the laser film, effectively removing impurities and dirt from the surface.

[0029] During the cleaning process, the vacuum cleaner 104 is activated simultaneously. The vacuum head 105 is located inside the vacuum chamber, and the dust collected is sucked in through the vacuum pipe 103 and stored in the collection chamber 102. This ensures both cleaning effectiveness and avoids dust pollution to the environment.

[0030] Subsequently, the laser membrane is guided by the second guide roller 6. At this time, the second cleaning brush 19 driven by the drive shaft 9 not only agitates the water in the cleaning pool 2, but also further agitates and cleans the laser membrane. This step helps to thoroughly remove stubborn stains from the membrane surface. After cleaning, the laser membrane is exported by the third guide roller 7 and then removed from the surface by the adsorption of two sets of first absorbent cotton cylinders 20.

[0031] Next, the two sets of blowers 203 are activated, delivering air to the two sets of blower heads 205 through the air pipes 204. The blown air dries both sides of the laser film.

[0032] Finally, the laser membrane is exported through the second guide mold frame 4. At this time, the two sets of second absorbent cotton cylinders 21 clean the membrane surface again to ensure the cleanliness of the final product.

[0033] After this series of complex cleaning processes, the laser film is wound and wound up by the take-up roller 308, thus completing the entire double-sided cleaning process. This device not only improves cleaning efficiency but also ensures cleaning quality, providing a strong guarantee for the coating production of BOPP laser film.

[0034] Through the above steps, during the use of the laser film surface cleaning device, the winding assembly is first activated. This assembly is responsible for pulling one end of the laser film and making it travel along a preset transmission path. This path passes sequentially through the first guide mold frame 3, the first guide mold roller 5, the second guide mold roller 6, the third guide mold roller 7, and the second guide mold frame 4, and is finally wound up by the winding assembly. When the laser film enters the cleaning water tank 2 through the first guide mold roller 5, the device automatically starts the cleaning process. At this time, the active motor 8 starts to run, and the active motor 8 drives the first guide mold roller 6, the second guide mold roller 7, and the third guide mold roller 8. The second cleaning brush 19 and the drive wheel 10 rotate. The drive wheel 10 is connected to the driven wheels 13 on both sides via the transmission belt 14, which in turn drives the driven shaft 12 and the driven gear 15 to rotate. The meshing of the driven gear 15 and the transmission gear 16 causes the two sets of transmission shafts 17 to rotate as well. One end of each of these two sets of transmission shafts 17 is equipped with a first cleaning brush 18, and the other end is connected to the transmission gear 16. As the transmission shafts 17 rotate, the two sets of first cleaning brushes 18 begin to clean the dust on both sides of the laser film, effectively removing dust. During the cleaning process, surface impurities and dirt are removed by activating the cleaning components, ensuring a cleanliness effect while preventing dust pollution. Subsequently, the laser film is guided by the second guide roller 6. At this time, the second cleaning soft brush 19 driven by the drive shaft 9 not only agitates the water in the cleaning pool 2 but also further agitates and cleans the laser film. This step helps to thoroughly remove stubborn stains from the film surface. After cleaning, the laser film is exported through the third guide roller 7 and undergoes adsorption by two sets of first absorbent cotton cylinders 20 to remove surface water stains. Next, two sets of blowing components are activated to dry both sides of the laser film. Finally, the laser film is exported through the second guide frame 4. At this time, two sets of second absorbent cotton cylinders 21 clean the film surface again to ensure the cleanliness of the final product. After this series of complex cleaning processes, the laser film is wound and wound by the winding component, thus completing the entire double-sided cleaning process. This device not only improves cleaning efficiency but also ensures cleaning quality, providing a strong guarantee for the coating production of BOPP laser film.

[0035] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A BOPP laser film coating surface cleaning device comprising a supporting base (1), characterized in that: It also includes a cleaning pool (2), a first guide die frame (3), a second guide die frame (4), a first guide die roller (5), a second guide die roller (6), a third guide die roller (7), a driving motor (8), a driving shaft (9), a driving wheel (10), a mounting bracket (11), a driven shaft (12), a driven wheel (13), a transmission belt (14), a driven gear (15), a transmission gear (16), a transmission shaft (17), a first cleaning soft brush (18), a second cleaning soft brush (19), a first water absorbing cotton cylinder (20), a second water absorbing cotton cylinder (21), a cleaning assembly, a air drying assembly and a winding assembly, the upper side of one side of the supporting base (1) is provided with the first guide die frame (3), the upper side of the other side of the supporting base (1) is provided with the winding assembly, the upper side of the supporting base (1) is provided with the cleaning pool (2), one side of the cleaning pool (2) is provided with the cleaning assembly, the other side of the cleaning pool (2) is provided with the air drying assembly, the side wall of the cleaning pool (2) is provided with the mounting bracket (11), the side wall of the mounting bracket (11) is provided with the driving motor (8), the output end of the driving motor (8) is provided with the driving shaft (9), the side wall of the driving shaft (9) is provided with the driving wheel (10), the outside of the driving wheel (10) is provided with the transmission belt (14), the driving wheel (10) is rotatably connected with the transmission belt (14), the upper side of both sides of the cleaning pool (2) is provided with two groups of the driven shaft (12), the side wall of the driven shaft (12) is provided with the driven wheel (13), the driven wheel (13) is arranged in the inside of the transmission belt (14), the driven wheel (13) is rotatably connected with the transmission belt (14), one side of the cleaning pool (2) is provided with the first guide die roller (5), one end of the driven shaft (12) is provided with the driven gear (15), the upper side of both sides of the cleaning pool (2) is provided with multiple groups of the transmission shaft (17), one end of the transmission shaft (17) is provided with the first cleaning soft brush (18), the other end of the transmission shaft (17) is provided with the transmission gear (16), the driven gear (15) is engaged with the transmission gear (16), the other side of the cleaning pool (2) is provided with the third guide die roller (7), one end of the other transmission shaft (17) is provided with the first water absorbing cotton cylinder (20), the inside of the cleaning pool (2) is provided with the second guide die roller (6), one end of the driving shaft (9) is provided with the second cleaning soft brush (19), the second cleaning soft brush (19) is arranged below the second guide die roller (6), the upper side of the supporting base (1) is provided with the second guide die frame (4), the inner wall of the second guide die frame (4) is provided with two groups of the second water absorbing cotton cylinder (21).

2. A BOPP laser film coating surface cleaning device according to claim 1, characterized in that: The cleaning assembly comprises a cleaning bin (101), a collection bin (102) and a dust suction pipe (103), one side of the cleaning pool (2) is provided with the cleaning bin (101), one side of the cleaning bin (101) is provided with the collection bin (102), one side of the collection bin (102) is provided with the dust suction pipe (103).

3. A BOPP laser film coating surface cleaning device according to claim 2, characterized in that: The cleaning assembly further comprises a dust collector (104) and a dust collection head (105), the dust collector (104) is arranged on the side wall of the dust collection pipe (103), the dust collection head (105) is arranged at one end of the dust collection pipe (103), the dust collection head (105) is arranged in the dust collection bin, and the first cleaning soft brush (18) is arranged in the dust collection bin.

4. A BOPP laser film coating surface cleaning device according to claim 2, characterized in that: The air-drying assembly comprises an air-drying bin (201), a mounting side plate (202) and blowers (203), the air-drying bin (201) is arranged on the other side of the cleaning pool (2), the mounting side plate (202) is arranged on one side of the air-drying bin (201), and two groups of blowers (203) are arranged on the side wall of the mounting side plate (202).

5. A BOPP laser film coating surface cleaning device according to claim 4, characterized in that: The air-drying assembly further comprises a blowing pipe (204) and a blowing head (205), the blowing pipe (204) is arranged on one side of the blower (203), the blowing head (205) is arranged at one end of the blowing pipe (204), and two groups of blowing heads (205) are arranged on the upper and lower sides of the air-drying bin (201), respectively.

6. A BOPP laser film coating surface cleaning device according to claim 4, characterized in that: The winding assembly comprises a driving motor (301), a driving shaft (302), a driving wheel (303), a winding support (304) and a rotating belt (305), the winding support (304) is arranged above one side of the supporting base (1), the driving motor (301) is arranged on the side wall of the winding support (304), the output end of the driving motor (301) is provided with the driving shaft (302), the side wall of the driving shaft (302) is provided with the driving wheel (303), the outer portion of the driving wheel (303) is provided with the rotating belt (305), and the driving wheel (303) is rotatably connected with the rotating belt (305).

7. A BOPP laser film coating surface cleaning device according to claim 6, characterized in that: The winding assembly further comprises a rotating shaft (306), a rotating wheel (307) and a winding roller (308), the rotating shaft (306) is arranged on the side wall of the winding support (304), the rotating wheel (307) is arranged at one end of the rotating shaft (306), the rotating wheel (307) is arranged in the rotating belt (305), the rotating wheel (307) is rotatably connected with the rotating belt (305), and the winding roller (308) is arranged at the other end of the rotating shaft (306).