Cleaning equipment for waterproof roll

By designing a cleaning device for waterproof membranes, which utilizes mechanical transmission and motor drive to achieve automatic conveying and cleaning, the problem of inconvenient operation in cleaning waterproof membranes has been solved. This achieves an efficient and automatic cleaning and drying process, and is adaptable to the conveying of membranes of different sizes.

CN121649166APending Publication Date: 2026-03-13HEBEI XIONGAN JINGYI QUALITY INSPECTION SERVICE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

In existing technologies, cleaning waterproof membranes requires manual traction and cannot be automatically conveyed, making operation inconvenient.

Method used

A cleaning device for waterproof membrane was designed, comprising a feeding module, an infeed module, a cleaning module, an outfeed module, a rinsing module, a drying module, and a winding module. The device achieves automatic conveying and cleaning processes through mechanical transmission and motor drive. It includes the combined use of components such as the feeding plate, driving feeding roller, feeding transport components, cleaning brush, rinsing spray pipe, and drying hot air pipe of the feeding module.

Benefits of technology

It enables automatic conveying and efficient cleaning of waterproof membrane rolls, quickly removes stains and cleaning agents, and dries the rolls. It can accommodate the conveying of rolls of different sizes, improving cleaning efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses cleaning equipment for waterproof coiled materials, and relates to the technical field of waterproof coiled material cleaning.The cleaning equipment comprises a shell, supporting columns, a feeding module, a feeding module, a cleaning module, a discharging module, a flushing module, a drying module, a winding module and a water tank, the multiple supporting columns are arranged at the bottom of the shell and placed on a plane, and the supporting columns are arranged on the surface of the shell; a feeding port is formed in one end of the shell, the feeding port of the shell is connected with the feeding module, the shell is connected with the cleaning module, the feeding module is fixedly connected with the cleaning module, the shell is rotationally connected with the feeding module, the shell is rotationally connected with the discharging module, the feeding module and the discharging module are symmetrically arranged in the cleaning module, and the flushing module is arranged on the discharging module. A discharging port is formed in the end, away from the feeding module, of the shell and fixedly connected with the drying module, the drying module is fixedly connected with the cleaning module, the end, close to the drying module, of the shell is fixedly connected with the winding module, and the water tank is placed on the plane and located below the cleaning module.
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Description

Technical Field

[0001] This invention relates to the field of waterproof membrane cleaning technology, specifically a cleaning device for waterproof membranes. Background Technology

[0002] Waterproof membranes are widely used in building waterproofing. When there are stains such as dust and oil on the waterproof membrane, it is necessary to clean and remove the stains to ensure the waterproofing effect when the waterproof membrane is laid.

[0003] In existing technologies, when multiple rolls of waterproof membrane need to be cleaned, the front roll of waterproof membrane needs to be manually pulled, as the waterproof membrane cannot be automatically conveyed, which is very inconvenient. Summary of the Invention

[0004] The purpose of this invention is to provide a cleaning device for waterproof membranes to solve the problems mentioned in the prior art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a cleaning device for waterproof membrane rolls, comprising a shell, support columns, a feeding module, an infeed module, a cleaning module, an outlet module, a rinsing module, a drying module, a winding module, and a water tank. Several support columns are provided at the bottom of the shell, which are placed on a flat surface. One end of the shell has a feeding port connected to the feeding module. The shell is connected to the cleaning module, which is fixedly connected to the cleaning module. The shell is rotatably connected to the infeed module and the outlet module, which are also rotatably connected to the outlet module. The infeed module and outlet module are symmetrically placed within the cleaning module. A rinsing module is provided on the outlet module. An outlet is provided at the end of the shell away from the feeding module, which is fixedly connected to the drying module. The drying module is fixedly connected to the cleaning module. The end of the shell near the drying module is fixedly connected to the winding module. The water tank is placed on a flat surface and located below the cleaning module.

[0006] The support column is used to support the outer shell. The waterproof membrane enters through the inlet of the outer shell and is fed into the feeding module by the traction of the feeding module. The feeding module carries the waterproof membrane to the cleaning module, which cleans the stains on both sides of the waterproof membrane. The discharge module conveys the cleaned waterproof membrane to the drying module. During the conveying of the waterproof membrane, the rinsing module uses clean water to rinse off the cleaning agent on the waterproof membrane, and then high-pressure air is introduced to blow away the water adhering to the waterproof membrane. The drying module blows out hot air to dry the waterproof membrane. The dried waterproof membrane is then wound up by the winding module. The wastewater generated during cleaning flows into the water tank.

[0007] Furthermore, the feeding module includes a feeding plate, a driving feeding roller, a driven feeding roller, a feeding drive gear, a feeding driven gear, and a feeding motor. The feeding plate is fixedly connected to the outer shell and the cleaning module. The feeding plate has a clearance hole, and the driving feeding roller is located within the clearance hole. A gearbox is located outside the outer shell. The driving feeding roller is rotatably connected to the outer shell. One end of the driving feeding roller has a connecting shaft, which passes sequentially through the outer shell and the feeding drive gear. The connecting shaft of the driving feeding roller is fixedly connected to the feeding motor. The feeding motor is fixedly connected to the gearbox of the housing, and one end of the driven feeding roller extends out of the housing and is fixedly connected to the driven feeding gear. The driving feeding gear meshes with the driven feeding gear. Several rollers can be set on the feeding plate to facilitate the transportation of the waterproof membrane. The feeding motor controls the rotation of the driving feeding roller, which drives the driven feeding gear to rotate through the driving feeding gear. The driven feeding gear drives the driven feeding roller to rotate in the opposite direction to the driving feeding roller, thus clamping and conveying the waterproof membrane.

[0008] Furthermore, the feeding module includes a feeding transport component and a synchronization component. The feeding transport component is rotatably connected to the outer shell, fixedly connected to the synchronization component, fixedly connected to the outer shell, and fixedly connected to the discharging module. The feeding transport component conveys the waterproof membrane toward the cleaning module, and the synchronization component controls the feeding transport component and the discharging module to rotate synchronously.

[0009] Furthermore, the feeding and conveying assembly includes conveyor rollers, conveyor belts, push plates, guide posts, guide plates, adjusting rods, lower pressure rollers, lower pressure belts, and lower pressure plates. The outer casing is equipped with several conveyor rollers, and the outer casing is rotatably connected to the conveyor rollers. Push plates are respectively provided at both ends of each conveyor roller, with two push plates placed opposite each other. Each push plate has several through holes, and the push plates are slidably connected to the conveyor rollers through these through holes. Guide posts and guide plates are provided on the push plates. Conveyor belts are respectively provided at both ends of each conveyor roller, with two conveyor belts placed opposite each other. The conveyor belts wrap around the several conveyor rollers. The guide posts are in contact with the conveyor belts, and the guide plates are in contact with the conveyor belts. The outer casing is rotatably connected to several lower pressure rollers. Lower pressure belts are provided at both ends of each lower pressure roller, and the lower pressure belts wrap around the lower pressure rollers at both ends. The lower pressure plates are... A push plate is fixedly connected, and the push plate is provided with threaded holes. The outer shell is provided with several adjusting rods, and the outer shell is rotatably connected to the adjusting rods. The two ends of the adjusting rod are respectively provided with external threads of opposite directions. The external threads of the adjusting rod are threadedly connected to the threaded holes of the push plate. One end of the adjusting rod extends out of the outer shell, and the end of the adjusting rod extending out of the outer shell is provided with a handle. The conveying roller is used to drive the conveyor belt. The guide column and guide plate adjust the conveying direction of the conveyor belt. The pressure roller is used to drive the pressure belt. The pressure plate adjusts the conveying direction of the pressure belt. The guide plate and pressure plate can also provide support to prevent the conveyor belt and pressure belt from failing to clamp the waterproof membrane due to excessive deformation. The opposing threads at both ends of the adjusting rod can support the push plate. At the same time, rotating the adjusting rod controls the movement of the push plate to adjust the position of the conveyor belt and pressure belt, which is convenient for conveying waterproof membranes of different sizes.

[0010] Furthermore, the synchronization component includes a conveying drive gear, a synchronization gear, a conveying driven gear, a transmission belt, and a conveying motor. Conveying drive gears are respectively installed at both ends of the transmission belt. A transmission shaft on the conveying drive gear is fixedly connected to the synchronization gear. The synchronization gear meshes with the conveying driven gear. The conveying motor is fixedly connected to the gearbox of the housing. The output end of the conveying motor is fixedly connected to one end of the conveying drive gear. The synchronization gear near the conveying motor is fixedly connected to the topmost conveying roller. The conveying driven gear near the conveying motor is fixedly connected to the topmost lower pressure roller. The synchronization gear away from the conveying motor is fixedly connected to the discharge module. The conveying driven gear away from the conveying motor is also fixedly connected to the discharge module. The conveying motor controls the rotation of the conveying drive gear, which drives the other end of the conveying drive gear to rotate via the transmission belt, achieving synchronous rotation of the conveying rollers of the infeed conveying component and the discharge module. The synchronization gear and the conveying drive gear are on the same shaft. The synchronization gear drives the conveying driven gear to rotate, and the conveying driven gear drives the lower pressure roller to rotate.

[0011] Furthermore, the cleaning module includes a cleaning motor, a cleaning drive gear, a driving cleaning brush, a driven cleaning gear, a driven cleaning brush, a cleaning agent spray pipe, a water baffle, and a support plate. The water baffle is fixedly connected to the outer casing, and has a water outlet at its bottom, which leads to a water tank. The driving cleaning brush is rotatably connected to the outer casing, with one end passing through the outer casing and the cleaning drive gear in sequence. The driving cleaning brush is fixedly connected to the cleaning motor, and the cleaning drive gear is fixedly connected to the driving cleaning brush. The driven cleaning brush is rotatably connected to the outer casing, with one end passing through the outer casing and fixedly connected to the driven cleaning gear. The cleaning drive gear meshes with the cleaning driven gear. The cleaning motor is fixedly connected to the gearbox of the housing. Several cleaning agent spray nozzles are provided on the housing, and these nozzles are respectively close to the drive cleaning brush and the driven cleaning brush. Support plates are provided at both ends of the baffle plate, and several columns are provided at the bottom of the support plates. The support plates are fixedly connected to the baffle plate through the columns. A curved boss is provided at the end of the support plate away from the drive cleaning brush. The cleaning motor controls the rotation of the drive cleaning brush and the driven cleaning brush, and the cleaning drive gear and the cleaning driven gear control the drive cleaning brush and the driven cleaning brush to rotate in opposite directions, reducing the impact on the conveying of the waterproof membrane.

[0012] Furthermore, the structure of the discharge module is the same as that of the infeed conveying assembly. The push plate of the discharge module is fixedly connected to the rinsing module. The top conveying roller of the discharge module is fixedly connected to the synchronous gear at the end away from the conveying motor. The bottom pressure roller at the top of the discharge module is fixedly connected to the driven conveying gear at the end away from the conveying motor. The discharge module and the infeed conveying assembly have the same structure, which ensures the stability of the waterproof membrane conveying. The discharge module is equipped with a rinsing module to quickly rinse the waterproof membrane clean.

[0013] Furthermore, the rinsing module includes a water spray pipe and an air spray pipe. Two water spray pipes are arranged on the push plate of the discharge module, symmetrically positioned with respect to the conveying surface obliquely upwards along the waterproof membrane. One end of each water spray pipe extends out of the outer casing. Two air spray pipes are arranged on the push plate of the discharge module, positioned above the water spray pipes. Each air spray pipe has several air nozzles, symmetrically positioned with respect to the conveying surface obliquely upwards along the waterproof membrane. One end of each air spray pipe extends out of the outer casing. The water spray pipe has several water nozzles, with the water nozzle outlet being a V-shaped groove. One end of the V-shaped groove has a flat surface; the water nozzle of the water spray pipe has a V-shaped groove, which can spray water out in a cone shape. At this time, the waterproof membrane is transported obliquely upward. Due to the different water pressure at different positions of the waterproof membrane, the high-pressure water flow is faster and may not be able to wash away the dirt in the tiny gaps in a short time. Gradually increase the water pressure to clean the dirt and cleaning agent in the gaps on the surface of the waterproof membrane. The water sprayed from the V-shaped groove spreads outward. The water pressure at both ends is lower than the water pressure in the middle. One end of the V-shaped groove is set as a flat surface, which increases the water pressure at the flat end of the V-shaped groove, so that the water pressure can gradually increase.

[0014] Furthermore, the drying module includes a discharge plate, a hot air duct, and a guide rod. The discharge plate is fixedly connected to the outer shell and has an installation groove. The hot air duct is installed in the installation groove of the discharge plate. Several air outlets are provided at the upper and lower ends of the hot air duct. One end of the air inlet of the hot air duct extends out of the outer shell. The guide rod is fixedly connected to the outer shell. Rollers can be installed on the discharge plate to facilitate the conveying of the waterproof membrane. The several air outlets at the upper and lower ends of the hot air duct dry both sides of the waterproof membrane. The guide rod keeps the waterproof membrane conveyed horizontally.

[0015] Furthermore, the winding module includes a winding fixing frame, a winding roller, and a winding motor. The winding fixing frame is fixedly connected to the outer shell, and the winding roller is rotatably connected to the winding fixing frame. One end of the winding roller passes through the winding fixing frame and is fixedly connected to the winding motor. The winding motor is fixedly connected to the winding fixing frame. The winding fixing frame fixes the winding roller, and the winding motor controls the winding roller to wind up the waterproof membrane.

[0016] Compared with the prior art, the beneficial effects of the present invention are:

[0017] 1. The feeding module, infeed module, and discharge module can automatically convey waterproof membrane;

[0018] 2. The rinsing and drying modules can quickly and efficiently remove stains and cleaning agents from the waterproof membrane and dry it rapidly.

[0019] 3. The feeding and discharging modules are adjustable in width, making it convenient to transport waterproof membranes of different sizes. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall front structure of the present invention;

[0021] Figure 2 This is a schematic diagram of the overall rear view structure of the present invention;

[0022] Figure 3 This is a schematic diagram of the internal structure of the present invention;

[0023] Figure 4 for Figure 3 A magnified structural diagram at point A;

[0024] Figure 5 This is a schematic diagram of the feeding module, infeed module, cleaning module, discharge module and rinsing module of the present invention;

[0025] Figure 6 This is a schematic diagram of the feeding module, cleaning module, discharging module and rinsing module of the present invention;

[0026] Figure 7 for Figure 6A magnified structural diagram at point B;

[0027] Figure 8 This is a schematic diagram of the cleaning module structure of the present invention.

[0028] In the diagram: 11. Outer shell; 12. Support column; 2. Feeding module; 21. Feeding plate; 22. Driven feed roller; 23. Driven feed roller; 24. Feeding drive gear; 25. Feeding driven gear; 26. Feeding motor; 3. Feeding module; 31. Feeding transport assembly; 311. Conveyor roller; 312. Conveyor belt; 313. Push plate; 314. Guide column; 315. Guide plate; 316. Adjusting rod; 317. Lower pressure roller; 318. Lower pressure belt; 319. Lower pressure plate; 32. Synchronization assembly; 321. Conveyor drive gear; 322. Synchronization gear; 32 3. Conveying driven gear; 324. Transmission belt; 325. Conveying motor; 4. Cleaning module; 41. Cleaning motor; 42. Cleaning drive gear; 43. Drive cleaning brush; 44. Cleaning driven gear; 45. Driven cleaning brush; 46. Cleaning agent spray nozzle; 47. Water baffle; 48. Support plate; 5. Discharge module; 6. Rinsing module; 61. Clean water spray nozzle; 62. Air jet nozzle; 7. Drying module; 71. Discharge plate; 72. Hot air duct; 73. Guide rod; 8. Rewinding module; 81. Rewinding fixing frame; 82. Rewinding roller; 83. Rewinding motor; 9. Water tank. Detailed Implementation

[0029] The technical solutions of 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 of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] Example: Figures 1-8As shown, the present invention provides a technical solution: a cleaning device for waterproof membrane rolls, comprising a shell 11, support columns 12, a feeding module 2, an infeed module 3, a cleaning module 4, an outlet module 5, a rinsing module 6, a drying module 7, a winding module 8, and a water tank 9. The bottom of the shell 11 is provided with several support columns 12, which are placed on a flat surface. One end of the shell 11 has a feeding port, which is connected to the feeding module 2. The shell 11 is connected to the cleaning module 4, and the feeding module 2 and cleaning module 4 are fixedly connected. The feeding module 3 is rotatably connected, the outer shell 11 is rotatably connected to the discharging module 5, the feeding module 3 and the discharging module 5 are connected, the feeding module 3 and the discharging module 5 are symmetrically placed in the cleaning module 4, the discharging module 5 is provided with a rinsing module 6, the outer shell 11 is provided with a discharge port at the end away from the feeding module 2, the discharge port of the outer shell 11 is fixedly connected to the drying module 7, the drying module 7 is fixedly connected to the cleaning module 4, the outer shell 11 is fixedly connected to the winding module 8 at the end near the drying module 7, the water tank 9 is placed on a flat surface, the water tank 9 is located below the cleaning module 4.

[0031] The support column 12 is used to support the outer shell 11. The waterproof membrane enters from the inlet of the outer shell 11 and is sent to the feeding module 3 by the traction of the feeding module 2. The feeding module 3 carries the waterproof membrane to the cleaning module 4. The cleaning module 4 cleans the stains on the top and bottom surfaces of the waterproof membrane. The discharge module 5 conveys the cleaned waterproof membrane to the drying module 7. When the waterproof membrane is conveyed, the rinsing module 6 uses clean water to rinse the cleaning agent off the waterproof membrane, and then high-pressure air is introduced to blow away the water adhering to the waterproof membrane. The drying module 7 blows out hot air to dry the waterproof membrane. The dried waterproof membrane is wound up by the winding module 8. The wastewater generated during cleaning flows into the water tank 9.

[0032] like Figure 5 As shown, the feeding module 2 includes a feeding plate 21, a driving feeding roller 22, a driven feeding roller 23, a feeding driving gear 24, a feeding driven gear 25, and a feeding motor 26. The feeding plate 21 is fixedly connected to the outer casing 11 and the cleaning module 4. The feeding plate 21 has a clearance hole, and the driving feeding roller 22 is located in the clearance hole. A gearbox is provided outside the outer casing 11. The driving feeding roller 22 is rotatably connected to the outer casing 11 to drive the feeding. One end of the roller 22 is provided with a connecting shaft. The connecting shaft that drives the feed roller 22 passes through the outer shell 11 and the feed drive gear 24 in sequence. The connecting shaft that drives the feed roller 22 is fixedly connected to the feed motor 26. The feed roller 22 is fixedly connected to the feed drive gear 24. The feed motor 26 is fixedly connected to the gearbox of the outer shell 11. One end of the driven feed roller 23 extends out of the outer shell 11 and is fixedly connected to the feed driven gear 25. The feed drive gear 24 meshes with the feed driven gear 25.

[0033] The feed plate 21 can be equipped with several rollers to facilitate the transportation of waterproof membrane. The feed motor 26 controls the feed roller 22 to rotate. The feed roller 22 drives the feed driven gear 25 to rotate through the feed drive gear 24. The feed driven gear 25 drives the driven feed roller 23 to rotate in the opposite direction to the drive feed roller 22, clamping and conveying the waterproof membrane.

[0034] like Figure 3 , Figure 5 , Figure 6 As shown, the feeding module 3 includes a feeding and transporting component 31 and a synchronization component 32. The feeding and transporting component 31 is rotatably connected to the outer shell 11, the feeding and transporting component 31 is fixedly connected to the synchronization component 32, the synchronization component 32 is fixedly connected to the outer shell 11, and the synchronization component 32 is fixedly connected to the discharging module 5.

[0035] The feeding and transporting component 31 conveys the waterproof membrane toward the cleaning module 4, and the synchronization component 32 controls the feeding and transporting component 31 and the discharging module 5 to rotate synchronously.

[0036] like Figure 6 As shown, the feeding and conveying assembly 31 includes a conveying roller 311, a conveyor belt 312, a pusher plate 313, a guide post 314, a guide plate 315, an adjusting rod 316, a lower pressure roller 317, a lower pressure belt 318, and a lower pressure plate 319. The outer casing 11 is provided with a plurality of conveying rollers 311, and the outer casing 11 is rotatably connected to the conveying rollers 311. Pusher plates 313 are respectively provided at both ends of the conveying rollers 311, and two pusher plates 313 are placed opposite each other. Each pusher plate 313 has a plurality of through holes, and the pusher plate 313 is slidably connected to the conveying rollers 311 through the through holes. Guide posts 314 and guide plates 315 are provided on the pusher plates 313. Conveyor belts 312 are respectively provided at both ends of the conveying rollers 311, and two conveyor belts 312 are placed opposite each other, with the conveyor belts 312 surrounding the conveying rollers 311. Between the dry conveyor rollers 311, the guide post 314 is attached to the conveyor belt 312, the guide plate 315 is attached to the conveyor belt 312, the outer shell 11 is rotatably connected to several lower pressure rollers 317, the lower pressure rollers 317 are provided with lower pressure belts 318 at both ends, the lower pressure belts 318 are wrapped around the lower pressure rollers 317 at both ends, the lower pressure plate 319 is fixedly connected to the push plate 313, the push plate 313 is provided with threaded holes, the outer shell 11 is provided with several adjusting rods 316, the outer shell 11 is rotatably connected to the adjusting rods 316, the two ends of the adjusting rods 316 are respectively provided with external threads with opposite directions of rotation, the external threads of the adjusting rods 316 are threadedly connected to the threaded holes of the push plate 313, one end of the adjusting rod 316 extends out of the outer shell 11, and the end of the adjusting rod 316 extending out of the outer shell 11 is provided with a handle.

[0037] The conveyor roller 311 is used to drive the conveyor belt 312. The guide column 314 and guide plate 315 adjust the conveying direction of the conveyor belt 312. The pressure roller 317 is used to drive the pressure belt 318. The pressure plate 319 adjusts the conveying direction of the pressure belt 318. The guide plate 315 and pressure plate 319 can also provide support to prevent the conveyor belt 312 and pressure belt 318 from failing to clamp the waterproof membrane due to excessive deformation. The adjusting rod 316 has reverse threads at both ends. The adjusting rod 316 can support the push plate 313. At the same time, rotating the adjusting rod 316 controls the movement of the push plate 313 to adjust the position of the conveyor belt 312 and pressure belt 318, which facilitates the conveying of waterproof membranes of different sizes.

[0038] like Figure 6 As shown, the synchronization component 32 includes a conveying drive gear 321, a synchronization gear 322, a conveying driven gear 323, a transmission belt 324, and a conveying motor 325. The transmission belt 324 has conveying drive gears 321 at both ends. A transmission shaft is mounted on the conveying drive gear 321 and fixedly connected to the synchronization gear 322. The synchronization gear 322 meshes with the conveying driven gear 323. The conveying motor 325 is fixedly connected to the gearbox of the housing 11. The output end of the conveying motor 325 is fixedly connected to one end of the conveying drive gear 321. The synchronization gear 322 near the end of the conveying motor 325 is fixedly connected to the top conveying roller 311. The conveying driven gear 323 near the end of the conveying motor 325 is fixedly connected to the top pressure roller 317. The synchronization gear 322 away from the end of the conveying motor 325 is fixedly connected to the discharge module 5. The conveying driven gear 323 away from the end of the conveying motor 325 is also fixedly connected to the discharge module 5.

[0039] The conveying motor 325 controls the conveying drive gear 321 to rotate. The conveying drive gear 321 drives the other end of the conveying drive gear 321 to rotate through the transmission belt 324, so that the conveying rollers 311 of the feeding and conveying components 31 and the discharging module 5 rotate synchronously. The synchronous gear 322 is on the same shaft as the conveying drive gear 321. The synchronous gear 322 drives the conveying driven gear 323 to rotate, and the conveying driven gear 323 drives the lower pressure roller 317 to rotate.

[0040] like Figure 8As shown, the cleaning module 4 includes a cleaning motor 41, a cleaning drive gear 42, a driving cleaning brush 43, a driven cleaning gear 44, a driven cleaning brush 45, a cleaning agent spray pipe 46, a water baffle 47, and a support plate 48. The water baffle 47 is fixedly connected to the outer casing 11, and has a water outlet at its bottom, which leads to the water tank 9. The driving cleaning brush 43 is rotatably connected to the outer casing 11, with one end passing through the outer casing 11 and the cleaning drive gear 42 in sequence. The driving cleaning brush 43 is fixedly connected to the cleaning motor 41, and the cleaning drive gear 42 is fixedly connected to the driving cleaning brush 43. The driven cleaning brush... The driven cleaning brush 45 is rotatably connected to the outer casing 11. One end of the driven cleaning brush 45 passes through the outer casing 11 and is fixedly connected to the driven cleaning gear 44. The driven cleaning gear 42 meshes with the driven cleaning gear 44. The cleaning motor 41 is fixedly connected to the gearbox of the outer casing 11. Several cleaning agent spray pipes 46 are provided on the outer casing 11. The several cleaning agent spray pipes 46 are respectively close to the driven cleaning brush 43 and the driven cleaning brush 45. Support plates 48 are provided at both ends of the baffle plate 47. Several columns are provided at the bottom of the support plate 48. The support plate 48 is fixedly connected to the baffle plate 47 through the columns. A curved boss is provided at the end of the support plate 48 away from the driven cleaning brush 43.

[0041] The cleaning motor 41 controls the rotation of the cleaning brush 43 and the driven cleaning brush 45, while the cleaning drive gear 42 and the cleaning driven gear 44 control the rotation of the cleaning brush 43 and the driven cleaning brush 45 in the opposite direction, reducing the impact on the conveying of the waterproof membrane.

[0042] like Figure 5 , Figure 6 As shown, the structure of the discharge module 5 is the same as that of the infeed conveying component 31. The push plate 313 of the discharge module 5 is fixedly connected to the rinsing module 6. The top conveying roller 311 of the discharge module 5 is fixedly connected to the synchronous gear 322 at the end away from the conveying motor 325. The bottom pressure roller 317 at the top of the discharge module 5 is fixedly connected to the conveying driven gear 323 at the end away from the conveying motor 325.

[0043] The discharge module 5 and the infeed transport component 31 have the same structure, which ensures the stability of the waterproof membrane transport. The discharge module 5 is equipped with a rinsing module 6 to quickly rinse the waterproof membrane clean.

[0044] like Figure 6As shown, the rinsing module 6 includes a clean water spray pipe 61 and an air spray pipe 62. Two clean water spray pipes 61 are arranged on the push plate 313 of the discharge module 5. The two clean water spray pipes 61 are symmetrically placed with the conveying surface along the waterproof membrane at an angle upward. One end of the clean water spray pipe 61 extends out of the outer shell 11. Two air spray pipes 62 are arranged on the push plate 313 of the discharge module 5. The air spray pipes 62 are located above the clean water spray pipes 61. The air spray pipes 62 are provided with several air nozzles. The two air spray pipes 62 are symmetrically placed with the conveying surface along the waterproof membrane at an angle upward. One end of the air spray pipes 62 extends out of the outer shell 11. The clean water spray pipes 61 are provided with several water nozzles. The water nozzle outlet is a V-shaped groove. One end of the V-shaped groove is provided with a flat surface.

[0045] The water nozzle of the water spray pipe 61 has a V-shaped groove, which can spray water in a cone shape. At this time, the waterproof membrane is transported obliquely upward. Due to the different water pressure at different positions of the waterproof membrane, the high-pressure water flow is faster and may not be able to wash away the dirt in the tiny gaps in a short time. Gradually increase the water pressure to clean the dirt and cleaning agent in the gaps on the surface of the waterproof membrane. The water sprayed from the V-shaped groove diffuses outward. The water pressure at both ends is lower than the water pressure in the middle. One end of the V-shaped groove is set as a plane. Increase the water pressure at the plane end of the V-shaped groove so that the water pressure can gradually increase.

[0046] like Figure 4 As shown, the drying module 7 includes a discharge plate 71, a hot air pipe 72, and a guide rod 73. The discharge plate 71 is fixedly connected to the outer shell 11. The discharge plate 71 is provided with an installation groove. The hot air pipe 72 is provided at the installation groove of the discharge plate 71. The upper and lower ends of the hot air pipe 72 are respectively provided with several air outlets. One end of the air inlet of the hot air pipe 72 extends out of the outer shell 11. The guide rod 73 is fixedly connected to the outer shell 11.

[0047] Rollers can be installed on the discharge plate 71 to facilitate the transport of waterproof membrane. Several air outlets at the upper and lower ends of the hot air pipe 72 dry both sides of the waterproof membrane. The guide rod 73 keeps the waterproof membrane transported horizontally.

[0048] like Figure 3 As shown, the winding module 8 includes a winding fixing frame 81, a winding roller 82, and a winding motor 83. The winding fixing frame 81 is fixedly connected to the outer shell 11, and the winding roller 82 is rotatably connected to the winding fixing frame 81. One end of the winding roller 82 passes through the winding fixing frame 81 and is fixedly connected to the winding motor 83. The winding motor 83 is fixedly connected to the winding fixing frame 81.

[0049] The winding fixing frame 81 fixes the winding roller 82, and the winding motor 83 controls the winding roller 82 to wind up the waterproof membrane.

[0050] The working principle of this invention is as follows: The waterproof membrane enters through the feed port of the outer shell 11 and is pulled by the feed module 2 to be fed into the feed module 3. The feed module 3 carries the waterproof membrane to the cleaning module 4. The cleaning module 4 cleans the stains on both sides of the waterproof membrane. The discharge module 5 conveys the cleaned waterproof membrane to the drying module 7. During the conveying of the waterproof membrane, the rinsing module 6 uses clean water to rinse the cleaning agent off the waterproof membrane. Then, high-pressure air is introduced to blow away the water adhering to the waterproof membrane. The drying module 7 blows out hot air to dry the waterproof membrane. The dried waterproof membrane is then wound up by the winding module 8. The wastewater generated during cleaning flows into the water tank 9.

[0051] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A cleaning device for waterproof membrane rolls, characterized in that: The cleaning equipment includes a shell (11), support columns (12), a feeding module (2), an infeed module (3), a cleaning module (4), an outlet module (5), a rinsing module (6), a drying module (7), a winding module (8), and a water tank (9). Several support columns (12) are provided at the bottom of the shell (11), and the support columns (12) are placed on a flat surface. One end of the shell (11) has a feeding port, which is connected to the feeding module (2). The shell (11) is connected to the cleaning module (4), and the feeding module (2) and cleaning module (4) are fixedly connected. The shell (11) and infeed module (3) are rotatably connected. The outer shell (11) is rotatably connected to the discharge module (5), the feeding module (3) is connected to the discharge module (5), the feeding module (3) and the discharge module (5) are symmetrically placed in the cleaning module (4), the discharge module (5) is provided with a rinsing module (6), the outer shell (11) is provided with a discharge port at the end away from the feeding module (2), the discharge port of the outer shell (11) is fixedly connected to the drying module (7), the drying module (7) is fixedly connected to the cleaning module (4), the outer shell (11) is fixedly connected to the winding module (8) at the end near the drying module (7), the water tank (9) is placed on the plane, and the water tank (9) is located below the cleaning module (4).

2. The cleaning equipment for waterproof membrane according to claim 1, characterized in that: The feeding module (2) includes a feeding plate (21), a driving feeding roller (22), a driven feeding roller (23), a feeding driving gear (24), a feeding driven gear (25), and a feeding motor (26). The feeding plate (21) is fixedly connected to the outer shell (11) and the cleaning module (4). The feeding plate (21) has a clearance hole, and the clearance hole of the feeding plate (21) is provided with the driving feeding roller (22). The outer shell (11) is provided with a gearbox. The driving feeding roller (22) is rotatably connected to the outer shell (11) to drive the feeding. One end of the roller (22) is provided with a connecting shaft. The connecting shaft of the driving feed roller (22) passes through the outer shell (11) and the feeding drive gear (24) in sequence. The connecting shaft of the driving feed roller (22) is fixedly connected to the feeding motor (26). The driving feed roller (22) is fixedly connected to the feeding drive gear (24). The feeding motor (26) is fixedly connected to the gearbox of the outer shell (11). One end of the driven feed roller (23) passes through the outer shell (11) and is fixedly connected to the feeding driven gear (25). The feeding drive gear (24) meshes with the feeding driven gear (25).

3. The cleaning equipment for waterproof membrane according to claim 1, characterized in that: The feeding module (3) includes a feeding transport component (31) and a synchronization component (32). The feeding transport component (31) is rotatably connected to the outer shell (11), the feeding transport component (31) is fixedly connected to the synchronization component (32), the synchronization component (32) is fixedly connected to the outer shell (11), and the synchronization component (32) is fixedly connected to the discharge module (5).

4. A cleaning device for waterproof membrane according to claim 3, characterized in that: The feeding and conveying assembly (31) includes a conveying roller (311), a conveyor belt (312), a pusher plate (313), a guide post (314), a guide plate (315), an adjusting rod (316), a pressure roller (317), a pressure belt (318), and a pressure plate (319). The outer casing (11) is provided with several conveying rollers (311), and the outer casing (11) is rotatably connected to the conveying rollers (311). Pusher plates (313) are provided at both ends of each conveying roller (311), and the two pusher plates (313) are placed opposite each other. Each pusher plate (313) has several through holes, and the pusher plate (313) is slidably connected to the conveying roller (311) through these through holes. A guide post (314) is provided on the pusher plate (313), and a guide plate (315) is provided on the pusher plate (313). Conveyor belts (312) are provided at both ends of each conveying roller (311), and the two conveyor belts (312) are placed opposite each other, with the conveyor belts (312) wrapping around the roller. Between several conveyor rollers (311), the guide post (314) is in contact with the conveyor belt (312), the guide plate (315) is in contact with the conveyor belt (312), the outer shell (11) is rotatably connected to several lower pressure rollers (317), the lower pressure rollers (317) are provided with lower pressure belts (318) at both ends, the lower pressure belts (318) are wrapped around the lower pressure rollers (317) at both ends, and the lower pressure plate (319) is fixedly connected to the push plate (313). The push plate (313) is provided with a threaded hole, and the outer shell (11) is provided with a plurality of adjusting rods (316). The outer shell (11) and the adjusting rods (316) are rotatably connected. The two ends of the adjusting rods (316) are respectively provided with external threads with opposite directions of rotation. The external threads of the adjusting rods (316) are threadedly connected to the threaded holes of the push plate (313). One end of the adjusting rods (316) passes through the outer shell (11), and the end of the adjusting rods (316) that passes through the outer shell (11) is provided with a handle.

5. A cleaning device for waterproof membrane according to claim 4, characterized in that: The synchronization component (32) includes a conveying drive gear (321), a synchronization gear (322), a conveying driven gear (323), a transmission belt (324), and a conveying motor (325). The transmission belt (324) has conveying drive gears (321) at both ends. A transmission shaft is mounted on the conveying drive gear (321) and is fixedly connected to the synchronization gear (322). The synchronization gear (322) meshes with the conveying driven gear (323). The conveying motor (325) is fixedly connected to the gearbox of the outer casing (11). The output end of (325) is fixedly connected to the conveying drive gear (321) at one end, the synchronous gear (322) at the end near the conveying motor (325) is fixedly connected to the top conveying roller (311), the conveying driven gear (323) at the end near the conveying motor (325) is fixedly connected to the top pressure roller (317), the synchronous gear (322) at the end away from the conveying motor (325) is fixedly connected to the discharge module (5), and the conveying driven gear (323) at the end away from the conveying motor (325) is fixedly connected to the discharge module (5).

6. A cleaning device for waterproof membrane according to claim 5, characterized in that: The cleaning module (4) includes a cleaning motor (41), a cleaning drive gear (42), a driving cleaning brush (43), a cleaning driven gear (44), a driven cleaning brush (45), a cleaning agent spray pipe (46), a water baffle (47), and a support plate (48). The water baffle (47) is fixedly connected to the outer shell (11), and the bottom of the water baffle (47) is provided with a water outlet, which leads to the water tank (9). The driving cleaning brush (43) is rotatably connected to the outer shell (11), and one end of the driving cleaning brush (43) passes through the outer shell (11) and the cleaning drive gear (42) in sequence. The driving cleaning brush (43) is fixedly connected to the cleaning motor (41), and the cleaning drive gear (42) is fixedly connected to the driving cleaning brush (43). The driven cleaning brush (45) is fixedly connected to the cleaning motor (41), and the driven cleaning brush (46) is fixedly connected to the cleaning drive gear (42). The brush (45) is rotatably connected to the outer shell (11). One end of the driven cleaning brush (45) passes through the outer shell (11) and is fixedly connected to the driven cleaning gear (44). The cleaning drive gear (42) meshes with the driven cleaning gear (44). The cleaning motor (41) is fixedly connected to the gearbox of the outer shell (11). Several cleaning agent spray pipes (46) are provided on the outer shell (11). Several cleaning agent spray pipes (46) are respectively close to the drive cleaning brush (43) and the driven cleaning brush (45). Support plates (48) are provided at both ends of the baffle plate (47). Several columns are provided at the bottom of the support plate (48). The support plate (48) is fixedly connected to the baffle plate (47) through the columns. A curved boss is provided at the end of the support plate (48) away from the drive cleaning brush (43).

7. A cleaning device for waterproof membrane according to claim 5, characterized in that: The structure of the discharge module (5) is the same as that of the feed transport component (31). The push plate (313) of the discharge module (5) is fixedly connected to the flushing module (6). The top conveying roller (311) of the discharge module (5) is fixedly connected to the synchronous gear (322) at the end away from the conveying motor (325). The bottom pressure roller (317) at the top of the discharge module (5) is fixedly connected to the conveying driven gear (323) at the end away from the conveying motor (325).

8. A cleaning device for waterproof membrane according to claim 7, characterized in that: The rinsing module (6) includes a clean water spray pipe (61) and an air spray pipe (62). The push plate (313) of the discharge module (5) is provided with two clean water spray pipes (61). The two clean water spray pipes (61) are placed symmetrically with the conveying surface along the waterproof membrane. One end of the clean water spray pipe (61) extends out of the outer shell (11). The push plate (313) of the discharge module (5) is provided with two air spray pipes (62). The air spray pipes (62) are located above the clean water spray pipes (61). The air spray pipes (62) are provided with several air nozzles. The two air spray pipes (62) are placed symmetrically with the conveying surface along the waterproof membrane. One end of the air spray pipes (62) extends out of the outer shell (11). The clean water spray pipes (61) are provided with several water nozzles. The water nozzle outlet is a V-shaped groove. One end of the V-shaped groove is provided with a flat surface.

9. A cleaning device for waterproof membrane according to claim 1, characterized in that: The drying module (7) includes a discharge plate (71), a hot air pipe (72) and a guide rod (73). The discharge plate (71) is fixedly connected to the outer shell (11). The discharge plate (71) is provided with an installation groove. The hot air pipe (72) is provided at the installation groove of the discharge plate (71). The hot air pipe (72) is provided with several air outlets at its upper and lower ends. One end of the air inlet of the hot air pipe (72) passes through the outer shell (11). The guide rod (73) is fixedly connected to the outer shell (11).

10. A cleaning device for waterproof membrane according to claim 1, characterized in that: The winding module (8) includes a winding fixing frame (81), a winding roller (82) and a winding motor (83). The winding fixing frame (81) is fixedly connected to the outer shell (11). The winding roller (82) is rotatably connected to the winding fixing frame (81). One end of the winding roller (82) passes through the winding fixing frame (81) and is fixedly connected to the winding motor (83). The winding motor (83) is fixedly connected to the winding fixing frame (81).