Dustproof water conservancy management upgrading and reconstruction control case and use method
By adopting a design with alternating dual drying plates and automatic cleaning brushes in the water management and control cabinet, the problems of cabinet damage and poor heat dissipation in humid environments have been solved, realizing automated maintenance, reducing failure rate and operating costs, and improving equipment stability and management efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHINA THREE GORGES CORPORATION
- Filing Date
- 2026-03-31
- Publication Date
- 2026-07-31
AI Technical Summary
Water conservancy management and control cabinets are easily damaged in humid environments, and dust accumulation on the filter screen leads to poor heat dissipation, increasing operation and management costs.
A dustproof water conservancy management upgrade and transformation control box was designed. It adopts a design with alternating operation of dual drying plates and automatic switching. It is equipped with an automatic cleaning brush. The cleaning brush is driven by an output motor to remove dust, and the drying plates adsorb moisture to achieve automated maintenance.
It effectively reduces the probability of electronic components being damaged by moisture and overheating, lowers the failure rate and operating costs, and improves management efficiency and equipment stability.
Smart Images

Figure CN122497018A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water conservancy management technology, and in particular to a dustproof water conservancy management upgrade and transformation control box and its usage method. Background Technology
[0002] As a commonly used core device in water conservancy management systems, the control cabinet plays a crucial role in ensuring the stability of intelligent control throughout the entire lifecycle of water conservancy projects. At the control level, through its built-in programmable logic controllers (PLCs), industrial computers, and other key core modules, the control cabinet can precisely execute multiple operational commands, such as controlling the start and stop of water pumps and regulating their speed, operating and controlling the opening and closing of gates, and switching valves, thereby achieving intelligent control of water resources.
[0003] However, in actual water management applications, the installation and use environments of such water management control boxes are mostly in areas with high humidity. If external moisture seeps into the control box, it may damage the electronic components.
[0004] Meanwhile, in order to achieve heat dissipation and dust prevention, the outside of the control chassis is usually equipped with a filter. However, after long-term use, various impurities are easily accumulated on the surface of the filter, which hinders the dissipation of heat inside the chassis and causes the internal temperature of the chassis to continue to rise.
[0005] If the computer cases are not cleaned regularly, the internal electronic components will be damaged due to excessive temperature and humidity. Regular manual cleaning of these cases would require a significant investment of manpower and resources, undoubtedly increasing the operational costs of water conservancy management. Summary of the Invention
[0006] This invention provides a dustproof water conservancy management upgrade control box and its usage method, aiming to solve the problem that the control box must maintain smooth heat dissipation and moisture absorption, thus requiring regular cleaning and maintenance of heat dissipation and water absorption equipment. Manual regular cleaning is time-consuming and labor-intensive, increasing the operation and management costs of water conservancy management.
[0007] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is as follows: A dustproof water conservancy management upgrade and transformation control box includes a box structure, and a sliding structure is provided inside the box structure for installing electronic components and pushing the electronic components out of the box structure. Dustproof plates are provided on both sides of the box structure. On the side of the dustproof plate closer to the inside of the box structure, there is a pair of alternating drying plates. On the side of the dustproof plate away from the inside of the box structure, there is a cleaning brush. The cleaning brush cleans the dustproof plate under the drive of the corresponding drive structure. The two ends of the drive structure are respectively provided with a first linkage structure. The cleaning of the cleaning brush is linked with the first linkage structure. A second linkage structure is provided on one side of the box structure. The alternation of the drying plates is linked with the first linkage structure and the second linkage structure.
[0008] Preferably, the sliding structure includes a rocker arm rotatably connected to the bottom of the housing structure, the rocker arm passing through the housing structure and fixedly connected to an internal gear, and a frame structure for installing electrical components slidably installed inside the housing structure. The frame structure has a rack side post on the side corresponding to the internal gear, which meshes with the internal gear to form a linkage, and the rack side post is arranged in the same direction as the sliding direction of the frame structure.
[0009] Preferably, the drive structure includes a tube shell disposed on the side of the box structure, a threaded rod rotatably connected inside the tube shell, an output motor disposed at one end of the tube shell, the output end of the output motor passing through the tube shell and coaxially linked with the threaded rod to form a linkage, the cleaning brush is arranged horizontally parallel to the dustproof plate, and one end of the cleaning brush forms a screw engagement with the threaded rod, and the other end of the cleaning brush forms a limiting sliding engagement with the outer wall of the box structure.
[0010] Preferably, the first linkage structure includes a first airbag and a second airbag respectively disposed at both ends of the same side of the tube shell, and when the cleaning brush moves toward both ends, it can squeeze the first airbag or the second airbag on the corresponding side.
[0011] Preferably, the first linkage structure includes a sliding toothed column that is limited and slidably engaged with the box structure. The two ends of the sliding toothed column are respectively provided with a third airbag and a fourth airbag, and the sliding of the sliding toothed column is linked with the third airbag and the fourth airbag. A rotating shaft is rotatably connected to the position of the sliding toothed column on the box structure. The rotating shaft passes through the box structure and has a box-side gear fixed at both ends. The box-side gear on the outside of the box structure meshes with the sliding toothed column to form a linkage.
[0012] Preferably, the pair of alternating drying plates includes fixed shells arranged opposite each other within the box structure. A first toothed plate frame and a second toothed plate frame are staggered between the fixed shells. The first toothed plate frame forms a limiting sliding fit with one side of the fixed shell, and the second toothed plate frame forms a limiting sliding fit with the other side of the fixed shell. Both the first toothed plate frame and the second toothed plate frame mesh with the box-side gear inside the box structure to form a linkage, and the first toothed plate frame and the second toothed plate frame are located on both sides of the box-side gear.
[0013] Preferably, the first airbag, the second airbag, the third airbag, and the fourth airbag are all equipped with air chambers for storing gas. The air chamber of the first airbag is sealed and connected to the air chamber of the third airbag through a first air supply pipe. The air chamber of the second airbag is sealed and connected to the air chamber of the fourth airbag through a second air supply pipe. The first airbag is provided with a first pushing block on the side near the cleaning brush, and the second airbag is provided with a second pushing block on the side near the cleaning brush.
[0014] Preferably, the opening of the box structure is provided with a replacement port for replacing the first drying plate and the second drying plate.
[0015] Preferably, one end of the box structure is provided with a hinge, the other end of the hinge is fixedly connected to a cover plate, and a fixing column for fixing is provided on the back of the box structure.
[0016] One method of use, employing the aforementioned dustproof water conservancy management upgrade control box, includes the following steps: During maintenance: The frame of the installed electronic components is slid out using a sliding structure for maintenance; During dust removal: The cleaning brush is driven by the drive structure to reciprocate along the dustproof plate within a first specified range to remove dust; During water absorption: Water is absorbed by passing a drying board behind the corresponding dustproof board; When replacing the drying plate, the cleaning brush is driven by the drive structure to enter the second designated range and is linked with the first linkage structure corresponding to the other drying plate. The first linkage structure causes the two drying plates to interchange positions through the corresponding second linkage structure.
[0017] The beneficial effects of this invention are: 1. In this invention, through the alternating operation of the dual drying plates and the automatic repositioning design, the moisture in the box structure can be continuously adsorbed, prompting the drying plates to be automatically replaced, thereby reducing the probability of electronic components short-circuiting or corroding due to moisture. 2. Meanwhile, the automatic cleaning brush equipped in the control box is driven by the output motor and slides back and forth along the threaded rod to clean the impurities on the surface of the dustproof plate, keep the ventilation and heat dissipation channels unobstructed, effectively avoid overheating damage to the water conservancy management equipment caused by dust accumulation and blockage, and reduce the failure rate of the water conservancy management equipment. 3. It lays the foundation for automation and modularity. The automatic operation of cleaning and replacement can be controlled by the remote control drive mechanism, and the operating status can be monitored. With the addition of sensors, it lays the foundation for automation. The drive mechanism provides the drive for dust removal and drying plate replacement. The device is simplified and the cost is low after automation. 4. The integrated automated maintenance mechanism of the chassis enables the replacement of the drying plate and the cleaning of the dustproof plate to be automated without human intervention. This effectively avoids the risk of secondary pollution caused by frequent opening of the chassis. At the same time, relying on the remote monitoring system, the equipment operating status can be warned in real time. With the help of this function, managers can accurately grasp the maintenance cycle and reduce unnecessary and ineffective inspections. According to calculations, compared with the traditional manual maintenance mode, it can significantly improve the management efficiency of water conservancy facilities and reduce the cost of manual operation and maintenance. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of a dustproof water conservancy management upgrade and transformation control box proposed in this invention; Figure 2 This is a schematic diagram of the side structure in this invention; Figure 3 This is a partial structural diagram of the present invention; Figure 4 for Figure 3 Enlarged view of point A in the middle; Figure 5 This is a schematic diagram of the back structure in this invention; Figure 6 for Figure 5 Enlarged view of point B in the middle; Figure 7 This is a schematic diagram of the internal structure of the present invention; Figure 8 This is a schematic diagram of the side structure in this invention.
[0019] In the diagram: 1. Box structure; 2. Cover plate; 3. Pipe shell; 4. Output motor; 5. Threaded rod; 6. First airbag; 7. Second airbag; 8. Cleaning brush; 9. Dustproof plate; 10. Frame structure; 11. Rack side column; 12. Gear inside the box; 13. Rocker arm; 14. Third airbag; 15. Sliding gear column; 16. Fourth airbag; 17. Box side gear; 18. Replacement port; 19. Fixed shell; 20. First gear plate frame; 21. Second gear plate frame; 22. First drying plate; 23. Second drying plate; 24. Air chamber; 25. First air supply pipe; 26. Second air supply pipe; 27. First push block; 28. Second push block. Detailed Implementation
[0020] The embodiments will be further described below with reference to the accompanying drawings.
[0021] like Figures 1-8As shown, this invention is a dustproof water conservancy management upgrade and control box, comprising a box structure 1, a pipe shell 3 fixedly connected to the side of the box structure 1, a threaded rod 5 rotatably connected inside the pipe shell 3, and a cleaning brush 8 for cleaning dustproof plates 9 connected to the threaded rod 5 via threads. A first airbag 6 is fixedly connected to the side of the box structure 1, and a first pushing block 27 for being squeezed by the cleaning brush 8 is slidably connected to the first airbag 6. A second airbag 7 is fixedly connected to the side of the box structure 1 away from the second air supply pipe 26, and a second pushing block 28 is slidably connected to the second airbag 7. A third airbag 14 is fixedly connected, a sliding toothed column 15 is slidably connected to the third airbag 14, a fourth airbag 16 is slidably connected to the end of the sliding toothed column 15 away from the third airbag 14, a box-side gear 17 is meshed with the sliding toothed column 15, a first toothed plate frame 20 is meshed with the box-side gear 17, a second toothed plate frame 21 is meshed with the side of the box-side gear 17 away from the first toothed plate frame 20, a second drying plate 23 is arranged inside the first toothed plate frame 20, a first drying plate 22 is arranged inside the second toothed plate frame 21, and a sliding structure for repairing electronic components is arranged inside the box structure 1.
[0022] In one embodiment, the sliding structure includes a rocker arm 13 disposed at the bottom of the housing structure 1. The rocker arm 13 passes through the housing structure 1 and is fixedly connected to an internal gear 12. The internal gear 12 is meshed with a rack side post 11. The rack side post 11 is fixed to the side of the frame structure 10. The first airbag 6, the second airbag 7, the third airbag 14, and the fourth airbag 16 are all equipped with air chambers 24 for storing gas. The housing structure 1 is slidably connected to the frame structure 10, and the cleaning brush 8 is slidably connected to the side of the housing structure 1.
[0023] In one embodiment, for the third airbag 14, a first air supply pipe 25 is fixedly connected to the side of the third airbag 14, and a first airbag 6 is fixedly connected to the end of the first air supply pipe 25 away from the third airbag 14. A second air supply pipe 26 is fixedly connected to the side of the fourth airbag 16, and a second airbag 7 is fixedly connected to the end of the second air supply pipe 26 away from the fourth airbag 16.
[0024] In one embodiment, for the aforementioned shell 3, an output motor 4 is fixedly connected to the top of the shell 3, and the output end of the output motor 4 is fixedly connected to a threaded rod 5 through the shell 3. In one embodiment, for the aforementioned housing structure 1, a fixed shell 19 is fixedly connected inside the housing structure 1, a first toothed plate frame 20 is slidably connected to the fixed shell 19, and a second toothed plate frame 21 is slidably connected to the side of the fixed shell 19 away from the first toothed plate frame 20. In one embodiment, for the aforementioned housing structure 1, a replacement port 18 for replacing the first drying plate 22 and the second drying plate 23 is provided at the opening of the housing structure 1. In this embodiment, by configuring an independent replacement port 18, the replacement of the first drying plate 22 and the second drying plate 23 can be completed quickly and conveniently without disassembling the entire housing or stopping the equipment operation, thus improving the maintenance efficiency of the control housing. At the same time, this design can reduce the frequency of opening the main cover 2, reducing the risk of external dust and moisture entering the housing. While ensuring that the drying plates can be replaced in a timely manner, the sealing and operational stability of the control housing are effectively maintained, further reducing the probability of equipment failure due to maintenance operations.
[0025] In one embodiment, for the aforementioned housing structure 1, one end of the housing structure 1 is provided with a hinge, and the other end of the hinge is fixedly connected to a cover plate 2.
[0026] In this embodiment, the hinged cover 2 design makes the opening and closing of the chassis simpler and more flexible, facilitating comprehensive inspection, troubleshooting, and installation and debugging of the interior of the chassis structure 1 by staff. Compared to traditional chassis covers fixed with screws, the hinge structure allows for quick opening and closing without tools, significantly reducing maintenance time. Simultaneously, the robust connection of the hinge ensures that the cover 2 fits tightly against the chassis structure 1 when closed. Combined with sealing strips and other structures, the chassis forms a relatively enclosed protective space. This tight fit and effective sealing further enhance the overall dustproof and waterproof performance of the control chassis, providing a reliable protective environment for internal electronic components, reducing the probability of damage to electronic components, and extending their service life.
[0027] In one embodiment, for the aforementioned box structure 1, a fixing column for fixing is provided on the back of the box structure 1.
[0028] In this embodiment, the configuration of the fixed columns provides diverse installation methods for the enclosure structure 1. Workers can securely install the enclosure onto walls, brackets, or other fixed structures using bolts. This flexible installation method can meet the diverse installation needs of water conservancy engineering sites, easily adapting to narrow spaces, special geographical environments, or different installation angles, enhancing the flexibility and applicability of equipment installation. Furthermore, this stable fixing method has anti-interference capabilities. In water conservancy engineering sites, the enclosure often faces adverse factors such as external vibration and collisions. The fixed columns can effectively reduce the displacement or shaking of the enclosure caused by external vibration and collisions, preventing damage to internal electronic components due to vibration, ensuring the stability and reliability of the enclosure operation, and extending the equipment's service life. In one embodiment, for the aforementioned frame structure 10, a partition plate for separating electronic components is configured inside the frame structure 10.
[0029] In this embodiment, the partition plate divides the interior of the frame structure 10 into multiple independent spaces, enabling the partitioned installation and management of electronic components. On the one hand, the partition plate effectively isolates different functional modules, avoiding electromagnetic interference between them and improving the signal transmission stability and operational accuracy of the electronic components. On the other hand, the partitioned layout makes the equipment structure more regular and orderly, facilitating fault diagnosis and maintenance. Personnel do not need to blindly search for problems within the complex internal structure; they can quickly locate specific modules for inspection or replacement, improving maintenance efficiency. Simultaneously, the partition plate provides a physical protective barrier between components, effectively preventing damage caused by collisions or compression, optimizing the space utilization and heat dissipation path within the frame structure 10, allowing for smoother airflow and improving overall heat dissipation. In one embodiment, the box-side gear 17 is rotatably connected to the side of the housing structure 1.
[0030] In this embodiment, the rotatable connection between the gearbox-side gear 17 and the side of the housing structure 1 provides a stable power transmission node for the mechanical transmission system inside the housing. During the automatic switching of the first drying plate 22 and the second drying plate 23, and the extension and retraction of the frame structure 10, the gearbox-side gear 17 accurately transmits power to the corresponding actuators through meshing with components such as the sliding gear column 15 and the rack side column 11, ensuring the precision and continuity of mechanical actions. This rotatable connection method has a compact structure, high transmission efficiency, and is easy to install and maintain. It can adapt to the complex spatial layout and frequent transmission needs inside the housing, ensuring the stable operation of the housing's automation functions.
[0031] In one embodiment, the method of use includes the following steps: During maintenance: The frame of the installed electronic components is slid out using a sliding structure for maintenance; During dust removal: The cleaning brush 8 is driven by the drive structure to reciprocate along the dustproof plate 9 within a first specified range to remove dust; During water absorption: Water is absorbed by passing a drying plate behind the corresponding dustproof plate 9; When replacing the drying plate, the cleaning brush 8 is driven by the drive structure to enter the second designated range and is linked with the first linkage structure corresponding to the other drying plate. The first linkage structure causes the two drying plates to interchange positions through the corresponding second linkage structure.
[0032] Furthermore, in the above embodiment, during use: when maintenance is required, the cover plate 2 is opened and the rocker arm 13 is rotated. The rotation of the rocker arm 13 will drive the gear 12 inside the box to rotate through the box structure 1. The rotation of the gear 12 inside the box will mesh with the rack side column 11, thereby causing the frame structure 10 to extend out from inside the box structure 1, which facilitates maintenance by the staff and the insertion of maintenance tools, thus avoiding the situation where maintenance is difficult to perform in the narrow space inside the box structure 1.
[0033] In addition, the output motor 4 can be remotely controlled to operate. The output end of the output motor 4 drives the threaded rod 5 to rotate, which in turn drives the cleaning brush 8 to slide on the side of the tube shell 3. When the cleaning brush 8 has cleaned one side of the dustproof plate 9, the output motor 4 is controlled to rotate in the opposite direction, causing the cleaning brush 8 to move in the opposite direction, thereby cleaning the surface of the dustproof plate 9 and further effectively dissipating the heat inside the housing structure 1. Since a lot of moisture inevitably wants to enter the housing structure 1 during operation, a replaceable moisture-absorbing drying plate is installed inside the housing structure 1. The drying plate needs to be replaced periodically as needed to prevent the electronic components inside the housing structure 1 from becoming damp and malfunctioning. Under normal circumstances, the drying plate... Figure 4The first drying plate 22 and the second drying plate 23 are positioned one above the other, with one in working condition and the other in standby condition. When replacement is needed after a period of time, the threaded rod 5 is rotated, causing the cleaning brush 8 to move downwards and compress the second pushing block 28 above the second airbag 7. When the second pushing block 28 enters the second airbag 7, the original gas chamber 24 inside the second pushing block 28 is compressed and then transported to the fourth airbag 16 through the second air supply pipe 26. Finally, the gas inside the fourth airbag 16 pushes the sliding toothed column 15 upwards, which meshes with the gear 17 on the side of the box, further exchanging the positions of the first drying plate 22 and the second drying plate 23 to continue the drying function. At this time, the gas inside the third airbag 14 is transported to the first airbag 6 through the first air supply pipe 25, thereby compressing the first pushing block 27 to slide, facilitating the next compression of the cleaning brush 8. For example, when the first... When the first drying plate 22 becomes unusable and the second drying plate 23 is replaced, a text message will be sent to the staff a few days before the second drying plate 23 becomes unusable, based on the previous usage time. The staff will need to replace both the first drying plate 22 and the second drying plate 23. During replacement, the sweeping brush 8 is controlled to press down to expose the first drying plate 22 from the replacement port 18. The staff will then remove the first drying plate 22 and install the new first drying plate 22. The sweeping brush 8 will then press the first pushing block 27 at the bottom of the first airbag 6. When the first pushing block 27 is fully inserted into the first airbag 6, the air chamber 24 inside the third airbag 14 will be filled with gas, causing the sliding tooth column 15 to slide downwards and further rotate the gear 17 on the side of the box. The positions of the first tooth plate frame 20 and the second tooth plate frame 21 will then be adjusted. The second drying plate 23 inside the second tooth plate frame 21 can then be removed and replaced with a new second drying plate 23. It is worth mentioning that the second airbag 7, the first airbag 6, the third airbag 14, and the fourth airbag 16 are all equipped with air chambers 24 for storing gas.
[0034] In this embodiment, a temperature and humidity sensor can be used to monitor the environment inside the chamber in real time to determine the internal operating status and facilitate maintenance by operators. It can also be paired with a controller to achieve simple control, such as the alternation of drying plates. When the humidity exceeds the set value, the exchange program is started. If the humidity still exceeds the set value after a specified number of exchanges, the staff is notified for maintenance.
Claims
1. A dustproof water conservancy management upgrade and transformation control box, characterized in that, It includes a housing structure (1), and a sliding structure is provided inside the housing structure (1) for installing electronic devices and pushing the electronic devices out of the housing structure (1). Dustproof plates (9) are provided on both sides of the box structure (1). A pair of alternating drying plates are provided on the side of the dustproof plate (9) closer to the inside of the box structure (1). A cleaning brush (8) is provided on the side of the dustproof plate (9) away from the inside of the box structure (1). The cleaning brush (8) cleans the dustproof plate (9) under the drive of the corresponding drive structure. A first linkage structure is provided at both ends of the drive structure. The cleaning of the cleaning brush (8) is linked with the first linkage structure. A second linkage structure is provided on one side of the box structure (1) and is linked with the alternation of the drying plates. The first linkage structure and the second linkage structure are linked.
2. The dustproof water conservancy management upgrade and transformation control box according to claim 1, characterized in that, The sliding structure includes a rocker arm (13) rotatably connected to the bottom of the box structure (1). The rocker arm (13) passes through the box structure (1) and is fixedly connected to an internal gear (12). A frame structure (10) for installing electrical components is slidably installed inside the box structure (1). A rack side column (11) is provided on the side corresponding to the internal gear (12) of the frame structure (10) and meshes with the internal gear (12) to form a linkage. The rack side column (11) is arranged in the same direction as the sliding direction of the frame structure (10).
3. The dustproof water conservancy management upgrade and transformation control box according to claim 1, characterized in that, The drive structure includes a tube shell (3) located on the side of the box structure (1). A threaded rod (5) is rotatably connected inside the tube shell (3). An output motor (4) is provided at one end of the tube shell (3). The output end of the output motor (4) passes through the tube shell (3) and is coaxially linked with the threaded rod (5). The cleaning brush (8) is arranged horizontally parallel to the dustproof plate (9). One end of the cleaning brush (8) is engaged with the threaded rod (5) to form a screw engagement. The other end of the cleaning brush (8) is engaged with the outer wall of the box structure (1) to form a limiting sliding engagement.
4. The dustproof water conservancy management upgrade and transformation control box according to claim 3, characterized in that, The first linkage structure includes a first airbag (6) and a second airbag (7) respectively located at both ends of the same side of the tube shell (3). When the cleaning brush (8) moves toward both ends, it can squeeze the first airbag (6) or the second airbag (7) on the corresponding side.
5. The dustproof water conservancy management upgrade and transformation control box according to claim 4, characterized in that, The first linkage structure includes a sliding toothed column (15) that is limited and slidably engaged with the box structure (1). The two ends of the sliding toothed column (15) are respectively provided with a third airbag (14) and a fourth airbag (16). The sliding of the sliding toothed column (15) is linked with the third airbag (14) and the fourth airbag (16). A rotating shaft is rotatably connected to the position of the sliding toothed column (15) on the box structure (1). The rotating shaft passes through the box structure (1) and both ends are fixed with box-side gears (17). The box-side gears (17) on the outside of the box structure (1) mesh with the sliding toothed column (15) to form a linkage.
6. The dustproof water conservancy management upgrade and transformation control box according to claim 5, characterized in that, The pair of alternating drying plates include fixed shells (19) arranged opposite each other inside the box structure (1). A first toothed plate frame (20) and a second toothed plate frame (21) are arranged alternately between the fixed shells (19). The first toothed plate frame (20) forms a limiting sliding fit with one side of the fixed shell (19), and the second toothed plate frame (21) forms a limiting sliding fit with the other side of the fixed shell (19). The first toothed plate frame (20) and the second toothed plate frame (21) both mesh with the box-side gear (17) inside the box structure (1) to form a linkage, and the first toothed plate frame (20) and the second toothed plate frame (21) are located on both sides of the box-side gear (17).
7. The dustproof water conservancy management upgrade and transformation control box according to claim 6, characterized in that, The first airbag (6), the second airbag (7), the third airbag (14), and the fourth airbag (16) are all equipped with air chambers (24) for storing gas. The air chamber (24) of the first airbag (6) is sealed and connected to the air chamber (24) of the third airbag (14) through the first air supply pipe (25). The air chamber (24) of the second airbag (7) is sealed and connected to the air chamber (24) of the fourth airbag (16) through the second air supply pipe (26). The first airbag (6) is provided with a first push block (27) on the side near the cleaning brush (8), and the second airbag (7) is provided with a second push block (28) on the side near the cleaning brush (8).
8. The dustproof water conservancy management upgrade and transformation control box according to claim 6, characterized in that, The box structure (1) is provided with a replacement port (18) for replacing the first drying plate (22) and the second drying plate (23).
9. The dustproof water conservancy management upgrade and transformation control box according to claim 1, characterized in that, One end of the box structure (1) is equipped with a hinge, and the other end of the hinge is fixedly connected to a cover plate (2). The back of the box structure (1) is equipped with a fixing column for fixing.
10. A method of use, characterized in that, Using a dustproof water conservancy management upgrade and transformation control box as described in any one of claims 1 to 9, the following steps are included: During maintenance: The frame of the installed electronic components is slid out using a sliding structure for maintenance; During dust removal: the cleaning brush (8) is driven by the drive structure to reciprocate along the dustproof plate (9) within the first specified range to remove dust; During water absorption: Water is absorbed by passing a drying plate behind the corresponding dustproof plate (9); When replacing the drying plate, the cleaning brush (8) is driven by the drive structure to enter the second specified range and is linked with the first linkage structure corresponding to the other drying plate. The first linkage structure causes the two drying plates to be interchanged through the corresponding second linkage structure.