Intelligent dust fall fence for construction site
By designing a dust suppression enclosure for smart construction sites, using curved protective plates to block spray rebound, micro-pump atomizing nozzles to spray water mist, rainwater collection boxes for recycling, and dovetail blocks for quick connection of the baffles, the problems of water mist overflow and resource waste from spray enclosures are solved, achieving efficient dust suppression and safe construction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-04
- Publication Date
- 2026-04-14
AI Technical Summary
Existing sprinkler barriers are prone to water mist rebound or scattering under high pressure, causing water mist to overflow and contaminate pedestrians' clothes and vehicles. In addition, traditional dust suppression measures are inefficient, have limited coverage, and result in serious waste of water resources.
A smart construction site dust suppression enclosure was designed, comprising a base, a baffle, a spray dust suppression mechanism, a rainwater utilization mechanism, and a reinforcement mechanism. The baffle is designed to block spray rebound through an arc-shaped protective plate, spray water mist through a micro-pump atomizing nozzle, and collect rainwater in a recycling tank. The baffle is designed to be quickly connected by dovetail blocks, enabling rapid installation and disassembly.
It effectively blocks spray rebound, improves the safety and comfort of the construction site, increases dust suppression efficiency, saves water resources, simplifies the installation process, and enhances the stability of the enclosure.
Smart Images

Figure CN121853847A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building construction technology, specifically to a dust-reducing enclosure for smart construction sites. Background Technology
[0002] Against the backdrop of rapid urban construction and infrastructure development, dust pollution from construction sites is becoming increasingly prominent, especially in open work environments such as construction sites, road construction, and demolition operations. Large amounts of dust particles are dispersed by the wind, which not only affects the health of construction workers but also causes pollution of the surrounding environment and a decline in air quality. At the same time, traditional dust suppression measures mainly rely on water trucks or manual spraying, which have problems such as low dust suppression efficiency, limited coverage, and serious waste of water resources, making it difficult to achieve continuous and precise dust control.
[0003] To improve the construction environment, some construction sites have begun to adopt fencing structures with sprinkler systems, which can form a water mist barrier at the boundary of the construction area to reduce dust. However, existing sprinkler fencing still has several shortcomings: First, the unreasonable arrangement of the sprinklers or poor atomization effect can easily lead to uneven spraying and poor dust reduction in some areas; second, the sprayed water mist is prone to rebound or scattering under high pressure, causing water mist to overflow, wetting pedestrians' clothes or polluting vehicles, affecting the city's appearance and traffic safety. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides a smart construction site dust suppression barrier that solves the problem that existing water spray mists are prone to rebound or scattering under high pressure, causing water mist to overflow and wetting pedestrians' clothes or polluting vehicles.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solution: a dust suppression enclosure for smart construction sites, comprising a base, wherein there are two bases, and a baffle is fixedly connected to the upper part of each of the two bases. A dust suppression protection mechanism is provided on the outer front side of each of the two baffles, a spray dust suppression mechanism is provided inside each of the two baffles, a disassembly and assembly mechanism is provided on the outer side of each of the two baffles, a reinforcement mechanism is provided on the outer rear side of each of the two baffles, and a rainwater utilization mechanism is provided on the top of each of the two baffles.
[0006] The dust suppression and protection mechanism includes a slider, which is disposed on the inner sides of the two baffles. A protrusion is fixedly connected to the front side of the slider, a spring is fixedly connected to the top of the slider, and an insert is fixedly connected to the bottom of the slider. Extension blocks are fixedly connected to both sides of the baffles, and a limit rod is slidably connected inside the extension blocks. An arc-shaped protective plate is provided on the front side of the baffles, and rainwater holes are opened on both sides of the inside of the arc-shaped protective plate.
[0007] Preferably, the spray dust suppression mechanism includes a micro pump, which is fixedly connected to the outer rear side of the two baffles. Each of the two baffles has a water storage chamber inside. The input end of the micro pump is fixedly connected to a connecting pipe, the top of which is located inside the water storage chamber. The output end of the micro pump is fixedly connected to a delivery pipe. A guide pipe is provided on the top of the baffles, the top of which is located inside the guide pipe. Atomizing nozzles are installed on both sides of the upper part of the guide pipe.
[0008] Preferably, the reinforcement mechanism includes mounting blocks, which are fixedly connected to the outer sides of the baffle. Reinforcing arms are rotatably connected inside the two mounting blocks, and connecting blocks are rotatably connected to the bottom of the two reinforcing arms. Reinforcing nails are slidably connected inside the two connecting blocks.
[0009] Preferably, the disassembly and assembly mechanism includes a connecting block, which is fixedly connected to the outer right side of the left baffle. Dovetail blocks are fixedly connected to the outer left side of the right baffle, and the two dovetail blocks are disposed inside the two connecting blocks.
[0010] Preferably, the rainwater utilization mechanism includes a collection box, which is fixedly connected to the top of the two baffles. A filter plate is inserted into each of the two collection boxes, and a guide pipe is fixedly connected into each of the two collection boxes. The bottom of the two guide pipes is located inside the water storage chamber.
[0011] Preferably, each of the outer front sides of the baffle has a slot, and the arc-shaped protective plate is inserted into two of the slots. Each of the outer front sides of the baffle has a sliding hole, and two of the protrusions are slidably connected inside the two sliding holes. Each of the two protrusions has a limit hole, and two limit rods are inserted into the two limit holes. Each of the inner sides of the arc-shaped protective plate has a mounting hole, and two inserts are inserted into the two mounting holes. Each of the inner sides of the baffle has a mounting cavity, and two sliders are slidably connected inside the two mounting cavities.
[0012] Preferably, each of the two baffles has a filling port fixedly connected to its outer rear side, and each of the two filling ports has a sealing cap installed on its outer side. A support rod is fixedly connected to the outside of the guide tube, and the bottom of the support rod is fixedly connected to the outer rear side of the baffle.
[0013] Preferably, each of the two connecting blocks has a dovetail groove inside, and the two dovetail blocks are inserted into the two dovetail grooves.
[0014] Preferably, both of the reinforcing arms are made of stainless steel.
[0015] Preferably, positioning holes are provided on both sides of the interior of the two bases.
[0016] Working principle: In use, first install the baffle in the area to be enclosed. Then, before dust suppression, first move the protrusion upwards. The movement of the protrusion moves the slider fixed at the bottom upwards, and the upward movement of the slider moves the insert block fixed at the bottom upwards simultaneously. When the slider moves upwards, it compresses the spring fixed at the top, causing the spring to deform. Then, when the limiting hole inside the protrusion moves to be flush with the limiting rod, insert the limiting rod into the limiting hole. At this time, the slot inside the baffle is exposed. Then, insert the bottom of the arc-shaped protective plate. Finally, move the limiting rod out of the limiting hole inside the slot. At this time, under the reaction force of the spring, the insert block is inserted into the mounting hole opened at the bottom of the arc-shaped protective plate, thus completing the installation of the arc-shaped protective plate. This realizes the installation of the arc-shaped protective plate on the outside of the baffle during spray dust suppression. The arc-shaped protective plate can block the scattering or rebounding water mist generated by the spray during the spraying process, preventing it from directly splashing onto pedestrians or vehicles on the outside of the road, preventing problems such as obstructed vision, wet clothes or contaminated vehicle bodies, and improving the safety and comfort of the road and construction area.
[0017] During dust suppression, water is first added to the water storage chamber through the filling port. Then, a micro pump is started to draw water from the water storage chamber through a connecting pipe. The water is then transported to the guide pipe through a delivery pipe, and finally atomized into fine water mist through a misting nozzle and sprayed evenly to effectively settle dust in the air, thereby achieving the purpose of dust suppression and air purification. At the same time, on rainy days, rainwater falls into the collection box. First, larger particles in the rainwater are filtered through a filter plate. The filtered rainwater falls to the bottom of the collection box and is then transported to the water storage chamber through a guide pipe for secondary use. This realizes the function of automatically collecting and recycling rainwater as a water source for spray dust suppression on rainy days, reducing water consumption and improving the practicality of the enclosure.
[0018] When assembling two baffles, first place one baffle in the enclosure area. Then align the dovetail block fixedly connected to the outer left side of the other baffle with the connecting block fixedly connected to the outer right side of the other baffle. Insert the dovetail block into the dovetail groove inside the connecting block to complete the assembly of the baffle. To disassemble, simply pull the dovetail block out of the dovetail groove. To reinforce, rotate the reinforcing arm to make the connecting block at the bottom of the reinforcing arm flush with the ground. Then insert the reinforcing nail into the ground to complete the reinforcement of the baffle. This integrated structural design achieves quick assembly, convenient disassembly, and stable reinforcement of the baffles, improving the installation efficiency and safety of the enclosure.
[0019] This invention provides a dust-reducing enclosure for smart construction sites. It has the following beneficial effects:
[0020] 1. When using, first fix the baffle to the enclosure area. Before dust suppression, move the protrusion upwards, which will drive the slider and insert block fixed to its bottom to move upwards. At the same time, compress the top spring. When the limiting hole on the protrusion is aligned with the limiting rod, insert the limiting rod into the fixed position so that the slot on the baffle is exposed. Then insert the bottom of the arc-shaped protective plate into the slot. After that, pull out the limiting rod. The spring rebounds and pushes the insert block into the mounting hole at the bottom of the arc-shaped protective plate, thus completing the installation. This arc-shaped protective plate can effectively block the scattering and rebounding water mist during spray dust suppression, preventing water mist from splashing onto pedestrians and vehicles, preventing obstructed vision, wet clothes or vehicle body pollution, and improving the safety and comfort of the construction area.
[0021] 2. During dust suppression, water is injected into the storage chamber through the filling port. A micro pump is activated to draw water out through the connecting pipe, then through the delivery pipe to the guide pipe, and finally atomized and sprayed out by the atomizing nozzles to achieve air dust suppression and purification. In rainy weather, rainwater falls into the collection box, passes through the filter plate to remove large particles of impurities, and is stored at the bottom of the box. It is then guided into the storage chamber through the guide pipe, realizing rainwater collection and reuse. This function effectively saves water resources and improves the practicality of the enclosure.
[0022] 3. When assembling the baffle, align the dovetail block on the left side of one baffle with the dovetail groove on the connecting block on the right side of another baffle, and insert it to complete the connection; when disassembling, simply pull it out in the opposite direction. When reinforcing, rotate the reinforcing arm so that the connecting block at its bottom is flush with the ground, insert the reinforcing nail to fix it to the ground. This design enables the baffle to be quickly assembled, easily disassembled and stably reinforced, improving the efficiency of fence installation and the safety of use. Attached Figure Description
[0023] Figure 1 This is a perspective view of the present invention;
[0024] Figure 2 This is a structural diagram of the arc-shaped protective plate of the present invention;
[0025] Figure 3 This is a schematic diagram of the dovetail block structure of the present invention;
[0026] Figure 4 This is a schematic diagram of the disassembled structure of the arc-shaped protective plate of the present invention;
[0027] Figure 5 This is a schematic diagram of the internal structure of the enclosure according to the present invention;
[0028] Figure 6 This is a schematic diagram of the disassembled structure of the filter plate of the present invention;
[0029] Figure 7 This is a schematic diagram of the water storage cavity structure of the present invention;
[0030] Figure 8 for Figure 5 Enlarged view of the structure at point A in the middle.
[0031] The components include: 1. Base; 2. Baffle; 3. Reinforcing mechanism; 301. Mounting block; 302. Reinforcing arm; 303. Connecting block; 305. Reinforcing nail; 4. Spray dust suppression mechanism; 401. Micro pump; 402. Connecting pipe; 403. Conveying pipe; 404. Guide pipe; 405. Atomizing nozzle; 406. Filling port; 407. Water storage chamber; 5. Support rod; 6. Rainwater utilization mechanism; 601. Collection box; 602. Filter plate; 603. 7. Guide tube; 7. Disassembly and assembly mechanism; 701. Connecting block; 702. Dovetail groove; 703. Dovetail block; 8. Positioning hole; 9. Mounting cavity; 10. Dust suppression and protection mechanism; 1001. Slider; 1002. Protrusion; 1003. Spring; 1004. Insert block; 1005. Extension block; 1006. Limiting rod; 1007. Arc-shaped protective plate; 11. Sliding hole; 12. Rainwater hole; 13. Mounting hole; 14. Slot; 15. Limiting hole. Detailed Implementation
[0032] 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.
[0033] Please see the appendix Figure 1 - Appendix Figure 5 This invention provides a smart construction site dust suppression enclosure, including a base 1, of which there are two. Each base 1 has a baffle 2 fixedly connected to its upper part, serving as an isolation barrier during construction. A dust suppression protection mechanism 10 is provided on the front exterior of each baffle 2, blocking the water mist sprayed during dust suppression and preventing it from directly splashing onto pedestrians and vehicles. A spray dust suppression mechanism 4 is provided inside each baffle 2, enabling dust suppression at the construction site. A disassembly and assembly mechanism 7 is provided on the exterior of each baffle 2, allowing for disassembly and assembly. A reinforcement mechanism 3 is provided on the rear exterior of each baffle 2, increasing its protective strength. A rainwater utilization mechanism 6 is provided on the top of each baffle 2, saving resources. Positioning holes 8 are provided on both sides of the interior of each base 1, securing the base 1.
[0034] The dust suppression and protection mechanism 10 includes a slider 1001, which is disposed on the inner sides of two baffles 2. A protrusion 1002 is fixedly connected to the front outer side of the slider 1001 to facilitate operation. A spring 1003 is fixedly connected to the top of the slider 1001, and an insert block 1004 is fixedly connected to the bottom of the slider 1001. Extension blocks 1005 are fixedly connected to both outer sides of the baffles 2, and a limit rod 1006 is slidably connected inside the extension blocks 1005. An arc-shaped protective plate 1007 is provided on the front outer side of the baffles 2 to shield the sprayed water mist and prevent it from directly splashing onto pedestrians or vehicles. Rainwater holes 12 are provided on both inner sides of the arc-shaped protective plate 1007 to facilitate rainwater drainage. A slot 14 is provided on the front outer side of the baffles 2. The two slots 14 are connected to each other to facilitate the installation of the arc-shaped protective plate 1007. The front side of the baffle 2 is provided with sliding holes 11. Two protrusions 1002 are slidably connected inside the two sliding holes 11. The sliding holes 11 facilitate the movement of the protrusions 1002. The two protrusions 1002 are provided with limit holes 15. Two limit rods 1006 are connected to the two limit holes 15. The limit holes 15 limit the operation of the protrusions 1002. The arc-shaped protective plate 1007 is provided with mounting holes 13 on both sides inside. Two inserts 1004 are connected to the two mounting holes 13. The mounting holes 13 facilitate the fixing of the arc-shaped protective plate 1007. The baffle 2 is provided with mounting cavities 9 on both sides inside. Two sliders 1001 are slidably connected inside the two mounting cavities 9. The mounting cavities 9 facilitate the movement of the sliders 1001.
[0035] Specifically, in use, the baffle 2 is first installed in the construction or work area that needs to be enclosed to form a basic isolation and protection structure. Then, before the dust suppression spraying operation, the protrusion 1002 is moved upward. As the protrusion 1002 moves upward, it drives the slider 1001 fixedly connected at the bottom to slide upward synchronously. During the upward movement of the slider 1001, it will further drive the bottom fixedly connected insert 1004 to move upward together, and exert a squeezing effect on the spring 1003 fixedly connected at the top, causing the spring 1003 to undergo elastic deformation and be in a compressed state. When the limiting hole 15 opened inside the protrusion 1002 moves to a position flush with the limiting rod 1006, the limiting rod 1006 is inserted into the limiting hole 15 for limiting and fixing. At this time, the slot 14 opened inside the baffle 2 is fully exposed and in an insertable state. Subsequently, the bottom of the arc-shaped protective plate 1007 is inserted into the slot 14 along the guide direction, so that its lower end is firmly embedded in the slot 14. After installation, the operator removes the limiting rod 1006 from the limiting hole 15. Under the reaction force of the spring 1003, the insert block 1004 automatically moves downward and inserts into the preset mounting hole 13 at the bottom of the arc-shaped protective plate 1007 under the push of the restoring force, thereby realizing the reliable locking and fixed installation of the arc-shaped protective plate 1007. This structure can complete quick installation and disassembly without the need for additional fasteners, and is simple to operate and has a compact structure. Through the above design, the function of quickly installing the arc-shaped protective plate 1007 on the outside of the baffle 2 during the dust suppression spraying process is realized. The arc-shaped protective plate 1007 can block the scattered or rebound water mist generated during the spraying operation, preventing the water mist from directly splashing onto pedestrians or vehicles on the outside of the road, avoiding problems such as obstructed vision, wet clothes and contaminated vehicle bodies, significantly improving the safety and comfort of the construction site. At the same time, the protective structure can also guide the spraying direction to a certain extent, so that the water mist is concentrated in the dust suppression area, improving the spraying utilization rate and reducing water waste.
[0036] Please see the appendix Figure 2 - Appendix Figure 7The dust suppression spray mechanism 4 includes a micro pump 401, which is fixedly connected to the rear outer side of two baffles 2. Each baffle 2 has a water storage chamber 407. A connecting pipe 402 is fixedly connected to the input end of the micro pump 401, with the top of the connecting pipe 402 located inside the water storage chamber 407. The water storage chamber 407 facilitates water storage. A delivery pipe 403 is fixedly connected to the output end of the micro pump 401. A guide pipe 404 is located on the top of the baffles 2, with the top of the delivery pipe 403 located inside the guide pipe 404. Atomizing nozzles 405 are installed on both sides of the upper part of the guide pipe 404, facilitating dust suppression operation. A filling port 406 is fixedly connected to the rear outer side of each baffle 2, allowing water to be added into the water storage chamber 407. Water is added, and both filling ports 406 are equipped with sealing caps. A support rod 5 is fixedly connected to the outside of the guide tube 404. The bottom of the support rod 5 is fixedly connected to the rear side of the baffle 2. The support rod 5 is used to fix the guide tube 404. The rainwater utilization mechanism 6 includes a collection box 601, which is fixedly connected to the top of the two baffles 2. The collection box 601 is used to collect rainwater. Filter plates 602 are inserted into both collection boxes 601 to filter out larger impurities in the rainwater. Guide tubes 603 are fixedly connected to both collection boxes 601. The bottom of the two guide tubes 603 is set inside the water storage chamber 407. The guide tubes 603 are used to transport the collected rainwater into the water storage chamber 407.
[0037] Specifically, during dust suppression operations, clean water is first added to the water storage chamber 407 through the filling port 406 to ensure that there is enough working fluid stored in the water storage chamber 407. Then, the micro pump 401 installed inside the system is started. The micro pump 401 draws water from the inside of the water storage chamber 407 through the connecting pipe 402 and delivers the water steadily to the inside of the delivery pipe 403 under the pressure of the pump. Water is introduced into the guide pipe 404 via the delivery pipe 403. At the end of the guide pipe 404, the water is fully atomized by the atomizing nozzle 405 to form a fine and evenly distributed water mist, which is then sprayed into the air at an appropriate angle and pressure. This spraying process effectively captures suspended dust particles in the air, causing them to quickly absorb moisture, condense, and settle to the ground, thereby achieving efficient dust suppression and air purification. This design not only improves dust suppression efficiency but also improves the air quality of the construction site and surrounding environment, reducing the impact of dust pollution on workers and surrounding residents. In addition, in rainy weather, the device uses its collection box 601 located above to automatically collect rainwater. Rainwater naturally falls into the collection box 601. First, it passes through the filter plate 602 located on the top of the box, which performs preliminary filtration of larger particles, impurities, or leaves mixed in with the rainwater, ensuring that the rainwater entering the collection box 601 is relatively clean. The filtered rainwater falls into the storage area at the bottom of the collection box 601. Then, under the guidance of gravity or water pressure, it is transported through the guide pipe 603 to the water storage chamber 407 for storage. When the next dust suppression spraying operation begins, the rainwater stored in the water storage chamber 407 can be used directly as the spray water source, realizing the recycling of rainwater.
[0038] Please see the appendix Figure 3 - Appendix Figure 8 The reinforcement mechanism 3 includes mounting blocks 301, which are fixedly connected to the outer sides of the baffle 2. Reinforcing arms 302 are rotatably connected inside each mounting block 301. Connecting blocks 303 are rotatably connected to the bottom of each reinforcing arm 302. Reinforcing nails 305 are slidably connected inside each connecting block 303. The reinforcing nails 305 facilitate the fixation of the reinforcing arms 302. Both reinforcing arms 302 are made of stainless steel, which has high tensile strength and rigidity, effectively improving the enclosure. The overall wind pressure resistance and deformation resistance of the baffle are improved to prevent swaying or collapse under external forces. The disassembly and assembly mechanism 7 includes a connecting block 701, which is fixedly connected to the outer right side of the left baffle 2. Dovetail blocks 703 are fixedly connected to the outer left side of the right baffle 2. The two dovetail blocks 703 are set inside the two connecting blocks 701. The two connecting blocks 701 are provided with dovetail grooves 702. The two dovetail blocks 703 are inserted into the two dovetail grooves 702 to facilitate the installation and disassembly of the two baffles 2.
[0039] Specifically, when assembling the two baffles 2, first place one baffle 2 in the predetermined enclosure area, ensuring it is in stable contact with the ground and that the installation position is accurate. Then, move the other baffle 2 to the adjacent position of the first baffle 2, aligning the dovetail block 703 fixedly connected to its outer left side with the connecting block 701 fixedly connected to the outer right side of the first baffle 2. The connecting block 701 has a dovetail groove 702 inside that matches the dovetail block 703. The operator only needs to insert the dovetail block 703 into the dovetail groove 702 along the guide direction to achieve precise fitting and stable connection between the two baffles 2. This assembly method utilizes the geometric limiting structure between the dovetail block 703 and the dovetail groove 702, and through the mortise and tenon sliding insertion connection, it not only ensures a tight fit and high stability at the connection point, but also prevents the baffles from... When displacement or loosening occurs between the two baffles 2, compared to traditional bolt or snap-fit connections, this structure can be assembled without additional tools, greatly simplifying the installation process, shortening construction time, and improving installation efficiency. When disassembly is required, simply pull the dovetail block 703 out of the dovetail groove 702 in the opposite direction to quickly separate the two baffles 2. This simple and quick disassembly and assembly process facilitates repeated use and position adjustment on the construction site, improving the reusability and transportation convenience of the fencing. When reinforcing the fencing, rotating the reinforcing arm 302 causes the connecting block 303 at its bottom to gradually unfold outwards and remain flush with the ground, forming a stable support posture. Subsequently, the reinforcing nail 305 is passed through the pre-set through hole of the connecting block 303 and inserted into the ground, thereby effectively anchoring the baffle 2. This reinforcement structure significantly improves the overturning resistance of the baffle 2 under strong winds, vibrations, or external impacts, ensuring the safety and stability of the fencing during long-term outdoor use.
[0040] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A dust-reducing enclosure for smart construction sites, comprising a base (1), characterized in that, The number of bases (1) is two. Each base (1) is fixedly connected to a baffle (2). Each baffle (2) is provided with a dust suppression and protection mechanism (10) on the front side of the outside. Each baffle (2) is provided with a spray dust suppression mechanism (4) inside the inside. Each baffle (2) is provided with a disassembly and assembly mechanism (7) on the outside. Each baffle (2) is provided with a reinforcement mechanism (3) on the rear side of the outside. Each baffle (2) is provided with a rainwater utilization mechanism (6) on the top. The dust suppression and protection mechanism (10) includes a slider (1001), which is disposed on the inner sides of the two baffles (2). A protrusion (1002) is fixedly connected to the front side of the slider (1001). A spring (1003) is fixedly connected to the top of the slider (1001). An insert (1004) is fixedly connected to the bottom of the slider (1001). An extension block (1005) is fixedly connected to both sides of the baffle (2). A limit rod (1006) is slidably connected inside the extension block (1005). An arc-shaped protective plate (1007) is provided on the front side of the baffle (2). Rainwater holes (12) are opened on both sides of the arc-shaped protective plate (1007).
2. The dust-reducing enclosure for smart construction sites according to claim 1, characterized in that, The spray dust suppression mechanism (4) includes a micro pump (401), which is fixedly connected to the rear side of the two baffles (2). Both baffles (2) have water storage chambers (407) inside. The input end of the micro pump (401) is fixedly connected to a connecting pipe (402), and the top of the connecting pipe (402) is located inside the water storage chamber (407). The output end of the micro pump (401) is fixedly connected to a delivery pipe (403). The top of the baffle (2) is provided with a guide pipe (404), and the top of the delivery pipe (403) is located inside the guide pipe (404). Atomizing nozzles (405) are installed on both sides of the upper part of the guide pipe (404).
3. The dust-reducing enclosure for smart construction sites according to claim 1, characterized in that, The reinforcement mechanism (3) includes mounting blocks (301), which are fixedly connected to the outer sides of the baffle (2). Reinforcing arms (302) are rotatably connected inside the two mounting blocks (301), and connecting blocks (303) are rotatably connected to the bottom of the two reinforcing arms (302). Reinforcing nails (305) are slidably connected inside the two connecting blocks (303).
4. The dust-reducing enclosure for smart construction sites according to claim 1, characterized in that, The disassembly and assembly mechanism (7) includes a connecting block (701), which is fixedly connected to the outer right side of the left baffle (2). Dovetail blocks (703) are fixedly connected to the outer left side of the right baffle (2). The two dovetail blocks (703) are arranged inside the two connecting blocks (701).
5. A dust-reducing enclosure for smart construction sites according to claim 1, characterized in that, The rainwater utilization mechanism (6) includes a collection box (601), which is fixedly connected to the top of the two baffles (2). A filter plate (602) is inserted inside each of the two collection boxes (601), and a guide pipe (603) is fixedly connected inside each of the two collection boxes (601). The bottom of the two guide pipes (603) is located inside the water storage chamber (407).
6. A dust-reducing enclosure for smart construction sites according to claim 1, characterized in that, The baffle (2) has a slot (14) on its outer front side. The arc-shaped protective plate (1007) is inserted into the two slots (14). The baffle (2) has a sliding hole (11) on its outer front side. The two protrusions (1002) are slidably connected inside the two sliding holes (11). The two protrusions (1002) have a limit hole (15) inside. The two limit rods (1006) are inserted into the two limit holes (15). The arc-shaped protective plate (1007) has mounting holes (13) on both sides inside. The two inserts (1004) are inserted into the two mounting holes (13). The baffle (2) has mounting cavities (9) on both sides inside. The two sliders (1001) are slidably connected inside the two mounting cavities (9).
7. A dust-reducing enclosure for smart construction sites according to claim 2, characterized in that, Both baffles (2) are fixedly connected to the rear side of the outside of the baffle (2), and both of the two filling ports (406) are fitted with sealing caps. The guide tube (404) is fixedly connected to the outside of the support rod (5), and the bottom of the support rod (5) is fixedly connected to the rear side of the outside of the baffle (2).
8. A dust-reducing enclosure for smart construction sites according to claim 4, characterized in that, Both of the connecting blocks (701) have dovetail grooves (702) inside, and the two dovetail blocks (703) are inserted into the two dovetail grooves (702).
9. A dust-reducing enclosure for smart construction sites according to claim 3, characterized in that, Both of the aforementioned reinforcing arms (302) are made of stainless steel.
10. A dust-reducing enclosure for smart construction sites according to claim 1, characterized in that, Positioning holes (8) are provided on both sides of the interior of the two bases (1).