Safe and stable intelligent enclosure

By using a combination structure of piers, supports, and diagonal bracing units in the enclosure, combined with intelligent sensor-controlled lighting and dust suppression units, the problems of complex and unstable installation of traditional enclosures are solved, achieving a safe and stable construction environment.

CN120042403BActive Publication Date: 2025-11-21THE FIRST CONSTRUCTION COMPANY OF CCCC SECOND HARBOR ENGINEERING CO LTD +1
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Patent Information

Application Number
CN202510305627.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-11-21
Estimated Expiration
2045-03-14

AI Technical Summary

Technical Problem

Traditional fencing is complex to install, has unstable support, and cannot provide lighting, posing safety hazards.

Method used

Multiple piers are used as the foundation, combined with brackets, synchronous plates and diagonal bracing units to fix the baffles, equipped with solar panels for power supply, lighting and dust suppression units are set up, and intelligent control is achieved using cameras, ultrasonic wind direction sensors and dust detection sensors.

Benefits of technology

It achieves stable installation of the enclosure, provides intelligent lighting and dust suppression functions, improves construction safety and efficiency, and adapts to different environmental changes.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN120042403B_ABST
    Figure CN120042403B_ABST
Patent Text Reader

Abstract

The application provides a safe and stable intelligent fence, which comprises a plurality of piers arranged on one side of a baffle, a support arranged on the top of each pier, and a baffle fixed with the piers and the supports through synchronous plates and inclined support units, respectively, a solar panel arranged on the top of the support, a follow-up plate arranged on the top of the baffle, and a lighting unit and a dust falling unit arranged on the follow-up plate. The application is designed ingeniously, ensures the safe and stable use, and can adjust the lighting and dust falling states according to the scene, thereby improving the friendliness of construction.
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Description

Technical Field

[0001] This invention relates to the field of engineering construction technology, and in particular to a safe and stable intelligent fencing. Background Technology

[0002] In the construction of various engineering projects such as building construction and water conservancy projects, construction site fencing is a common and crucial facility widely used around construction sites. Its main function is to isolate the construction area from the surrounding environment to ensure the safety of construction workers and the public, prevent unauthorized personnel from entering the construction site, effectively prevent dust, noise, and sewage pollution from the construction process, reduce the impact on surrounding residents and the environment, standardize the management of the construction site, prevent the loss of construction materials and equipment, improve construction efficiency, make the construction site more beautiful and tidy, and enhance the project image.

[0003] In terms of installation, traditional fencing installation is complex, requiring detailed site surveys and calculations, careful material selection and matching, and precise operation at each step, which is time-consuming and labor-intensive, affecting the construction progress. Regarding structural stability, fencing is prone to loosening, deformation, or even collapse due to severe weather such as strong winds and heavy rains, as well as collisions with vehicles and personnel at the construction site, threatening construction safety. As for lighting, fencing without illumination is difficult to spot at night or in low light conditions, easily leading to pedestrian and vehicle collisions, and also hindering construction workers from observing the fencing and identifying potential hazards.

[0004] Chinese patent document CN 212507745 U describes a construction site fence, but the fence has limited support and cannot adjust the lighting and dust suppression settings according to the external environment; Chinese patent document CN 208473444 U describes an intelligent fence, which also has the above problems and its use is defective and needs to be improved. Summary of the Invention

[0005] This invention provides a safe and stable intelligent fence, which solves the technical problems of traditional fences being inconvenient to install and dismantle, having unstable support, and being unable to provide lighting, thus posing certain safety hazards.

[0006] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is: a safe and stable intelligent fence, including multiple piers set on one side of the fence, a support on the top of the piers, the piers and the support being fixed to the diagonal bracing unit and the fence respectively through a synchronous plate, a solar panel on the top of the support, and a follower plate on the top of the fence. The follower plate is connected to the support through a transition plate, and a lighting unit and a dust suppression unit are provided on the follower plate.

[0007] In a preferred embodiment, a plurality of horizontal and vertical supports are provided vertically on one side of the baffle. The horizontal supports are attached to the side wall of the baffle, and the synchronization plate and the diagonal support unit are detachably connected to the vertical supports, respectively.

[0008] In a preferred embodiment, multiple locking plates are arranged parallel to each other on the inner side of the bracket, and a first oblong groove is provided in the middle of the synchronization plate. Fastening nails are inserted into the locking plates and the first oblong groove, and the locking plates are fixed to the synchronization plate by fastening nails and insert rods.

[0009] In a preferred embodiment, a first locking block is provided on each side of the synchronization plate, a first sliding groove is provided through the middle of the first locking block, and the vertical support is located in the first sliding groove. The inclined support unit includes a sleeve and a support rod, a second locking block is hinged on one side of the support rod, a second sliding groove is provided through the middle of the second locking block, and the vertical support is located in the second sliding groove.

[0010] In the preferred embodiment, the sleeve and the support rod are respectively provided with a first lock head and a second lock head at their ends. The support rod is connected to the sleeve through a telescopic rod and is inserted into the sleeve. The two opposite second lock heads are fixed to the pier by a pull rod. The outer side of the second lock block is provided with an ear plate, and the insertion rod is inserted into the ear plate and the first lock head. The top of the pier is provided with a fixing cylinder, and the pull rod is inserted into the fixing cylinder.

[0011] In the preferred embodiment, the support includes a frame, with solar panels mounted on top of the frame. The bottom of the frame has multiple bases, and the piers have multiple embedded sleeves. Fastening nails are inserted into the bases and embedded sleeves. The follower plate is connected to the support via an adapter plate. The adapter plate includes a C-shaped plate and a limiting plate. Fastening nails and insert rods are respectively inserted into the C-shaped plate. The fastening nails and the C-shaped plate are threaded together, and the insert rods are attached to the side wall of the frame.

[0012] In a preferred embodiment, the top of the baffle is provided with a guide support, which has multiple threaded holes. The two sides of the follower plate are connected to the locking rod by springs and pull ropes, respectively. The locking rod is located in the threaded holes. The follower plate is also provided with a winding device, and the end of the pull rope is wound around the output shaft of the winding device.

[0013] In the preferred embodiment, a second oblong groove is provided through the limiting plate, and the follower plate includes a cross plate body. The cross plate body is connected to the adapter plate by at least two fastening nails and nuts. The fastening nails are inserted into the cross plate body and the second oblong groove. A protrusion is provided at the bottom of the cross plate body, and a roller is rotatably provided on the protrusion. The roller is in contact with the side wall of the guide support. Auxiliary rods are detachably provided on both sides of the follower plate. Fixed pulleys are sleeved on the auxiliary rods. Anti-detachment rods are provided on both sides of the fixed pulleys. The fixed pulleys and anti-detachment rods are connected to form a correction gap, and a pull rope is inserted into the correction gap.

[0014] In the preferred embodiment, a top plate is connected to the middle of the guide support by fastening nails. A camera and an ultrasonic wind direction sensor are installed on the top plate. A light bulb is also installed at the bottom of the top plate. A dust detection sensor is also installed on the upper part of the dust suppression unit. The camera, ultrasonic wind direction sensor and dust detection sensor work together to control the working status of the lighting unit and the dust suppression unit.

[0015] In the preferred embodiment, a first mounting sleeve and a second mounting sleeve are respectively provided on the upper and lower sides of the follower plate. The lighting unit includes a first base plate, a first arc surface is provided on one side of the first base plate, a main light strip is provided in the first arc surface, an auxiliary light strip is provided on the side wall of the first base plate, a first top rod is provided on the top of the first base plate, the first top rod is inserted into the first mounting sleeve, and cleaning pipes are also provided on both sides of the first arc surface.

[0016] The dust suppression unit includes a second base plate, a second arc surface on one side of the second base plate, low-pressure atomizing tubes and high-pressure atomizing tubes are evenly distributed on the second arc surface, and a second top rod is provided on the top of the second base plate, which is inserted into the second mounting sleeve.

[0017] The beneficial effects of this invention are as follows: Utilizing pre-cast concrete piers as a foundation allows for the secure installation of the baffle, ensuring the stability of the enclosure. The overall rigid connection provides strong support. Simultaneously, the lighting and dust suppression units can be intelligently controlled based on environmental changes, detected by cameras, ultrasonic wind direction sensors, and dust detection sensors, ensuring environmental improvement within a certain range of the construction enclosure and enhancing construction safety. In this solution, the piers serve as a combination of permanent and temporary structures, providing the installation foundation for the enclosure during initial construction. After the enclosure is dismantled following construction, the piers become the base fixing structure for the designed streetlights, ensuring efficient construction. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention. Figure 1 ;

[0020] Figure 2 yes Figure 1 Rear view diagram;

[0021] Figure 3 yes Figure 1 A frontal view diagram;

[0022] Figure 4 yes Figure 1 A top-down view;

[0023] Figure 5 yes Figure 1 A left-view diagram;

[0024] Figure 6 yes Figure 5 Enlarged view of point A;

[0025] Figure 7 This is a schematic diagram of the overall structure of the present invention. Figure 2 ;

[0026] Figure 8 yes Figure 1 Explosion structure diagram Figure 1 ;

[0027] Figure 9 yes Figure 8 Enlarged view of point B;

[0028] Figure 10 yes Figure 1 Explosion structure diagram Figure 2 ;

[0029] Figure 11 yes Figure 10 Enlarged view of point C;

[0030] Figure 12 yes Figure 1 Explosion structure diagram Figure 3 ;

[0031] Figure 13 yes Figure 12 Enlarged diagram of point D;

[0032] Figure 14 yes Figure 1 Explosion structure diagram Figure 4 ;

[0033] Figure 15 yes Figure 12 Enlarged view of point E;

[0034] Figure 16 This is a schematic diagram of the installation of the lighting unit and dust suppression unit of the present invention. Figure 1 ;

[0035] Figure 17 yes Figure 16 Enlarged schematic diagram at point F;

[0036] Figure 18 This is a schematic diagram of the installation of the lighting unit and dust suppression unit of the present invention. Figure 2 .

[0037] In the diagram: 1. Baffle; 101. Horizontal brace; 102. Vertical brace; 103. Guide brace; 104. Threaded hole; 2. Pier; 3. Bracket; 301. Frame; 302. Base; 303. Locking plate; 4. Synchronization plate; 401. First oblong groove; 402. First locking block; 403. First sliding groove; 5. Solar panel; 6. Follower plate; 601. Cross plate; 602. First mounting sleeve; 603. Second mounting sleeve; 604. Protruding strip; 7. Lighting unit; 701. First base plate; 702. First arc surface; 703. Main light strip; 704. Secondary light strip; 705. First top rod; 706. Cleaning pipe; 8. Dust suppression unit; 801. Second base plate; 802. Second arc surface; 803. Low-pressure atomizing pipe; 804. High-pressure atomizing pipe. 4; Second top rod 805; Diagonal brace unit 9; Sleeve 901; Support rod 902; First lock head 903; Second lock head 904; Second lock block 905; Second slide groove 906; Ear plate 907; Top plate 10; Camera 11; Ultrasonic wind direction sensor 12; Dust detection sensor 13; Fastening nail 14; Insert rod 15; Nut 16; Lock rod 17; Auxiliary rod 18; Fixed pulley 1801; Anti-detachment rod 1802; Spring 19; Pull rope 20; Cable reel 21; Adapter plate 22; C-shaped plate 2201; Limiting plate 2202; Second oblong groove 2203; Light bulb 23; Roller 24; Embedded sleeve 25; Fixed cylinder 26; Pull rod 27; Telescopic rod 28. Detailed Implementation

[0038] like Figure 1-5 In this invention, a safe and stable intelligent enclosure includes multiple pillars 2 set on one side of a baffle 1. The top of the pillars 2 is equipped with a bracket 3. The pillars 2 and the bracket 3 are fixed to the diagonal bracing unit 9 and the baffle 1 respectively through a synchronous plate 4. The top of the bracket 3 is equipped with a solar panel 5. The top of the baffle 1 is also equipped with a follower plate 6. The follower plate 6 is connected to the bracket 3 through a transition plate 22. The follower plate 6 is equipped with a lighting unit 7 and a dust suppression unit 8.

[0039] As a combination of temporary and permanent structures, pier 2 is constructed first according to the design drawings during the initial construction phase. After the construction is completed, pier 2 is used to install support 3 and baffle 1. Multiple baffles 1 form an enclosing area, and other construction work except for the pier is completed simultaneously within the enclosing area. After the other construction work is completed, the street lights on pier 2 are finally installed. This means that pier 2 can be switched between temporary and permanent structures. This ingenious use improves the convenience of construction. The diagonal bracing unit 9 increases the support strength of baffle 1 and can withstand strong winds. The solar panel 5 set on the top of support 3 provides power support for lighting unit 7 and matching unit 8. Lighting unit 7 can provide sufficient lighting for the outside of baffle 1 at night, improving safety.

[0040] The lighting unit 7 and the dust suppression unit 8 are made of lightweight materials on the follower plate 6, which can act as a counterweight to ensure that the roller 24 moves more smoothly. At the same time, the cantilever design allows for a larger overall working range and better performance.

[0041] In a preferred embodiment, a plurality of horizontal supports 101 and vertical supports 102 are vertically provided on one side of the baffle 1. The horizontal supports 101 are attached to the side wall of the baffle 1, and the synchronization plate 4 and the diagonal support unit 9 are detachably connected to the vertical supports 102.

[0042] The horizontal brace 101 on the inner side of the baffle 1 further enhances the rigidity of the baffle 1. The baffle 1 is made of color steel plate, and the vertical brace 102, together with the horizontal brace 101, forms a grid structure, resulting in stronger overall load-bearing capacity. The vertical brace 102 is located on the outer side of the horizontal brace 101, and also serves as the installation foundation for the synchronous plate 4, facilitating construction. The vertical brace 102 is made of profile with a T-shaped cross-section, which facilitates the installation and locking of the synchronous plate 4 and the diagonal brace unit 11. To ensure convenient installation and overall material conservation, the length of the baffle 1 is an integer multiple of the distance between two adjacent piers 2, preferably twice the length. That is, only two baffles 1 are needed between the four piers to complete the rapid installation.

[0043] In the preferred embodiment, multiple locking plates 303 are arranged parallel to each other on the inner side of the bracket 3, and a first oblong groove 401 is provided in the middle of the synchronization plate 4. Fastening nails 14 are inserted into the locking plates 303 and the first oblong groove 401, and the locking plates 303 are fixed to the synchronization plate 4 by fastening nails 14 and insert rods 15.

[0044] That is, using the pier 2 as a temporary bottom foundation, after fixing the bracket 3, the bracket 3 and the synchronous plate 4 are used as the intermediate connecting parts, and then the baffle 1 and the pier 2 are indirectly fixed by using fastening nails 14. The overall fixing effect is good, the locking is sufficient, and it has a strong ability to cope with external wind disturbance. In other words, the pier 2 is equivalent to taking root at the bottom of the baffle 1 and the ground.

[0045] In the preferred embodiment, the synchronization plate 4 is provided with a first locking block 402 on both sides, and a first sliding groove 403 is provided through the middle of the first locking block 402. The vertical support 102 is located in the first sliding groove 403. The inclined support unit 9 includes a sleeve 901 and a support rod 902. A second locking block 905 is hinged to one side of the support rod 902. A second sliding groove 906 is provided through the middle of the second locking block 905. The vertical support 102 is located in the second sliding groove 906.

[0046] During installation, first insert the fastening nail 8 into the first oblong groove 401 from the side near the baffle 1, and then slide the first locking block 402 into the vertical support 102 from the top or bottom respectively. Since the gap between the synchronous plate 4 and the baffle 1 is small, the fastening nail 8 will not fall out of the gap after the first locking block 402 is installed into the vertical support 102, making the operation stable and convenient.

[0047] like Figure 8-9 In the preferred embodiment, the ends of the sleeve 901 and the support rod 902 are respectively provided with a first lock head 903 and a second lock head 904. The support rod 902 is connected to the sleeve 901 through a telescopic rod 28 and is inserted into the sleeve 901. The two opposite second lock heads 904 are fixed to the pier 2 through a pull rod 27. The outer side of the second locking block 905 is provided with an ear plate 907. The insertion rod 15 is inserted into the ear plate 907 and the first lock head 903. The top of the pier 2 is provided with a fixing cylinder 26, and the pull rod 27 is inserted into the fixing cylinder 26.

[0048] The diagonal bracing units 9 are symmetrically arranged on both sides of the bracket 3. By adjusting the telescopic rod 28, the support rods 902 of the two diagonal bracing units 9 can be adjusted to different lengths. The two support rods 902 have different lengths, thus forming a high-low combination, supporting and locking the baffle 1 at different heights. In this state, there is only one locking state, thereby improving the support effect of the baffle 1. It can only be released in one position, ensuring a firm installation. At the same time, the ultrasonic wind direction sensor 12 installed on the top plate 10 can accurately monitor the wind force and direction. Based on the wind force detection results, the telescopic rod 28 synchronously increases the overall telescopic length, thereby further improving the support stability of the baffle 1. When the state of the telescopic rod 28 is adjusted, the positions of the two support rods 902 relative to the baffle 1 and the support 102 are different, thus adjusting the support force accordingly. This design allows for adaptive adjustment, unlike traditional steel pipe welding methods that result in cumbersome welding work and require multiple placements along the height. This solution, however, only requires two braces to adjust the support force, is easy to manufacture, and allows for flexible replacement of components within the brace unit 9 based on the fence height. This significantly improves construction efficiency for longer fences. After completion, the braces can be easily disassembled and transported. Traditional welded braces are bulky, difficult to store, and have limited adaptability, preventing quick replacement between projects. Their versatility is greatly affected by the project, requiring cutting and secondary welding for different projects, leading to high labor intensity and operating costs.

[0049] like Figure 7 In the preferred embodiment, the support 3 includes a frame 301, a solar panel 5 is installed on the top of the frame 301, a plurality of bases 302 are provided at the bottom of the frame 301, a plurality of embedded sleeves 25 are provided on the pier 2, fastening nails 14 are inserted into the bases 302 and the embedded sleeves 25, and the follower plate 6 is connected to the support 3 through a transition plate 22. The transition plate 22 includes a C-shaped plate 2201 and a limiting plate 2202. Fastening nails 14 and insert rods 15 are respectively inserted into the C-shaped plate 2201. The fastening nails 14 and the C-shaped plate 2201 are threadedly connected, and the insert rods 15 are attached to the side wall of the frame 301.

[0050] During the construction of pier 2, a pre-embedded sleeve 25 is installed. The pre-embedded sleeve 25 has threads, so the bracket 3 can be accurately installed using the pier 2 as a reference. Then, the bracket 3 and pier 2 are locked to the baffle 1 by the synchronous plate and the diagonal brace unit 9, which ensures that the gaps between multiple adjacent baffles 1 are small after installation. At the same time, there are installation holes on the cross brace 101. The two adjacent baffles 1 are also provided with detachable reinforcing ribs. The fastening nails 14 can be directly screwed into the installation holes through the reinforcing ribs (made of plate and drilled). At this time, the two adjacent baffles 1 are effectively connected. Multiple baffles 1 are connected to form a stable enclosure, which ensures the isolation between the construction area and the external environment. The overall isolation effect is good, safe and stable.

[0051] In a preferred embodiment, the top of the baffle 1 is provided with a guide support 103, and the guide support 103 is provided with multiple threaded holes 104. The two sides of the follower plate 6 are respectively connected to the locking rod 17 through springs 19 and pull ropes 20. The locking rod 17 is located in the threaded holes 104. The follower plate 6 is also provided with a winding device 21, and the end of the pull rope 20 is wound around the output shaft of the winding device 21.

[0052] The guide brace 103 serves as the bottom support for the follower plate 6, ensuring smooth movement of the follower plate 6. The locking rod 17 can be installed according to the adjustment range of the follower plate 16, and works with the spring 19 to adjust the elastic force. The winding device 21 contains a motor, which can adjust the length of the pull rope 20 under the action of the motor. In the initial state, both the spring 19 and the pull rope 20 are under tension, and at this time, the follower plate 6 is located at the end of its stroke. When it is necessary to change the position of the follower plate 6, the winding device 21 winds the pull rope 20. When the spring 19 is pulled by the rope, the follower plate 6 gradually moves away from the far end of the spring 19. The follower plate 6 drives the lighting unit 7 and the dust suppression unit 8 to adjust their positions. When the designed position is reached, it is locked. After the operation is completed, when it is necessary to return to the initial position, the reel 21 releases the pull rope 20 in the opposite direction. Under the action of the spring 19, the follower plate 6 gradually moves to the new target position. This is repeated to achieve position adjustment in the lateral direction along the baffle 1, thereby changing the coverage of lighting and dust suppression. It is intelligent, energy-saving and environmentally friendly, and has a good effect.

[0053] like Figure 6In the preferred embodiment, the limiting plate 2202 is provided with a second oblong groove 2203. The follower plate 6 includes a cross plate body 601. The cross plate body 601 is connected to the adapter plate 22 by at least two fastening nails 14 and nuts 16. The fastening nails 14 pass through the cross plate body 601 and the second oblong groove 2203. The bottom of the cross plate body 601 is provided with a protrusion 604. A roller 24 is rotatably provided on the protrusion 604. The roller 24 is attached to the side wall of the guide support 103. The two sides of the follower plate 6 are detachably provided with auxiliary rods 18. A fixed pulley 1801 is sleeved on the auxiliary rod 18. Anti-detachment rods 1802 are provided on both sides of the fixed pulley 1801. The fixed pulley 1801 and the anti-detachment rods 1802 are connected to form a correction gap. The pull rope 20 is passed through the correction gap.

[0054] The guide brace 103 has a T-shaped cross-section, which serves to prevent detachment. The roller 24 is locked from the bottom of the guide brace 103 by means of the protrusion 604, preventing the follower plate 6 and the baffle 1 from separating. The overall movement effect is good, and the relative position between the components can still be kept accurate under the influence of external wind. At the same time, the adapter plate 22 ensures the movement accuracy of the follower plate 6. The bracket 3 and the pier 2 are firmly connected, so that the bracket 3 can ensure that the reference of the pier 2 is consistent with that of the pier 2. The adapter plate 22 can be adjusted in height as needed, and then it serves as a limit for the follower plate 6, and also controls the accuracy of the follower plate 6. The diameter of the fastening nail 14 matches the width of the second oblong groove 2203. When the baffle 1 undergoes slight deformation, the roller 24, in conjunction with the adapter plate 22, can correct the deviation of the baffle 1, thereby ensuring the consistency of the appearance of the baffle 1 and improving the overall performance. The auxiliary rod 18 can effectively limit the pull rope 20, preventing it from detaching from the fixed pulley 1801. The fixed pulley 1801 serves as a guide for the winding of the pull rope 20, ensuring that the pull rope 20 can be wound on the winder 21 according to the designed winding direction and position. It has good reusability, high precision, and ingenious design.

[0055] like Figure 10-18 In the preferred embodiment, the top plate 10 is connected to the middle of the guide support 103 by fastening nails 14. The top plate 10 is equipped with a camera 11 and an ultrasonic wind direction sensor 12. The bottom of the top plate 10 is also equipped with a light bulb 23. The upper part of the dust suppression unit 8 is also equipped with a dust detection sensor 13. The camera 11, ultrasonic wind direction sensor 12 and dust detection sensor 13 are used together to control the working status of the lighting unit 7 and the dust suppression unit 8.

[0056] When the length of baffle 1 is relatively long and supplemental lighting is needed in the middle section of baffle 1, the bulb 23 located at the bottom of the top plate 10 comes into play. The bulb 23 is an energy-saving bulb, providing high illumination brightness and low energy consumption. The camera 11 can identify the flow of people and vehicles passing through during construction, thus guiding the operation of the lighting unit 7 and the dust suppression unit 8. The dust detection sensor 13 is a PM2.5 sensor that can detect PM2.5 values ​​in real time. When the traffic flow is low and there is little dust, the low-pressure atomizing tube 803 is used for dust suppression; when the traffic flow is low and there is a lot of dust, the high-pressure atomizing tube is used. Dust suppression is performed using tube 804. When traffic volume and dust levels are high, low-pressure atomizing tube 803 is used in conjunction with high-pressure atomizing tube 804 for mixed spraying to suppress dust. To further improve the comfort of pedestrians, the tube operates during gaps in pedestrian flow. When pedestrian flow is concentrated, low-pressure atomizing tube 803 operates, and when pedestrian flow is relatively dispersed, high-pressure atomizing tube 804 operates in a point spraying manner. Low-pressure atomizing tube 803 continues to operate until the next wave of concentrated pedestrian flow arrives. This process is repeated to ensure the effectiveness of dust suppression. When the dust detection sensor 13 detects a value within the design range, the dust suppression module stops operating.

[0057] The ultrasonic wind direction sensor 12 can detect wind speed and wind force, and can also be equipped with temperature and humidity sensors as needed. The dust suppression unit 8 can automatically start graded dust suppression according to the dust concentration. The inclined support unit 9 can adjust its own inclined support strength according to the wind force. The lighting unit 7 can also adjust the frequency of warning lights or the brightness of lighting according to the construction status. A controller is installed on the pier 2. The controller is equipped with a data transceiver module and can also be manually controlled through a handheld terminal.

[0058] In a preferred embodiment, the upper and lower sides of the follower plate 6 are respectively provided with a first mounting sleeve 602 and a second mounting sleeve 603. The lighting unit 7 includes a first base plate 701. A first arc surface 702 is provided on one side of the first base plate 701. A main light strip 703 is provided in the first arc surface 702. An auxiliary light strip 704 is provided on the side wall of the first base plate 701. A first push rod 705 is provided on the top of the first base plate 701. The first push rod 705 is inserted into the first mounting sleeve 602. Cleaning pipes 706 are also provided on both sides of the first arc surface 702.

[0059] The dust suppression unit 8 includes a second base plate 801. A second arc surface 802 is provided on one side of the second base plate 801. Low-pressure atomizing tubes 803 and high-pressure atomizing tubes 804 are evenly distributed on the second arc surface 802. A second push rod 805 is provided on the top of the second base plate 801. The second push rod 805 is inserted into the second mounting sleeve 603.

[0060] The main light strip 703 provides illumination, while the auxiliary light strip 704 serves as a warning light that can flash. Therefore, the main light strip 703 and the auxiliary light strip 704 together achieve both illumination and warning functions. For different dust concentrations, the low-pressure atomizing tube 803 and the high-pressure atomizing tube 804 can work together, switching between three states: only the low-pressure atomizing tube 803 works, only the high-pressure atomizing tube 804 works, and both work simultaneously. Simultaneously, the coverage area is adjusted by the follower plate 6. As the follower plate 6 moves, the illumination range also changes, especially in areas with poor nighttime lighting, such as at corners of the enclosure. The movable plate 6 moves closer to the corner to ensure overlapping coverage of the corner lighting, providing safety for passing personnel and vehicles. Since risks often stem from limited visibility, the corners of construction sites are typically the most dangerous areas. This solution effectively addresses this issue at night. Not all construction areas have streetlight coverage at night, and streetlights have set on / off times. This solution avoids the risks associated with areas without streetlights or with incomplete coverage. Furthermore, to address the aforementioned nighttime safety risks, this solution designates the first base plate 701 as concave, thereby increasing the visibility of the main light strip 7. The 0.03 light concentration ensures transparency. To address the safety risks of daytime dust suppression, the second mounting plate 801 is designed with an outward convex shape, thereby increasing the spray range of the low-pressure atomizing tube 803 and the high-pressure atomizing tube 804. The high-pressure atomizing tube 804 has a larger spray coverage distance and relatively higher spray pressure, using a straight spray pattern. The low-pressure atomizing tube 804 has a larger spray coverage area and relatively lower spray pressure, using a fan-shaped spray pattern. This means the low-pressure atomizing tube 803 can better fill the gaps between the high-pressure atomizing tube 804, and simultaneously sweep under the action of the follower plate 6, ensuring that dust near the enclosure is quickly removed. During construction, dust inside the enclosure will be swept away by the wind... The dust is dispersed randomly and unpredictably under the influence of airflow. Therefore, the above-mentioned setup ensures the dust reduction effect. In non-construction scenarios, when there is a large amount of dust in the air and no construction is underway, this solution can still play a role in dust reduction, ensuring the comfort of passersby. At the same time, it saves water. A water tank with a pressure pump is installed on one side of the pier 2. In addition, since dust coverage is unavoidable, cleaning pipes 706 are also installed on both sides of the first seat plate 701. Due to the concave structure, the water flow sprays around the first arc surface 702 to clean the main light strip 703. The effect is good. The corresponding main light strip 703 is an insulated plastic-sealed light strip.

[0061] The above embodiments are merely preferred technical solutions of the present invention and should not be considered as limitations on the present invention. The scope of protection of the present invention should be limited to the technical solutions described in the claims, including equivalent substitutions of the technical features described in the claims. That is, equivalent substitutions and improvements within this scope are also within the scope of protection of the present invention.

Claims

1. A safe and stable intelligent fencing, characterized by: It includes multiple piers (2) set on one side of the baffle (1), the top of the piers (2) is provided with a bracket (3), the piers (2) and the bracket (3) are fixed to the diagonal bracing unit (9) and the baffle (1) respectively through the synchronous plate (4), the top of the bracket (3) is provided with a solar panel (5), the top of the baffle (1) is also provided with a follower plate (6), the follower plate (6) is connected to the bracket (3) through the adapter plate (22), and the follower plate (6) is provided with a lighting unit (7) and a dust suppression unit (8); The bracket (3) includes a frame (301), a solar panel (5) is set on the top of the frame (301), a number of bases (302) are provided at the bottom of the frame (301), a number of embedded sleeves (25) are provided on the pier (2), fastening nails (14) are inserted into the bases (302) and the embedded sleeves (25), and the follower plate (6) is connected to the bracket (3) through the adapter plate (22). The adapter plate (22) includes a C-shaped plate (2201) and a limiting plate (2202). Fastening nails (14) and insert rods (15) are respectively inserted on the C-shaped plate (2201). The fastening nails (14) and the C-shaped plate (2201) are threaded together, and the insert rods (15) are attached to the side wall of the frame (301). The top of the baffle (1) is provided with a guide support (103), and the guide support (103) is provided with multiple threaded holes (104). The two sides of the follower plate (6) are connected to the locking rod (17) by springs (19) and pull ropes (20) respectively. The locking rod (17) is located in the threaded holes (104). The follower plate (6) is also provided with a winding device (21). The end of the pull rope (20) is wound around the output shaft of the winding device (21). A second oblong groove (2203) is provided through the limiting plate (2202). The follower plate (6) includes a cross plate body (601). The cross plate body (601) is connected to the adapter plate (22) by at least two fastening nails (14) and nuts (16). The fastening nails (14) are inserted into the cross plate body (601) and the second oblong groove (2203). A protrusion (604) is provided at the bottom of the cross plate body (601). Rollers (24) are provided on the rotating part of the guide support (103). The rollers (24) are attached to the side wall of the guide support (103). The two sides of the follower plate (6) are also provided with auxiliary rods (18). Fixed pulleys (1801) are sleeved on the auxiliary rods (18). Anti-detachment rods (1802) are provided on both sides of the fixed pulleys (1801). The fixed pulleys (1801) and anti-detachment rods (1802) are connected to form a correction gap. The pull rope (20) is threaded through the correction gap.

2. The safe and stable intelligent fence according to claim 1, characterized in that: A number of horizontal supports (101) and vertical supports (102) are vertically provided on one side of the baffle (1). The horizontal supports (101) are attached to the side wall of the baffle (1). The synchronous plate (4) and the diagonal support unit (9) are detachably connected to the vertical supports (102).

3. The safe and stable intelligent fence according to claim 2, characterized in that: Multiple locking plates (303) are provided parallel to each other on the inner side of the bracket (3). A first oblong groove (401) is provided in the middle of the synchronization plate (4). Fastening nails (14) are inserted into the locking plates (303) and the first oblong groove (401). The locking plates (303) are fixed to the synchronization plate (4) by fastening nails (14) and insert rods (15).

4. The safe and stable intelligent fence according to claim 2, characterized in that: The synchronous plate (4) is provided with a first locking block (402) on both sides. The first locking block (402) is provided with a first sliding groove (403) through the middle. The vertical support (102) is located in the first sliding groove (403). The inclined support unit (9) includes a sleeve (901) and a support rod (902). A second locking block (905) is hinged on one side of the support rod (902). A second sliding groove (906) is provided through the middle of the second locking block (905). The vertical support (102) is located in the second sliding groove (906).

5. The safe and stable intelligent fence according to claim 4, characterized in that: The sleeve (901) and the support rod (902) are respectively provided with a first lock head (903) and a second lock head (904). The support rod (902) is connected to the sleeve (901) through the telescopic rod (28). The support rod (902) is inserted into the sleeve (901). The two opposite second lock heads (904) are fixed to the pier (2) through the pull rod (27). The outer side of the second lock block (905) is provided with an ear plate (907). The insertion rod (15) is inserted into the ear plate (907) and the first lock head (903). The top of the pier (2) is provided with a fixing cylinder (26). The pull rod (27) is inserted into the fixing cylinder (26).

6. The safe and stable intelligent fence according to claim 1, characterized in that: The top plate (10) is connected to the middle of the guide support (103) by fastening nails (14). The top plate (10) is equipped with a camera (11) and an ultrasonic wind direction sensor (12). The bottom of the top plate (10) is also equipped with a light bulb (23). The upper part of the dust suppression unit (8) is also equipped with a dust detection sensor (13). The camera (11), ultrasonic wind direction sensor (12) and dust detection sensor (13) work together to control the working status of the lighting unit (7) and the dust suppression unit (8).

7. The safe and stable intelligent fence according to claim 6, characterized in that: The upper and lower sides of the follower plate (6) are respectively provided with a first mounting sleeve (602) and a second mounting sleeve (603). The lighting unit (7) includes a first base plate (701). A first arc surface (702) is provided on one side of the first base plate (701). A main light strip (703) is provided in the first arc surface (702). A secondary light strip (704) is provided on the side wall of the first base plate (701). A first top rod (705) is provided on the top of the first base plate (701). The first top rod (705) is inserted into the first mounting sleeve (602). Cleaning pipes (706) are also provided on both sides of the first arc surface (702). The dust suppression unit (8) includes a second base plate (801), a second arc surface (802) is provided on one side of the second base plate (801), low-pressure atomizing tubes (803) and high-pressure atomizing tubes (804) are evenly distributed on the second arc surface (802), and a second top rod (805) is provided on the top of the second base plate (801), and the second top rod (805) is inserted into the second mounting sleeve (603).

Citation Information

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