Construction method of fence for field intelligent control

By using intelligently controlled fence construction methods at the construction site, using pier columns and multiple unit components, the problems of complexity and poor stability of traditional fence construction are solved, intelligent control and dust reduction effects are achieved, and construction safety and efficiency are improved.

CN119981442AActive Publication Date: 2025-05-13THE FIRST CONSTRUCTION COMPANY OF CCCC SECOND HARBOR ENGINEERING CO LTD +1
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Patent Information

Application Number
CN202510305631.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-05-13
Estimated Expiration
2045-03-14

AI Technical Summary

Technical Problem

Traditional fence construction methods are complex, have poor support stability, and are difficult to achieve intelligent control, which affects construction safety and efficiency.

Method used

A fence construction method for intelligent control on site is adopted. The pier column is used as the foundation to install brackets, baffles, synchronization plates, oblique support units, lighting units and dust reduction units, and intelligent control is used with dust detection sensors, cameras and ultrasonic wind direction sensors.

Benefits of technology

It improves the stability and construction safety of the fence, realizes intelligent control and dust reduction effects, and improves construction efficiency and project image.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a construction method of a fence for field intelligent control. The construction method comprises the following steps that S1, pier column positioning and construction pouring are completed; s2, a baffle is manufactured, and a support is manufactured; s3, the support is installed on the pier column; s4, mounting a synchronous plate and an inclined strut unit on the baffle, and fixing the synchronous plate and the inclined strut unit on the bracket and the pier column; s5, different inclined strut units are adjusted to form high-low matching; s6, installing an adapter plate and a solar panel, and installing a follower plate on the adapter plate; s7, the follower plate is connected with the top of the baffle through a lock rod, an auxiliary rod, a spring, a pull rope and a winder; s8, adjusting the position of the follower plate in the step S7; s9, mounting a roller on the follower plate; s10, the lighting unit and the dust falling unit are installed on the follower plate; s11, debugging the state of each electric component; and S12, the ends of every two adjacent baffles are fixed. The installation efficiency of the fence can be improved, meanwhile, intelligent control is achieved, and safety and stability of construction are guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of engineering construction, and in particular to a construction method of an enclosure for on-site intelligent control. Background Art

[0002] During the construction process of various engineering projects such as building construction and water conservancy project construction, construction fences, as a common and key facility, are widely used around construction sites. Their main function is to isolate the construction area from the surrounding environment to ensure the safety of construction workers and the public and prevent unrelated personnel from entering the construction site. At the same time, it can effectively prevent the pollution of the surrounding environment by dust, noise, sewage, etc. during the construction process, reduce the impact on surrounding residents and the environment, and 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 image of the project.

[0003] In terms of installation, the installation process of traditional enclosures is complicated, requiring detailed site surveys and calculations, and the selection and matching of materials. Each step must be accurately operated, which is time-consuming and labor-intensive, affecting the construction progress. In terms of support stability, the enclosures are prone to loosening, deformation, or even collapse due to severe weather such as strong winds and heavy rains, as well as collisions between vehicles and personnel at the construction site, threatening construction safety. In terms of lighting function, at night or when there is insufficient light, unlit enclosures are difficult to detect in time, which can easily cause collisions between pedestrians and vehicles, and is not conducive to construction personnel observing the enclosure situation and troubleshooting hidden dangers.

[0004] Chinese patent document CN 105696851 A records a fully prefabricated assembled construction enclosure and a construction method thereof, but the enclosure support adjustment is limited, and the lighting and dust reduction conditions cannot be adjusted according to the external environment; Chinese patent document CN107700932 A records a construction method and enclosure module for an enclosure with a dust detection spray device, but the enclosure module cannot automatically reduce dust, has defects in use, and needs to be improved. Summary of the invention

[0005] The present invention provides a construction method for enclosures with on-site intelligent control, which solves the technical problems of inconvenient enclosure construction and poor use effect.

[0006] In order to solve the above technical problems, the technical solution adopted by the present invention is: a construction method for enclosures with on-site intelligent control, comprising the following steps: S1. Complete the positioning and pouring of piers according to the design drawings; S2, making baffles according to the arrangement spacing of the multiple piers in S1, and making brackets according to the height of the baffles; S3, after the construction of the pier in S1 is completed, install the bracket on the pier; S4, sequentially install the synchronous plate and the diagonal bracing unit on the baffle, and fix the synchronous plate and the diagonal bracing unit to the bracket and the pier column respectively; S5. Adjust the states of the telescopic rods on different diagonal bracing units to form high and low combinations at different heights; S6. Install an adapter plate and a solar panel on the upper part of the bracket, and install a follower plate on the adapter plate; S7, connecting the follower plate to the top of the baffle through the locking rod, the auxiliary rod, the spring, the pull rope and the reel; S8, adjust the position of the follower plate in S7 to ensure that the spring and the pull rope are under stress; S9. Install the roller on the follower plate, and ensure that the roller fits on the outer side of the baffle; S10, installing the lighting unit and the dust reduction unit on the follower plate, installing a dust detection sensor on the top of the dust reduction unit, installing a top plate in the middle of the top of the baffle, and installing a camera, an ultrasonic wind direction sensor and a light bulb on the top plate; S11. Debug the status of each electrical component and position it according to the design; S12. Fix the ends of two adjacent baffles.

[0007] In the preferred solution, the installation of the embedded sleeve and the fixed tube is completed during the production process of the pier in S1, in S3, the bracket is connected to the embedded sleeve by fastening nails, and in S4, the diagonal bracing unit is connected to the baffle by a pull rod, and the pull rod is inserted into the fixed tube.

[0008] In the preferred solution, when making the baffle in S2, multiple parallel horizontal braces are first welded on the inner side of the skin, and then the multiple horizontal braces are connected using vertical braces. At the same time, guide braces are installed on the horizontal braces on either side of the skin, and threaded holes are made on the guide braces.

[0009] In a preferred solution, fastening nails are inserted into the base at the bottom of the bracket, and the fastening nails are screwed into the embedded sleeve for locking. The locking plate inside the frame is connected to the synchronization plate through the fastening nails and nuts. In S6, the solar panel is installed on the top of the frame.

[0010] In a preferred solution, the fastening nail is first inserted into the first waist groove, and then the first sliding grooves of the two first locking blocks of the synchronous plate are aligned with the vertical support and slid in, and the position of the fastening nail is adjusted to align with the locking plate for locking.

[0011] In the preferred solution, the sleeve and the support rod on the diagonal support unit are adjusted from a retracted state to an extended state, the first lock at the end of the sleeve is connected to the fixed tube through a pull rod, the second lock at the end of the support rod is hinged through the insert rod and the second locking block on the second slide groove, the position of the second slide groove is adjusted, the ear plate on the second slide groove is aligned with the vertical support and slides in.

[0012] In the preferred scheme, in S6, the adapter plate is fixed to the inner side of the bracket by fastening nails and insertion rods, and the structure of the adapter plate is: the adapter plate includes a C-shaped plate and a limit plate, the limit plate is penetrated by a second waist circular groove, the fastening nails and the insertion rod are passed through the C-shaped plate, and the bracket is attached to the inner side of the C-shaped plate; the structure of the follower plate is: the follower plate includes a cross plate body, the bottom of the cross plate body is provided with a convex strip, the roller is rotatably arranged on the convex strip, and the first mounting sleeve and the second mounting sleeve are respectively arranged on the upper and lower sides of the cross plate body, the lighting unit is connected to the first mounting sleeve, and the dust reduction unit is connected to the second mounting sleeve.

[0013] In the preferred scheme, in S7, the height of the auxiliary rod is adjusted, and the structure of the auxiliary rod is: a fixed pulley is provided on the auxiliary rod, and anti-slip rods are provided on both sides of the fixed pulley, and the fixed pulley and the anti-slip rod are connected to form a correction gap, and the pull rope is passed through the correction gap.

[0014] In a preferred embodiment, the structure of the lighting unit is as follows: the lighting unit includes a first seat plate, a first arc surface is provided on one side of the first seat plate, a main light strip is provided in the first arc surface, a secondary light strip is provided on the side wall of the first seat plate, a first top rod is provided on the top of the first seat plate, the first top rod is inserted in the first mounting sleeve, and cleaning pipes are also provided on both sides of the first arc surface.

[0015] In a preferred embodiment, the structure of the dust reduction unit is as follows: the dust reduction unit includes a second seat plate, a second arc surface is provided on one side of the second seat plate, low-pressure atomization tubes and high-pressure atomization tubes are evenly spaced on the second arc surface, and a second push rod is provided on the top of the second seat plate, and the second push rod is inserted in the second mounting sleeve.

[0016] The beneficial effects of the present invention are as follows: the cast concrete piers are used as the foundation to firmly install the baffles, ensuring the stability of the enclosure, the overall rigid connection, and the strong supporting force. At the same time, the lighting unit and the dust reduction unit can also be intelligently controlled according to the changes in the environment through the detection of the camera, ultrasonic wind direction sensor, and dust detection sensor. It can also play the role of counterweight, ensuring that the environment within a certain range of the construction enclosure is improved and the safety of construction is improved. The piers of this solution are combined as permanent structures to provide an installation foundation for the enclosure during the initial construction. After the enclosure is dismantled after the construction is completed, it serves as the bottom fixed structure of the designed and constructed street lamp, ensuring the efficiency of the construction. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described below in conjunction with the accompanying drawings and embodiments: Figure 1 The overall structure of the present invention is shown in FIG. Figure 1 ; Figure 2 yes Figure 1 A rear view schematic diagram of Figure 3 yes Figure 1 A front view schematic diagram of Figure 4 yes Figure 1 Schematic diagram of top view; Figure 5 yes Figure 1 Schematic diagram of the left side; Figure 6 yes Figure 5 A magnified schematic diagram of point A; Figure 7 The overall structure of the present invention is shown in FIG. Figure 2 ; Figure 8 yes Figure 1 Schematic diagram of the explosion structure Figure 1 ; Fig. 9 yes Figure 8 An enlarged schematic diagram of point B; Fig.10 yes Figure 1 Schematic diagram of the explosion structure Figure 2 ; Fig.11 yes Fig.10 An enlarged schematic diagram of point C; Fig.12 yes Figure 1 Schematic diagram of the explosion structure Figure 3 ; Fig.13 yes Fig.12 An enlarged schematic diagram of point D; Fig.14 yes Figure 1 Schematic diagram of the explosion structure Figure 4 ; Fig.15 yes Fig.12 An enlarged schematic diagram of point E; Fig.16 This is a schematic diagram of the installation of the lighting unit and the dust reduction unit of the present invention. Figure 1 ; Fig.17 yes Fig.16 An enlarged schematic diagram of point F; Fig.18 This is a schematic diagram of the installation of the lighting unit and the dust reduction unit of the present invention. Figure 2 ; Fig.19 It is a schematic diagram of the initial skinning state of the baffle of the present invention; Fig. 20 yes Fig.19 Schematic diagram of the skin installation cross brace state; Fig.21 yes Fig. 20 Schematic diagram of the skin installation horizontal brace and vertical brace state; Fig. 22 yes Fig.21 Schematic diagram of the skin installation status of horizontal braces, vertical braces and guide braces.

[0018] In the figure: baffle 1; horizontal support 101; vertical support 102; guide support 103; threaded hole 104; skin 105; pier 2; bracket 3; frame 301; base 302; lock plate 303; synchronous plate 4; first waist groove 401; first locking block 402; first slide groove 403; solar panel 5; follower plate 6; cross plate 601; first mounting sleeve 602; second mounting sleeve 603; convex strip 604; lighting unit 7; first seat plate 701; first arc surface 702; main light strip 703; auxiliary light strip 704; first top rod 705; cleaning pipe 706; dust suppression unit 8; second seat plate 801; second arc surface 802; low pressure atomization pipe 803; high pressure atomization pipe Tube 804; second top rod 805; diagonal support unit 9; sleeve 901; support rod 902; first lock 903; second lock 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; insertion rod 15; nut 16; locking rod 17; auxiliary rod 18; fixed pulley 1801; anti-slip rod 1802; spring 19; pull rope 20; reel 21; adapter plate 22; C-shaped plate 2201; limit plate 2202; second waist round groove 2203; bulb 23; roller 24; embedded sleeve 25; fixing tube 26; pull rod 27; telescopic rod 28. DETAILED DESCRIPTION

[0019] like Figure 1-7 A construction method for a fence for on-site intelligent control includes the following steps: S1. Positioning and pouring of pier 2 are completed according to the design drawings; S2, manufacturing a baffle 1 according to the arrangement spacing of the plurality of piers 2 in S1, and manufacturing a bracket 3 according to the height of the baffle 1; S3, after the construction of the pier 2 in S1 is completed, the bracket 3 is installed on the pier 2; S4, sequentially install the synchronous plate 4 and the diagonal bracing unit 9 on the baffle 1, and fix the synchronous plate 4 and the diagonal bracing unit 9 to the bracket 3 and the pier 2 respectively; S5, adjusting the states of the telescopic rods 28 on different diagonal bracing units 9, so as to form high and low combinations at different heights; S6, installing the adapter plate 22 and the solar panel 5 on the upper part of the bracket 3, and installing the follower plate 6 on the adapter plate 22; S7, connecting the follower plate 6 to the top of the baffle 1 through the locking rod 17, the auxiliary rod 18, the spring 19, the pull rope 20 and the reel 21; S8, adjust the position of the follower plate 6 in S7 to ensure that the spring 19 and the pull rope 20 are in a stressed state; S9, installing the roller 24 on the follower plate 6, and ensuring that the roller 24 is in contact with the outer side of the baffle 1; S10, installing the lighting unit 7 and the dust reduction unit 8 on the follower plate 6, and installing a dust detection sensor 13 on the top of the dust reduction unit 8, installing a top plate 10 at the middle position of the top of the baffle 1, and installing a camera 11, an ultrasonic wind direction sensor 12 and a light bulb 23 on the top plate 10; S11. Debug the status of each electrical component and position it according to the design; S12, fixing the ends of two adjacent baffles 1.

[0020] As a combination of permanent and temporary structures, the pier 2 is constructed first according to the design drawings at the beginning of the construction. After the construction is completed, the pier 2 is used to install the bracket 3 and the baffle 1. Multiple baffles 1 form an enclosed area. Other construction work except the pier is completed synchronously in the enclosed area. After other construction work is completed, the street lamp construction on the pier 2 is finally completed, that is, the pier 2 is switched between the temporary and permanent structures. The clever use improves the convenience of construction. The diagonal brace unit 9 improves the support strength of the baffle 1 and can cope with the strong wind disturbance. The solar panel 5 set on the top of the bracket 3 provides power support for the lighting unit 7 and the symmetrical unit 8. The lighting unit 7 can provide sufficient lighting for the outer side of the baffle 1 at night to improve safety. The solar panel 5 set on the top of the bracket 3 is electrically connected to each electrical component. Through the above steps, the pier 2 and the bracket 3 are respectively fixed to the diagonal brace unit 9 and the baffle 1 through the synchronous plate 4, and then the follower plate 6 is adjusted to ensure that it works smoothly and without jamming.

[0021] like Figure 8-9 In the preferred scheme, the installation of the embedded sleeve 25 and the fixed tube 26 is completed during the production process of the pier 2 in S1, in S3, the bracket 3 is connected to the embedded sleeve 25 through the fastening nail 14, and in S4, the diagonal bracing unit 9 is connected to the baffle 1 through the pull rod 27, and the pull rod 27 is inserted into the fixed tube 26.

[0022] When the pier 2 is constructed, the embedded sleeve 25 is set. The embedded sleeve 25 is provided with a thread. Therefore, the bracket 3 can be accurately installed using the reference of the pier 2, and then the bracket 3 and the pier 2 are respectively locked to the baffle 1 by the synchronous plate and the diagonal brace unit 9, ensuring that after the installation of multiple adjacent baffles 1, the gap between them is small. In S12, in order to ensure that the two adjacent baffles 1 are firmly installed, a mounting hole is provided on the cross brace 101 at the same time, and a reinforcing rib is detachably provided between the two adjacent baffles 1, which can be directly passed through the reinforcing rib (made of a plate and punched) by a fastening nail 14 and screwed into the mounting hole. At this time, the two adjacent baffles 1 are effectively connected, and multiple baffles 1 are connected to form a stable enclosure, which ensures the isolation of the construction area and the external environment. The overall isolation effect is good, safe and stable. In order to ensure the convenience of installation and the saving of overall materials, the length of the baffle 1 is an integer multiple of the spacing between the two adjacent piers 2, and preferably twice, that is, only two baffles 1 are needed between four piers to complete the quick installation.

[0023] like Figure 19-22 In the preferred scheme, when the baffle 1 is manufactured in S2, a plurality of parallel horizontal braces 101 are first welded on the inner side of the skin 105, and then the plurality of horizontal braces 101 are connected by vertical braces 102. At the same time, a guide brace 103 is installed on the horizontal brace 101 on either side of the skin 105, and a threaded hole 104 is manufactured on the guide brace 103.

[0024] The horizontal brace 101 on the inner side of the baffle 1 can further improve the rigidity of the baffle 1. The skin 105 is made of color steel plate. The vertical brace 102 cooperates with the horizontal brace 101 to form a grid structure, and the overall bearing capacity is stronger. The vertical brace 102 is arranged on the outside of the horizontal brace 101. At the same time, the vertical brace 102 serves as the installation basis of the synchronous plate 4, and the construction is convenient. The vertical brace 102 is made of profiles with a T-shaped cross-section, which is convenient for the installation and locking of the synchronous plate 4 and the diagonal brace unit 11.

[0025] The guide support 103 has a T-shaped cross section, which plays an anti-slip effect. The roller 24 is locked from the lower part of the guide support 103 by means of the convex strip 604, which prevents the follower plate 6 and the baffle 1 from detaching. The overall movement effect is good, and the relative position between the components can still be guaranteed to be accurate under the influence of external wind. At the same time, the adapter plate 22 is used as a guarantee of 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 the benchmark unity with the pier 2, and the adapter plate 22 can adjust its own height as needed, and then serve as a limit for the follower plate 6, and also control the accuracy of the follower plate 6. The diameter of the fastening nail 14 matches the width of the second waist groove 2203. When the baffle 1 is slightly deformed, the roller 24 cooperates with the adapter plate 22 to correct the baffle 1, thereby ensuring the appearance consistency of the baffle 1 and improving the overall use effect. The auxiliary rod 18 can effectively limit the pull rope 20 and prevent the pull rope 20 from escaping from the fixed pulley 1801. The fixed pulley 1801 serves as a guide for the pull rope 20 to be wound on the reel 21, ensuring that the pull rope 20 can be wound on the reel 21 according to the designed winding direction and position, with good reuse effect, high precision and ingenious design.

[0026] The top plate 10 is fixed by fastening nails 14 and guide supports 103, the camera 11 and the ultrasonic wind direction sensor 12 are arranged on the top plate 10, the light bulb 23 is arranged at the bottom of the top plate 10, and the dust detection sensor 13 is arranged on the upper side of the dust reduction unit 8. The camera 11, the ultrasonic wind direction sensor 12 and the dust detection sensor 13 are used together to control the working status of the lighting unit 7 and the dust reduction unit 8.

[0027] When the baffle 1 is long and the middle part of the baffle 1 needs to be supplemented with lighting, the light bulb 23 arranged at the bottom of the top plate 10 comes into play. The light bulb 23 adopts an energy-saving lamp with high lighting brightness and low energy consumption. The camera 11 can identify the remaining traffic flow of people and vehicles during the construction, thereby guiding the work of the lighting unit 7 and the dust reduction unit 8. The dust detection sensor 13 adopts a PM2.5 sensor, which can detect the PM2.5 value in real time. When the traffic flow is small and the dust is small, a low-pressure atomization tube 803 is used for dust reduction; when the traffic flow is small and the dust is large, a high-pressure atomization tube is used. 804 is used for dust reduction; when the traffic volume is large and the dust is heavy, a low-pressure atomizing tube 803 is used in combination with a high-pressure atomizing tube 804 for mixed spraying to reduce dust. In order to further improve the comfort of passers-by, the gaps between people flow are used to work. When the flow of people is concentrated, the low-pressure atomizing tube 803 is used to work. When the flow of people is relatively scattered, the high-pressure atomizing tube 804 works in a point spraying manner. The low-pressure atomizing tube 803 keeps working until the next wave of concentrated flow of people arrives. This is repeated to ensure the effect of dust reduction. When the dust detection sensor 13 detects that the value reaches the design range, the dust reduction module stops working.

[0028] In the preferred solution, a fastening nail 14 is passed through the base 302 at the bottom of the bracket 3, and the fastening nail 14 is screwed into the embedded sleeve 25 for locking. The locking plate 303 on the inner side of the frame 301 is connected to the synchronization plate 4 through the fastening nail 14 and the nut 16. In S6, the solar panel 5 is installed on the top of the frame 301.

[0029] The pier 2 is used as a temporary bottom foundation. After the bracket 3 is fixed, the bracket 3 and the synchronization plate 4 are used as the middle connecting parts, and then the baffle 1 and the pier 2 are indirectly fixed using the fastening nails 14. The overall fixing effect is good, the locking is sufficient, and it has a strong ability to cope with external wind disturbances. That is, the pier 2 is equivalent to taking root at the bottom of the baffle 1 and the ground.

[0030] In the preferred solution, the fastening nail 14 is first inserted into the first waist groove 401, and then the first sliding grooves 403 of the two first locking blocks 402 of the synchronization plate 4 are aligned with the vertical support 102 and slid in, and the position of the fastening nail 14 is adjusted to align with the locking plate 303 for locking.

[0031] Since the gap between the synchronization plate 4 and the baffle plate 1 is small, after the first locking block 402 is installed on the vertical support 102, the fastening nail 8 will not fall out of the gap, and the operation is stable and convenient.

[0032] like Figure 10-18 In the preferred embodiment, the sleeve 901 and the support rod 902 on the diagonal support unit 9 are adjusted from a retracted state to an extended state, the first lock 903 at the end of the sleeve 901 is connected to the fixed tube 26 through a pull rod 27, the second lock 904 at the end of the support rod 902 is hinged through the insertion rod 15 and the second locking block 905 on the second slide groove 906, the position of the second slide groove 906 is adjusted, and the ear plate 907 on the second slide groove 906 is aligned with the vertical support 102 and slides in.

[0033] The structure of the diagonal bracing unit 9 is as follows: the ends of the sleeve 901 and the support rod 902 are respectively provided with a first lock 903 and a second lock 904, the support rod 902 is connected to the sleeve 901 through a telescopic rod 28, the support rod 902 is inserted in the sleeve 901, and the two opposite second locks 904 are fixed by a pull rod 27 and the pier 2, an ear plate 907 is provided on the outer side of the second locking block 905, the insertion rod 15 is inserted in the ear plate 907 and the first lock 903, and a fixing tube 26 is provided on the top of the pier 2, and the pull rod 27 is inserted in the fixing tube 26.

[0034] The diagonal bracing units 9 are symmetrically arranged on both sides of the bracket 3. The support rods 902 of the two diagonal bracing units 9 are adjusted to different lengths by adjusting the telescopic rod 28. The two support rods 902 have different lengths, thereby forming a high and low combination, and supporting and locking the baffle 1 at different heights. In this state, there is only one locking state, thereby improving the supporting effect of the baffle 1, and it can only be released at a unique position, and is firmly installed. At the same time, the ultrasonic wind direction sensor 12 arranged on the top plate 10 can accurately monitor the wind force and direction. The telescopic rod 28 simultaneously increases the overall telescopic length according to the wind force detection result, thereby further improving the supporting 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, so that the supporting force is adjusted accordingly. , which plays a role of adaptive adjustment. The diagonal brace installed by traditional steel pipe welding does not have the above function. The overall welding work is troublesome and needs to be arranged in multiple positions in the height direction. The present solution only needs two diagonal braces to complete the adjustment of the supporting force, which is easy to make. At the same time, the components of the diagonal brace unit 9 can be replaced according to the height of the enclosure. The operation is flexible and can significantly improve the construction efficiency for the construction of longer enclosures. After the later construction is completed, it can also be stored and disassembled for easy transportation. The traditional diagonal brace fixed by welding is bulky and inconvenient to store. At the same time, its adaptability is limited and it cannot be quickly replaced between multiple projects. Its versatility is greatly affected by the project. Cutting and secondary welding are required for different projects, which is labor-intensive and has high cost.

[0035] In the preferred scheme, in S6, the adapter plate 22 is fixed to the inner side of the bracket 3 by means of fastening nails 14 and insertion rods 15, and the structure of the adapter plate 22 is as follows: the adapter plate 22 includes a C-shaped plate 2201 and a limiting plate 2202, and the limiting plate 2202 is penetrated by a second waisted groove 2203, the fastening nails 14 and the insertion rods 15 are passed through the C-shaped plate 2201, and the bracket 3 is attached to the inner side of the C-shaped plate 2201; the structure of the follower plate 6 is as follows: the follower plate 6 includes a cross plate body 601, and a convex strip 604 is provided at the bottom of the cross plate body 601, and the roller 24 is rotatably arranged on the convex strip 604, and a first mounting sleeve 602 and a second mounting sleeve 603 are respectively provided on the upper and lower sides of the cross plate body 601, the lighting unit 7 is connected to the first mounting sleeve 602, and the dust reduction unit 8 is connected to the second mounting sleeve 603.

[0036] During installation, the fastening nail 14 and the C-shaped plate 2201 are threadedly connected, and the insertion rod 15 is fitted on the side wall of the frame 301, ensuring that the height of the adapter plate 22 can be flexibly adjusted as needed. At the same time, the overall installation is firm and fully stressed. The top of the adapter plate 22 remains in the same plane as the top surface of the guide plate 103 of the baffle 1, thereby facilitating the movement of the follower plate 6.

[0037] In the preferred scheme, in S7, the height of the auxiliary rod 18 is adjusted, and the structure of the auxiliary rod 18 is: a fixed pulley 1801 is provided on the auxiliary rod 18, and anti-slip rods 1802 are respectively provided on both sides of the fixed pulley 1801, and the fixed pulley 1801 and the anti-slip rod 1802 are connected to form a correction gap, and the pull rope 20 is passed through the correction gap.

[0038] The guide support 103 serves as the bottom support of the follower plate 6, ensuring the smooth movement of the follower plate 6. The lock rod 17 can be installed according to the adjustment range of the follower plate 16, and the elastic force can be adjusted in cooperation with the spring 19. A motor is provided in the reel 21, and the reel 21 can adjust the length of the pull rope 20 under the action of the motor. In the initial state, the spring 19 and the pull rope 20 are both in a stressed state, and the follower plate 6 is at the end point of the stroke. When the position of the follower plate 6 needs to be changed, the pull rope 20 is wound through the reel 21. , the spring 19 is pulled, and 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 reduction unit 8 to adjust their positions. When they reach the designed position, they are locked. After the operation is completed, when it is necessary to restore to the initial position, the reel 21 releases the pull rope 20 in the reverse direction. The follower plate 6 gradually moves to the new target position under the action of the spring 19, and this is repeated, thereby realizing the adjustment of the position in the lateral direction of the baffle 1, thereby changing the coverage of lighting and dust reduction, which is intelligent, energy-saving and environmentally friendly, and has a good use effect.

[0039] In the preferred scheme, the structure of the lighting unit 7 is as follows: the lighting unit 7 includes a first seat plate 701, a first arc surface 702 is provided on one side of the first seat 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 seat plate 701, a first top rod 705 is provided on the top of the first seat plate 701, the first top rod 705 is inserted in the first mounting sleeve 602, and cleaning pipes 706 are also provided on both sides of the first arc surface 702.

[0040] In the preferred scheme, the structure of the dust reduction unit 8 is: the dust reduction unit 8 includes a second seat plate 801, a second arc surface 802 is provided on one side of the second seat plate 801, low-pressure atomization tubes 803 and high-pressure atomization tubes 804 are evenly spaced on the second arc surface 802, and a second top rod 805 is provided on the top of the second seat plate 801, and the second top rod 805 is inserted in the second mounting sleeve 603.

[0041] The lighting unit 7 and the dust suppression unit 8 are respectively made of lightweight materials on the follower plate 6, which can play the role of counterweight, ensuring that the roller 24 moves more smoothly. At the same time, the cantilever setting is adopted, the overall working range is larger, and the use effect is better.

[0042] The main light strip 703 provides lighting, and the auxiliary light strip 704 is a warning light that can flash. Therefore, the main light strip 703 cooperates with the auxiliary light strip 704 to achieve the functions of lighting and warning. For different dust concentrations, the low-pressure atomization tube 803 and the high-pressure atomization tube 804 can cooperate with each other to switch between three states: only the low-pressure atomization tube 803 works, only the high-pressure atomization tube 804 works, and the low-pressure atomization tube 803 and the high-pressure atomization tube 804 work at the same time. At the same time, driven by the follower plate 6, the coverage range is adjusted. When the follower plate 6 moves, the lighting range also changes. Especially for areas with poor light at night, at the corners of the enclosure, by The movable plate 6 is moved closer to the corner side to ensure that the lighting at the corner is overlapped and covered, providing safety guarantee for the passing personnel and vehicles. Since the risk is often due to the limitation of vision, the corner of the enclosure is also the place with the greatest risk. This solution can better solve the above problem at night. Therefore, not all construction areas are covered by street lights at night, and the on and off time of the street lights is set. This solution avoids the risk of no street lights or incomplete coverage of street lights. It should be further pointed out that in view of the above-mentioned safety risks at night, this solution sets the first seat plate 701 to a concave shape, thereby improving the main light strip 7 03's focusing degree ensures permeability, and in view of the safety risk of daytime dust fall, the second seat plate 801 is set to be convex, 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, a relatively large spray pressure, and adopts linear spraying, while the low-pressure atomizing tube 704 has a larger spray coverage area, a relatively small spray pressure, and adopts fan-shaped spraying, that is, the low-pressure atomizing tube 803 can better supplement the gap of the high-pressure atomizing tube 804, and at the same time sweep under the drive of the follower plate 6 to ensure that the dust close to one side of the enclosure can be quickly handled. During construction, the dust in the enclosure will be The dust is blown randomly and in an undirected manner under the disturbance of strong blowing. Therefore, the dust reduction effect is guaranteed by the above-mentioned arrangement. In non-construction scenes, when there is a lot of dust in the air but no construction is carried out, this solution can still play a dust reduction role to ensure the comfort of passers-by and save water at the same time. A water tank is arranged on one side of the pier 2, and a pressure pump is arranged inside. In addition, since dust coverage is inevitable, cleaning pipes 706 are also arranged on both sides of the first seat plate 701. Due to the concave structure, water flows along the first circular arc surface 702 for surrounding spray cleaning, which cleans the main light strip 703 and has a good use effect. The corresponding main light strip 703 is an insulated plastic-sealed light strip.

[0043] The above embodiments are only preferred technical solutions of the present invention and should not be regarded as limiting the present invention. The protection scope of the present invention shall be the technical solutions recorded in the claims, including equivalent replacement solutions of the technical features in the technical solutions recorded in the claims. That is, equivalent replacement improvements within this scope are also within the protection scope of the present invention.

Claims

1. A construction method for enclosures with on-site intelligent control, characterized by: The following steps are involved: S1. Positioning and pouring of the pier column (2) are completed according to the design drawings; S2, manufacturing a baffle (1) according to the arrangement spacing of the plurality of piers (2) in S1, and manufacturing a bracket (3) according to the height of the baffle (1); S3, after the construction of the pier column (2) in S1 is completed, the bracket (3) is installed on the pier column (2); S4, sequentially installing a synchronous plate (4) and a diagonal bracing unit (9) on the baffle (1), and fixing the synchronous plate (4) and the diagonal bracing unit (9) to the bracket (3) and the pier column (2), respectively; S5, adjusting the states of the telescopic rods (28) on different diagonal bracing units (9) to form high and low combinations at different heights; S6, installing an adapter plate (22) and a solar panel (5) on the upper part of the bracket (3), and installing a follower plate (6) on the adapter plate (22); S7, connecting the follower plate (6) to the top of the baffle (1) through the locking rod (17), the auxiliary rod (18), the spring (19), the pull rope (20) and the reel (21); S8, adjusting the position of the follower plate (6) in S7 to ensure that the spring (19) and the pull rope (20) are in a stressed state; S9, installing a roller (24) on the follower plate (6), and ensuring that the roller (24) is in close contact with the outer side of the baffle (1); S10, installing the lighting unit (7) and the dust reduction unit (8) on the follower plate (6), installing a dust detection sensor (13) on the top of the dust reduction unit (8), installing a top plate (10) at the middle position of the top of the baffle (1), and installing a camera (11), an ultrasonic wind direction sensor (12), and a light bulb (23) on the top plate (10); S11. Debug the status of each electrical component and position it according to the design; S12. Fix the ends of two adjacent baffles (1).

2. The construction method of enclosure for on-site intelligent control according to claim 1 is characterized in that: In S1, the embedded sleeve (25) and the fixed tube (26) are installed during the manufacturing process of the pier column (2). In S3, the bracket (3) is connected to the embedded sleeve (25) via the fastening nail (14). In S4, the diagonal bracing unit (9) is connected to the baffle (1) via the tie rod (27), and the tie rod (27) is inserted into the fixed tube (26).

3. The construction method of enclosure for on-site intelligent control according to claim 1 is characterized by: When manufacturing the baffle (1) in S2, a plurality of parallel horizontal braces (101) are first welded on the inner side of the skin (105), and then the plurality of horizontal braces (101) are connected using vertical braces (102). At the same time, a guide brace (103) is installed on the horizontal brace (101) on any side of the skin (105), and a threaded hole (104) is manufactured on the guide brace (103).

4. The construction method of enclosure for on-site intelligent control according to claim 2 is characterized in that: A fastening nail (14) is inserted into a base (302) at the bottom of the bracket (3), and the fastening nail (14) is screwed into the embedded sleeve (25) for locking. The locking plate (303) inside the frame body (301) is connected to the synchronization plate (4) through the fastening nail (14) and the nut (16). In S6, the solar panel (5) is installed on the top of the frame body (301).

5. The construction method of the enclosure for on-site intelligent control according to claim 4 is characterized by: First, the fastening nail (14) is inserted into the first waist groove (401), and then the first sliding grooves (403) of the two first locking blocks (402) of the synchronous plate (4) are aligned with the vertical support (102) and slid into the vertical support (102), and the position of the fastening nail (14) is adjusted to align with the locking plate (303) for locking.

6. The construction method of the enclosure for on-site intelligent control according to claim 4 is characterized by: The sleeve (901) and the support rod (902) on the diagonal support unit (9) are adjusted from a retracted state to an extended state. The first lock (903) at the end of the sleeve (901) is connected to the fixed tube (26) via a pull rod (27). The second lock (904) at the end of the support rod (902) is hinged via an insertion rod (15) and a second lock block (905) on the second slide groove (906). The position of the second slide groove (906) is adjusted, and the ear plate (907) on the second slide groove (906) is aligned with the vertical support (102) and slid in.

7. The construction method of enclosure for on-site intelligent control according to claim 1 is characterized in that: In S6, the adapter plate (22) is fixed to the inner side of the bracket (3) by means of a fastening nail (14) and an insertion rod (15). The structure of the adapter plate (22) is as follows: the adapter plate (22) comprises a C-shaped plate (2201) and a limiting plate (2202), the limiting plate (2202) is provided with a second waist circular groove (2203), the fastening nail (14) and the insertion rod (15) are passed through the C-shaped plate (2201), and the bracket (3) is attached to the inner side of the C-shaped plate (2201); The structure of the moving plate (6) is as follows: the following plate (6) comprises a cross plate body (601), a convex strip (604) is provided at the bottom of the cross plate body (601), the roller (24) is rotatably arranged on the convex strip (604), a first mounting sleeve (602) and a second mounting sleeve (603) are respectively provided on the upper side and the lower side of the cross plate body (601), the lighting unit (7) is connected to the first mounting sleeve (602), and the dust reduction unit (8) is connected to the second mounting sleeve (603).

8. The construction method for on-site intelligently controlled enclosure according to claim 7 is characterized in that: In S7, the height of the auxiliary rod (18) is adjusted. The auxiliary rod (18) has the following structure: a fixed pulley (1801) is sleeved on the auxiliary rod (18), anti-slip rods (1802) are respectively provided on both sides of the fixed pulley (1801), the fixed pulley (1801) and the anti-slip rod (1802) are connected to form a correction gap, and the pull rope (20) is inserted into the correction gap.

9. The construction method of the enclosure for on-site intelligent control according to claim 7 is characterized by: The structure of the lighting unit (7) is as follows: the lighting unit (7) comprises 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 installation sleeve (602); and cleaning pipes (706) are also provided on both sides of the first arc surface (702).

10. The construction method of enclosure for on-site intelligent control according to claim 7 is characterized by: The structure of the dust reduction unit (8) is as follows: the dust reduction unit (8) comprises a second seat plate (801); a second arc surface (802) is provided on one side of the second seat plate (801); low-pressure atomization tubes (803) and high-pressure atomization tubes (804) are evenly spaced on the second arc surface (802); a second push rod (805) is provided on the top of the second seat plate (801); and the second push rod (805) is inserted into the second mounting sleeve (603).

Citation Information

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