A remotely visible intelligent control concrete spray curing system

By designing a remote visual intelligent controlled concrete spraying health system, using a multi-directional spraying mechanism and driving mechanism, combining video surveillance and wastewater recycling, the problems of high labor costs, uneven spraying and lack of remote control in the existing technology are solved, and efficient and intelligent spraying maintenance effects are achieved.

CN119238705BActive Publication Date: 2025-08-05CCCC THIRD HARBOR ENGINEERING CO LTD
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Patent Information

Application Number
CN202411602462.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-08-05
Estimated Expiration
2044-11-11

AI Technical Summary

Technical Problem

The existing spraying and maintenance methods of concrete components consume high labor costs and are inefficient. The spraying methods are difficult to adjust, and they cannot achieve comprehensive uniformity. They lack remote control and real-time monitoring, which cannot meet the efficient and intelligent spraying needs of modern building construction.

Method used

A remote visual intelligent controlled concrete spraying health system is designed, using a multi-directional spraying mechanism and a driving mechanism, combined with a video surveillance system and a WIFI gateway controller, to realize the lifting and elevation adjustment of the spray pipe assembly, equipped with wastewater recycling and cleaning components, and supports remote operation and intelligent algorithms to automatically adjust the spraying frequency.

Benefits of technology

It has achieved comprehensive spraying and maintenance on the surface of concrete components, reducing labor intensity, improving efficiency, ensuring spray uniformity, supporting remote monitoring and management, saving water resources, complying with the concept of green environmental protection, and reducing on-site operation time and safety risks.

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Abstract

The present invention relates to the field of concrete forming and curing, and specifically discloses a remotely visible, intelligently controlled concrete spray curing system, comprising a base and a concrete member disposed on the base, wherein a multi-directional spray mechanism is disposed on the outside of the concrete member, the multi-directional spray mechanism comprising an annular spray rack disposed on the outside of the concrete member, an annular groove disposed on the inside of the spray rack, and a spray pipe assembly disposed inside the annular groove, which rotates around the axis of the spray rack; and a drive mechanism for driving the spray pipe assembly to rise and fall and rotate around the axis of the spray rack. This remotely visible, intelligently controlled concrete spray curing system, through the multi-directional spray mechanism in conjunction with the drive mechanism, can automatically achieve comprehensive spray curing of the outer surface of the concrete member, reducing labor intensity and improving efficiency. In conjunction with an adjustment mechanism, the elevation angle can also be adjusted during spraying, further increasing the comprehensiveness of the spray.
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Description

Technical Field

[0001] The present invention relates to the field of concrete forming and curing, and in particular to a remote visual intelligent control concrete spraying and curing system. Background Art

[0002] In the construction industry, curing concrete components is crucial to ensuring their quality and performance. Traditionally, curing concrete components through spraying primarily involves manually controlled sprinklers or simple timed spraying devices. In existing technologies, manually controlled sprinkler systems are labor-intensive and inefficient. While timed spraying devices achieve a degree of automation, their fixed spraying patterns make them difficult to flexibly adjust based on actual conditions. Furthermore, these spraying methods lack comprehensiveness and uniformity, failing to ensure that every part of the concrete component receives adequate spray curing.

[0003] Furthermore, existing technologies struggle to monitor spray curing conditions in real time, preventing accurate monitoring of key information such as the moisture status of concrete components and spray coverage. Furthermore, remote control of spraying is impossible, a significant inconvenience on construction sites with numerous concrete components. Precise spray adjustments to concrete components in different areas cannot be made in a timely manner, hindering the demand for efficient and intelligent spray curing in modern construction.

[0004] Therefore, it is necessary to propose a remote visual intelligent control concrete spray curing system to solve the above problems. Summary of the Invention

[0005] The main purpose of the present invention is to provide a remote visual intelligent control concrete spray curing system, which can effectively solve the problems in the background technology.

[0006] To achieve the above object, the technical solution adopted by the present invention is:

[0007] The spray nozzle is provided on the top of the spray nozzle, and the nozzle is provided on the top of the spray nozzle, and the nozzle is provided on the top of the spray nozzle.

[0008] The cam is provided with a plurality of control wheels, and the control wheels are connected to the control wheel to move the control wheel to the control wheel base, and the control wheels are connected to the control wheel base at the control wheel base. A hollow connecting frame is provided on the side, and the end of the connecting frame away from the lifting frame is connected to the side wall of the spray frame, and the connecting frame is communicated with the annular groove, and a third slider is movably connected to the inner side of the connecting frame, and a second spring is provided on the side wall of the third slider along the movable direction, and a guide wheel is provided at one end of the third slider close to the lifting frame, and a guide block is provided on the side of the spray control frame close to the connecting frame, and the side surface of the guide block is arc-shaped, and the guide wheel is used to roll with the side surface of the guide block, and the second spring contracts during rolling cooperation, and a telescopic rod is movably connected to the side of the third slider away from the guide wheel, and the end of the telescopic rod away from the third slider extends to the inner side of the annular groove and is connected to one of the arc tubes.

[0009] Preferably, a first arc-shaped sliding block is fixedly provided on the outer side of the arc-shaped tube and is in sliding engagement with the inner wall of the annular groove;

[0010] One end of the telescopic rod away from the third sliding block is fixedly connected to the side wall of the first sliding block outside one of the arc-shaped tubes.

[0011] Preferably, the guide blocks are in two groups, and the guide blocks in each group are evenly arranged along the height direction of the spray control frame, and the multiple guide blocks in the two groups are staggered, so that when the guide wheel is displaced longitudinally, the third slider can be driven to move back and forth laterally under the action of the guide blocks.

[0012] Preferably, a second guide rod is provided at one end of the inner side of the lifting frame, and the second sliding block is movably sleeved on the outer side of the second guide rod.

[0013] Preferably, it also includes a water storage tank for storing water sources, a spray water pump is provided on one side of the water storage tank, and the input end of the spray water pump is connected to the water storage tank, and the output end of the spray water pump is connected to one end of the main pipeline.

[0014] Preferably, it also includes an adjustment mechanism for adjusting the elevation angle of the sprinkler head, the adjustment mechanism includes a spiral guide groove arranged on the outside of the sleeve, the sleeve is movably sealed and connected to the outside of the straight pipe, the inner wall of the annular groove is provided with a driving rod corresponding to the sleeve, and one end of the driving rod extends to the inside of the guide groove and cooperates with the movable guide of the guide groove, and is configured so that when the straight pipe follows the arc tube to rotate around the axis of the spray rack to the extreme angle, one end of the driving rod is always located on the inside of the guide groove.

[0015] Preferably, a wastewater recovery mechanism is provided on the base, and the wastewater recovery mechanism includes a water tank arranged on the top of the base and located around the concrete component, a storage tank connected to the water tank is provided on one side of the water tank, a filter is provided on the upper end of the storage tank, a recovery branch pipe connected to the storage tank is provided on the side of the base, a recovery pipe connected to the recovery branch pipe is provided on the periphery of the base, a recovery water pump is provided on one side of the water storage tank, one end of the recovery pipe is connected to the input end of the recovery water pump, and the output end of the recovery water pump is connected to the water storage tank.

[0016] Preferably, a cleaning assembly is provided at the upper end of the filter, and the cleaning assembly includes a first guide rod provided on the side wall of the lower end of the spray control frame, a scraper corresponding to the filter is slidably connected to the first guide rod, and a first spring is provided on the side wall of the scraper along the moving direction, and a driving block corresponding to the scraper and used to drive the scraper to move is provided at the bottom of the connecting frame, and the lower end of the driving block is conical, and collection grooves are provided at both ends of the filter.

[0017] Preferably, a video monitoring system for monitoring the surface condition of the concrete component is provided on the base.

[0018] Preferably, it also includes a WIFI gateway controller for connecting the motor, solenoid valve, recovery water pump, spray water pump and video monitoring system to the network;

[0019] It also includes a terminal connected to a WIFI gateway controller via a network. The terminal is used to view the monitoring screen and video playback of the video surveillance system in real time, control the opening and closing of the solenoid valve, and control the start and stop of the motor, recovery water pump, and spray water pump.

[0020] Compared with the existing technology, the present invention provides a remote visual intelligent control concrete spray curing system, which has the following beneficial effects:

[0021] This remote visual intelligent control concrete spray curing system can automatically achieve comprehensive spray curing of the outer surface of concrete components through the multi-directional spray mechanism and the driving mechanism, which reduces labor intensity and improves efficiency. The adjustment mechanism can also adjust the elevation angle when lifting and lowering the spray, further increasing the comprehensiveness of the spray. It is linked with the multi-directional spray mechanism, has a compact structure and is easy to use. At the same time, it is equipped with a video monitoring system, terminal, and WIFI gateway controller to monitor the surface curing of concrete components in real time, and automatically adjust the spraying frequency and water volume through intelligent algorithms, which significantly improves the efficiency and quality of concrete curing. It also supports remote operation, which is convenient for users to grasp the concrete curing status in real time through mobile devices or computers and carry out effective control. In terms of energy saving and environmental protection, the system effectively reduces water resource consumption, which is in line with the development concept of green environmental protection.

[0022] This remotely visible intelligently controlled concrete spray curing system can collect and process the wastewater flowing down from the spraying for recycling through the cooperation of the wastewater recovery mechanism and cleaning components, saving water resources and preventing the wastewater from flowing around and affecting the on-site environment. In addition, the filter can be automatically and intermittently cleaned during the spraying period, which increases convenience and practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a structural schematic diagram of the present invention;

[0024] Figure 2 This is a schematic diagram of the structure of the concrete component of the present invention in a coordinated state with the multi-directional spraying mechanism;

[0025] Figure 3 This is a schematic structural diagram of the present invention in which the filter screen and the storage tank are separated;

[0026] Figure 4 It is a schematic diagram of the overall structure of the multi-directional spray mechanism and the driving mechanism of the present invention;

[0027] Figure 5 This invention Figure 4 Schematic diagram of the structure in the disassembled state;

[0028] Figure 6 It is a schematic structural diagram of the cleaning component of the present invention;

[0029] Figure 7 This is a schematic structural diagram of the present invention when the lifting frame and the chain are separated;

[0030] Figure 8 This is a structural diagram of the spray rack and the spray pipe assembly of the present invention in a disassembled state;

[0031] Figure 9 This is a schematic structural diagram of the present invention in which the first slider and the arc tube are disassembled;

[0032] Figure 10 This is a schematic diagram of the structure of the present invention when the sleeve and the straight pipe are separated;

[0033] Figure 11 It is a structural schematic diagram of the spray rack of the present invention;

[0034] Figure 12 It is a structural diagram of the system of the present invention in a network connection state.

[0035] Figure: 1, base; 2, water storage tank; 3, video monitoring system; 4, concrete component; 5, spray rack; 6, main pipeline; 7, recovery pipeline; 8, recovery branch pipe; 9, recovery water pump; 10, spray water pump; 11, spray branch pipe; 12, solenoid valve; 13, spray control rack; 14, connecting rack; 15, lifting rack; 16, water tank; 17, storage tank; 18, filter screen; 19, collection tank; 20, guide block; 21, scraper; 22, spray head; 2 3. First slider; 24. Chain; 25. First guide rod; 26. First spring; 27. Sprocket; 28. Motor; 29. Traction shaft; 30. Second slider; 31. Second guide rod; 32. Drive block; 33. Arc tube; 34. Guide wheel; 35. Telescopic rod; 36. Third slider; 37. Second spring; 38. Sleeve; 39. Guide groove; 40. Straight tube; 41. Annular groove; 42. Drive rod; 43. Terminal; 44. Wi-Fi gateway controller. DETAILED DESCRIPTION

[0036] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0037] like Figure 1-Figure 2 、 Figure 4-Figure 5 、 Figures 8-10As shown, a remote visual intelligent control concrete spray curing system includes a base 1 and a concrete component 4 arranged on the base 1. A multi-directional spray mechanism is arranged on the outside of the concrete component 4. The multi-directional spray mechanism includes a ring-shaped spray rack 5 arranged on the outside of the concrete component 4. An annular groove 41 is provided on the inside of the spray rack 5. A spray pipe assembly is arranged on the inside of the annular groove 41 so as to rotate around the axis of the spray rack 5. The spray pipe assembly includes an arc tube 33 evenly arranged on the inside of the annular groove 41, and the arc tube 33 is movably connected to the annular groove 41. A straight tube 40 is connected between adjacent arc tubes 33. The outside of the straight tube 40 is provided with a 0 connected to the casing 38, a sprinkler head 22 is provided on one side of the casing 38, a main pipe 6 is provided on the upper end of the base 1, one end of the main pipe 6 is used to connect to an external water source, a spray branch pipe 11 corresponding to the concrete component 4 is provided on the main pipe 6, and a solenoid valve 12 is provided on the spray branch pipe 11, and the end of the spray branch pipe 11 away from the main pipe 6 is connected to one of the arc-shaped pipes 33 on the spray rack 5, and also includes a water storage tank 2 for storing water, a spray water pump 10 is provided on one side of the water storage tank 2, and the input end of the spray water pump 10 is connected to the water storage tank 2, and the output end of the spray water pump 10 is connected to one end of the main pipe 6, thereby supplying water to the main pipe 6;

[0038] like Figure 2 、 Figure 4-Figure 5 、 Figure 7-10As shown, it also includes a driving mechanism for driving the spray pipe assembly to rise and fall and rotate around the axis of the spray frame 5. The driving mechanism includes a spray control frame 13 located on one side of the concrete member 4 and detachably arranged on the base 1. Sprockets 27 are rotatably arranged at both the upper and lower ends of the inner side of the spray control frame 13. Chains 24 are engaged with the two sprockets 27. A motor 28 corresponding to one of the sprockets 27 and used to drive the sprocket 27 to rotate is provided at one end of the spray control frame 13. A lifting frame 15 is vertically and movably connected to the spray control frame 13. A second slider 30 is connected to the inner side of the lifting frame 15 for transverse sliding. In order to prevent the second slider 30 from detaching and to increase the stability of the second slider 30, a second guide rod 31 is provided at one end of the inner side of the lifting frame 15. The second slider 30 is movably sleeved on the outer side of the second guide rod 31. A traction shaft 29 is movably provided on one link of the chain 24, and the end of the traction shaft 29 away from the chain 24 is connected to the side wall of the second slider 30. A hollow connecting frame 14 is provided on one side of the lifting frame 15, and the connecting frame 14 is away from the end of the lifting frame 15. The connecting frame 14 is connected to the side wall of the spray frame 5, and the connecting frame 14 is connected to the annular groove 41. The inner side of the connecting frame 14 is laterally connected to the third slider 36. The third slider 36 is provided with a second spring 37 along the side wall of the movable direction. The third slider 36 is provided with a guide wheel 34 at one end close to the lifting frame 15. The spray control frame 13 is provided with a guide block 20 on the side close to the connecting frame 14, and the side of the guide block 20 is arc-shaped. The guide blocks 20 are divided into two groups. The guide blocks 20 of each group are evenly arranged along the height direction of the spray control frame 13, and the two groups are arranged in a uniform manner. Multiple guide blocks 20 are arranged in an interlaced manner. When the guide wheel 34 moves downward, it can alternately touch and roll with the two groups of guide blocks 20, so that when the guide wheel 34 is displaced longitudinally, it can drive the third slider 36 to move back and forth laterally under the action of the guide block 20. The guide wheel 34 is used to roll with the side of the guide block 20, and the second spring 37 contracts during the rolling cooperation. The side of the third slider 36 away from the guide wheel 34 is movably connected to the telescopic rod 35, and the end of the telescopic rod 35 away from the third slider 36 extends to the inner side of the annular groove 41 and is connected to one of the arc tubes 33.

[0039] As shown Figure 4 、 Figure 8-Figure 9 As shown, in order to increase the stability of the arc tube 33 rotating inside the annular groove 41, a first slider 23 with an arc shape and slidingly cooperating with the inner wall of the annular groove 41 is fixedly provided on the outside of the arc tube 33, and the first slider 23 and the inner wall of the annular groove 41 can be movably connected to each other through an arc-shaped guide rail. In this way, the end of the telescopic rod 35 away from the third slider 36 needs to be fixedly connected to the side wall of the first slider 23 on the outside of one of the arc tubes 33.

[0040] In addition, if Figures 9-11As shown, in order to further increase the spray maintenance effect, an adjustment mechanism for adjusting the elevation angle of the sprinkler head 22 is also included, and the adjustment mechanism includes a spiral guide groove 39 arranged on the outside of the sleeve 38, and the sleeve 38 is movably sealed and connected to the outside of the straight pipe 40. The inner wall of the annular groove 41 is provided with a driving rod 42 corresponding to the sleeve 38, and one end of the driving rod 42 extends to the inside of the guide groove 39 and cooperates with the movable guide of the guide groove 39, and is configured so that when the straight pipe 40 follows the arc tube 33 to rotate around the axis of the spray rack 5 to the extreme angle, one end of the driving rod 42 is always located on the inside of the guide groove 39.

[0041] like Figure 1-Figure 3 As shown, in order to further save water resources, a wastewater recovery mechanism is provided on the base 1, and the wastewater recovery mechanism includes a water tank 16 arranged on the top of the base 1 and located around the concrete component 4, a storage tank 17 connected to the water tank 16 is provided on one side of the water tank 16, and a filter screen 18 is provided on the upper end of the storage tank 17, a recovery branch pipe 8 connected to the storage tank 17 is provided on the side of the base 1, and a recovery pipe 7 connected to the recovery branch pipe 8 is provided on the periphery of the base 1, and a recovery water pump 9 is provided on one side of the water storage tank 2, one end of the recovery pipe 7 is connected to the input end of the recovery water pump 9, and the output end of the recovery water pump 9 is connected to the water storage tank 2.

[0042] like Figure 4-Figure 6 As shown, in order to avoid clogging of the filter 18, a cleaning assembly is provided at the upper end of the filter 18, and the cleaning assembly includes a first guide rod 25 arranged on the side wall of the lower end of the spray control frame 13, and a scraper 21 corresponding to the filter 18 is slidably connected to the first guide rod 25. The scraper 21 is provided with a first spring 26 along the side wall of the moving direction. The first spring 26 can be compressed when the scraper 21 is displaced. A driving block 32 corresponding to the scraper 21 and used to drive the scraper 21 to displace is provided at the bottom of the connecting frame 14, and the lower end of the driving block 32 is conical. Collection grooves 19 are provided at both ends of the filter 18.

[0043] like Figure 1 、 Figure 12As shown, in order to realize the intelligent and automated spray curing, a video monitoring system 3 for monitoring the surface condition of the concrete component 4 is provided near the base 1. The video monitoring system 3 is mainly composed of a camera, a monitoring host and a network transmission device. The camera is installed at an appropriate position in the spray area for real-time monitoring of the spray status and concrete curing condition. The monitoring host is responsible for receiving the video signal of the camera. In order to realize the network connection and normal operation of the system, a WIFI gateway controller 44 is also provided for connecting the motor 28, the solenoid valve 12, the recovery water pump 9, the spray water pump 10 and the video monitoring system 3 to the network. It should be noted that these devices The device will not be directly connected to the WIFI gateway controller 44, but will be connected through an intermediate control system (such as a PLC, a single-chip microcomputer, an intelligent controller, etc.), and the WIFI gateway controller 44 can be set in the background. The network transmission device (such as a router or a switch) in the video surveillance system 3 is used to transmit the video signal of the monitoring host to the WIFI gateway controller 44. The WIFI gateway controller 44 communicates remotely with the terminal 43 through a wireless network. The terminal 43 can be used to view the monitoring screen and video playback of the video surveillance system 3 in real time, control the opening and closing of the solenoid valve 12, and control the start and stop of the motor 28, the recovery water pump 9, and the spray water pump 10.

[0044] Working principle: When in use, a spray control frame 13 and a spray frame 5 are set around the poured concrete component 4, and the main pipeline 6, recovery pipeline 7, and recovery branch pipe 8 are laid. At the same time, a water tank 16, a storage tank 17, and a filter screen 18 are installed. When in use, the spray water pump 10 draws water from the water storage tank 2 and transports it to the spray branch pipe 11 through the main pipeline 6. When the solenoid valve 12 is opened, the water can enter the arc pipe 33, the straight pipe 40, and the sleeve 38 through the spray branch pipe 11, and finally sprayed to the surface of the concrete component 4 through the spray head 22. The motor 28 drives the chain 24 through the sprocket 27 to operate. Under the action of the traction shaft 29 and the second slider 30, the lifting frame 15 can be lifted and lowered. Then, the lifting frame 15 drives the spray frame 5 to lift and lower through the connecting frame 14, so that the spray head 22 can spray at different heights. When the connecting frame 14 is lifted and lowered, the guide wheel 34 at one end thereof will contact and roll with the guide block 20, and then the third slider 36 is driven by the guide wheel 34 to move back and forth. The transverse movement of the third slider 36 compresses the second spring 37, and the third slider 36 is moved through the telescopic rod 35. The arc tube 33, the straight tube 40, and the sprinkler head 22 are driven to rotate back and forth as a whole around the axis of the sprinkler frame 5, thereby filling the gap between adjacent sprinkler heads 22 and further providing a spraying effect. When the straight tube 40 drives the sleeve 38 and the sprinkler head 22 to rotate, the cooperation between the driving rod 42 and the guide groove 39 can realize the rotation of the sleeve 38 around the axis of the straight tube 40, thereby driving the continuous change of the elevation angle of the sprinkler head 22, which can increase the spraying effect of the sprinkler head 22 on the dead corners on the concrete component 4. The sprayed wastewater will enter the sink 16 through the sink 16. The impurities on the upper end of the filter 18 are scraped by the scraper 21 and then moved to the collection tank 19. When the connecting frame 14 is lifted up, the first spring 26 drives the scraper 21 to reset, thereby intermittently cleaning the filter 18 and avoiding blockage.

[0045] It should be noted that the system is equipped with a video surveillance system 3 and a WIFI gateway controller 44, which can automatically adjust the spraying frequency and water volume through an intelligent algorithm, and can also be remotely understood and operated through a terminal 43. The system realizes precise control of spraying, ensures that the concrete is properly cured, reduces on-site manual operations through remote monitoring and adjustment, and can automatically adjust the spraying strategy according to environmental changes to ensure the quality of curing, optimize the curing process, improve management efficiency, reduce on-site operation time, and reduce safety risks. In addition, it avoids waste of water resources and reduces material costs.

[0046] The basic principles, main features and advantages of the present invention are shown and described above. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and modifications fall within the scope of the invention as claimed.

Claims

1. A remote visual intelligent control concrete spray curing system, comprising a base and a concrete member disposed on the base, characterized in that: A multi-directional spray mechanism is provided on the outside of the concrete component, and the multi-directional spray mechanism includes a ring-shaped spray frame provided on the outside of the concrete component, an annular groove is provided on the inside of the spray frame, and a spray pipe assembly is provided on the inside of the annular groove so as to rotate around the axis of the spray frame. The spray pipe assembly includes arc-shaped pipes evenly arranged on the inside of the annular groove, and the arc-shaped pipes are movably connected to the annular groove. Straight pipes are connected between adjacent arc-shaped pipes, and sleeves connected to the straight pipes are provided on the outside of the straight pipes. A spray head is provided on one side of the sleeve. A main pipe is provided on the upper end of the base, and one end of the main pipe is used to connect to an external water source. A spray branch pipe corresponding to the concrete component is provided on the main pipe, and an electromagnetic valve is provided on the spray branch pipe. An end of the spray branch pipe away from the main pipe is connected to one of the arc pipes on the spray frame; The control unit is actuated by a plurality of control wheels, each of which is connected to a plurality of control wheels of the control wheel, and the control wheel is connected to the control wheel of the control wheel. The control wheel is actuated by a plurality of control wheels, and the control wheel is connected to the control wheel of the control wheel. The control wheel is connected to the control wheel of the control wheel ... A hollow connecting frame is provided, and the end of the connecting frame away from the lifting frame is connected to the side wall of the spray frame, and the connecting frame is communicated with the annular groove, a third slider is movably connected to the inner side of the connecting frame laterally, and a second spring is provided on the side wall of the third slider along the movable direction, a guide wheel is provided at one end of the third slider close to the lifting frame, a guide block is provided on the side of the spray control frame close to the connecting frame, and the side surface of the guide block is arc-shaped, the guide wheel is used to roll with the side surface of the guide block, and the second spring contracts when rolling, a telescopic rod is movably connected to the side of the third slider away from the guide wheel, and an end of the telescopic rod away from the third slider extends to the inner side of the annular groove and is connected to one of the arc tubes; It also includes an adjustment mechanism for adjusting the elevation angle of the sprinkler head, the adjustment mechanism includes a spiral guide groove arranged on the outside of the sleeve, the sleeve is movably sealed and connected to the outside of the straight pipe, the inner wall of the annular groove is provided with a driving rod corresponding to the sleeve, and one end of the driving rod extends to the inside of the guide groove and cooperates with the movable guide of the guide groove, and is configured so that when the straight pipe follows the arc pipe to rotate around the axis of the spray rack to the extreme angle, one end of the driving rod is always located on the inside of the guide groove.

2. The remote visual intelligent control concrete spray curing system according to claim 1, characterized in that: A first arc-shaped sliding block is fixedly provided on the outer side of the arc tube and is in sliding cooperation with the inner wall of the annular groove; One end of the telescopic rod away from the third sliding block is fixedly connected to the side wall of the first sliding block outside one of the arc-shaped tubes.

3. The remote visual intelligent control concrete spray curing system according to claim 1, characterized in that: There are two groups of guide blocks, and the guide blocks of each group are evenly arranged along the height direction of the spray control frame, and the multiple guide blocks of the two groups are staggered, so that when the guide wheel moves longitudinally, the third slider can be driven to move back and forth horizontally under the action of the guide blocks.

4. The remote visual intelligent control concrete spray curing system according to claim 1, characterized in that: A second guide rod is provided at one end of the inner side of the lifting frame, and the second sliding block is movably sleeved on the outer side of the second guide rod.

5. The remote visual intelligent control concrete spray curing system according to claim 1, characterized in that: It also includes a water storage tank for storing water sources. A spray water pump is provided on one side of the water storage tank, and the input end of the spray water pump is connected to the water storage tank, and the output end of the spray water pump is connected to one end of the main pipeline.

6. The remote visual intelligent control concrete spray curing system according to claim 5, characterized in that: A wastewater recovery mechanism is provided on the base, which includes a water tank provided on the top of the base and located around the concrete component. A storage tank connected to the water tank is provided on one side of the water tank, and a filter is provided on the upper end of the storage tank. A recovery branch pipe connected to the storage tank is provided on the side of the base, and a recovery pipe connected to the recovery branch pipe is provided on the periphery of the base. A recovery water pump is provided on one side of the water storage tank, one end of the recovery pipe is connected to the input end of the recovery water pump, and the output end of the recovery water pump is connected to the water storage tank.

7. The remote visual intelligent control concrete spray curing system according to claim 6, characterized in that: A cleaning assembly is provided at the upper end of the filter screen, and the cleaning assembly includes a first guide rod arranged on the side wall of the lower end of the spray control frame. A scraper corresponding to the filter screen is slidably connected to the first guide rod, and a first spring is provided on the side wall of the scraper along the moving direction. A driving block corresponding to the scraper and used to drive the scraper to move is provided at the bottom of the connecting frame, and the lower end of the driving block is conical, and collection grooves are provided at both ends of the filter screen.

8. The remote visual intelligent control concrete spray curing system according to claim 6, characterized in that: A video monitoring system for monitoring the surface conditions of concrete components is provided on the base.

9. The remote visual intelligent control concrete spray curing system according to claim 8, characterized in that: It also includes a WIFI gateway controller for connecting the motor, solenoid valve, recovery pump, sprinkler pump and video surveillance system to the network; It also includes a terminal connected to a WIFI gateway controller via a network. The terminal is used to view the monitoring screen and video playback of the video surveillance system in real time, control the opening and closing of the solenoid valve, and control the start and stop of the motor, recovery water pump, and spray water pump.

Citation Information

Patent Citations

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