A super high-rise concrete covering and curing structure

By designing an ultra-high-rise concrete-covered curing structure including main frame, top frame and lifting equipment, the problems of lack of flexibility, high energy consumption and low safety in the prior art are solved, and efficient, safe and water-saving curing effects are achieved.

CN120006978BActive Publication Date: 2025-06-13SHANGHAI CONSTRUCTION FIRST CONSTRUCTION (GROUP) CO LTD
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Patent Information

Application Number
CN202510465336.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-06-13
Estimated Expiration
2045-04-15

AI Technical Summary

Technical Problem

The existing ultra-high-rise concrete curing technology lacks flexibility, excessive energy and water consumption and low safety, especially in high-altitude operating conditions.

Method used

An ultra-high-rise concrete-covered curing structure is designed, including the main frame, top frame and lifting equipment. The main frame is equipped with an electromagnet group, a water spraying mechanism and a control host. Through the adsorption and fixation of the electromagnet group, the intelligent spraying mechanism of the water spraying mechanism and the automatic control of the control host, efficient and safe maintenance is achieved.

Benefits of technology

This structure automatically absorbs and fixes the main frame to avoid jitter and improves safety performance; saves water resources and improves wet effect through intelligent spraying technology; reduces artificial interference and improves maintenance stability and efficiency through automatic control system.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a super high-rise concrete covering and curing structure, which includes a main frame, a top frame and a lifting device. The lifting device is assembled between the top frame and the main frame. Electromagnet groups are assembled on both sides of the upper end of the main frame through bolts. An upper section curing curtain is assembled on the outer upper end of the main frame, and a lower section curing curtain is assembled on the outer lower end of the main frame. A protection plate is assembled at the upper end of the inner cavity of the main frame. Electric rollers are evenly distributed at the bottom of the main frame. The electric roller includes a motor, and the output end of the motor is fixedly connected with a roller body. This super high-rise concrete covering and curing structure greatly improves the overall safety performance of the device, creates suitable temperature and humidity conditions in the internal environment, thereby facilitating the acceleration of the cement hardening reaction. At the same time, it can shorten the waiting period, avoid water waste when spraying the wall, save water resources, be green and environmentally friendly, and improve the effect and quality of wall wetting.
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Description

Technical Field

[0001] The present invention relates to the technical field of super high-rise concrete curing in building construction, and particularly to a super high-rise concrete covering curing structure. Background Art

[0002] With the acceleration of the urbanization process, super high-rise buildings have become an important part of urban construction. During the construction of super high-rise buildings, the curing quality of concrete directly affects the overall strength and durability of the building. Currently, the commonly used curing methods include natural curing, sprinkler curing, and plastic film covering, etc. However, in the ultra-high floor environment, these traditional methods face many challenges, such as high difficulty in high-altitude operations and serious waste of water resources;

[0003] Traditional concrete curing usually relies on simple measures such as sprinkling water for moisturizing or laying plastic sheets. Specifically, first, the freshly poured concrete is initially wetted to ensure that the surface layer always maintains sufficient humidity to prevent cracking; second, it is kept in a continuously wet state for a certain period of time by regularly watering until the specified age is reached.

[0004] However, there are still many limitations in actual operations. For example, the water consumption is huge and it is difficult to meet the needs of resource shortages in arid regions. Moreover, the manual operation frequency is relatively high and it is easily interfered by factors such as weather changes, resulting in unstable and unreliable curing effects; in addition, when it comes to super high-rise building projects, due to the high cost of vertical transportation and the doubling of the danger coefficient of high-altitude operations, the conventional practices are particularly inconvenient and even infeasible.

[0005] For this reason, several improved methods have been proposed in the industry. Among them, a relatively typical one is the automatic sprinkler device, which can evenly release misty moisture within a set time to cover the area to be cured; however, it still cannot completely get rid of the high dependence on the water supply system, and the installation and maintenance are relatively cumbersome, and it is not very suitable for use in occasions where frequent movement and adjustment are required. There is also the prefabricated heat preservation shed. Although it can effectively isolate the erosion of external adverse climate factors, for large-sized components, it may cause many troubles such as hindering passage, and coupled with problems such as high cost and low recycling rate, it limits the promotion and application prospects.

[0006] Generally speaking, the existing concrete curing technologies generally have the following deficiencies: one is the lack of flexibility, especially it is difficult to deploy and adjust flexibly in the ultra-high-rise environment; the second is the excessive energy consumption and water resource consumption, which do not meet the development requirements of modern green buildings; the third is the low safety, especially it is easy to cause safety accidents under high-altitude operation conditions. The existence of these problems seriously affects the construction progress and economic benefits. Summary of the Invention

[0007] In view of the deficiencies of the prior art, the present application provides a super high-rise concrete covering and curing structure to solve the above problems of lack of flexibility, especially difficult to be flexibly deployed and adjusted in the super high-rise environment; excessive energy consumption and water resource consumption, not meeting the development requirements of modern green buildings, and relatively low safety, especially prone to safety accidents under high-altitude operation conditions. The existence of these problems seriously affects the construction progress and economic benefits.

[0008] To achieve the above objectives, the present application provides the following technical solutions: A super high-rise concrete covering and curing structure includes a main frame, a top frame, and a lifting device. The lifting device is assembled between the top frame and the main frame. Electromagnet groups are assembled on both sides of the upper end of the main frame through bolts. An upper-section curing curtain is assembled on the upper end of the exterior of the main frame, and a lower-section curing curtain is assembled on the lower end of the exterior of the main frame. A protection plate is assembled on the upper end of the inner cavity of the main frame, and a water spraying mechanism is assembled in the inner cavity of the main frame. A driving mechanism is assembled on the water spraying mechanism.

[0009] Preferably, the water spraying mechanism includes a control host, which is located inside the main frame. A camera is assembled on the top of the control host through bolts, and the camera is connected to the control host through a circuit. A KK module is assembled on the back of the control host, and both ends of the KK module are connected to the inner cavity of the main frame through bolts. A main water tank is embedded at the bottom of the control host, and a water spraying head is connected to the front of the main water tank through a hose. A secondary water tank is assembled on the back of the control host, and pneumatic valves are uniformly connected to the outside of the secondary water tank. The other end of the pneumatic valve is connected to the main water tank. A rack is assembled in the inner cavity of the main frame, and the driving mechanism is assembled on the top of the secondary water tank.

[0010] The driving mechanism includes a gear. A stirring rod is fixedly connected to the bottom of the gear. A bearing is assembled between the stirring rod and the secondary water tank. A turntable is assembled at the bottom of the stirring rod. A circular arm is assembled at the bottom of the turntable, and a slotted block is slidably connected to the outside of the circular arm. A long arm is fixedly connected to the outside of the slotted block, and the other end of the long arm is connected to the water spraying head through a soft rope.

[0011] Preferably, electric rollers are evenly arranged at the bottom of the main frame. The electric roller includes a motor, and the output end of the motor is fixedly connected to a roller body. A controller is assembled outside the motor, and the controller is connected to the control host through a circuit. The motor serves as a power source and is responsible for providing the power required to drive the rotation of the roller body. The roller body consists of a drum body, a shaft, end covers, and a support. The controller precisely controls the operation of the electric roller through the control host, including speed adjustment, direction control, start, and stop.

[0012] Preferably, both sides of the top of the top frame are rotatably connected to rope drums through seat bearings, the outside of the rope drums is connected to ropes, and the other end of the ropes is equipped with a fixing frame, the outside of the fixing frame is provided with holes and grooves, the outside of the rope drums can be wrapped with ropes, and the ropes can cooperate with the fixing frame to fix the main frame to the frame outside the wall to prevent the device from being driven by strong winds and causing shaking.

[0013] Preferably, the inner cavity of the main frame is equipped with a track slot block, and a track slot is opened on the outside of the track slot block, the inside of the track slot is slidably connected to the track block, and the outside of the track block is connected to the auxiliary water tank by bolts. The track slot can guide the track block to make it perform linear reciprocating motion, thereby improving the overall operation stability of the device.

[0014] Preferably, a transverse long groove is provided inside the slotted block, and the inside of the long groove is slidably connected to the outside of the circular arm. The long groove can accommodate the movement of the circular arm inside. The long groove cooperates with the main slotted block to decompose the circular movement of the circular arm into transverse movement and vertical movement. The vertical movement moves inside the long groove, and the transverse movement drives the slotted block body to transmit.

[0015] Preferably, a sliding block is installed at the bottom of the long arm, and a sliding rail groove adapted to the sliding block is opened inside the auxiliary water tank, and the sliding rail groove is slidably connected to the sliding block. The sliding block cooperates with the sliding rail groove to guide the long arm to make it move in a straight line, thereby transmitting the sprinkler head.

[0016] Preferably, the control host includes a shell, the interior of the shell is equipped with sensors, actuators, communication modules, interface devices, a main board and power supplies and auxiliary devices, and the main board is equipped with a computing system. The top of the shell is equipped with a fill light. The sensors are used to collect various physical quantities on site, such as temperature, pressure, flow and liquid level. The actuator drives the on-site equipment to perform corresponding actions according to the instructions of the control device. The communication module is used to realize communication between control devices and communication between the control device and the host computer or remote monitoring center. The interface device facilitates operators to set, monitor and operate the control device.

[0017] In summary, the present application provides a super high-rise concrete covering and curing structure, which has the following beneficial effects:

[0018] 1. The super high-rise concrete covering maintenance structure automatically absorbs and fixes the main frame to the outside of the wall metal frame through the added electromagnet group when the main frame is working. The main frame is in working state to avoid shaking driven by airflow, thereby greatly improving the overall safety performance of the device;

[0019] 2. The super high-rise concrete covering and curing structure shields the protection board through the added lower curing curtain and upper curing curtain. The lower curing curtain is used to surround and wrap all the exposed areas around the outside of the main frame, and form a sealed chamber on the side wall surface. At the same time, a suitable temperature and humidity condition is created inside the environment, which is conducive to accelerating the cement hardening reaction and shortening the waiting period;

[0020] 3. The super high-rise concrete covering and curing structure, by adding a control host, a camera, a KK module, a main water tank, a pneumatic valve and a secondary water tank, automatically records the area of the wall before spraying water on the wall, and drives the main water tank to collect a fixed amount of water source inside the secondary water tank to spray on the wall according to the area of the wall, thus avoiding water waste when spraying the wall, saving water resources and being environmentally friendly;

[0021] 4. The super high-rise concrete covering and curing structure, through the added gears, stirring rods and racks, automatically stirs the water source inside the secondary water tank when the KK module moves, avoiding the phenomenon of stratification and precipitation of the water source inside the secondary water tank, thereby improving the effect and quality of wetting the wall;

[0022] 5. The super high-rise concrete covering and curing structure, through the added turntable, circular arm, grooved block and long arm, when the stirring rod rotates to stir the water source, automatically drives the sprinkler head to move, thus greatly expanding the overall spraying area of the sprinkler head and greatly saving the overall water consumption of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is the front view of the present invention.

[0024] Figure 2 is the plan view of the present invention.

[0025] Figure 3 is the external view of the water spraying mechanism of the present invention.

[0026] Figure 4 is the side view of the water spraying mechanism of the present invention.

[0027] Figure 5 is the plan view of the water spraying mechanism of the present invention.

[0028] Figure 6 is the external view of the driving mechanism of the present invention.

[0029] Figure 7 is the bottom view of the limiting arm of the present invention.

[0030] DESCRIPTION OF THE REFERENCE NUMERALS:

[0031] 1. Main frame; 11. Electric roller; 12. Protection plate; 2. Top frame; 21. Rope reel; 22. Fixed frame; 3. Electromagnet group; 4. Lower curing curtain; 5. Upper curing curtain; 6. Lifting device; 7. Spraying mechanism; 71. Control host; 72. Camera; 73. KK module; 74. Main water tank; 75. Spraying head; 76. Auxiliary water tank; 77. Track groove block; 78. Track block; 79. Pneumatic valve; 8. Driving mechanism; 81. Gear; 82. Stirring rod; 83. Limiting arm; 84. Turntable; 85. Circular arm; 86. Grooved block; 87. Long arm; 88. Sliding block; 9. Rack. Detailed implementation manners

[0032] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0033] The present application provides a technical solution. Please refer to Figure 1 and 2 , a curing structure for covering super-high-rise concrete, including a main frame 1, a top frame 2 and a lifting device 6. The lifting device 6 is assembled between the top frame 2 and the main frame 1. Both sides of the upper end of the main frame 1 are assembled with an electromagnet group 3 through bolts. Magnetic isolation sleeves are sleeved on the opposite ends of the electromagnet group 3, the lifting device 6 and the top frame 2 to prevent contact between the top frame 2 and the lifting device 6 and the electromagnet group 3. The magnetic isolation sleeve is an aluminum sleeve. An upper curing curtain 5 is assembled on the upper end of the outside of the main frame 1, a lower curing curtain 4 is assembled on the lower end of the outside of the main frame 1, a protection plate 12 is assembled on the upper end of the inner cavity of the main frame 1, and a spraying mechanism 7 is assembled in the inner cavity of the main frame 1.

[0034] The main frame 1 is the core support structure of the entire device, ensuring that the device can withstand various forces and vibrations during operation. The material of the main frame 1 is selected as a high-strength, corrosion-resistant and magnetic metal material, such as austenitic stainless steel material, to ensure that it is not easily deformed or damaged during long-term use, thereby extending the service life of the device. The top frame 2 provides additional support force for the main frame 1 to enhance the stability of the entire device. The lifting device 6 adopts common lifting devices in the prior art, such as hydraulic cylinders, air cylinders or winches, etc. Through the precise control of the lifting device 6, the device can be easily lifted to the designated position, providing convenience for wall construction or maintenance. The protection plate 12 provides comprehensive protection for the wall.

[0035] Please refer to Figure 3 , Figure 4 and Figure 5, the water spraying mechanism 7 includes a control host 71 which is located inside the main frame 1. A camera 72 is assembled on the top of the control host 71 through bolts, and the camera 72 is connected to the control host 71 through a circuit. A KK module 73 is assembled on the back of the control host 71, and both ends of the KK module 73 are connected to the inner cavity of the main frame 1 through bolts. A main water tank 74 is embedded at the bottom of the control host 71, and a water spray head 75 is communicated with the front of the main water tank 74 through a hose. A secondary water tank 76 is assembled on the back of the control host 71, and pneumatic valves 79 are uniformly communicated with the outside of the secondary water tank 76. The other end of the pneumatic valve 79 is communicated with the main water tank 74. A rack 9 is assembled in the inner cavity of the main frame 1, and a driving mechanism 8 is assembled on the top of the secondary water tank 76.

[0036] The control host 71 is used to control the electronic components inside the device to work and their motion states. The camera 72 is used to monitor the wall and the working environment, and the monitoring screen can be uploaded through the control host 71. The KK module 73 is a common linear track module in the prior art and is used to drive the control host 71 to move linearly. Water can be stored inside the main water tank 74. The water spray head 75 is a common atomizing nozzle in the prior art, and a micro water pump is assembled at the input port of the atomizing nozzle, which is used to drive the water source to be discharged through the water spray head 75 for spraying the water source. Water can be stored inside the secondary water tank 76, and a water inlet is assembled on the outside of the secondary water tank 76. The pneumatic valve 79 can control the water source inside the secondary water tank 76 to enter the main water tank 74 for waiting to be used. A water pump is assembled at the input port of the pneumatic valve 79, which can drive the water source to flow. The water source inside the secondary water tank 76 can be a water retention agent and normal water resources for protecting the wall.

[0037] Please refer to Figure 6 and Figure 7 , the driving mechanism 8 includes a gear 81. A stirring rod 82 is fixedly connected to the bottom of the gear 81. A bearing is assembled between the stirring rod 82 and the secondary water tank 76. A turntable 84 is assembled at the bottom of the stirring rod 82. A circular arm 85 is assembled at the bottom of the turntable 84, and a slotted block 86 is slidably connected to the outside of the circular arm 85. A long arm 87 is fixedly connected to the outside of the slotted block 86, and the other end of the long arm 87 is connected to the water spray head 75 through a soft rope.

[0038] The gear 81 can move synchronously with the secondary water tank 76 and is ready to mesh and rotate with the rack 9 at any time. When the secondary water tank 76 moves in the device, the gear 81 moves accordingly, and its tooth surface precisely engages with the tooth surface of the rack 9. Through the principle of gear 81 transmission, the motion is converted into rotational power. The stirring rod 82 is located inside the secondary water tank 76. Driven by the gear 81, the stirring rod 82 starts to rotate. The blade structure generates a stirring force during rotation, enabling the liquid inside the secondary water tank 76 to be fully stirred. This effectively prevents the precipitation and stratification of the liquid and also ensures the uniformity and consistency of the liquid, providing a high-quality liquid source for subsequent spraying operations. The turntable 84 starts to rotate driven by the rotation of the stirring rod 82, and the transmission structure on its surface is tightly connected to the circular arm 85. As the turntable 84 rotates, the circular arm 85 also rotates and transmits. When the circular arm 85 rotates and transmits, its motion is converted into a linear reciprocating motion through the slotted block 86. This realizes the conversion of the motion form and also provides a power source for the motion of the water spray head 75.

[0039] Please refer to the attached instruction manual Figure 7 and the long arm 87 starts to move driven by the slotted block 86. The water spray head 75 connected to its end by a soft rope is pulled and driven to swing accordingly.

[0040] Electric rollers 11 are evenly distributed at the bottom of the main frame 1. The electric roller 11 includes a motor, and the output end of the motor is fixedly connected to the roller body. A controller is assembled outside the motor, and the controller is connected to the control host 71 through a circuit. The motor serves as a power source and is responsible for providing the power required to drive the rotation of the roller body. The roller body is composed of a drum body, a shaft, end caps, and a support. The controller precisely controls the operation of the electric roller 11 through the control host 71, including speed adjustment, direction control, start, and stop.

[0041] On both sides of the top of the top frame 2, rope reels 21 are rotatably connected through pedestal bearings. A rope is connected to the outside of the rope reel 21. One end of the rope is fixed to the outside of the rope reel 21 and wound around the outside of the rope reel 21. The other end of the rope is equipped with a fixed frame 22, and a hole slot is opened on the outside of the fixed frame 22. The outside of the rope reel 21 is designed with a structure for winding the rope.

[0042] A track groove block 77 is assembled in the inner cavity of the main frame 1, and a track groove is opened on the outside of the track groove block 77. A track block 78 is slidably connected inside the track groove, and the outside of the track block 78 is connected to the secondary water tank 76 through bolts. The track groove can guide the track block 78 to perform a linear reciprocating motion, thereby improving the overall operating stability of the device.

[0043] The outer part of the stirring rod 82 is sleeved with a bearing, and a limiting arm 83 is assembled outside the bearing. The other end of the limiting arm 83 is connected to the inside of the auxiliary water tank 76 through a bolt. The bearing can support the stirring rod 82, and the limiting arm 83 can assemble the stirring rod 82 inside the auxiliary water tank 76 to support and stabilize the device.

[0044] A transverse long groove is provided inside the grooving block 86, and the outside of the circular arm 85 is slidably connected to the inside of the long groove. The long groove can accommodate the circular arm 85 to move inside. The long groove and the grooving block 86 of the main body can decompose the circular motion of the circular arm 85 into a transverse motion and a vertical motion. The vertical motion moves inside the long groove, and the transverse motion drives the main body of the grooving block 86 to transmit power.

[0045] A sliding block 88 is assembled at the bottom of the long arm 87. A slide rail groove adapted to the sliding block 88 is provided inside the auxiliary water tank 76, and the slide rail groove is slidably connected to the sliding block 88. The sliding block 88 and the slide rail groove can guide the long arm 87 to perform a linear motion, so as to drive the water spray head 75.

[0046] The control host 71 includes a housing. Inside the housing, a sensor, an actuator, a communication module, an interface device, a main board, and a power supply and auxiliary device are assembled. A computing system is installed inside the main board. A supplementary light is assembled on the top of the housing. The sensor is used to collect various physical quantities on site, such as temperature, pressure, flow rate, and liquid level. The actuator drives the on-site equipment to perform corresponding actions according to the instructions of the control device. The communication module is used to realize the communication between control devices, as well as the communication between the control device and the upper computer or the remote monitoring center. The interface device facilitates the operator to set, monitor, and operate the control device.

[0047] In this solution, first, the rope reel 21 is inserted and fixed by a pin shaft to restrict rotation, and the rope is fixed to the external frame of the wall, so as to reinforce the position of the top frame 2 and prevent the top frame 2 from being shaken by the airflow during windy and rainy weather. The electromagnet group 3 is started to adsorb the metal parts in the floor frame to reinforce the overall main frame 1. The upper maintenance curtain 5 and the lower maintenance curtain 4 are assembled. The upper maintenance curtain 5 is used to block the protection plate 12, and the lower maintenance curtain 4 is used to wrap around the outside of the main frame 1 in a circle to cover all the exposed areas, and form a sealed chamber on the side wall surface. At the same time, a suitable temperature and humidity condition is created in the internal environment, which is beneficial to accelerating the cement hardening reaction and shortening the waiting period.

[0048] The camera 72 captures and records objects, covering and recording the entire area wrapped by the main frame 1, and transmits the recording results to the control host 71 in real time. The control host 71 analyzes the video data with its computing power and controls the spraying amount of the water source accordingly. Ensure that the water source can be sprayed according to the requirements of the pre-recorded area. The water source enters the interior of the main water tank 74 through the cooperation of the auxiliary water tank 76 and the pneumatic valve 79. Subsequently, through the sprinkler head 75, the water source is evenly and carefully sprayed on the wall.

[0049] The KK module 73 drives the main water tank 74 to move, ensuring that the water source can evenly cover every corner of the wall.

[0050] When the control host 71 and the auxiliary water tank 76 move, the transmission gear 81 meshes with the rack 9, generating rotational power. The rotational power drives the stirring rod 82 to fully agitate the water source inside the auxiliary water tank 76, effectively avoiding sedimentation and stratification of the water source, and ensuring the uniformity and consistency of the water source.

[0051] The rotation of the stirring rod 82 not only agitates the water source but also drives the rotation of the turntable 84. The turntable 84 drives the slotted block 86 to perform linear reciprocating motion through the transmission of the circular arm 85. Transmitted to the sprinkler head 75 through the long arm 87, causing it to move significantly. Expanding the overall spraying area of the sprinkler head 75, thereby saving the overall water consumption of the device and improving the water resource utilization efficiency.

[0052] The electromagnet group 3 automatically adsorbs and fixes the main frame 1 firmly outside the wall metal frame, ensuring that the main frame 1 remains stable during operation and effectively avoiding jitter caused by air flow driving. Improving the overall safety performance of the device and ensuring the smooth progress of the work.

[0053] In this solution, magnetic isolation aluminum sleeves are sleeved on the opposite ends of the electromagnet group 3, the lifting device 6, and the top frame 2, effectively preventing the magnetic field generated by the electromagnet group 3 when energized from having a magnetic influence on the lifting device 6 and the top frame 2. When the electromagnet group 3 is energized, the generated magnetic field only acts on the metal parts in the floor frame to achieve adsorption and fixation, without causing any magnetic interference to the upper top frame 2 and the lifting device 6.

[0054] The top frame 2 is physically connected to the floor frame through ropes and the fixing frame 22 and does not rely on magnetism, so it will not be affected by the interaction between the electromagnet group 3 and the metal parts, ensuring its stability under various weather conditions. Even when the electromagnet group 3 works, it will not cause any interference to it.

[0055] The lifting device 6 mainly controls the lifting of the main frame 1 and has no direct interaction with the electromagnet group 3 and the metal parts in the floor frame. Therefore, even if the electromagnet group 3 adsorbs to the metal parts, it will not affect the normal operation of the lifting device 6.

[0056] The addition of the lower curing curtain 4 and the upper curing curtain 5 provides comprehensive shielding for the protection plate 12. The lower curing curtain 4 closely surrounds the outside of the main frame 1 in a circle, completely wrapping all the exposed areas, and forming a sealed chamber on the side wall surface. The sealed chamber creates suitable temperature and humidity conditions for the internal environment, which is conducive to accelerating the hardening reaction of cement, shortening the waiting period, and improving work efficiency.

[0057] The addition of the control host 71, camera 72, KK module 73, main water tank 74, pneumatic valve 79, and auxiliary water tank 76 realizes the intelligent management in the early stage of wall spraying. They automatically record the area of the wall, and drive the main water tank 74 to collect a fixed amount of water source inside the auxiliary water tank 76 according to the recording result to accurately spray the wall. It effectively avoids the phenomenon of water waste caused by spraying the wall, saving precious water resources.

[0058] The addition of the gear 81, stirring rod 82, and rack 9 further improves the performance of the device. When the KK module 73 moves, they automatically stir the water source inside the auxiliary water tank 76 sufficiently to ensure the uniformity and consistency of the water source. This design effectively avoids the phenomenon of layering and precipitation of the water source inside the auxiliary water tank 76, improving the effect and quality of wall wetting.

[0059] Finally, the ingenious combination of the turntable 84, circular arm 85, grooving block 86, and long arm 87 enables the stirring rod 82 to automatically drive the sprinkler head 75 to move significantly while rotating and stirring the water source. This innovative design not only expands the overall spraying area of the sprinkler head 75.

[0060] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0061] Although the embodiments of the present application have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present application. The scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A super high-rise concrete covering and curing structure, comprising a main frame (1), a top frame (2) and a lifting device (6), wherein the lifting device (6) is assembled between the top frame (2) and the main frame (1), and is characterized in that: Electromagnet groups (3) are mounted on both sides of the upper end of the main frame (1) by bolts, an upper maintenance curtain (5) is mounted on the outer upper end of the main frame (1), a lower maintenance curtain (4) is mounted on the outer lower end of the main frame (1), a protective plate (12) is mounted on the inner cavity of the main frame (1), a water spray mechanism (7) is mounted on the inner cavity of the main frame (1), and a driving mechanism (8) is mounted on the water spray mechanism (7); The water spray mechanism (7) comprises a control host (71), the control host (71) is located inside the main frame (1), a camera (72) is installed on the top of the control host (71) by bolts, and the camera (72) and the control host (71) are connected by a line, a KK module (73) is installed on the back of the control host (71), and both ends of the KK module (73) are connected to the inner cavity of the main frame (1) by bolts, a main water tank (74) is embedded in the bottom of the control host (71), and the front of the main water tank (74) is connected to a water spray head (75) through a hose, an auxiliary water tank (76) is installed on the back of the control host (71), and the outside of the auxiliary water tank (76) is evenly connected to a pneumatic valve (79), and the other end of the pneumatic valve (79) is connected to the main water tank (74), the inner cavity of the main frame (1) is installed with a rack (9), and the drive mechanism (8) is installed on the top of the auxiliary water tank (76); The driving mechanism (8) comprises a gear (81), a stirring rod (82) is fixedly connected to the bottom of the gear (81), a bearing is installed between the stirring rod (82) and the auxiliary water tank (76), a rotating disk (84) is installed at the bottom of the stirring rod (82), a round arm (85) is installed at the bottom of the rotating disk (84), and a slotted block (86) is slidably connected to the outside of the round arm (85), a long arm (87) is fixedly connected to the outside of the slotted block (86), and the other end of the long arm (87) is connected to the water spray head (75) through a soft rope.

2. The super high-rise concrete covering and curing structure according to claim 1 is characterized in that: The bottom of the main frame (1) is evenly distributed with electric rollers (11), the electric rollers (11) comprising an electric motor, and the output end of the electric motor is fixedly connected to the roller body, the outside of the electric motor is equipped with a controller, and the controller is connected to the control host (71) via a line.

3. The super high-rise concrete covering and curing structure according to claim 1 is characterized in that: Both sides of the top of the top frame (2) are rotatably connected to a rope drum (21) via seat bearings, the outside of the rope drum (21) is connected to a rope, and the other end of the rope is equipped with a fixing frame (22), and the outside of the fixing frame (22) is provided with a hole groove.

4. The super high-rise concrete covering and curing structure according to claim 1 is characterized in that: The inner cavity of the main frame (1) is equipped with a track slot block (77), and the outside of the track slot block (77) is provided with a track slot, the inside of the track slot is slidably connected to a track block (78), and the outside of the track block (78) is connected to the auxiliary water tank (76) by bolts.

5. The super high-rise concrete covering and curing structure according to claim 1 is characterized in that: The outside of the stirring rod (82) is sleeved with a bearing, and the outside of the bearing is equipped with a limit arm (83), and the other end of the limit arm (83) is connected to the inside of the auxiliary water tank (76) through a bolt.

6. The super high-rise concrete covering and curing structure according to claim 1, characterized in that: A transverse long slot is formed inside the slotted block (86), and the inside of the long slot is slidably connected to the outside of the round arm (85).

7. The super high-rise concrete covering and curing structure according to claim 1 is characterized in that: A sliding block (88) is mounted on the bottom of the long arm (87), a sliding rail groove matching the sliding block (88) is provided inside the auxiliary water tank (76), and the sliding rail groove is slidably connected to the sliding block (88).

8. The super high-rise concrete covering and curing structure according to claim 1, characterized in that: The control host (71) comprises a shell, the interior of which is equipped with a sensor, an actuator, a communication module, an interface device, a mainboard, a power supply and auxiliary equipment, and the interior of the mainboard is equipped with a computing system, and the top of the shell is equipped with a fill light.

9. The super high-rise concrete covering and curing structure according to claim 1, characterized in that: The main frame (1) comprises a frame, the exterior of which is evenly provided with reinforcing ribs, and the front of the main frame (1) is of an open design.

Citation Information

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