Concrete moisturizing and curing device
By designing an automated concrete moisturizing and curing device, the problems of time-consuming and labor-intensive manual operation and water waste have been solved, achieving efficient and economical concrete curing results, reducing labor costs and improving the stability of the device and the quality of curing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUHAN MUNICIPAL CONSTR GROUP
- Filing Date
- 2024-12-13
- Publication Date
- 2026-05-12
AI Technical Summary
Existing concrete curing methods involve manual operation, which is time-consuming and labor-intensive, wastes water resources significantly, and is not sustainable, resulting in high labor costs and rapid moisture loss.
A concrete moisturizing and curing device including a filtration mechanism and a spraying mechanism was designed. The device uses an intelligent control panel to control the water suction pump and the pressurization pump. Combined with the scraping component and the filter screen, it realizes automated water resource management and uniform spraying, ensuring continuous and efficient curing effect.
It reduces the need for manual operation, saves water resources, improves the economy and stability of maintenance work, and ensures the continuity and quality of concrete curing.
Smart Images

Figure CN224228288U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pump room technology, and in particular to a concrete moisture retention and curing device. Background Technology
[0002] All concrete projects require curing after the concrete is poured. The purpose of this curing is to allow the concrete strength to continue to increase, reach the design strength within the specified age, and prevent the concrete surface from cracking due to drying.
[0003] The existing concrete curing method involves placing a water pump on the riverbank or in a bucket, then connecting the pump with a water pipe. Once connected, workers pick up the water pipe and begin large-area spraying curing. In the current technology, continuous manual spraying not only increases labor costs but also takes a lot of time and effort. In addition, it causes a lot of water waste during the spraying process. Furthermore, this method of moisturizing curing is not sustainable and moisture is lost quickly. Utility Model Content
[0004] The purpose of this invention is to provide a concrete moisture retention and curing device to solve at least one of the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a concrete moisture retention and curing device, comprising a filtration mechanism, with two spraying mechanisms at the front end of the filtration mechanism; the filtration mechanism includes two scraping components, each of which includes a scraper, a waterproof telescopic rod, a connector, a rotating rod, a return spring, and two filter screens; the bottom end of the return spring is fixedly connected to the top of the waterproof telescopic rod; the rotating rod passes through the front end of the waterproof telescopic rod and the connector, and is fixedly connected to the waterproof telescopic rod, allowing the waterproof telescopic rod to rotate on the rotating rod; the top of the connector is fixedly connected to the top of the return spring at the bottom of the scraper; the return spring is located at the rear end of the connector; and the two filter screens are respectively fixedly connected to the scraper. The filter mechanism includes a cover, a T-shaped pipe, a water pump, a filter box, and a filter screen. The water pump is located on the left side of the filter box. One end of the T-shaped pipe is detachably connected to the output end of the water pump, and both ends of the T-shaped pipe pass through the filter box. The T-shaped pipe is detachably connected to the filter box. A T-shaped partition is provided in the filter box. The T-shaped partition is integrally formed with the filter box. A storage opening is provided at the front end of the top of the T-shaped partition. The filter screen is placed in the storage opening and is detachably connected to the T-shaped partition. The cover is detachably connected to the top of the filter box. The bottoms of the two waterproof telescopic rods are fixedly connected to the bottom of the inner wall of the filter box. The front ends of the two scraping parts are close to the rear end of the filter screen.
[0006] Preferably, each of the two spraying mechanisms includes an electric telescopic rod, a connecting rod, two connecting pipes, two flexible water pipes, and six nozzles. The top of the movable end of the electric telescopic rod is fixedly connected to the bottom of the connecting rod. The rear end of the connecting rod is detachably connected to the front ends of the two connecting pipes on both sides. The six nozzles are fixedly connected to the front ends of the two connecting pipes and communicate with the two connecting pipes. One end of each of the two flexible water pipes passes through the rear ends of the two connecting pipes and communicates with the two connecting pipes. The two spraying mechanisms also include a support plate, a laser rangefinder, and two pressurized water pumps. The right outlet of each of the two pressurized water pumps is fixedly connected to one end of a three-way connecting pipe. The support plate is located at the bottom of the laser rangefinder, and the two pressurized water pumps are fixedly connected to the top of the laser rangefinder.
[0007] Preferably, the concrete moisture retention and curing device further includes an intelligent control panel and four casters, with the intelligent control panel positioned on top of the four casters.
[0008] Preferably, the intelligent control panel is detachably connected to the top of the cover, the support plate and the laser rangefinder are both fixedly connected to the front end of the filter box, the two pressurized water pumps pass through the front end of the filter box, the two pressurized water pumps are detachably connected to the filter box, and the inlets of the two pressurized water pumps are connected to the filter box.
[0009] Preferably, the intelligent control panel is electrically connected to the water pump, the intelligent control panel is electrically connected to the two electric telescopic poles, the intelligent control panel is electrically connected to the two pressurized water pumps, the intelligent control panel is electrically connected to the laser rangefinder, and the intelligent control panel is electrically connected to the two waterproof telescopic poles.
[0010] Preferably, the other ends of the four flexible water pipes are detachably connected to the other two ends of the two three-way connecting pipes, and the bottom of the fixed ends of the two electric telescopic rods are detachably connected to the top of the support plate.
[0011] The beneficial effects of this utility model are as follows:
[0012] 1. In this utility model, the device controls the operation of the suction pump and the booster pump through an intelligent control panel, which can accurately adjust the water volume according to actual needs, avoid excessive consumption of water resources, reduce manual operation, lower labor costs, and improve the economy of maintenance work.
[0013] 2. In this utility model, the device can effectively remove impurities in the water by adding a filter mechanism, a homogeneous filter screen and a scraper assembly, thereby preventing the nozzle from being blocked by debris. The scraper assembly cleans the filter screen regularly under the action of the waterproof telescopic rod, ensuring the continuous and efficient operation of the filtration system, reducing equipment failures and maintenance frequency caused by impurities, improving the stability and reliability of the entire device, and ensuring the continuity of maintenance work. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0015] Figure 2 This is a three-dimensional structural diagram of the intelligent control panel mechanism of this utility model;
[0016] Figure 3 This is a three-dimensional structural diagram of the filter box mechanism of this utility model;
[0017] Figure 4 This is a three-dimensional structural diagram of the reset spring mechanism of this utility model.
[0018] In the diagram: 1. Connecting pipe; 2. Flexible water pipe; 3. Cover; 4. Intelligent control panel; 5. T-joint; 6. Water pump; 7. Casters; 8. Filter box; 9. Support plate; 10. Electric telescopic rod; 11. Nozzle; 12. Booster pump; 13. Filter screen; 14. Scraper; 15. Filter screen; 16. Connecting rod; 17. Laser rangefinder; 18. Waterproof telescopic rod; 19. Connector; 20. Rotating rod; 21. Return spring. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] This utility model provides, for example Figure 1-4The concrete moisture retention and curing device shown includes a filtration mechanism with two spraying mechanisms at its front end. The filtration mechanism includes two scraping components, each comprising a scraper 14, a waterproof telescopic rod 18, a connector 19, a rotating rod 20, a return spring 21, and two filter screens 13. The bottom end of the return spring 21 is fixedly connected to the top of the waterproof telescopic rod 18. The rotating rod 20 passes through the front end of the waterproof telescopic rod 18 and the connector 19, and is fixedly connected to the waterproof telescopic rod 18. The waterproof telescopic rod 18 can rotate on the rotating rod 20. The top of the connector 19 is fixedly connected to the top of the return spring 21 at the bottom of the scraper 14. The return spring 21 is located at the rear end of the connector 19. Two filter screens 13 are fixedly connected to the scraper 14 on both sides. The filtration mechanism also includes a cover 3, a three-way pipe 5, a water pump 6, a filter box 8, and a filter screen 15. The water pump 6 is located on the left side of the filter box 8. One end of the three-way pipe 5 is detachably connected to the output end of the water pump 6. The other two ends of the three-way pipe 5 pass through the filter box 8 and are detachably connected to the filter box 8. A T-shaped partition is provided in the filter box 8. The plate and filter box 8 are integrally formed. A storage opening is provided at the front end of the top of the T-shaped partition, and the filter screen 15 is placed inside the storage opening. The filter screen 15 is detachably connected to the T-shaped partition. The cover 3 is detachably connected to the top of the filter box 8. The bottoms of the two waterproof telescopic rods 18 are fixedly connected to the bottom of the inner wall of the filter box 8, and the front ends of the two scraper parts 14 are close to the rear end of the filter screen 15. The concrete moisture-curing device also includes an intelligent control panel 4 and four casters 7. The intelligent control panel 4 is located on top of the four casters 7 and is detachably connected to the top of the cover 3. The support plate 9 and the laser rangefinder 17 are both fixedly connected to the front end of the filter box 8. The two pressurized water pumps 12 pass through the front end of the filter box 8 and are detachably connected to the filter box 8. The inlets of the two pressurized water pumps 12 are connected to the filter box 8. The intelligent control panel 4 is electrically connected to the water pump 6, the two electric telescopic rods 10, the two pressurized water pumps 12, the laser rangefinder 17, and the two waterproof telescopic rods 18.The user starts the water pump 6 via the intelligent control panel 4. The water pump 6 starts running and generates a strong suction to draw water from the external water source. Under the action of suction, the water flows quickly along the pipe and enters the filter box 8 through the three-way pipe 5. The two filter screens 13 are fixedly connected to the scraper 14 on both sides and work together with the scraper 14. The user starts the waterproof telescopic rod 18 at a timer via the intelligent control panel 4. After receiving the command, the waterproof telescopic rod 18 starts to move. The extension and retraction of the waterproof telescopic rod 18 causes the scraper 14 to move smoothly on the filter screen 13. The scraping tooth structure on the scraper 14 can effectively scrape off the debris stuck to the filter screen 13, ensuring the filtration performance of the filter screen 13. During this process, the return spring 21 is set at the rear end of the connector 19. This structure makes the front end of the scraper 14 always close to the rear end of the filter screen 15 under the elastic force of the return spring 21. After the scraping action is completed, the scraper 14 returns to the initial position under the action of the return spring 21, ready for the next scraping work.
[0021] Both spraying mechanisms include an electric telescopic rod 10, a connecting rod 16, two connecting pipes 1, two flexible water pipes 2, and six nozzles 11. The top of the movable end of the electric telescopic rod 10 is fixedly connected to the bottom of the connecting rod 16. The rear end of the connecting rod 16 is detachably connected to the front end of the two connecting pipes 1 on both sides. The six nozzles 11 are fixedly connected to the front end of the two connecting pipes 1 and are connected to the two connecting pipes 1 respectively. One end of each of the two flexible water pipes 2 passes through the rear end of the two connecting pipes 1 and is connected to the two connecting pipes 1 respectively. The two spraying mechanisms also include a support plate 9, a laser rangefinder 17, and two pressurized water pumps 12. The right outlet of each of the two pressurized water pumps 12 is fixedly connected to one end of a three-way connecting pipe. The support plate 9 is located at the bottom of the laser rangefinder 17, and the two pressurized water pumps 12 are fixedly connected to the top of the laser rangefinder 17. The other ends of the four flexible water pipes 2 are detachably connected to the other two ends of the two three-way connecting pipes. The bottom of the fixed end of each of the two electric telescopic rods 10 is detachably connected to the top of the support plate 9.The user activates two pressurized water pumps 12 via the intelligent control panel 4. The pressurized water pumps 12 begin operating, drawing water from the purified water zone at the front of the filter box 8. The inlet of the pressurized water pump 12 is connected to the filter box 8, enabling precise extraction of filtered clean water. Each of the two pressurized water pumps 12 has a fixed T-connector pipe at one end on its right side. The water drawn from the filter box 8 is pressurized by the pressurized water pumps 12 and then transported in two directions through the T-connector pipes. The other ends of the four flexible water pipes 2 are respectively connected to two T-connector pipes... The two ends are detachable. Water flows through the flexible water pipe 2 to the connecting pipe 1 of the two spraying mechanisms. One end of the flexible water pipe 2 passes through the rear end of the connecting pipe 1 and is connected to the connecting pipe 1, allowing water to smoothly enter the connecting pipe 1. At the same time, the intelligent control panel 4 starts the electric telescopic rod 10. The top of the movable end of the electric telescopic rod 10 is fixedly connected to the bottom of the connecting rod 16. The electric telescopic rod 10 extends and retracts according to the data measured by the laser rangefinder 17. The laser rangefinder 17 monitors the distance from the nozzle 11 to the concrete surface in real time and transmits the data to the intelligent control panel. 4; The intelligent control panel 4 controls the extension length of the electric telescopic rod 10 according to preset distance parameters, thereby precisely adjusting the height of the nozzle 11 to ensure that the nozzle 11 maintains a suitable distance from the concrete surface, so as to achieve the best water spraying coverage effect; Six nozzles 11 are fixedly connected to the front ends of the two connecting pipes 1 respectively, and the nozzles 11 are connected to the connecting pipes 1; When water enters the connecting pipes 1, it is evenly sprayed out from the six nozzles 11 under pressure, forming a fine water mist, which is evenly sprinkled on the concrete surface to achieve moisturizing and curing of the concrete. The design of the nozzles 11 can make the water mist spraying range wider and more uniform, effectively preventing the concrete surface moisture from evaporating too quickly and ensuring the curing quality of the concrete; When the concrete moisturizing and curing work is completed or the spraying mechanism is stopped as needed, the user can turn off the pressurized water pump 12, electric telescopic rod 10 and other equipment in sequence through the intelligent control panel 4, and the entire spraying mechanism will stop working; Afterwards, the spraying mechanism can be inspected and cleaned, such as checking whether the nozzles 11 are blocked and cleaning any impurities that may remain in the connecting pipes 1, to prepare for the next use.
[0022] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A concrete moisture retention and curing device, characterized in that: It includes a filtration mechanism, and the filtration mechanism has two spraying mechanisms at its front end; The filtration mechanism includes two scraping components, each of which includes a scraper (14), a waterproof telescopic rod (18), a connector (19), a rotating rod (20), a return spring (21), and two filter screens (13). The bottom end of the return spring (21) is fixedly connected to the top of the waterproof telescopic rod (18). The rotating rod (20) passes through the front end of the waterproof telescopic rod (18) and the connector (19). The rotating rod (20) is fixedly connected to the waterproof telescopic rod (18), and the waterproof telescopic rod (18) can rotate on the rotating rod (20). The top of the connector (19) is fixedly connected to the top end of the return spring (21) at the bottom of the scraper (14). The return spring (21) is located at the rear end of the connector (19). The two filter screens (13) are respectively fixedly connected to the sides of the scraper (14). The filtration mechanism also includes a cover (3), a three-way pipe (5), a water pump (6), a filter box (8), and a filter screen (15). The water pump (6) is located on the left side of the filter box (8). One end of the three-way pipe (5) is detachably connected to the output end of the water pump (6). The other two ends of the three-way pipe (5) pass through the filter box (8). The three-way pipe (5) is detachably connected to the filter box (8). A T-shaped partition is provided in the filter box (8). The T-shaped partition is integrally formed with the filter box (8). A storage opening is provided at the front end of the top of the T-shaped partition. The filter screen (15) is placed in the storage opening. The filter screen (15) is detachably connected to the T-shaped partition. The cover (3) is detachably connected to the top of the filter box (8). The bottom of both waterproof telescopic rods (18) is fixedly connected to the bottom of the inner wall of the filter box (8), and the front ends of the two scraping parts (14) are close to the rear end of the filter screen (15).
2. The concrete moisture retention and curing device according to claim 1, characterized in that: Both spraying mechanisms include an electric telescopic rod (10), a connecting rod (16), two connecting pipes (1), two flexible water pipes (2), and six nozzles (11). The top of the movable end of the electric telescopic rod (10) is fixedly connected to the bottom of the connecting rod (16). The rear end of the connecting rod (16) is detachably connected to the front end of the two connecting pipes (1) on both sides. The six nozzles (11) are fixedly connected to the front end of the two connecting pipes (1) and are connected to the two connecting pipes (1). One end of each of the two flexible water pipes (2) passes through the rear end of the two connecting pipes (1) and is connected to the two connecting pipes (1). The two spraying mechanisms also include a support plate (9), a laser rangefinder (17), and two pressurized water pumps (12). The right outlet of each of the two pressurized water pumps (12) is fixedly connected to one end of a three-way connecting pipe. The support plate (9) is located at the bottom of the laser rangefinder (17), and the two pressurized water pumps (12) are fixedly connected to the top of the laser rangefinder (17).
3. The concrete moisture retention and curing device according to claim 2, characterized in that: The concrete moisture retention and curing device also includes an intelligent control panel (4) and four casters (7), with the intelligent control panel (4) located on top of the four casters (7).
4. The concrete moisture retention and curing device according to claim 3, characterized in that: The intelligent control panel (4) is detachably connected to the top of the cover (3). The support plate (9) and the laser rangefinder (17) are both fixedly connected to the front end of the filter box (8). The two pressurized water pumps (12) pass through the front end of the filter box (8). The two pressurized water pumps (12) are detachably connected to the filter box (8). The inlets of the two pressurized water pumps (12) are connected to the filter box (8).
5. The concrete moisture retention and curing device according to claim 4, characterized in that: The intelligent control panel (4) is electrically connected to the water pump (6), the intelligent control panel (4) is electrically connected to the two electric telescopic rods (10), the intelligent control panel (4) is electrically connected to the two pressurized water pumps (12), the intelligent control panel (4) is electrically connected to the laser rangefinder (17), and the intelligent control panel (4) is electrically connected to the two waterproof telescopic rods (18).
6. The concrete moisture retention and curing device according to claim 4, characterized in that: The other ends of the four flexible water pipes (2) are detachably connected to the other ends of the two three-way connecting pipes, and the bottom of the fixed ends of the two electric telescopic rods (10) are detachably connected to the top of the support plate (9).