Maintenance device with uniform watering function for pier column construction

By designing a uniform sprinkler device with curved plates and spray heads, the problem of uneven spraying during pier column construction is solved, full coverage and flexible adaptability of the pier column surface are achieved, and the maintenance effect is improved.

CN120465719APending Publication Date: 2025-08-12THE SECOND CONSTRUCTION CO LTD OF CHINA CONSTRUCTION THIRD ENGINEERING BUREAU
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Patent Information

Application Number
CN202510556075.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2025-03-27
Filing Date
2025-04-29
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

The existing maintenance device for pier column construction has the problem of inadequate spraying at the gaps when spraying water, resulting in uneven sprinkling of water and affecting the maintenance effect of pier columns.

Method used

A uniform sprinkler device including a water tank assembly, a first drive assembly, a second drive assembly, two sets of half-pipe assembly, a plurality of arc plates and a plurality of spray heads is designed. The second drive assembly drives the arc plate to rotate, and the spray head is driven to rotate circumferentially to ensure that the water spray evenly covers the surface of the pier column, and a removable connected arc tube is used to adapt to the pier columns of different sizes.

Benefits of technology

The uniformity of water spray is achieved, ensuring full coverage of the pier surface, improving the maintenance effect, and improving the flexibility and maintenance convenience of the device through removable connected arc tubes.

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Abstract

The invention discloses a pier column construction maintenance device capable of uniformly spraying water. The pier column construction maintenance device comprises a water tank assembly, a first driving assembly, a second driving assembly, two half-pipe assemblies, a plurality of arc-shaped plates and a plurality of spray heads. The first driving assembly is connected to the water tank assembly; the two groups of half-pipe assemblies are symmetrically arranged, each group of half-pipe assembly comprises one or more arc-shaped pipes which are detachably connected, and the arc-shaped pipe close to the first driving assembly is connected with the first driving assembly; the first driving assembly is used for driving the two half-pipe assemblies to rotate relatively so as to be opened and closed. An annular water outlet is formed in the inner side of the arc-shaped pipe, and an inner cavity of the arc-shaped pipe is slidably connected with an arc-shaped plate. The outer side wall of the arc-shaped plate is connected with a plurality of spray heads, and each spray head communicates with the water tank assembly and can spray water to the pier column through the water outlet; the second driving assembly is in transmission connection with at least one arc-shaped plate. Uniform watering on the pier column is achieved, and the maintenance effect of the pier column is effectively improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of maintenance devices, in particular to a maintenance device for pier column construction with uniform water sprinkling. Background Art

[0002] As a critical component of a building structure, pier columns are crucial for their stability and safety. During pier construction, concrete pouring is typically used to create a sturdy column. However, after pouring, dry cracks easily develop on the concrete surface due to factors such as evaporation and temperature fluctuations. These cracks not only affect the aesthetics of the pier columns but also weaken their structural strength, posing a potential threat to the long-term use of the building.

[0003] To prevent dry cracking in pier column concrete and ensure that pier column quality meets design requirements, effective curing measures must be implemented. This brings us to the importance of curing devices used in pier column construction. These curing devices provide a suitable curing environment tailored to the specific characteristics of pier column concrete. By controlling temperature, humidity, and other conditions, these curing devices reduce moisture evaporation from the concrete surface, lowering thermal stress and thus effectively preventing dry cracking.

[0004] After the pier column concrete is poured, construction workers immediately cover it with a curing device to ensure adequate protection during the initial setting and hardening process. The use of the curing device not only improves the pier column construction quality, but also shortens the construction period and reduces subsequent maintenance costs. Therefore, the use of curing devices to maintain the pier column concrete is an essential and important step during pier construction. Summary of the Invention

[0005] In order to evenly sprinkle water on the pier columns and effectively improve the maintenance effect of the pier columns, the present invention provides a maintenance device for pier column construction with even water sprinkling.

[0006] An embodiment of the present invention provides a maintenance device for pier column construction with uniform water sprinkling, comprising a water tank assembly, a first drive assembly, a second drive assembly, two sets of half-pipe assemblies, a plurality of curved plates, and a plurality of sprinklers;

[0007] The first drive assembly is connected to the water tank assembly;

[0008] The two groups of half-tube assemblies are symmetrically arranged, and each group of half-tube assemblies includes one or more detachably connected arc-shaped tubes, wherein the arc-shaped tube close to the first driving assembly is connected to the first driving assembly;

[0009] The first driving assembly is used to drive the two sets of half-tube assemblies to rotate relative to each other to open and close;

[0010] An annular water outlet is provided on the inner side of the arc-shaped tube, and the inner cavity of the arc-shaped tube is slidably connected to the arc-shaped plate;

[0011] The outer side wall of the arc-shaped plate is connected to a plurality of the nozzles, and each of the nozzles is connected to the water tank assembly, and each of the nozzles can spray water toward the pier through the water outlet;

[0012] The second driving assembly is in driving connection with at least one of the arc-shaped plates, and is used to drive the arc-shaped plate to rotate, thereby driving all of the arc-shaped plates to perform circular rotation.

[0013] Optionally, it further includes a conical gear ring connected to the arc-shaped plate;

[0014] The second drive assembly includes a first motor and a bevel gear;

[0015] The first motor is arranged on the outer side wall of the arc tube, and the output shaft of the first motor is connected to the bevel gear;

[0016] The bevel gear is meshed with the bevel gear ring.

[0017] Optionally, the first driving assembly includes a first gear arm, a second gear arm and a second motor;

[0018] The second motor is connected to the water tank assembly, and the output end of the second motor is connected to the first gear arm;

[0019] The second gear arm is rotatably connected to the water tank assembly and meshes with the first gear arm;

[0020] The ends of the first gear arm and the second gear arm are both connected to one of the arc-shaped tubes.

[0021] Optionally, it also includes a water pump, a water extraction pipe and a water delivery pipe;

[0022] The water pump is connected to the water tank assembly;

[0023] The two ends of the water pump are respectively connected to the water pumping pipe and the water delivery pipe;

[0024] The water pump is connected to the water tank assembly;

[0025] The water delivery pipe is communicated with the plurality of nozzles.

[0026] Optionally, a filtering mechanism is also included;

[0027] The filtering mechanism includes a water inlet hopper and a filtering belt;

[0028] The water inlet hopper is arranged above the water tank assembly and is in communication with the water tank assembly;

[0029] The filter belt is connected to the water inlet hopper and covers the water inlet of the water inlet hopper.

[0030] Optionally, the filtering mechanism further includes a collection box, a third motor, a transmission roller and a driving roller;

[0031] The aggregate box is connected to the water inlet hopper;

[0032] The collecting box is provided with an inner cavity, and a first opening is provided on a side facing the water inlet hopper;

[0033] The filter belt is sleeved on the outer sides of the transmission roller and the driving roller, and the transmission roller and the driving roller are arranged opposite to each other;

[0034] The transmission roller is rotatably connected to the water inlet bucket;

[0035] The driving roller is arranged in the inner cavity;

[0036] The third motor is connected to the collecting box, and the output end of the third motor is connected to the driving roller;

[0037] The third motor is used to drive the driving roller to rotate, thereby driving the filter belt to rotate, so that the debris on the filter belt falls into the inner cavity through the first opening.

[0038] Optionally, the filtering mechanism further includes a first pulley, a second pulley, a conveyor belt and a brush roller;

[0039] The brush roller is arranged in the inner cavity and is rotatably connected to the collecting box, and the brush roller abuts against the filter belt;

[0040] The first pulley is connected to the free end of the brush roller, the second pulley is connected to the free end of the driving roller, and the outer sides of the first pulley and the second pulley are sleeved with the conveyor belt.

[0041] Optionally, the filtering mechanism further includes a collection box;

[0042] The aggregate box is provided with a second opening;

[0043] The aggregate box includes a receiving portion and a connecting portion;

[0044] The receiving portion can be received in the inner cavity and is used to collect debris;

[0045] The connecting portion is capable of covering the second opening.

[0046] Optionally, a sealing strip is further included between the arc tube and the arc plate.

[0047] Optionally, it also includes a fixing frame and lifting device;

[0048] The fixing bracket is connected to the bottom of the water tank assembly;

[0049] The lifting device is connected to the fixing frame.

[0050] The beneficial effects of the above technical solutions provided in the embodiments of the present invention include at least:

[0051] An embodiment of the present invention provides a maintenance device for pier construction that evenly sprinkles water. By providing a water tank assembly, a first drive assembly, a second drive assembly, two groups of half-pipe assemblies, a plurality of curved plates, and a plurality of nozzles, the water tank assembly can be connected to each nozzle to achieve a water supply function. The second drive assembly is in transmission connection with at least one curved plate. The second drive assembly is used to drive the curved plate to rotate, thereby driving all curved plates and nozzles to rotate in a circular motion. This allows the multiple nozzles to spray water while rotating, avoiding the problem of insufficient spraying in gaps. This ensures uniform water spraying, covers the entire pier surface, and maintains the pier's maintenance effect. Furthermore, because each group of half-pipe assemblies includes one or more detachably connected curved tubes, it can accommodate piers of different sizes, improving flexibility.

[0052] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or will be understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures particularly pointed out in the written description and the accompanying drawings.

[0053] The technical solution of the present invention is further described in detail below through the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0054] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0055] Figure 1 A schematic diagram of the three-dimensional structure of a maintenance device provided in an embodiment of the present invention;

[0056] Figure 2 A schematic diagram of the main structure of the maintenance device provided in an embodiment of the present invention;

[0057] Figure 3 A schematic diagram of the three-dimensional structure of an arc tube provided in an embodiment of the present invention;

[0058] Figure 4 A schematic diagram of the three-dimensional structure of a bevel gear ring provided in an embodiment of the present invention;

[0059] Figure 5 A schematic diagram of a three-dimensional cross-sectional structure of a water tank assembly provided in an embodiment of the present invention;

[0060] Figure 6 A schematic diagram of the three-dimensional structure of a water pump provided in an embodiment of the present invention;

[0061] Figure 7 A schematic diagram of the three-dimensional structure of a driving roller provided in an embodiment of the present invention;

[0062] Description of reference numerals:

[0063] 1. Water tank assembly; 101. Partition; 102. Water tank body; 2. Fixed frame; 3. Filter mechanism; 301. Water inlet hopper; 302. Collecting box; 303. Collecting box; 304. Third motor; 305. Drive roller; 306. Filter belt; 307. Brush roller; 308. First pulley; 309. Second pulley; 310. Conveyor belt; 4. Sprinkler assembly; 401. Half-pipe assembly; 4011. Arc tube; 402. Sprinkler head; 403. Bevel gear ring; 404. Arc plate; 405. Water pump; 406. Suction pipe; 407. Water delivery pipe; 408. Sealing strip; 5. First drive assembly; 501. First gear arm; 502. Second gear arm; 503. Second motor; 6. Second drive assembly; 601. First motor; 602. Bevel gear. DETAILED DESCRIPTION

[0064] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.

[0065] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," "far," "near," "front," and "back" and the like, indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0066] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.

[0067] The inventors have discovered that the existing pier column construction maintenance device still has certain defects when used, such as:

[0068] Publication number CN216474557U proposes a maintenance device for high pier construction, which includes a water spraying mechanism for maintaining high piers, a water storage mechanism for providing water resources for maintenance, and a mounting mechanism for fixing the device on a lifting platform. The water storage mechanism is installed on the side of the water spraying mechanism, and the mounting mechanism is fixed below the water storage mechanism. By setting up the water storage mechanism, when it rains, rainwater enters the plug-in pipe through the collection cover, and the filter screen filters impurities in the rainwater. The filtered rainwater enters the water storage tank assembly through the placement seat, thereby collecting and utilizing the rainwater, effectively reducing maintenance costs. However, the device sleeves a fixed ring on the pier and uses a nozzle to spray water to maintain the pier. However, there are gaps between the multiple groups of nozzles. When the nozzles are close to the pier, the gaps are easily not sprayed, and the water spraying is uneven, resulting in inadequate maintenance of the pier.

[0069] In order to solve the above problems, the inventors have proposed a maintenance device for pier column construction with uniform water sprinkling, so as to evenly sprinkle water on the pier columns and effectively improve the maintenance effect of the pier columns.

[0070] Example

[0071] See Figure 1-Figure 4This embodiment provides a uniformly water-sprinkling maintenance device for pier construction, comprising a water tank assembly 1, a first drive assembly 5, a second drive assembly 6, and a sprinkler assembly 4. The sprinkler assembly 4 comprises two sets of half-pipe assemblies 401, a plurality of curved plates 404, and a plurality of sprinkler heads 402. The first drive assembly 5 is connected to the water tank assembly 1. The two sets of half-pipe assemblies 401 are symmetrically arranged, each including one or more detachably connected curved tubes 4011. The curved tubes 4011 closest to the first drive assembly 5 are connected to the first drive assembly 5. The first drive assembly 5 is used to drive the two sets of half-pipe assemblies 401 to rotate relative to each other, opening and closing them, allowing them to dock with each other and allowing them to be sleeved onto the outside of the pier. An annular water outlet (not shown) is provided on the inner side of the curved tubes 4011 (i.e., the side facing the pier). The inner cavity of the curved tubes 4011 is slidably connected to the curved plates 404. The outer walls of the curved plates 404 are connected to multiple nozzles 402, and each nozzle 402 is connected to the water tank assembly 1. The water tank assembly 1 supplies water to each nozzle 402, and each nozzle 402 can spray water to the pier through the water outlet to maintain the pier. The second drive assembly 6 is connected to at least one curved plate 404 for driving the curved plate 404 to rotate, thereby driving all curved plates 404 to rotate in a circular manner. The number of second drive assemblies 6 is not limited here, see Figure 1 Only one second drive assembly 6 may be provided, or one second drive assembly 6 may be connected to each of the two groups of half-pipe assemblies 401 .

[0072] During use, under the action of the second driving component 6, the corresponding arc plate 404 is driven to rotate. When the arc plate 404 rotates, it will push the other arc plate 404 abutting against it to rotate, and so on, so that all the arc plates 404 rotate in a circle along the inner cavity formed by the arc tube 4011, and then drive the multiple nozzles 402 arranged on the arc tube 4011 to rotate in a circle, so as to achieve the purpose of multiple nozzles 402 rotating while spraying water, avoiding the problem of insufficient spraying in the gaps, ensuring uniform water spraying, covering the entire pier surface, and ensuring the maintenance effect of the pier.

[0073] The arc tubes 4011 of this embodiment are all arc-shaped. Each half-pipe assembly 401 includes one or more detachably connected arc tubes 4011. The arc tubes 4011 of each half-pipe assembly 401 abut against each other, allowing the two half-pipe assemblies 401 to dock together, forming a complete annular structure that accommodates and allows the arc plate 404 and the nozzle 402 to perform circular motion therein. The multiple arc tubes 4011 of each half-pipe assembly 401 can be connected using conventional threaded, snap-fit, or linked methods. Alternatively, multiple arc tubes 4011 can be nested within each other. Adjusting the number and connection method of the arc tubes 4011 allows for easy adaptation to columns of varying diameters, enhancing the versatility and flexibility of the half-pipe assembly 401. The detachable connection between the arc tubes 4011 makes maintenance and replacement more convenient and quick, reducing maintenance costs and time.

[0074] It is worth noting that the arc tube 4011 can be made of flexible material to allow the two sets of half-tube assemblies 401 to form a non-circular shape as a whole after docking with each other. Due to the flexible material properties of the arc tube 4011, it does not affect the circular motion of the arc tube 4011 in the half-tube assembly 401.

[0075] In one embodiment, the curved plate 404 is connected to a bevel gear ring 403. The second drive assembly 6 includes a first motor 601 and a bevel gear 602. The first motor 601 is mounted on the outer wall of the curved tube 4011. The output shaft of the first motor 601 is connected to the bevel gear 602, which meshes with the bevel gear ring 403. Here, the first motor 601 can be a unidirectional motor or a forward and reverse motor as known in the art.

[0076] For example, each half-tube assembly 401 employs a curved tube 4011. When the first motor 601 is a unidirectional motor, the first motor 601 is activated, driving the bevel gear 602 to rotate. This, in turn, drives the bevel gear ring 403 to rotate. The rotation of the bevel gear ring 403 drives the curved plates 404 and the multiple nozzles 402 to perform circular motion. During this process, any curved plate 404 can rotate from its initial curved tube 4011 into another curved tube 4011, thereby performing circular motion.

[0077] When the first motor 601 is a unidirectional motor, regardless of whether the number of the first motor 601 and the bevel gear 602 is one or more, during the circular rotation of the bevel gear ring 403, the bevel gear 602 will inevitably switch from meshing with one of the bevel gear rings 403 to meshing with another bevel gear ring 403. During this exchange of meshing, derailment may occur, resulting in the inability to perform circular motion, thereby affecting the watering effect of the sprinkler head 402.

[0078] When the first motor 601 is used as a forward and reverse motor, the first motor 601 starts and rotates forward, and the bevel gear 602 moves from the first end of the bevel gear ring 403 to the second end relative to the bevel gear ring 403. During this process, the arc plate 404 drives the multiple nozzles 402 to perform circular motion, from the arc tube 4011 where they were initially located to enter another arc tube 4011. Then, the first motor 601 is reversed, and the bevel gear 602 moves from the second end of the bevel gear ring 403 back to the first end relative to the bevel gear ring 403. During this process, the arc plate 404 drives the multiple nozzles 402 to perform circular motion, from the arc tube 4011 where they were located to the arc tube 4011 where they were initially located. The use of forward and reverse motors can ensure that the bevel gear ring 403 always remains in meshing with the corresponding bevel gear 602, effectively avoiding the occurrence of derailment problems.

[0079] Of course, both types of first motors 601 mentioned above can realize the circular motion of the nozzle 402, so that multiple nozzles 402 can rotate while spraying water, avoiding the problem of insufficient spraying in the gaps, ensuring uniform water spraying, covering the entire pier surface, and ensuring the maintenance effect of the pier.

[0080] In one embodiment, see Figure 1 and Figure 5 The first drive assembly 5 includes a first gear arm 501, a second gear arm 502 and a second gear arm 502. The water tank assembly 1 includes a water tank body 102 and a partition 101, and the partition 101 is connected to the upper end of the water tank body 102. The second gear arm 502 is connected to the water tank assembly 1, specifically connected to the partition 101, and the output end of the second gear arm 502 is connected to the first gear arm 501, the first gear arm 501 is engaged with the second gear arm 502, and the second gear arm 502 is rotatably connected to the water tank assembly 1, specifically rotatably connected to the partition 101. The ends of the first gear arm 501 and the second gear arm 502 are both connected to an arc tube 4011. By setting up the partition 101, it can serve as an installation platform for the second gear arm 502, the first gear arm 501 and the second gear arm 502, and also plays the role of separating the internal space of the water tank body 102, achieving the effect of separating water and electricity, and ensuring electricity safety.

[0081] During use, the second gear arm 502 is activated, and its rotation drives the first gear arm 501. Since the first gear arm 501 and the second gear arm 502 remain engaged, the rotation of the first gear arm 501 drives the second gear arm 502 to rotate in the opposite direction. As the first gear arm 501 and the second gear arm 502 rotate, the arc-shaped tubes 4011 connected to them also move relative to each other, thereby achieving docking. By providing the second gear arm 502, the first gear arm 501, and the second gear arm 502, the two half-tube assemblies 401 can be automatically docked, achieving rapid and accurate docking of the half-tube assemblies 401, and increasing the reliability and flexibility of the maintenance device of this embodiment.

[0082] In one embodiment, see Figure 5 and Figure 6 Water pump 405 is connected to water tank assembly 1, specifically to partition 101, and serves as a power source for pumping water. The two ends of water pump 405 are connected to a water pumping pipe 406 and a water delivery pipe 407, respectively. Water pump 406 is in communication with water tank assembly 1, specifically, with water tank body 102, while water delivery pipe 407 is in communication with multiple nozzles 402. By providing water pump 405, water pumping pipe 406, and water delivery pipe 407, multiple nozzles 402 are connected to water tank body 102. With the driving force of water pump 405, water within water tank body 102 can be quickly drawn into nozzles 402 for spraying, achieving an efficient spraying function.

[0083] In one embodiment, see Figure 1 and Figure 3 A sealing strip 408 is provided between the curved tube 4011 and the curved plate 404 to prevent water leakage from this connection. A sealing ring (not shown) can be provided at the joint between the two half-tube assemblies 401. Of course, the provision of the sealing ring should not affect the circular motion of the sprinkler head 402 driven by the curved plate 404. When the two half-tube assemblies 401 are docked, the sealing ring effectively prevents water leakage from the joint, ensuring the proper operation of the sprinkler assembly 4.

[0084] In one embodiment, see Figure 1 and Figure 5 The maintenance device of this embodiment further includes a filtering mechanism 3, which includes a water inlet hopper 301 and a filter belt 306. The water inlet hopper 301 is located above the water tank assembly 1 and is in communication with the water tank assembly 1. Specifically, the water inlet hopper 301 is located above the water tank body 102 and is in communication with the water tank body 102. The filter belt 306 is connected to the water inlet hopper 301 and can filter the water entering the water tank body 102 to prevent debris in the water from clogging the water suction pipe 406, the water delivery pipe 407, or the nozzle 402, thereby affecting the normal operation of the nozzle 402.

[0085] Of course, the water inlet 301 can also be used to collect rainwater. Rainwater falls into the water inlet 301 and passes through the filter belt 306 to filter out debris before entering the water tank body 102 for storage. Here, the filter belt 306 can be made of a material with filtering properties, such as a fine mesh or fiber material, which can effectively remove debris from the rainwater, such as leaves, dust, and small particles. The filtering function of the filter belt 306 can effectively remove debris from the rainwater, ensuring that the water entering the water tank body 102 is relatively clean, thereby extending the service life of the nozzle 402 and the water tank assembly 1. Using the water inlet 301 to collect rainwater and effectively filtering it through the filter belt 306 to convert it into water for spraying by the nozzle 402 can reduce dependence on tap water and achieve water conservation and recycling.

[0086] In one embodiment, see Figure 5 and Figure 7 The filtering mechanism 3 further includes a collection box 302, a third motor 304, a transmission roller (not shown), and a drive roller 305. The collection box 302 is connected to the water inlet hopper 301 and has an inner cavity (not shown). The collection box 302 has a first opening (not shown) on the side of the collection box 302 facing the water inlet hopper 301. The filter belt 306 is sleeved on the outer sides of the transmission roller and the drive roller 305, and the transmission roller and the drive roller 305 are arranged opposite each other. The transmission roller is rotatably connected to the water inlet hopper 301, and the drive roller 305 is located in the inner cavity. The third motor 304 is connected to the collection box 302, and the output end of the third motor 304 is connected to the drive roller 305. The third motor 304 is used to drive the drive roller 305 to rotate, thereby driving the filter belt 306 to rotate. As the filter belt 306 moves, debris retained on it is carried to the first opening and falls into the inner cavity of the collection box 302 through the first opening, thereby collecting the debris.

[0087] Through the collaborative action of the third motor 304, the drive roller 305, and the transmission roller, the filter mechanism 3 efficiently filters debris from rainwater and collects the debris through the collection box 302, preventing excessive debris from accumulating on the filter belt 306 and affecting rainwater collection, thereby maintaining the normal operation of the filter mechanism 3. Furthermore, the debris collection process is automatically achieved using the third motor 304, completing the filtering and collection process without manual intervention, thus saving labor costs.

[0088] In one embodiment, see Figure 5 and Figure 7The filtering mechanism 3 further includes a first pulley 308, a second pulley 309, a conveyor belt 310, and a brush roller 307. The brush roller 307 is disposed within the inner cavity and is rotatably connected to the collection box 302. The brush roller 307 abuts the filter belt 306. The first pulley 308 is connected to the free end of the brush roller 307, and the second pulley 309 is connected to the free end of the drive roller 305. The outer sides of the first pulley 308 and the second pulley 309 are sleeved with the conveyor belt 310.

[0089] During operation, when the third motor 304 is activated, it drives the drive roller 305 to begin rotating. Because the drive roller 305 is connected to the second pulley 309, and the first pulley 308 is connected to the brush roller 307, and the conveyor belt 310 is sleeved outside the first and second pulleys 308 and 309, the rotation of the drive roller 305 drives the conveyor belt 310, which in turn drives the brush roller 307 to rotate. Because the brush roller 307 abuts the filter belt 306, its rotation cleans the surface of the filter belt 306, effectively removing debris and dirt attached to it, maintaining the cleanliness and filtration efficiency of the filter belt 306. Debris trapped by the filter belt 306 falls into the inner cavity of the collection box 302.

[0090] By providing the first pulley 308, the second pulley 309, the conveyor belt 310 and the brush roller 307, the filtering mechanism 3 can achieve continuous and automatic cleaning of the filter belt 306, effectively extending the service life of the filter belt 306 and maintaining high filtering efficiency.

[0091] In one embodiment, see Figure 1 and Figure 5 , the filtering mechanism 3 also includes a collection box 303. The collection box 302 is provided with a second opening (not shown in the figure). The collection box 303 includes a accommodating portion (not shown in the figure) and a connecting portion (not shown in the figure). The accommodating portion can be accommodated in the inner cavity for collecting debris. The connecting portion can cover the second opening to prevent debris from leaking out, and with the help of the connecting portion, the accommodating portion can be pulled out or pushed into the inner cavity. When the debris collected in the accommodating portion reaches the maximum capacity and needs to be cleaned, the staff can pull the accommodating portion out of the inner cavity through the connecting portion to clean the debris. After cleaning is completed, the accommodating portion can be pushed into the inner cavity again to realize the recycling of the collection box 303. The design of the collection box 303 makes the cleaning of debris simple and efficient. The staff does not need to disassemble the entire collection box 302. They only need to pull out the accommodating portion of the collection box 303 to clean it, which greatly saves time and energy.

[0092] In one embodiment, see Figure 1The maintenance device of this embodiment also includes a fixing frame 2 and a lifting device (not shown). The bottom of the water tank assembly 1 is connected to the fixing frame 2, which provides stable support for the water tank assembly 1, ensuring the stability and safety of the water tank assembly 1 during use and preventing malfunctions or accidents caused by shaking or tilting of the water tank assembly 1. The lifting device is connected to the fixing frame 2 and is used to adjust the height of the entire maintenance device. By controlling the lifting movement of the lifting device, the sprinkler head 402 is sequentially adjusted to the spraying area at different heights of the pier, meeting the watering needs of the entire pier.

[0093] See Figure 1-Figure 7 When using the maintenance device of this embodiment for pier maintenance, water is added to the water tank body 102 or rainwater is collected using the water inlet hopper 301. Water is filtered through the filter belt 306, leaving impurities on the filter belt 306. The third motor 304 is activated to drop impurities from the filter belt 306 into the collection box 303, and the filter belt 306 is cleaned using the brush roller 307. The entire maintenance device is adjusted to the pier's spraying area using a lifting device. The second gear arm 502 is activated to mate the two half-pipe assemblies 401 and sleeve them onto the outside of the pier, squeezing the sealing rings between the two half-pipe assemblies 401. The water pump 405 is then activated to pump water from the water tank body 102, which is then sprayed onto the pier by the nozzles 402. Simultaneously, the first motor 601 is activated to drive the nozzles 402 to rotate, allowing them to rotate while spraying water. After spraying the area, the entire maintenance device is moved up and down by the lifting device to spray water on the exterior of the integral pier. After spraying, the container is pulled out of the inner cavity of the collection box 302, and after cleaning the debris collected in the container, the container is put back into the inner cavity for the next use.

[0094] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. The present disclosure is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and variations may be made without departing from the scope of the present disclosure. The scope of the present disclosure is limited solely by the appended claims. Thus, to the extent such modifications and variations fall within the scope of the claims and their equivalents, the present disclosure is intended to include such modifications and variations.

Claims

1. A maintenance device for pier construction with uniform water sprinkling, characterized in that: It includes a water tank assembly, a first drive assembly, a second drive assembly, two sets of half-pipe assemblies, a plurality of curved plates and a plurality of nozzles; The first drive assembly is connected to the water tank assembly; The two groups of half-tube assemblies are symmetrically arranged, and each group of half-tube assemblies includes one or more detachably connected arc-shaped tubes, wherein the arc-shaped tube close to the first driving assembly is connected to the first driving assembly; The first driving assembly is used to drive the two sets of half-tube assemblies to rotate relative to each other to open and close; An annular water outlet is provided on the inner side of the arc-shaped tube, and the inner cavity of the arc-shaped tube is slidably connected to the arc-shaped plate; The outer side wall of the arc-shaped plate is connected to a plurality of the nozzles, and each of the nozzles is connected to the water tank assembly, and each of the nozzles can spray water toward the pier through the water outlet; The second driving assembly is in driving connection with at least one of the arc-shaped plates, and is used to drive the arc-shaped plate to rotate, thereby driving all of the arc-shaped plates to perform circular rotation.

2. The uniform water sprinkling pier column construction maintenance device according to claim 1, characterized in that: Also included is a conical gear ring connected to the arc-shaped plate; The second drive assembly includes a first motor and a bevel gear; The first motor is arranged on the outer side wall of the arc tube, and the output shaft of the first motor is connected to the bevel gear; The bevel gear is meshed with the bevel gear ring.

3. The uniform water sprinkling pier column construction maintenance device according to claim 1, characterized in that: The first drive assembly includes a first gear arm, a second gear arm and a second motor; The second motor is connected to the water tank assembly, and the output end of the second motor is connected to the first gear arm; The second gear arm is rotatably connected to the water tank assembly and meshes with the first gear arm; The ends of the first gear arm and the second gear arm are both connected to one of the arc-shaped tubes.

4. The uniform water sprinkling pier column construction maintenance device according to claim 3, characterized in that: It also includes water pumps, water extraction pipes and water delivery pipes; The water pump is connected to the water tank assembly; The two ends of the water pump are respectively connected to the water pumping pipe and the water delivery pipe; The water pump is connected to the water tank assembly; The water delivery pipe is communicated with the plurality of nozzles.

5. The uniform water sprinkling pier column construction maintenance device according to claim 1, characterized in that: Also includes a filtering mechanism; The filtering mechanism includes a water inlet hopper and a filtering belt; The water inlet hopper is arranged above the water tank assembly and is in communication with the water tank assembly; The filter belt is connected to the water inlet hopper and covers the water inlet of the water inlet hopper.

6. The uniform water sprinkling pier column construction maintenance device according to claim 5, characterized in that: The filtering mechanism also includes a collection box, a third motor, a transmission roller and a driving roller; The aggregate box is connected to the water inlet hopper; The collecting box is provided with an inner cavity, and a first opening is provided on a side facing the water inlet hopper; The filter belt is sleeved on the outer sides of the transmission roller and the driving roller, and the transmission roller and the driving roller are arranged opposite to each other; The transmission roller is rotatably connected to the water inlet bucket; The driving roller is arranged in the inner cavity; The third motor is connected to the material collecting box, and the output end of the third motor is connected to the driving roller; The third motor is used to drive the driving roller to rotate, thereby driving the filter belt to rotate, so that the debris on the filter belt falls into the inner cavity through the first opening.

7. The uniform water sprinkling pier column construction maintenance device according to claim 6, characterized in that: The filtering mechanism further comprises a first pulley, a second pulley, a conveyor belt and a brush roller; The brush roller is arranged in the inner cavity and is rotatably connected to the collecting box, and the brush roller abuts against the filter belt; The first pulley is connected to the free end of the brush roller, the second pulley is connected to the free end of the driving roller, and the outer sides of the first pulley and the second pulley are sleeved with the conveyor belt.

8. The uniform water sprinkling pier column construction maintenance device according to claim 6, characterized in that: The filtering mechanism also includes a collection box; The aggregate box is provided with a second opening; The aggregate box includes a receiving portion and a connecting portion; The receiving portion can be received in the inner cavity and is used to collect debris; The connecting portion is capable of covering the second opening.

9. The uniform water sprinkling pier column construction maintenance device according to claim 8, characterized in that: It also includes a sealing strip arranged between the arc tube and the arc plate.

10. The uniform water sprinkling maintenance device for pier construction according to any one of claims 1 to 9, characterized in that: It also includes a fixing frame and a lifting device; The fixing bracket is connected to the bottom of the water tank assembly; The lifting device is connected to the fixing frame.

Citation Information

Patent Citations

  • Maintenance device for high pier column construction

    CN216474557U