Concrete curing device

By designing a concrete curing device including support plates, annular water storage tanks, pressurized water components, drive components and water supply components, the problems of uneven watering and waste of water resources in the prior art are solved, and uniform watering and efficient maintenance of concrete columns are achieved.

CN120042371AActive Publication Date: 2025-05-27THE 2ND ENG CO LTD OF CHINA RAILWAY 17 BUREAU GRP
View PDF 7 Cites 0 Cited by

Patent Information

Application Number
CN202510511853.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-05-27
Estimated Expiration
2045-04-23

AI Technical Summary

Technical Problem

In the prior art, the watering and maintenance effect of concrete columns is poor, and the water source is difficult to absorb evenly, resulting in unsatisfactory maintenance effect and a problem of waste of water resources.

Method used

A concrete curing device is designed, including a support plate, annular water storage tank, a pressurized water assembly, a drive assembly and a water supply assembly. The device is placed outside the concrete column by an annular water storage tank, and uses a pressurized water component to press the water source to the side wall of the concrete column. Combined with the intermittent downward movement mechanism of the driving component, it realizes segmented watering and maintenance of the concrete column.

Benefits of technology

Through this device, even watering of concrete columns can be achieved, the curing effect can be improved, and the waste of water resources can be reduced. It is suitable for segmented maintenance of longer concrete columns.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120042371A_ABST
    Figure CN120042371A_ABST
Patent Text Reader

Abstract

The invention provides a concrete curing device, and belongs to the technical field of concrete curing, the concrete curing device comprises four groups of supporting plates, an annular water storage tank, a water pressing assembly, a driving assembly and a water supply assembly, the water supply assembly is used for supplying a water source into the annular water storage tank, and the supporting plates are arranged in the annular water storage tank. The annular water storage tank is arranged on the inner sides of the four sets of supporting plates, the water pressing assembly is movably arranged in the annular water storage tank and used for applying pressure to a water source in the annular water storage tank so that the water source can make contact with the four side walls of the concrete column, and the driving assembly is arranged on the outer side of the annular water storage tank and used for driving the annular water storage tank to make contact with the four side walls of the concrete column. The driving device is used for driving the annular water storage tank to intermittently move downwards along the outside of the concrete column. Compared with the prior art, the embodiment of the invention has the advantages that the long concrete column can be watered and cured in a sectional manner, so that the waste phenomenon of water resources is reduced to a great extent, uniform watering of the concrete column is realized, and the curing effect of the concrete column is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention belongs to the technical field of concrete curing, in particular to a concrete curing device. Background Art

[0002] At present, after the concrete column is poured, watering and curing can maintain sufficient hydration reaction of the concrete, improve the strength and durability of the concrete column, and effectively control the temperature of the surface of the concrete column to prevent internal stress caused by temperature difference, ensure the integrity and stability of the concrete column structure, thereby reducing the occurrence of cracks in the concrete column and improving the overall performance of the concrete column.

[0003] In the prior art, watering and curing of concrete columns are mostly done manually or with the help of a watering machine. However, no matter whether it is manual watering or watering with the help of a watering machine, the water sprinkled will flow down along the side wall of the concrete column after acting on the side wall of the concrete column, thereby causing the concrete column to be unable to absorb water uniformly, resulting in a poor curing effect of the concrete column. In addition, when the water source flows down to the bottom of the concrete column, there will be a large loss phenomenon, resulting in a waste of water resources. Summary of the invention

[0004] In view of the above-mentioned deficiencies in the prior art, the technical problem to be solved by the embodiments of the present invention is to provide a concrete curing device.

[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: A concrete curing device comprises a support plate, an annular water storage tank, a water pressure component, a driving component and a water supply component. The water supply assembly is used to supply water to the inside of the annular water storage tank. The support plates are provided in four groups, and the annular water storage tank is arranged inside the four groups of support plates. The water pressure assembly is movably arranged inside the annular water storage tank, and is used to apply pressure to the water source inside the annular water storage tank so that the water source contacts the four side walls of the concrete column. The driving assembly is arranged on the outside of the annular water storage tank, and is used for driving the annular water storage tank to move intermittently downward along the outside of the concrete column.

[0006] As a further improvement of the present invention: the annular water storage tank comprises an annular enclosure, a top plate and a bottom plate. The top plate is fixedly arranged at the upper end of the annular enclosure, and the bottom plate is fixedly arranged at the lower end of the annular enclosure. The center positions of the top plate and the bottom plate are both provided with openings for concrete columns to pass through.

[0007] As a further improvement of the present invention: the water pressure assembly includes a movable pressure plate, a guide rod, a first elastic member and a connecting rod. The movable pressing plates are provided with four groups, and the four groups of movable pressing plates are movably arranged inside the annular enclosure plate, and the upper ends of the four groups of movable pressing plates are in contact with the top plate, and the lower ends are in contact with the bottom plate. The four groups of movable pressing plates form a rectangular structure, and two adjacent groups of movable pressing plates are connected by a flexible water retaining layer. The connecting rod and the guide rod are fixedly arranged on the outer side of each group of the movable pressure plates, and the ends of the connecting rod and the guide rod away from the corresponding movable pressure plates penetrate the annular enclosure and movably cooperate with the annular enclosure. The outer side of each group of the movable pressure plates is connected to the inner wall of the annular enclosure through a group of the first elastic members, and the first elastic members are used to provide elastic support for the movable pressure plates.

[0008] As a further improvement of the present invention: the support plate is provided with a plurality of horizontal chutes and a plurality of oblique chutes, the plurality of horizontal chutes are spaced apart along the height direction of the support plate, the plurality of oblique chutes are alternately arranged between the plurality of horizontal chutes, and the plurality of oblique chutes are used to connect the plurality of horizontal chutes end to end, The driving assembly includes a U-shaped plate and a pin rod. The U-shaped plate is fixedly arranged at one end of the connecting rod located outside the annular enclosure plate, the U-shaped plate is clamped on two opposite sides of the support plate, the pin rod is arranged on the inner side of the U-shaped plate, and the pin rod passes through the inclined slide groove and the horizontal slide groove.

[0009] As a further improvement of the present invention: a water inlet pipe is arranged on the top plate, and one end of the water inlet pipe away from the top plate is connected to the water supply assembly.

[0010] As a further improvement of the present invention: an external thread is provided at one end of the pin rod, and a threaded hole matching the external thread is provided on an inner wall of one of the plates of the U-shaped plate.

[0011] As a further improvement of the present invention: an annular sealing airbag is provided on the openings at the center of the bottom plate and the top plate.

[0012] As a further improvement of the present invention: a vacuum assembly is provided inside the top plate and the bottom plate. When the water source between the movable pressure plate and the concrete column penetrates into the concrete column, the vacuum assembly is used to extract the air inside the annular sealing airbag.

[0013] As a further improvement of the present invention: a first conductive rod is disposed on the bottom plate and the side wall of the top plate. Two groups of second conductive rods are arranged on one side of the movable pressing plate, one end of one group of the second conductive rods away from the movable pressing plate is in contact with the bottom plate, and one end of the other group of the second conductive rods away from the movable pressing plate is in contact with the top plate. The two groups of the second conductive rods are connected to an external power source through wires, and gas storage channels connected to the corresponding annular sealing airbags are provided inside the bottom plate and the top plate. The air extraction assembly includes a permanent magnet, a second elastic member, an electromagnet and a plunger rod. The permanent magnet is fixedly arranged inside the air storage channel, the plunger rod is movably arranged inside the air storage channel, the electromagnet is fixedly arranged at one end of the plunger rod and is distributed opposite to the permanent magnet, one end of the second elastic member is connected to the permanent magnet, and the other end is connected to the electromagnet for providing elastic support for the electromagnet, and the electromagnet is in contact with the first conductive rod.

[0014] As a further improvement of the present invention: the flexible water retaining layer is a rubber layer or a plastic layer.

[0015] Compared with the prior art, the present invention has the following beneficial effects: In the embodiment of the present invention, initially, the annular water storage tank is located at the upper end of the inner side of the four groups of support plates. When the concrete column needs to be watered and maintained, the annular water storage tank and the four groups of support plates can be lifted with the help of a lifting machine, so that the annular water storage tank is sleeved on the outside of the concrete column by the upper end of the concrete column. At this time, the four groups of support plates are respectively supported on the outside of the four side walls of the concrete column. Then the water supply component supplies water to the inside of the annular water storage tank, and the water pressure component applies pressure to the water source inside the annular water storage tank, so that the water source contacts the four side walls of the concrete column to ensure that the water source can fully penetrate into the concrete column, so as to water and maintain the area of ​​the concrete column currently surrounded by the annular water storage tank. After the watering and maintenance of the current area is completed, the driving component drives the annular water storage tank to move downward along the outside of the concrete column. After a while, the water supply component supplies water to the inside of the annular water tank again, and the water pressure component applies pressure to the water source again, so that the water source contacts the four side walls of the concrete column currently surrounded by the annular water tank, to ensure that the water source can fully penetrate into the concrete column again, so that the area of ​​the concrete column currently surrounded by the annular water tank is watered and maintained again, and such a reciprocating cycle can be used to achieve segmented watering and maintenance of the concrete column, thereby improving the uniformity of watering of the concrete column, improving the maintenance effect, and reducing the waste of water resources. Compared with the existing technology, segmented watering and maintenance can be performed on longer concrete columns, thereby greatly reducing the waste of water resources, achieving uniform watering of the concrete column, and improving the maintenance effect of the concrete column. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1It is a structural schematic diagram of a concrete curing device in a working state; Figure 2 A schematic diagram of the structure of a concrete curing device Figure 1 ; Figure 3 A schematic diagram of the structure of a concrete curing device Figure 2 ; Figure 4 for Figure 1 A magnified schematic diagram of the middle A area; Figure 5 for Figure 2 A magnified schematic diagram of the middle B area; Figure 6 for Figure 2 Enlarged schematic diagram of the middle C area; Figure 7 for Figure 3 The enlarged schematic diagram of the D area in the middle; In the figure: 10-support plate, 101-horizontal slide, 102-inclined slide, 20-annular water storage tank, 201-annular enclosure, 202-top plate, 203-annular sealing airbag, 204-water inlet pipe, 205-first conductive rod, 206-bottom plate, 207-through port, 208-gas storage channel, 30-concrete column, 40-water pressure assembly, 401-movable pressure plate, 402-flexible water retaining layer, 403-guide rod, 404-first elastic member, 405-connecting rod, 406-second conductive rod, 50-driving assembly, 501-U-shaped plate, 502-pin rod, 503-external thread, 60-vacuum assembly, 601-permanent magnet, 602-second elastic member, 603-electromagnet, 604-plunger rod. DETAILED DESCRIPTION

[0017] The technical solution of the present invention is further described in detail below in conjunction with specific implementation methods.

[0018] Embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0019] In the description of the present invention, it should be understood that the terms "center", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship are based on the orientation or position relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0020] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", and "set" should be understood in a broad sense, for example, they can be fixedly connected or set, or detachably connected or set, or integrally connected or set. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0021] See also Figure 1 , Figure 2 as well as Figure 3 The present embodiment provides a concrete curing device, including a support plate 10, an annular water storage tank 20, a water pressure assembly 40, a driving assembly 50 and a water supply assembly (not shown in the figure), wherein the water supply assembly is used to supply water to the inside of the annular water storage tank 20, the support plate 10 is provided with four groups, the annular water storage tank 20 is arranged inside the four groups of support plates 10, the water pressure assembly 40 is movably arranged inside the annular water storage tank 20, and is used to apply pressure to the water source inside the annular water storage tank 20 so that the water source contacts the four side walls of the concrete column 30, and the driving assembly 50 is arranged outside the annular water storage tank 20, and is used to drive the annular water storage tank 20 to intermittently move downward along the outside of the concrete column 30.

[0022] Initially, the annular water storage tank 20 is located at the upper end of the inner side of the four sets of support plates 10. When the concrete column 30 needs to be watered and maintained, the annular water storage tank 20 and the four sets of support plates 10 can be lifted by a lifting machine (not shown in the figure), so that the annular water storage tank 20 is sleeved on the outside of the concrete column 30 from the upper end of the concrete column 30. At this time, the four sets of support plates 10 are respectively supported on the outer sides of the four side walls of the concrete column 30 (such as Figure 1As shown), the water supply component then supplies water to the inside of the annular water storage tank 20, and the water pressure component 40 applies pressure to the water inside the annular water storage tank 20, so that the water source contacts the four side walls of the concrete column 30 to ensure that the water source can fully penetrate into the concrete column 30, so as to water and maintain the area of ​​the concrete column 30 currently surrounded by the annular water storage tank 20. After the watering and maintenance of the current area is completed, the driving component 50 drives the annular water storage tank 20 to move down one position along the outside of the concrete column 30, and then the water supply component again supplies water to the annular water storage tank 20 supplies water source inside, and the water pressure component 40 applies pressure to the water source again, so that the water source contacts the four side walls of the concrete column 30 currently surrounded by the annular water storage tank 20, so as to ensure that the water source can fully penetrate into the concrete column 30 again, so that the area of ​​the concrete column 30 currently surrounded by the annular water storage tank 20 is watered and cured again, and such a reciprocating cycle can realize the segmented watering and curing of the concrete column 30, thereby improving the uniformity of watering of the concrete column 30, improving the curing effect, and reducing the waste of water resources.

[0023] See also Figure 1 , Figure 2 as well as Figure 3 In one embodiment, the annular water storage tank 20 includes an annular enclosure 201, a top plate 202 and a bottom plate 206. The top plate 202 is fixedly arranged at the upper end of the annular enclosure 201, and the bottom plate 206 is fixedly arranged at the lower end of the annular enclosure 201. The center positions of the top plate 202 and the bottom plate 206 are both provided with openings 207 for the concrete column 30 to pass through.

[0024] The annular water tank 20 is lifted by a lifting machine so that the annular water tank 20 is located as a whole directly above the concrete column 30, and then the annular water tank 20 is lowered by the lifting machine. The upper end of the concrete column 30 can pass through the openings 207 on the bottom plate 206 and the top plate 202, and the annular enclosure 201 is sleeved on the outside of the concrete column 30.

[0025] See also Figure 2In one embodiment, the water pressure assembly 40 includes a movable pressure plate 401, a guide rod 403, a first elastic member 404 and a connecting rod 405. The movable pressure plate 401 is provided with four groups, and the four groups of movable pressure plates 401 are movably arranged inside the annular enclosure 201. The upper ends of the four groups of movable pressure plates 401 are attached to the top plate 202, and the lower ends are attached to the bottom plate 206. The four groups of movable pressure plates 401 form a rectangular structure, and two adjacent groups of movable pressure plates 401 are connected by a flexible water-retaining layer 402. The connecting rod 405 and the guide rod 403 are fixedly arranged on the outer side of each group of the movable pressure plates 401, and the ends of the connecting rod 405 and the guide rod 403 away from the corresponding movable pressure plates 401 pass through the annular enclosure 201 and are movably cooperated with the annular enclosure 201. The outer side of each group of the movable pressure plates 401 is connected to the inner wall of the annular enclosure 201 through a group of the first elastic members 404, and the first elastic members 404 are used to provide elastic support for the movable pressure plates 401.

[0026] When the annular enclosure 201 is sleeved on a certain area outside the concrete column 30, the four groups of movable pressure plates 401 correspond to the four side walls of the concrete column 30 one by one, and the water supply component supplies water to the area between the four groups of movable pressure plates 401 and the concrete column 30. Through the elastic support of the first elastic member 404 on the movable pressure plates 401, the four groups of movable pressure plates 401 generate pressure on the water source to press the water source onto the four side walls of the concrete column 30, so that the water source can quickly penetrate into the concrete column 30 from the four side walls of the concrete column 30, thereby completing the watering and curing operation of the current area of ​​the concrete column 30; as the water source penetrates into the concrete column 30, the four groups of movable pressure plates 401 are pressed against the water source. The water source between the movable pressure plate 401 and the concrete column 30 is constantly decreasing, and the first elastic member 404 can push the movable pressure plate 401 so that the movable pressure plate 401 continuously moves toward the concrete column 30 to continue to pressurize the remaining water source, and the pressurized water source can always cover the entire current side wall surface of the concrete column 30, thereby avoiding the reduction of the water source liquid level due to the reduction of the water source, and achieving uniform wetting of the current area of ​​the concrete column 30; when the four groups of movable pressure plates 401 approach the concrete column 30, the flexible water retaining layer 402 between the two adjacent groups of movable pressure plates 401 is adaptively deformed, thereby enclosing the water source as a whole between the four groups of movable pressure plates 401 and the concrete column 30.

[0027] See also Figure 1 , Figure 2 as well as Figure 4In one embodiment, the support plate 10 is provided with a plurality of horizontal slide grooves 101 and a plurality of inclined slide grooves 102, wherein the plurality of horizontal slide grooves 101 are spaced apart along the height direction of the support plate 10, and the plurality of inclined slide grooves 102 are alternately arranged between the plurality of horizontal slide grooves 101, and the plurality of inclined slide grooves 102 are used to connect the plurality of horizontal slide grooves 101 end to end, and the driving assembly 50 includes a U-shaped plate 501 and a pin rod 502, wherein the U-shaped plate 501 is fixedly arranged at one end of the connecting rod 405 located outside the annular enclosure plate 201, the U-shaped plate 501 is clamped at opposite sides of the support plate 10, the pin rod 502 is arranged on the inner side of the U-shaped plate 501, and the pin rod 502 passes through the inclined slide groove 102 and the horizontal slide groove 101.

[0028] Initially, the pin rod 502 passes through the uppermost set of horizontal slide grooves 101. After the hoisting machinery lifts the annular water storage tank 20 and sets the annular water storage tank 20 on the outer part of the upper end of the concrete column 30, the water supply component supplies water between the four sets of movable pressure plates 401 and the concrete column 30. The four sets of movable pressure plates 401 exert pressure on the water source under the elastic support of the corresponding first elastic members 404, so that the water source penetrates into the concrete column 30 from the four side walls of the concrete column 30, so as to realize watering and wetting of the current area of ​​the concrete column 30. In this process, the first elastic member 404 pushes the movable pressure plate 401 close to the concrete column 30, and the movable pressure plate 401 drives the connecting rod 404. 5 makes the connecting rod 405 move toward the inner side of the annular enclosure 201, and the connecting rod 405 drives the U-shaped plate 501 to move synchronously. When the U-shaped plate 501 moves, it drives the pin rod 502 so that the pin rod 502 slides along the inner side of the uppermost set of horizontal slide grooves 101. When the water source on one side of the movable pressure plate 401 completely penetrates into the interior of the concrete column 30, the movable pressure plate 401 contacts the corresponding side wall of the concrete column 30, and at the same time, the pin rod 502 slides to one end of the uppermost horizontal slide groove 101, and then slides from one end of the horizontal slide groove 101 into the interior of the lower inclined slide groove 102 and slides down along the interior of the lower inclined slide groove 102. The annular water storage tank 20 moves downward along the outer side of the concrete column 30 by its own gravity, and the pin rod 502 slides along the inner side of the lower inclined slide groove 102. When the U-shaped plate 501 slides down the inclined slide groove 102, the U-shaped plate 501 is pulled, and then the connecting rod 405 is pulled, so that the connecting rod 405 moves to the outside of the annular enclosure 201, and the connecting rod 405 pulls the movable pressure plate 401 to make the movable pressure plate 401 away from the concrete column 30, and the first elastic member 404 is compressed by force until the pin rod 502 slides from the inclined slide groove 102 into the second upper group of horizontal slide grooves 101, the pin rod 502 stops moving down, and the annular water storage tank 20 stops moving down synchronously. At this time, the annular water storage tank 20 moves down one position along the outside of the concrete column 30, and then the water supply component supplies water to the area between the four groups of movable pressure plates 401 and the concrete column 30 again. Component 404 pushes the movable pressing plate 401 so that the movable pressing plate 401 approaches the concrete column 30 again, so as to press the water source toward the concrete column 30 again, so as to realize watering and wetting of the current area of ​​the concrete column 30 again. After the watering and wetting of the current area of ​​the concrete column 30 is completed, the pin rod 502 slides from the inside of a group of horizontal slide grooves 101 above into the inside of a group of inclined slide grooves 102 below and slides down along the inside of a group of inclined slide grooves 102 below, and the annular water tank 20 moves down one position again along the outside of the concrete column 30... Such a reciprocating cycle can make the annular water tank 20 intermittently move down along the outside of the concrete column 30, thereby realizing the segmented watering and wetting treatment of the concrete column 30.

[0029] See also Figure 1 In one embodiment, a water inlet pipe 204 is provided on the top plate 202, and one end of the water inlet pipe 204 away from the top plate 202 is connected to the water supply assembly.

[0030] When the pin rod 502 slides from a group of inclined slide grooves 102 into the horizontal slide groove 101 below, the water supply component supplies water to the inner side of the annular enclosure 201, that is, the area between the four groups of movable pressure plates 401 and the concrete column 30, through the water inlet pipe 204, thereby replenishing the water source.

[0031] In one embodiment, the water supply component may be a water pump or other structure with water supply function, which is not limited here.

[0032] See also Figure 6 In one embodiment, an external thread 503 is provided at one end of the pin rod 502, and a threaded hole (not shown in the figure) matching the external thread 503 is opened on the inner wall of one of the plates of the U-shaped plate 501.

[0033] After the annular water tank 20 moves down to the bottom along the outside of the concrete column 30 and the entire concrete column 30 is watered and moistened, the lifting machinery lifts the annular water tank 20 and the four groups of support plates 10, so that the annular water tank 20 is removed from the outside of the concrete column 30, and then the staff rotates the pin rod 502 so that the end of the pin rod 502 with the external thread 503 is removed from the inside of the threaded hole, and then the pin rod 502 is pulled out of the bottom group of horizontal slide grooves 101 as a whole, and then the annular water tank 20 is moved upward to move the annular water tank 20 again to the upper position between the four groups of support plates 10, and then the pin rod 502 is pushed again, so that the pin rod 502 passes through the inside of the top horizontal slide groove 101, and finally the pin rod 502 is rotated in the opposite direction so that the end of the pin rod 502 with the external thread 503 is screwed back into the corresponding threaded hole, thereby realizing the resetting of the annular water tank 20.

[0034] See also Figure 1 as well as Figure 2 In one embodiment, an annular sealing airbag 203 is provided on the bottom plate 206 and the opening 207 at the center of the top plate 202 .

[0035] When the concrete column 30 passes through the openings 207 on the bottom plate 206 and the top plate 202, the annular sealing airbag 203 is provided to improve the sealing effect between the top plate 202 and the bottom plate 206 and the concrete column 30, so that when the movable pressure plate 401 applies pressure to the water source, it can prevent the water source from leaking from the gap between the concrete column 30 and the top plate 202 and the bottom plate 206, thereby ensuring that the water source can smoothly penetrate into the interior of the concrete column 30 and prevent the water source from flowing out.

[0036] See also Figure 3In one embodiment, an exhaust assembly 60 is provided inside the top plate 202 and the bottom plate 206. When the water source between the movable pressure plate 401 and the concrete column 30 penetrates into the concrete column 30, the exhaust assembly 60 is used to extract the air inside the annular sealing airbag 203, so that the annular sealing airbag 203 collapses, so that the annular water tank 20 can smoothly move down along the outside of the concrete column 30.

[0037] See also Figure 2 , Figure 5 as well as Figure 7 In one embodiment, the bottom plate 206 and the top plate 202 are both provided with a first conductive rod 205 on their side walls, and two groups of second conductive rods 406 are provided on one side of the movable pressing plate 401, wherein one group of the second conductive rods 406 has one end away from the movable pressing plate 401 in contact with the bottom plate 206, and another group of the second conductive rods 406 has one end away from the movable pressing plate 401 in contact with the top plate 202, and the two groups of the second conductive rods 406 are connected to an external power source (not shown in the figure) through a wire (not shown in the figure), and the bottom plate 206 and the top plate 202 are both provided with a connection to the corresponding annular sealing airbag 203 The air storage channel 208 is connected, and the air extraction component 60 includes a permanent magnet 601, a second elastic member 602, an electromagnet 603 and a plunger rod 604. The permanent magnet 601 is fixedly arranged inside the air storage channel 208, and the plunger rod 604 is movably arranged inside the air storage channel 208. The electromagnet 603 is fixedly arranged at one end of the plunger rod 604 and is distributed relative to the permanent magnet 601. One end of the second elastic member 602 is connected to the permanent magnet 601, and the other end is connected to the electromagnet 603, which is used to provide elastic support for the electromagnet 603. The electromagnet 603 is in contact with the first conductive rod 205.

[0038] When the water source between the movable pressing plate 401 and the concrete column 30 penetrates into the interior of the concrete column 30, the movable pressing plate 401 contacts the side wall of the concrete column 30 under the support of the first elastic member 404, and the two groups of second conductive rods 406 on the side wall of the movable pressing plate 401 contact the first conductive rods 205 on the top plate 202 and the bottom plate 206 respectively. At this time, the external power supply supplies power to the electromagnet 603 through the wire, the second conductive rod 406 and the first conductive rod 205, and the electromagnet 603 generates magnetism and then attracts the permanent magnet 601. Since the permanent magnet 601 is fixedly installed inside the air storage channel 208, the permanent magnet 601 attracts the electromagnet 603 and then pulls the plunger rod 604 to make the plunger rod 604 move along the inside of the air storage channel 208, so as to draw the air inside the annular sealing airbag 203 into the air storage channel 208, so that the annular sealing airbag 203 collapses and then contacts the concrete column 3 0 side wall is separated so that the annular water storage tank 20 can smoothly move down along the outside of the concrete column 30; when the annular water storage tank 20 starts to move down along the outside of the concrete column 30, as the pin rod 502 slides down along the inside of the inclined slide groove 102, the pin rod 502 pulls the movable pressure plate 401 to make the movable pressure plate 401 away from the concrete column 30, at this time, the second conductive rod 406 on the side wall of the movable pressure plate 401 is separated from the first conductive rod 205, the electromagnet 603 is powered off and demagnetized, and the second elastic member 602 pushes the electromagnet 603 to make the plunger rod 604 move in the opposite direction along the inside of the air storage channel 208, so as to reversely press the air inside the air storage channel 208 to the inside of the annular sealing airbag 203, so that the annular sealing airbag 203 swells, and when the annular water storage tank 20 moves down one position, the annular sealing airbag 203 re-tightens the side wall of the concrete column 30, so as to achieve the re-sealing of the concrete column 30 with the bottom plate 206 and the top plate 202.

[0039] In one embodiment, the flexible water-retaining layer 402 may be a rubber layer or a plastic layer, which is not limited here.

[0040] In one embodiment, the first elastic member 404 and the second elastic member 602 may be springs or metal springs, which are not limited herein.

[0041] In the embodiment of the present invention, initially, the annular water storage tank 20 is located at the upper end of the inner side of the four sets of support plates 10. When the concrete column 30 needs to be watered and maintained, the annular water storage tank 20 and the four sets of support plates 10 can be lifted by means of a lifting machine (not shown in the figure), so that the annular water storage tank 20 is sleeved on the outside of the concrete column 30 from the upper end of the concrete column 30. At this time, the four sets of support plates 10 are respectively supported on the outer sides of the four side walls of the concrete column 30 (such as Figure 1As shown), the water supply component then supplies water to the inside of the annular water storage tank 20, and the water pressure component 40 applies pressure to the water source inside the annular water storage tank 20, so that the water source contacts the four side walls of the concrete column 30 to ensure that the water source can fully penetrate into the concrete column 30, so as to water and maintain the area of ​​the concrete column 30 currently surrounded by the annular water storage tank 20. After the watering and maintenance of the current area is completed, the driving component 50 drives the annular water storage tank 20 to move down one position along the outside of the concrete column 30, and then the water supply component supplies water to the inside of the annular water storage tank 20 again, and the water pressure component 40 applies pressure to the water source again, so that the water source and the concrete column 30 currently surrounded by The four side walls surrounded by the annular water storage tank 20 are in contact to ensure that the water source can fully penetrate into the interior of the concrete column 30 again, so that the area of ​​the concrete column 30 currently surrounded by the annular water storage tank 20 is watered and maintained again. Such a reciprocating cycle can realize the segmented watering and maintenance of the concrete column 30, thereby improving the uniformity of watering of the concrete column 30, improving the maintenance effect, and reducing the waste of water resources. Compared with the prior art, segmented watering and maintenance can be performed for longer concrete columns 30, thereby greatly reducing the waste of water resources, achieving uniform watering of the concrete column 30, and improving the maintenance effect of the concrete column 30.

[0042] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, the embodiments should be regarded as exemplary and non-limiting from any point of view, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention, and any reference numerals in the claims should not be regarded as limiting the claims involved.

[0043] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A concrete curing device, characterized in that: It includes a support plate, an annular water storage tank, a water pressure component, a drive component and a water supply component. The water supply assembly is used to supply water to the inside of the annular water storage tank. The support plates are provided in four groups, and the annular water storage tank is arranged inside the four groups of support plates. The water pressure assembly is movably arranged inside the annular water storage tank, and is used to apply pressure to the water source inside the annular water storage tank so that the water source contacts the four side walls of the concrete column. The driving assembly is arranged on the outside of the annular water storage tank, and is used for driving the annular water storage tank to intermittently move downward along the outside of the concrete column.

2. A concrete curing device according to claim 1, characterized in that: The annular water storage tank comprises an annular enclosure plate, a top plate and a bottom plate. The top plate is fixedly arranged at the upper end of the annular enclosure, and the bottom plate is fixedly arranged at the lower end of the annular enclosure. The center positions of the top plate and the bottom plate are both provided with openings for concrete columns to pass through.

3. A concrete curing device according to claim 2, characterized in that: The water pressure assembly includes a movable pressure plate, a guide rod, a first elastic member and a connecting rod. The movable pressing plates are provided with four groups, and the four groups of movable pressing plates are movably arranged inside the annular enclosure plate, and the upper ends of the four groups of movable pressing plates are in contact with the top plate, and the lower ends are in contact with the bottom plate. The four groups of movable pressing plates form a rectangular structure, and two adjacent groups of movable pressing plates are connected by a flexible water retaining layer. The connecting rod and the guide rod are fixedly arranged on the outer side of each group of the movable pressure plates, and the ends of the connecting rod and the guide rod away from the corresponding movable pressure plates penetrate the annular enclosure and movably cooperate with the annular enclosure. The outer side of each group of the movable pressure plates is connected to the inner wall of the annular enclosure through a group of the first elastic members, and the first elastic members are used to provide elastic support for the movable pressure plates.

4. A concrete curing device according to claim 3, characterized in that: The support plate is provided with a plurality of horizontal slide grooves and a plurality of inclined slide grooves, wherein the plurality of horizontal slide grooves are spaced apart along the height direction of the support plate, and the plurality of inclined slide grooves are alternately arranged between the plurality of horizontal slide grooves, and the plurality of inclined slide grooves are used to connect the plurality of horizontal slide grooves end to end. The driving assembly includes a U-shaped plate and a pin rod. The U-shaped plate is fixedly arranged at one end of the connecting rod located outside the annular enclosure plate, the U-shaped plate is clamped on two opposite sides of the support plate, the pin rod is arranged on the inner side of the U-shaped plate, and the pin rod passes through the inclined slide groove and the horizontal slide groove.

5. A concrete curing device according to claim 2, characterized in that: A water inlet pipe is arranged on the top plate, and one end of the water inlet pipe away from the top plate is connected to the water supply assembly.

6. A concrete curing device according to claim 4, characterized in that: One end of the pin rod is provided with an external thread, and an inner wall of one of the plates of the U-shaped plate is provided with a threaded hole matched with the external thread.

7. A concrete curing device according to claim 3, characterized in that: Annular sealing air bags are arranged on the openings at the center of the bottom plate and the top plate.

8. A concrete curing device according to claim 7, characterized in that: The top plate and the bottom plate are both provided with exhaust components. When the water source between the movable pressure plate and the concrete column penetrates into the concrete column, the exhaust components are used to extract the air inside the annular sealing airbag.

9. A concrete curing device according to claim 8, characterized in that: The bottom plate and the side wall of the top plate are both provided with a first conductive rod, Two groups of second conductive rods are arranged on one side of the movable pressing plate, one end of one group of the second conductive rods away from the movable pressing plate is in contact with the bottom plate, and one end of the other group of the second conductive rods away from the movable pressing plate is in contact with the top plate. The two groups of the second conductive rods are connected to an external power source through wires, and gas storage channels connected to the corresponding annular sealing airbags are provided inside the bottom plate and the top plate. The air extraction assembly includes a permanent magnet, a second elastic member, an electromagnet and a plunger rod. The permanent magnet is fixedly arranged inside the air storage channel, the plunger rod is movably arranged inside the air storage channel, the electromagnet is fixedly arranged at one end of the plunger rod and is distributed opposite to the permanent magnet, one end of the second elastic member is connected to the permanent magnet, and the other end is connected to the electromagnet for providing elastic support for the electromagnet, and the electromagnet is in contact with the first conductive rod.

10. A concrete curing device according to claim 3, characterized in that: The flexible water-retaining layer is a rubber layer or a plastic layer.

Citation Information

Patent Citations

  • Remotely-controlled concrete column curing device and using method thereof

    CN113958145A

  • Inflatable water-saving maintenance cover convenient to seal for bridge pier column

    CN115369769A

  • Concrete curing water spraying system

    CN117627396A

  • Spraying maintenance device and method for concrete structure

    CN117759051A

  • Civil construction engineering pile foundation fixing structure

    CN117966785A