CN219219867U - Pier column concrete intelligent maintenance system - Google Patents

Pier column concrete intelligent maintenance system Download PDF

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Publication number
CN219219867U
CN219219867U CN202320321482.5U CN202320321482U CN219219867U CN 219219867 U CN219219867 U CN 219219867U CN 202320321482 U CN202320321482 U CN 202320321482U CN 219219867 U CN219219867 U CN 219219867U
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China
Prior art keywords
rotating disc
pier stud
recovery
concrete
stud concrete
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CN202320321482.5U
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Chinese (zh)
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黄晓敏
余露
雍斌
李斌
叶忠举
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Sichuan Jingda Engineering Testing Co ltd
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Sichuan Jingda Engineering Testing Co ltd
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Abstract

The utility model relates to a concrete molding equipment technical field especially relates to an pier stud concrete intelligent maintenance system, including curing box, spray subassembly and water tank, spray the subassembly set up in curing box is interior, the water tank be used for to spray the subassembly water supply, curing box bottom surface is provided with rolling disc one, along its circumference direction interval hinge on rolling disc one's the top surface have a plurality of regulating plates, rotate on the regulating plate and be connected with rolling disc two, be provided with the mounting groove that is used for installing pier stud concrete on the rolling disc two; offer on the rolling disc one and supply the rolling disc pivoted groove of stepping down, the application has the effect of being convenient for install pier stud concrete in the curing box.

Description

Pier column concrete intelligent maintenance system
Technical Field
The application relates to the technical field of concrete forming equipment, in particular to an intelligent curing system for pier stud concrete.
Background
After concrete is poured, if the weather is hot, air drying is carried out, curing is not carried out in time, moisture in the concrete can evaporate too fast, dehydration phenomenon is formed, cement particles with gel can not be fully hydrated, can not be converted into stable crystals, and the sufficient cohesive force is lacked, so that flaky or powdery falling-off can occur on the surface of the concrete; meanwhile, when the concrete has insufficient strength, the premature evaporation of water can generate larger shrinkage deformation and dry shrinkage cracks, so that the early maintenance work after the concrete is poured is very important.
The current common concrete curing system includes curing box and spray the subassembly, sprays the subassembly setting in curing box, when needs are cured pier stud concrete, places pier stud concrete in curing box, restarts to spray the subassembly and supply moisture to pier stud concrete, reduces pier stud concrete shrinkage deformation's possibility.
Be provided with the mounting groove that is used for installing pier stud concrete in the curing box, when placing pier stud concrete in the curing box, need slope pier stud concrete earlier, aim at the mounting groove with pier stud concrete's bottom, then rotate pier stud concrete, make the vertical mounting groove that inserts of pier stud concrete, because pier stud concrete self weight is great, the weight of pier stud concrete is all born by installer in the above-mentioned operation, the operation is inconvenient.
Disclosure of Invention
In order to be convenient for install pier stud concrete in the curing box, this application provides pier stud concrete intelligent curing system.
The application provides an pier stud concrete intelligent maintenance system adopts following technical scheme:
the intelligent curing system for pier stud concrete comprises a curing box, a spraying assembly and a water tank, wherein the spraying assembly is arranged in the curing box, the water tank is used for supplying water to the spraying assembly, a first rotating disc is arranged on the bottom surface of the curing box, a plurality of adjusting discs are hinged to the top surface of the first rotating disc at intervals along the circumferential direction of the first rotating disc, a second rotating disc is rotatably connected to the adjusting discs, and a mounting groove for mounting pier stud concrete is formed in the second rotating disc; and a yielding groove for the rotation of the adjusting disk is formed in the first rotating disk.
By adopting the technical scheme, before the pier column concrete is placed in the curing box, the adjusting disc is rotated and is transferred into the abdication groove, and the adjusting disc is inclined to the outside of the curing box at the moment; then the pier column concrete is inserted into the mounting groove, the pier column concrete is pushed to be in a vertical state, and the adjusting disc rotates along with the pier column concrete at the moment; after installing a pier column concrete, driving the rotating disc to rotate, rotating the next adjusting disc to the position for installing the pier column concrete, and repeating the operation, so that the pier column concrete can be quickly installed in the curing box. When maintaining pier stud concrete, open and spray the subassembly, improve the humidity in the curing case, simultaneously, rolling disc two rotates, drives pier stud concrete and rotates, makes the side of pier stud concrete can even contact moisture.
Compared with the prior art, the curing box needs to reserve the space for installing pier column concrete, and the weight of the pier column concrete is born by an installer in the whole process of installing the pier column, so that the safety problem exists during installation. Through the setting of regulating disk, insert the pier stud concrete behind the mounting groove when the installation, the mounting groove supports pier stud concrete, can share the weight of a part of pier stud concrete, only need promote pier stud concrete rotate in subsequent operation can, be convenient for install pier stud concrete in the curing box.
Optionally, a cylinder for supporting the adjusting disk is installed in the yielding groove.
Through adopting above-mentioned technical scheme, after installing pier stud concrete in the mounting groove, rotate pier stud concrete and make pier stud concrete be in vertical state, because the setting of groove of stepping down, when the rolling disc rotates, the adjusting disk can appear unstable and to the possibility of stepping down in the groove of stepping down, consequently sets up cylinder support adjusting disk, improves the stability of adjusting disk.
Optionally, a first drive for driving the first rotating disk is arranged between the curing box and the first rotating disk.
Through adopting above-mentioned technical scheme, first driven setting is convenient for drive rolling disc one and rotates.
Optionally, the first drive includes sprocket and chain, the side of rotating disk one offered with sprocket adaptation tooth's socket one, the sprocket rotate connect in the maintenance case bottom surface, the chain mesh simultaneously in tooth's socket one with on the sprocket.
Through adopting above-mentioned technical scheme, when driving the rotation of rolling disc one, the sprocket rotates and drives the chain and move, because the setting of tooth's socket one, the rolling disc one takes place to rotate along with the removal of chain. The structure is simple, and the first rotating disc is convenient to drive to rotate.
Optionally, the number of teeth of the sprocket is smaller than the number of teeth of the first tooth slot.
Through adopting above-mentioned technical scheme, when driving the rotation of rolling disc one, sprocket rotates the multiturn rolling disc one and rotates one round to reach the effect of slowing down, improve maintenance system's stability.
Optionally, a second drive for driving the rotating disc two to rotate is arranged between the rotating disc one and the rotating disc two.
Through adopting above-mentioned technical scheme, second driven setting is convenient for drive rolling disc two rotates.
Optionally, the second drive includes a gear coaxially disposed with the rotating disc, a tooth slot second meshed with the gear is formed on a peripheral wall of the second rotating disc, and the gear is meshed with a plurality of second rotating discs simultaneously.
Through adopting above-mentioned technical scheme, when driving the second rotation of rolling disc, gear rotation drives a plurality of second rotations of rolling disc and rotates simultaneously, sets up a gear and can drive a plurality of second rotations of rolling disc and rotate together, need not to set up many sets of drives, practices thrift the cost.
Optionally, a recovery assembly is arranged in the maintenance box, the recovery assembly comprises a recovery pipe and a recovery pump, a recovery hole is formed in the bottom surface of the maintenance box, two ends of the recovery pipe are respectively communicated with the recovery hole and the water tank, and the recovery pump is arranged on the recovery pipe; and a filter screen is arranged on the recovery hole.
By adopting the technical scheme, after the spraying component sprays water on the surface of the pier column concrete, the water which is not absorbed by the pier column concrete flows downwards along the pier column concrete and is accumulated at the bottom of the curing box, so that the bottom of the pier column concrete can be soaked in the water, the water absorption at the bottom of the pier column concrete is excessive, and the surface layer of the pier column concrete can be foamed, so that the quality of the pier column concrete is influenced; the recovery component is arranged to recycle the water.
Pier stud concrete is under the effect of spraying the subassembly, and the dregs on surface can be along with rivers flow direction recovery hole, then gets into the water tank through the recovery pipe, can get into spraying the subassembly by the water tank again to lead to spraying the shower nozzle of subassembly to block up, consequently set up filter screen interception dregs, reduce spraying the possibility that the subassembly is blocked up.
In summary, the present application includes the following beneficial technical effects:
1. according to the pier column concrete curing box, the first rotating disc, the adjusting disc and the second rotating disc are arranged, and after pier column concrete is inserted into the mounting groove during mounting, the mounting groove supports the pier column concrete, so that the weight of a part of pier column concrete can be shared, and the pier column concrete is only pushed to rotate in the follow-up operation, so that the pier column concrete is conveniently mounted in the curing box;
2. this application passes through the setting of cylinder, is convenient for support the regulating plate, improves the stability of regulating plate.
Drawings
FIG. 1 is a schematic overall structure of an embodiment of the present application;
FIG. 2 is a schematic cross-sectional view of an embodiment of the present application;
FIG. 3 is an enlarged schematic view of the portion A of FIG. 1;
fig. 4 is a schematic partial structure of the first drive in the embodiment of the present application.
Reference numerals illustrate:
1. a curing box; 2. a door; 3. a spray assembly; 301. a shower pipe; 302. a spray head; 4. a water supply pipe; 5. a water supply pump; 6. a recovery assembly; 601. a recovery pipe; 602. a recovery pump; 7. a recovery hole; 8. a filter screen; 9. rotating a first disc; 10. an adjusting plate; 11. a second rotating disc; 12. a mounting groove; 13. a relief groove; 14. a first drive; 141. a chain; 142. a sprocket; 143. a first motor; 15. tooth sockets I; 16. a second drive; 161. a gear; 162. a second motor; 17. pier column concrete; 18. a water tank; 19. tooth grooves II; 20. and (3) a cylinder.
Detailed Description
The present application is described in further detail below in conjunction with figures 1-4.
The embodiment of the application discloses an intelligent curing system for pier stud concrete, referring to fig. 1 and 2, comprising a curing box 1, a spraying assembly 3, a water tank 18 and a recycling assembly 6, wherein a box door 2 is hinged on the curing box 1; the spray assembly 3 is arranged in the curing box 1, the spray assembly 3 comprises a spray pipe 301 and a plurality of spray heads 302, the spray pipe 301 is arranged on the upper portion of the curing box 1 along the circumferential direction of the curing box 1, and the spray heads 302 are arranged on the spray pipe 301 at intervals and are communicated with the spray pipe 301. The water tank 18 is communicated with the spray assembly 3 through a water supply pipe 4, and a water supply pump 5 is arranged on the water supply pipe 4.
Referring to fig. 2 and 3, the recovery assembly 6 is used for recovering water in the curing box 1, the recovery assembly 6 comprises a recovery pipe 601 and a recovery pump 602, a recovery hole 7 is formed in the bottom surface of the curing box 1, two ends of the recovery pipe 601 are respectively communicated with the recovery hole 7 and the water tank 18, and the recovery pump 602 is arranged on the recovery pipe 601; the recovery hole 7 is provided with a filter screen 8.
Referring to fig. 1 and 2, the bottom surface of the curing box 1 is rotatably connected with a first rotating disk 9, and a plurality of adjusting disks 10 are hinged on the top surface of the first rotating disk 9 at intervals along the circumferential direction thereof, and in the embodiment of the present application, the adjusting disks 10 are provided in twelve. The second rotating disc 11 is rotatably connected to the adjusting disc 10, the second rotating disc 11 and the adjusting disc 10 are coaxially arranged, and the second rotating disc 11 is provided with a mounting groove 12 for mounting pier column concrete 17; the first rotating disc 9 is provided with a yielding groove 13 for the rotation of the adjusting disc 10. An air cylinder 20 for supporting the adjusting disk 10 is arranged in the abdication groove 13, and the movable end of the air cylinder 20 is fixedly connected with the adjusting disk 10.
Referring to fig. 2 and 4, a first drive 14 for driving the rotation of the rotation plate is provided between the curing box 1 and the rotation plate 9. The first drive 14 comprises a sprocket 142 and a chain 141, a first tooth socket 15 matched with the sprocket 142 is formed on the side face of the first rotating disc 9, the sprocket 142 is rotatably connected to the bottom face of the curing box 1, a first motor 143 for driving the sprocket 142 to rotate is arranged on the curing box 1, and the chain 141 is simultaneously meshed with the first tooth socket 15 and the sprocket 142. The sprocket 142 has a smaller number of teeth than tooth slot one 15.
Referring to fig. 2, a second drive 16 for driving the rotation of the rotation disk two 11 is provided between the rotation disk one 9 and the rotation disk two 11. The second drive 16 comprises a gear 161 coaxially arranged with the first rotating disk 9, the gear 161 is rotatably connected to the first rotating disk 9, tooth grooves 19 meshed with the gear 161 are formed in the peripheral wall of the second rotating disk 11, the gear 161 is simultaneously meshed with the second rotating disks 11, and a second motor 162 for driving the gear 161 to rotate is arranged on the first rotating disk 9.
In this embodiment, for ease of cleaning and replacement of the filter screen 8, the filter hole is disposed near one corner of the door 2, and likewise, for ease of access to the sprocket 142 and the chain 141, the sprocket 142 is disposed near the other corner of the door 2.
The implementation principle of the intelligent curing system for pier stud concrete 17 is as follows: before the pier column concrete 17 is placed in the curing box 1, the movable end of the air cylinder 20 contracts to drive the adjusting disc 10 to rotate, the adjusting disc 10 rotates into the yielding groove 13, and at the moment, the adjusting disc 10 inclines outwards of the curing box 1; then the pier column concrete 17 is inserted into the mounting groove 12, the movable end of the air cylinder 20 stretches out, the adjusting disc 10 is driven to reset, and the pier column concrete 17 is pushed to be in a vertical state; after installing a pier column concrete 17, the first rotating disc 9 is driven to rotate, the next adjusting disc 10 is rotated to the position where the pier column concrete 17 is installed, and the pier column concrete 17 can be quickly installed in the curing box 1 by repeating the above operation.
When the pier column concrete 17 is cured, the spraying assembly 3 is started, the humidity in the curing box 1 is improved, meanwhile, the second rotating disc 11 rotates to drive the pier column concrete 17 to rotate, and the side face of the pier column concrete 17 can be uniformly contacted with moisture. Excess water flows to the bottom of the curing box 1, flows to the recovery pipe 601 through the recovery hole 7, is pumped into the water tank 18 by the recovery pump 602, and dregs flushed from the pier stud concrete 17 are intercepted by the filter screen 8.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (8)

1. The utility model provides an pier stud concrete intelligent maintenance system, includes curing case (1), sprays subassembly (3) and water tank (18), spray subassembly (3) set up in curing case (1), water tank (18) are used for to spray subassembly (3) water supply, its characterized in that: the bottom surface of the curing box (1) is provided with a first rotating disc (9), a plurality of adjusting discs (10) are hinged to the top surface of the first rotating disc (9) at intervals along the circumferential direction of the first rotating disc, a second rotating disc (11) is connected to the adjusting discs (10) in a rotating mode, and an installing groove (12) for installing pier column concrete (17) is formed in the second rotating disc (11); and a yielding groove (13) for the rotation of the adjusting disc (10) is formed in the first rotating disc (9).
2. The intelligent pier stud concrete curing system according to claim 1, wherein: an air cylinder (20) for supporting the adjusting disc (10) is arranged in the yielding groove (13).
3. The intelligent pier stud concrete curing system according to claim 1, wherein: a first drive (14) for driving the first rotating disc (9) to rotate is arranged between the curing box (1) and the first rotating disc (9).
4. The intelligent pier stud concrete curing system according to claim 3, wherein: the first driving device comprises a sprocket (142) and a chain (141), a tooth groove I (15) matched with the sprocket (142) is formed in the side face of the first rotating disc (9), the sprocket (142) is rotationally connected to the bottom face of the curing box (1), and the chain (141) is simultaneously meshed with the tooth groove I (15) and the sprocket (142).
5. The intelligent pier stud concrete curing system according to claim 4, wherein: the number of teeth of the sprocket (142) is smaller than the number of teeth of the first tooth slot (15).
6. The intelligent pier stud concrete curing system according to claim 1, wherein: a second drive (16) for driving the rotating disc two (11) to rotate is arranged between the rotating disc one (9) and the rotating disc two (11).
7. The intelligent pier stud concrete curing system according to claim 6, wherein: the second driving device comprises a gear (161) coaxially arranged with the first rotating disc (9), the gear (161) is rotationally connected to the first rotating disc (9), tooth grooves (19) meshed with the gear (161) are formed in the peripheral wall of the second rotating disc (11), and the gear (161) is meshed with a plurality of the second rotating discs (11) at the same time.
8. The intelligent pier stud concrete curing system according to claim 1, wherein: a recovery assembly (6) is arranged in the maintenance box (1), the recovery assembly (6) comprises a recovery pipe (601) and a recovery pump (602), a recovery hole (7) is formed in the bottom surface of the maintenance box (1), two ends of the recovery pipe (601) are respectively communicated with the recovery hole (7) and the water tank (18), and the recovery pump (602) is arranged on the recovery pipe (601); a filter screen (8) is arranged on the recovery hole (7).
CN202320321482.5U 2023-02-25 2023-02-25 Pier column concrete intelligent maintenance system Active CN219219867U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320321482.5U CN219219867U (en) 2023-02-25 2023-02-25 Pier column concrete intelligent maintenance system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320321482.5U CN219219867U (en) 2023-02-25 2023-02-25 Pier column concrete intelligent maintenance system

Publications (1)

Publication Number Publication Date
CN219219867U true CN219219867U (en) 2023-06-20

Family

ID=86742497

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320321482.5U Active CN219219867U (en) 2023-02-25 2023-02-25 Pier column concrete intelligent maintenance system

Country Status (1)

Country Link
CN (1) CN219219867U (en)

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