CN217461554U - Concrete placement device for civil engineering - Google Patents

Concrete placement device for civil engineering Download PDF

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Publication number
CN217461554U
CN217461554U CN202220595092.2U CN202220595092U CN217461554U CN 217461554 U CN217461554 U CN 217461554U CN 202220595092 U CN202220595092 U CN 202220595092U CN 217461554 U CN217461554 U CN 217461554U
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water
bottom plate
plate
water tank
fixedly connected
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CN202220595092.2U
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Chinese (zh)
Inventor
谢海龙
吴芮
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Hangzhou Hangyang Chemical & Medical Engineering Co ltd
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Hangzhou Hangyang Chemical & Medical Engineering Co ltd
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Abstract

The utility model relates to a concrete placement device for civil engineering. Comprises a bottom plate and a water tank fixed on the bottom plate, wherein a telescopic mechanism with adjustable length is fixedly connected on the bottom plate. One end of the water gun is in threaded connection with a nut communicated with the water gun, the end, far away from the water gun, of the nut is connected with a hose communicated with the nut, the water gun further comprises a water pump fixed on the bottom plate, the water inlet end of the water pump is fixedly connected with a conduit communicated with the water pump and inserted into the water tank, and the water outlet end of the water pump is communicated with the end of the hose. The utility model discloses an adjustable squirt of telescopic machanism's height for the squirt can water to higher wall, and the water valve on the water tank can with outside water piping connection, make outside water source constantly supply water in can being to the water tank, avoid the inside lack of water tank, it waters through artifical handheld water pipe and sprays inhomogeneously to the wall to have solved current concrete placement, needs spray the problem that causes the water waste repeatedly to the wall.

Description

Concrete placement device for civil engineering
Technical Field
The utility model relates to a civil engineering construction equipment technical field, concretely relates to concrete placement device for civil engineering.
Background
After concrete is poured in civil engineering, the slurry has no strength, the concrete is hardened by the cement, the procedure of creating proper temperature and humidity conditions for the concrete to facilitate hydration and hardening is called curing, in order to accelerate the hardening of the concrete, the concrete needs to be manually watered to ensure that the concrete is in a moist state, which is beneficial to the hardening of the concrete, and therefore, a watering device needs to be used for watering the wall surface of a building;
most of existing concrete pouring devices are used for watering wall surfaces through manual hand-held water pipes, but due to the fact that building wall surfaces are high, spraying is prone to being uneven, the wall surfaces need to be sprayed repeatedly, water resources can be wasted, workload of constructors is increased, and meanwhile due to the fact that the existing concrete pouring devices are limited in water storage, when the existing concrete pouring devices are used for watering wall surfaces with large areas, the concrete pouring devices for civil engineering are difficult to achieve.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: for solving current concrete placement device most of water and watering to the wall through artifical handheld water pipe, nevertheless because building wall is higher, cause easily and spray inhomogeneously, need spray the wall repeatedly, consequently can cause the waste of water resource, also increased constructor's work load, simultaneously because current concrete placement device is limited to the storage of water capacity, so make the device be difficult to realize the problem when watering to the great wall of area, the utility model provides a concrete placement device for civil engineering.
The utility model discloses a realize above-mentioned purpose and specifically adopt following technical scheme:
the utility model provides a concrete placement water installation for civil engineering, includes the bottom plate, fixes water tank on the bottom plate, a fixedly connected with adjustable length telescopic machanism on the bottom plate, and telescopic machanism keeps away from the end of bottom plate is through a mounting fixedly connected with squirt, the one end threaded connection of squirt has a nut rather than the intercommunication, the nut is kept away from the end-to-end connection of squirt has the hose rather than the intercommunication, still including fixing water pump on the bottom plate, the water inlet end fixedly connected with of water pump rather than the intercommunication and insert extremely pipe in the water tank, the play water end of water pump with the hose end is linked together.
Furthermore, telescopic machanism is including fixing on the bottom plate and rather than the vertically lagging, the lagging is kept away from the terminal fixedly connected with one of bottom plate with the fixed inner panel of mounting, a through-hole one has been seted up to the symmetry along its thickness to the lagging, a plurality of through-holes two have been seted up to the range symmetry along its length to the inner panel, two the inside of through-hole one all is provided with and passes it and insert respectively to wherein two fastener in the through-hole two.
Further, the mounting is including fixing the terminal installation piece of inner panel, the installation piece is along its thickness to having seted up a hole groove, and the inner wall in hole groove with squirt fixed connection, still seted up a screw hole on the installation piece, the inside threaded connection of screw hole has the bolt that passes it and be used for conflicting the squirt.
Furthermore, the fastener is including setting up one of them inserted bar in the through-hole one, and the inserted bar is used for passing this through-hole and inserts one of them together the inside of through-hole two, fixed cover is equipped with the extension spring on the inserted bar, and the extension spring is kept away from the end of inserted bar is fixed on the lagging.
Furthermore, a plurality of fixing rods perpendicular to the sleeve plate are fixedly arranged on the sleeve plate along the length direction of the sleeve plate, and the tail ends, far away from the sleeve plate, of the fixing rods are fixedly connected with clamping blocks used for clamping the hoses.
Further, the water tank is located that its opening part articulates there is an apron, and the apron be used for with the water tank opening is airtight, still be fixed with on the apron one with the sealed pad of water tank opening adaptation, still be provided with a water valve with external water pipe intercommunication on the water tank.
Furthermore, the front and rear positions of the bottom plate are respectively provided with a roller which is attached to the ground, and the bottom plate is fixedly connected with a push rod.
The beneficial effects of the utility model are as follows: height through the adjustable squirt of telescopic machanism that sets up, the event makes the squirt can water to higher wall from this, water valve through on the water tank can with outside water piping connection simultaneously, make outside water source constantly supply water in can being to the water tank from this, avoid the inside lack of water tank, the event has solved current concrete pouring device and mostly waters to the wall through artifical handheld water pipe, but because building the wall is higher, cause easily and spray inhomogeneously, need spray to the wall repeatedly, consequently can cause the waste of water resource, simultaneously because current concrete pouring device is limited to the storage of water capacity, so make the device be difficult to realize the problem when watering to the great wall of area.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
FIG. 2 is an enlarged view of portion A of FIG. 1;
fig. 3 is a schematic view of another three-dimensional structure of the present invention;
FIG. 4 is an enlarged view of portion B of FIG. 3;
FIG. 5 is a schematic perspective view of the telescopic mechanism of the present invention;
FIG. 6 is an enlarged view of section C of FIG. 5;
FIG. 7 is a schematic perspective view of the cover plate of the present invention;
in the figure: 1. a base plate; 2. a water tank; 3. a telescoping mechanism; 4. a fixing member; 5. a water gun; 6. a nut; 7. a hose; 8. a water pump; 9. a conduit; 10. a water valve; 11. a cover plate; 12. a gasket; 13. a roller; 14. a push rod; 31. sheathing; 32. an inner plate; 33. a first through hole; 34. a second through hole; 35. a fastener; 41. mounting blocks; 42. a hole groove; 43. a threaded hole; 44. a bolt; 351. inserting a rod; 352. a tension spring; 15. fixing the rod; 16. and (7) clamping blocks.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the drawings in the embodiments of the present invention are combined below to clearly and completely describe the technical solutions in the embodiments of the present invention.
As shown in fig. 1-7, a concrete pouring device for civil engineering construction comprises a bottom plate 1, a water tank 2 fixed on the bottom plate 1, a length-adjustable telescopic mechanism 3 fixedly connected on the bottom plate 1, a water gun 5 fixedly connected at the end of the telescopic mechanism 3 far away from the bottom plate 1 through a fixing piece 4, a nut 6 communicated with the water gun 5 and connected with one end of the water gun 5 through a thread, a hose 7 communicated with the nut 6 and connected with a bearing at the end of the nut 6 far away from the water gun 5, a water pump 8 fixed on the bottom plate 1, a conduit 9 communicated with the water pump 8 and inserted into the water tank 2 and connected with the water pump 8 through a water inlet end, a water outlet end of the water pump 8 and the end of the hose 7, and a water valve 10 communicated with an external water pipe are further arranged on the water tank 2, in some embodiments, the height of the water gun 5 can be adjusted through the arranged telescopic mechanism 3, therefore, the water gun 5 can water a higher wall surface, and meanwhile, the water gun can be connected with an external water pipe through the water valve 10 on the water tank 2, so that an external water source can continuously supply water into the water tank 2, and the water shortage inside the water tank 2 is avoided, thereby solving the problems that most of the existing concrete water pouring devices water the wall surface by manually holding the water pipe, but the existing concrete water pouring devices are difficult to water the wall surface with larger area because the building wall surface is higher and uneven spraying is easy to cause, and the wall surface needs to be repeatedly sprayed, so that the waste of water resources is caused, and simultaneously, the existing concrete water pouring devices have limited water storage, so that the device is difficult to water the wall surface with larger area, more specifically, firstly, the water in the water tank 2 needs to be fully poured before the device enters the work, and then the bottom plate 1 is integrally moved to a designated position, by starting the water pump 8, a water source in the water tank 2 can be drained to a water outlet end of the water pump 8 through a conduit 9 at a water inlet end of the water pump 8, the water source can be drained into a hose 7 through the water outlet end of the water pump 8, then the water source is drained into the water gun 5 through the hose 7, and the water gun 5 is used for pouring the wall surface, wherein before the above, the telescopic mechanism 3 is required to be driven to adjust the height of the water gun 5, so that the water gun 5 can be used for pouring the higher wall surface, meanwhile, the water gun 5 can be fixed on the water gun 5 through the fixing piece 4, the situation that the water gun 5 falls off from the fixing piece 4 in the pouring process is avoided, and finally, when the wall surface with a larger area needs to be poured, an external water pipe can be connected to the water valve 10 on the water tank 2, so that the external water source can continuously supply water into the water tank 2, therefore, the situation that a water source in the water tank 2 does not pour the wall of a large area enough is avoided, water is required to be injected into the water tank 2 continuously through manpower, and therefore the labor force of workers is increased.
In some embodiments, the telescopic mechanism 3 includes a sleeve plate 31 fixed on the bottom plate 1 and perpendicular to the bottom plate 1, the end of the sleeve plate 31 far from the bottom plate 1 is fixedly connected with an inner plate 32 fixed with the fixing member 4, the sleeve plate 31 is symmetrically provided with a first through hole 33 along the thickness direction thereof, the inner plate 32 is symmetrically provided with a plurality of second through holes 34 along the length direction thereof, and the insides of the first through holes 33 are both provided with engaging members 35 penetrating therethrough and respectively inserted into the two second through holes 34, more specifically, when a wall surface at a higher position needs to be poured, the two engaging members 35 are firstly driven, so that the two engaging members 35 are moved out from the two second through holes 34, and the fixing of the inner plate 32 in the sleeve plate 31 is released, at this time, the inner plate 32 needs to slide along the length direction of the sleeve plate 31, and when the inner plate 32 slides to a certain position, the inner plate can be reinserted into the insides of the two second through holes 34 through the engaging members 35 in the two first through holes 33, therefore, the inner plate 32 after sliding is fixed inside the sleeve plate 31, and finally, when the inner plate 32 is slid, two first through holes 33 on the sleeve plate 31 are required to be always corresponding to two second through holes 34 on the inner plate 32.
In some embodiments, the fixing element 4 includes an installation block 41 fixed at the end of the inner plate 32, and the installation block 41 is provided with a hole slot 42 along the thickness direction thereof, and the inner wall of the hole slot 42 is fixedly connected with the water gun 5, and a threaded hole 43 is further provided on the installation block 41, and the internal thread of the threaded hole 43 is connected with a bolt 44 penetrating through the hole slot and used for colliding the water gun 5, more specifically, in order to avoid the situation that the water gun 5 falls off from the installation block 41 when the water gun 5 is poured onto a wall surface, the water gun 5 can be inserted into the hole slot 42 first, so that the water gun 5 is attached to the inner wall of the hole slot 42, and then the bolt 44 on the installation block 41 is screwed, so that the bolt 44 collides the water gun 5, and therefore, the water gun 5 can be fixed inside the hole slot 42.
In some embodiments, the engaging member 35 includes an inserting rod 351 disposed in one of the first through holes 33, and the inserting rod 351 is configured to pass through the first through hole 33 and be inserted into one of the second through holes 34, and a tension spring 352 is fixedly secured on the inserting rod 351, and an end of the tension spring 352 away from the inserting rod 351 is secured on the sleeve plate 31, more specifically, when the sliding inner plate 32 needs to be secured inside the sleeve plate 31, the two inserting rods 351 are pulled first and drive the two tension springs 352 thereon to retract, and then the inner plate 32 is driven to slide along the length direction of the sleeve plate 31, and when the inner plate 32 slides to a certain position, the two inserting rods 351 are driven by the tension of the two tension springs 352 to be reinserted into two of the second through holes 34 corresponding to the first through holes 33, so that the sliding inner plate 32 can be secured inside the sleeve plate 31.
In some embodiments, the sheathing board 31 is fixed with a plurality of fixing rods 15 perpendicular to the sheathing board 31 along the length direction thereof, and the ends of the fixing rods 15 far away from the sheathing board 31 are fixedly connected with the clamping blocks 16 for clamping the hose 7, more specifically, the clamping blocks 16 on the fixing rods 15 are clamped on the hose 7, so that the hose 7 can be supported and fixed, and the condition that the joint of the hose 7 and the water gun 5 is broken due to the gravity of the water source when the water source passes through the hose 7 is avoided.
In some embodiments, the water tank 2 is hinged with a cover plate 11 at the opening thereof, and the cover plate 11 is used for sealing the opening of the water tank 2, and a sealing gasket 12 adapted to the opening of the water tank 2 is further fixed on the cover plate 11, more specifically, when the water source in the water tank 2 is filled, a worker can drive the cover plate 11 to rotate around the hinge point thereof and seal the opening of the water tank 2, and meanwhile, the sealing gasket 12 on the cover plate 11 can be clamped at the opening of the water tank 2, so that the situation that the water source in the water tank 2 overflows from the gap between the cover plate 11 and the opening of the water tank 2 is avoided.
In some embodiments, a plurality of rollers 13 attached to the ground are fixed on the periphery of the bottom plate 1 along the thickness direction of the bottom plate 1, and a push rod 14 is further fixedly connected to the bottom plate 1, more specifically, when the bottom plate 1 needs to be integrally moved to a specified position, an operator can push the push rod 14 to drive the bottom plate 1 to integrally move, and the bottom plate 1 drives the rollers 13 to be attached to the ground to roll, so that the device is convenient for the operator to move, and the strength of the operator is saved.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (7)

1. A concrete pouring device for civil construction comprises a bottom plate (1) and a water tank (2) fixed on the bottom plate (1), it is characterized in that a telescopic mechanism (3) is fixedly connected on the bottom plate (1), the tail end of the telescopic mechanism (3) far away from the bottom plate (1) is fixedly connected with a water gun (5) through a fixing piece (4), one end of the water gun (5) is connected with a screw cap (6) communicated with the water gun through threads, the tail end of the screw cap (6) far away from the water gun (5) is connected with a hose (7) communicated with the screw cap, the screw cap further comprises a water pump (8) fixed on the bottom plate (1), the water inlet end of the water pump (8) is fixedly connected with a conduit (9) which is communicated with the water pump and is inserted into the water tank (2), the water outlet end of the water pump (8) is communicated with the tail end of the hose (7).
2. The concrete pouring device for civil engineering construction according to claim 1, wherein the telescopic mechanism (3) comprises a sleeve plate (31) fixed on the bottom plate (1) and perpendicular to the bottom plate, the end of the sleeve plate (31) far away from the bottom plate (1) is fixedly connected with an inner plate (32) fixed with the fixing piece (4), the sleeve plate (31) is symmetrically provided with a first through hole (33) along the thickness direction, the inner plate (32) is symmetrically provided with a group of second through holes (34) along the length direction, and the two first through holes (33) are internally provided with clamping pieces (35) penetrating through the inner plate and respectively inserted into the two second through holes (34).
3. The concrete pouring device for civil engineering according to claim 2, characterized in that the fixing member (4) comprises a mounting block (41) fixed at the end of the inner plate (32), the mounting block (41) is provided with a hole groove (42) along the thickness direction thereof, the inner wall of the hole groove (42) is fixedly connected with the water gun (5), the mounting block (41) is further provided with a threaded hole (43), and the inner thread of the threaded hole (43) is connected with a bolt (44) which penetrates through the threaded hole and is used for abutting against the water gun (5).
4. The concrete pouring device for civil engineering as claimed in claim 2, characterized in that the fastener (35) comprises an insertion rod (351) arranged in one of the first through holes (33), the insertion rod (351) is used for passing through the first through hole (33) and being inserted into the interior of one of the second through holes (34), a tension spring (352) is fixedly sleeved on the insertion rod (351), and the end of the tension spring (352) far away from the insertion rod (351) is fixed on the sleeve plate (31).
5. The concrete pouring device for civil engineering according to claim 2, characterized in that a group of fixing rods (15) perpendicular to the sheathing plate (31) are fixedly arranged along the length direction of the sheathing plate, and the ends of the group of fixing rods (15) far away from the sheathing plate (31) are fixedly connected with clamping blocks (16) for clamping the hose (7).
6. The concrete pouring device for civil engineering according to claim 1, characterized in that the water tank (2) is hinged with a cover plate (11) at the opening thereof, the cover plate (11) is used for sealing the opening of the water tank (2), a sealing gasket (12) matched with the opening of the water tank (2) is further fixed on the cover plate (11), and a water valve (10) communicated with an external water pipe is further arranged on the water tank (2).
7. The concrete pouring device for the civil engineering according to claim 2, wherein the front and rear positions of the bottom plate (1) are respectively provided with a roller (13) which is attached to the ground, and one end of the bottom plate (1) is fixedly connected with a push rod (14).
CN202220595092.2U 2022-03-18 2022-03-18 Concrete placement device for civil engineering Active CN217461554U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220595092.2U CN217461554U (en) 2022-03-18 2022-03-18 Concrete placement device for civil engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220595092.2U CN217461554U (en) 2022-03-18 2022-03-18 Concrete placement device for civil engineering

Publications (1)

Publication Number Publication Date
CN217461554U true CN217461554U (en) 2022-09-20

Family

ID=83265411

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220595092.2U Active CN217461554U (en) 2022-03-18 2022-03-18 Concrete placement device for civil engineering

Country Status (1)

Country Link
CN (1) CN217461554U (en)

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