CN210728899U - Concrete water material separation tank - Google Patents

Concrete water material separation tank Download PDF

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Publication number
CN210728899U
CN210728899U CN201921598626.1U CN201921598626U CN210728899U CN 210728899 U CN210728899 U CN 210728899U CN 201921598626 U CN201921598626 U CN 201921598626U CN 210728899 U CN210728899 U CN 210728899U
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China
Prior art keywords
sedimentation tank
tank
concrete
stirring
separator
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CN201921598626.1U
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Inventor
刘春辉
康磊
李曙光
张明
张志坤
王维翔
黄超
黄河
路田伟
郑朝国
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Fifth Engineering Co Ltd of China Railway 16th Bureau Group Co Ltd
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Fifth Engineering Co Ltd of China Railway 16th Bureau Group Co Ltd
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Abstract

The utility model relates to a technical field is pour to the festival section roof beam, provides a concrete water material separation tank. This concrete water material separation tank includes separator, stirring pond and sedimentation tank group, and the bottom of separator is equipped with first screen cloth, and the bottom in stirring pond is equipped with the second screen cloth, is equipped with agitating unit in the stirring pond, and sedimentation tank group is connected with pumping device. When the application is used, leading-in the separator with the concrete, concrete through pumping device in to separator and hopper erodees, the great building stones of granule stops on first screen cloth, the less mixed liquid of granule etc. enters into the stirring pond through first screen cloth, stir it through agitating unit, the sand material suspension is in mixed liquid, the less mixed liquid of cement of granule enters into the sedimentation tank group and deposits, final sand material stops on the second screen cloth, accomplish the separation recovery of sand material and building stones, save raw materials cost, and avoid environmental pollution, water circulated use after the sediment, save the water resource.

Description

Concrete water material separation tank
Technical Field
The utility model relates to a technical field is pour to the festival section roof beam, concretely relates to concrete water material separation tank.
Background
Due to the fact that the shapes of the segmental girders at different positions in the integral segmental girder are different in size (the bottoms of the segmental girders are arched), when the segmental girders are prefabricated, concrete for pouring needs to be calculated and has certain design allowance, and therefore the concrete can be guaranteed to be used sufficiently.
Therefore, after the segmental beam is cast and molded, a certain amount of concrete remains in the concrete pouring hopper, but the time interval from the next pouring is long, so that the concrete needs to be removed from the concrete pouring hopper, and the phenomenon that the hopper is blocked due to the solidification of the concrete in the concrete pouring hopper is avoided. The treatment method in the prior art usually directly pours the concrete, and then flushes the hopper with water to achieve the cleaning effect, but the treatment method has the following defects:
(1) the concrete which is washed out and mixed with the stone materials is very difficult to clean after solidification, which causes great environmental pollution;
(2) the stone materials in the concrete can not be recovered, and the raw material cost is wasted.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem or at least partially solve the technical problem, the utility model provides a concrete water material separation tank.
Above-mentioned concrete water material separation tank is including setting up the separator in concrete placement hopper bottom, the bottom of separator is equipped with the first screen cloth that is used for filtering the building stones, the below of separator is equipped with the stirring pond, the bottom in stirring pond is equipped with the second screen cloth that is used for filtering the sand material, be equipped with the agitating unit who is used for the stirring to enter into its inside liquid in the stirring pond, the below in stirring pond is equipped with the sedimentation tank group, the sedimentation tank group is connected with and is used for arriving the liquid suction after deposiing the pumping device in the separator.
Optionally, the sedimentation tank group includes first sedimentation tank, second sedimentation tank and the third sedimentation tank that communicates in proper order, first sedimentation tank sets up the below in stirring pond, the device that draws water with the third sedimentation tank is connected.
Optionally, the bottom of first sedimentation tank, second sedimentation tank and third sedimentation tank all inclines to set up, just the least significant end of first sedimentation tank, second sedimentation tank and third sedimentation tank all is equipped with row mud passageway.
Optionally, the first sedimentation tank and the second sedimentation tank are connected through a first pipeline, the second sedimentation tank and the third sedimentation tank are connected through a second pipeline, and the height of the first pipeline in the vertical direction is higher than the height of the second pipeline in the vertical direction.
Optionally, the first pipeline and the second pipeline are respectively provided with a first filter screen and a second filter screen, and the mesh number of the first filter screen is larger than that of the second filter screen.
Optionally, the rainwater collecting device further comprises a collecting tank for collecting rainwater, and the collecting tank is connected with the third sedimentation tank through a pipeline.
Optionally, the bottom in stirring pond is equipped with the installation base, the installation base with the bottom in stirring pond is passed through the installing support and is connected, the second screen cloth sets up the bottom of installing support, agitating unit sets up on the installation base.
Optionally, the stirring device comprises a driving motor vertically arranged on the mounting base, and an output shaft of the driving motor is provided with a plurality of rotary vanes along the horizontal direction.
Optionally, a support is arranged at the top of the separator, and a concrete pouring hopper is arranged on the support.
Compared with the prior art, the technical scheme provided by the embodiment of the application has the following advantages:
when the application is used, concrete with in the concrete placement hopper is leading-in to the separator, concrete in to separator and hopper erodees through pumping device, the concrete is through diluting the back of erodeing, the great building stones of granule stops on first screen cloth, the less mixed liquid of granule etc. enters into the stirring pond through first screen cloth, stir it through agitating unit, the sand material suspension is in mixed liquid, the less mixed liquid of cement of granule enters into the sedimentation tank group and deposits, final sand material stops on the second screen cloth, accomplish the separation of sand material and building stones and retrieve, save raw materials cost, and avoid environmental pollution, water circulated use after the sediment, save the water resource.
Drawings
Fig. 1 is a schematic view of a concrete water-material separation tank according to an embodiment of the present invention.
Reference numerals:
1. pouring concrete into a hopper; 2. a separator; 21. a first screen; 22. a support; 3. a stirring tank; 31. a second screen; 32. installing a base; 33. mounting a bracket; 34. a drive motor; 35. rotating leaves; 4. a first sedimentation tank; 5. a second sedimentation tank; 6. a third sedimentation tank; 7. a first conduit; 71. a second conduit; 8. and (4) a collection tank.
Detailed Description
In order to make the above objects, features and advantages of the present invention more clearly understood, the present invention will be further described in detail with reference to the accompanying drawings and examples. It is to be understood that the embodiments described are some, but not all embodiments of the invention. The specific embodiments described herein are merely illustrative of the invention and are not intended to be limiting. All other embodiments, which can be derived from the description of the embodiments of the present invention by a person skilled in the art, are within the scope of the present invention.
As shown in fig. 1, the concrete water-material separation tank provided by the embodiment of the present application includes a separator 2 disposed at the bottom of a concrete pouring hopper 1, specifically, a bracket 22 is disposed at the top of the separator 2, the concrete pouring hopper 1 is disposed on the bracket 22, and a first screen 21 for filtering stone is disposed at the bottom of the separator 2. The below of separator 2 is equipped with stirring pond 3, the bottom of stirring pond 3 is equipped with the second screen cloth 31 that is used for filtering the sand material, and because the granule that enters into the impurity in stirring pond 3 is less, block up second screen cloth 31 easily, and after second screen cloth 31 is blockked up, the water level in the stirring pond 3 rises, can set up the agitating unit who is used for the stirring to enter into its inside liquid in stirring pond 3 this moment, the foreign particles suspend under the effect that rivers stir, be convenient for mix the liquid and pass through second screen cloth 31. The bottom of the stirring pool 3 is provided with a sedimentation pool group which is connected with a water pumping device for pumping the liquid after sedimentation into the separator 2.
Wherein, pumping device includes water pump, first water pipe and second water pipe, and the water pump is connected with the sedimentation tank group through first water pipe, through the water blowout of second water pipe in will sedimentation tank group. Preferably, the second water pipe can be a fixed-route hard pipe, so as to avoid affecting the occupied space, and the hard pipe refers to a steel pipe or other inflexible pipelines. And set up the hose of certain length at the tip of hard tube, be convenient for adjust the blowout direction of rivers, the control range of this hose makes rivers can spout into in concrete placement hopper 1 and separator 2, and sets up the shower nozzle at the tip of hose, increases rivers jet strength.
During the use of this application, in leading-in separator 2 with the concrete in concrete placement hopper 1 to wash away concrete placement hopper 1 inside through pumping device, ensure to wash away the concrete in concrete placement hopper 1 totally. Adjustment pumping device's position, concrete in separator 2 erodees, the concrete is after diluting the erodeing, the great building stones of granule stops on first screen cloth 21, the less mixed liquid of granule etc. enters into stirring tank 3 through first screen cloth 21 in, stir it through agitating unit, the sand material suspension is in mixed liquid, the less mixed liquid of cement of granule enters into the sedimentation tank group and deposits, final sand material stops on second screen cloth 31, accomplish the separation recovery of sand material and building stones, save raw materials cost, and avoid environmental pollution, water circulated use after the sediment, save the water resource.
In some embodiments, the sedimentation tank group comprises a first sedimentation tank 4, a second sedimentation tank 5 and a third sedimentation tank 6 which are sequentially communicated, the first sedimentation tank 4 is arranged below the stirring tank 3, and the water pumping device is connected with the third sedimentation tank 6. Specifically, the first sedimentation tank 4 and the second sedimentation tank 5 are connected through a first pipeline 7, and the second sedimentation tank 5 and the third sedimentation tank 6 are connected through a second pipeline 71. The mixed liquid filtered through the first screen 21 enters the first sedimentation tank 4 to be preliminarily precipitated, the liquid in the first sedimentation tank 4 enters the second sedimentation tank 5 through the first pipeline 7 to be continuously precipitated, the liquid in the second sedimentation tank 5 enters the third sedimentation tank 6 through the second pipeline 71 to be precipitated, clear water is obtained, and the water in the third sedimentation tank 6 is pumped into the separation tank through the water pumping device to flush the concrete, so that the water resource is recycled. And the mixed liquid enters the first sedimentation tank 4, the second sedimentation tank 5 and the third sedimentation tank 6 through the self gravity, so that the height of the first pipeline 7 in the vertical direction is higher than that of the second pipeline 71 in the vertical direction, and the water flow can normally flow.
The first sedimentation tank 4, the second sedimentation tank 5 and the third sedimentation tank 6 of the present application realize the purification of water by utilizing the downward sedimentation speed of suspended impurity particles in water flow to be greater than the flow speed of the water flow. The mixed liquid through second screen cloth 31 enters into first sedimentation tank 4 back water level and rises gradually, and at this moment, the suspension impurity granule in the mixed liquid falls gradually, is higher than behind first pipeline 7 when the water level, and the comparatively clear rivers of upper strata advance to carry out next step and deposit in second sedimentation tank 5 to analogize in this, can obtain comparatively clear rivers at third sedimentation tank 6 for wash next time.
Further optimally, the bottom of first sedimentation tank 4, second sedimentation tank 5 and third sedimentation tank 6 all inclines to set up, and the lower extreme of first sedimentation tank 4, second sedimentation tank 5 and third sedimentation tank 6 all is equipped with row mud passageway. The mode that the slope set up can make the suspended impurity granule pile up the least significant end at each sedimentation tank, is convenient for clear up the precipitate through row's mud passageway, simultaneously, also can discharge sewage through row's mud passageway.
In some embodiments, the first pipeline 7 and the second pipeline 71 are respectively provided with a first filter screen and a second filter screen, which can further intercept suspended impurity particles to increase the purification effect, and the mesh number of the first filter screen is larger than that of the second filter screen because the mixed liquid in the first sedimentation tank 4 is relatively turbid.
This application still includes the collecting pit 8 that is used for collecting the rainwater, and collecting pit 8 and 6 tube coupling of third sedimentation tank. Collecting pit 8 can be placed in the open air, and the collection of the rainwater of being convenient for, rethread pumping device realizes the rational utilization of water resource as the water source that erodees the concrete in with the rainwater suction in collecting pit 8 to third sedimentation tank 6.
The bottom of stirring pond 3 is equipped with installation base 32, and installation base 32 passes through installing support 33 with the bottom of stirring pond 3 to be connected, through the intensity of installation base 32 and the multiplicable stirring pond 3 of installing support 33, agitating unit sets up on installation base 32, simultaneously, the installation of the second screen cloth 31 of being convenient for and agitating unit. Wherein, the second screen 31 can be arranged at the bottom of the mounting bracket 33; the second screen 31 may be provided in plurality, and each second screen 31 may be provided in a space defined by the mounting bracket 33 and the inner wall of the agitation tank 3, thereby saving the cost of the second screen 31.
In some embodiments, the stirring device includes a driving motor 34 vertically disposed on the mounting base 32, and an output shaft of the driving motor 34 is provided with a plurality of rotary vanes 35 along a horizontal direction, so that the stirring device is simple in structure and convenient to operate. When in use, the driving motor 34 drives the rotary vane 35 to rotate, thereby achieving the stirring effect. And this kind of design need set up the buckler in driving motor 34's periphery, avoids influencing its normal use.
In other embodiments, the stirring device may also include a driving motor 34 vertically disposed on the mounting base 32, and an output shaft of the driving motor 34 is vertically disposed with a screw, and the mixed liquid is driven to rotate along the screw by the rotation of the screw.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (9)

1. The utility model provides a concrete water material separation tank, its characterized in that, is including setting up the separator in concrete placement hopper bottom, the bottom of separator is equipped with the first screen cloth that is used for filtering building stones, the below of separator is equipped with the stirring pond, the bottom in stirring pond is equipped with the second screen cloth that is used for filtering sand material, be equipped with the agitating unit who is used for the stirring to enter into its inside liquid in the stirring pond, the below in stirring pond is equipped with the sedimentation tank group, the sedimentation tank group is connected with and is used for the liquid suction after will deposiing to water pumping device in the separator.
2. The concrete water-material separation tank as claimed in claim 1, wherein the sedimentation tank group comprises a first sedimentation tank, a second sedimentation tank and a third sedimentation tank which are sequentially communicated, the first sedimentation tank is arranged below the stirring tank, and the water pumping device is connected with the third sedimentation tank.
3. The concrete water-material separation tank of claim 2, wherein the bottoms of the first sedimentation tank, the second sedimentation tank and the third sedimentation tank are all obliquely arranged, and the lowest ends of the first sedimentation tank, the second sedimentation tank and the third sedimentation tank are all provided with a sludge discharge channel.
4. The concrete water-material separation tank of claim 2, wherein the first sedimentation tank and the second sedimentation tank are connected through a first pipeline, the second sedimentation tank and the third sedimentation tank are connected through a second pipeline, and the height of the first pipeline in the vertical direction is higher than the height of the second pipeline in the vertical direction.
5. The concrete water-material separation tank of claim 4, wherein the first pipeline and the second pipeline are respectively provided with a first filter screen and a second filter screen, and the mesh number of the first filter screen is larger than that of the second filter screen.
6. The concrete water-material separation tank of claim 2, further comprising a collection tank for collecting rainwater, wherein the collection tank is connected with the third sedimentation tank through a pipeline.
7. The concrete water-material separation tank of claim 1, wherein a mounting base is arranged at the bottom of the stirring tank, the mounting base is connected with the bottom of the stirring tank through a mounting bracket, the second screen is arranged at the bottom of the mounting bracket, and the stirring device is arranged on the mounting base.
8. The concrete water-material separation tank of claim 7, wherein the stirring device comprises a driving motor vertically arranged on the mounting base, and an output shaft of the driving motor is provided with a plurality of rotary vanes along the horizontal direction.
9. The concrete water-material separation tank as claimed in claim 1, wherein a bracket is provided on the top of the separator, and a concrete pouring hopper is provided on the bracket.
CN201921598626.1U 2019-09-24 2019-09-24 Concrete water material separation tank Active CN210728899U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921598626.1U CN210728899U (en) 2019-09-24 2019-09-24 Concrete water material separation tank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921598626.1U CN210728899U (en) 2019-09-24 2019-09-24 Concrete water material separation tank

Publications (1)

Publication Number Publication Date
CN210728899U true CN210728899U (en) 2020-06-12

Family

ID=70979406

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921598626.1U Active CN210728899U (en) 2019-09-24 2019-09-24 Concrete water material separation tank

Country Status (1)

Country Link
CN (1) CN210728899U (en)

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