Concrete wastewater recycling device
Technical Field
The utility model relates to the technical field of concrete wastewater recovery, in particular to a concrete wastewater recovery and utilization device.
Background
The concrete is an engineering material formed by mixing various raw materials according to a certain proportion, is widely used in construction of buildings, bridges and ports and wharfs, tap water is needed to be used for flushing stirring equipment in the process of preparing the concrete, so that a lot of concrete wastewater is generated, if the use of the concrete is gradually increased, the consumption of water resources is also increased, but in a lot of stirring stations, a device for recycling the concrete wastewater is lacking, so that the water resources are wasted greatly, and a concrete wastewater recycling device is needed.
According to the utility model, CN217676866U discloses a concrete wastewater recycling device, which comprises a submersible mixer, wherein an air compressor is arranged on the left side of the submersible mixer, a stepping motor is arranged above the air compressor, a discharge hole is formed below the air compressor, a storage tank is arranged on the right side of the discharge hole, a material leakage plate is arranged above the storage tank, a stepping motor is arranged on the right side of the material leakage plate, a recoil filter is arranged on the right side of the stepping motor, a water pump is arranged above the recoil filter, and a filtered water storage bin is arranged on the right side of the water pump. This a device for concrete waste water recycle can stir concrete waste water through submersible mixer to isolate aggregate and waste water, thereby and the air compressor machine can carry out the pressure boost to the aggregate that gets into the storage pond and need not to deposit and can arrange waste water completely, and because the air compressor machine is the pressure boost always can carry out the swage operation to the aggregate and export from the discharge gate, solved the problem that recovery efficiency is low and can't retrieve the aggregate.
However, when the technical scheme is implemented, the problems that the aggregate in the concrete wastewater can be better screened and recycled, stones and sand particles with different particle sizes exist in the aggregate in the concrete wastewater, various materials are recycled for different purposes, the aggregate with different diameters cannot be separated by the device, and the repeated use of subsequent materials is inconvenient, so that a more convenient concrete wastewater recycling device is needed, and the working efficiency is improved.
Disclosure of utility model
The utility model provides a concrete wastewater recycling device, which solves the problems that in the related art, though the scheme can better screen and recycle aggregate in concrete wastewater, aggregates in the concrete wastewater have stones and sand with different particle diameters, various materials are recycled for different purposes, the device can not separate the aggregates with different diameters, and the recycling of subsequent materials is inconvenient, so that a more convenient concrete wastewater recycling device is needed, and the work efficiency is improved.
The concrete wastewater recycling device comprises a feeding hopper and a sorting mechanism, wherein a first diversion trench is arranged below the feeding hopper, a first conveyor belt is arranged below the first diversion trench, a second diversion trench is arranged below the first conveyor belt, a second conveyor belt is arranged below the second diversion trench, a supporting frame is arranged below the second conveyor belt, and a sedimentation tank is arranged below the second diversion trench.
Preferably, the internally mounted of first guiding gutter has first pivot, first motor is installed to the one end of first pivot, the top of first pivot is provided with first screen cloth, the lower surface four corners of first screen cloth is provided with first spring, the inside of first conveyer belt is provided with first conveying pivot, the one end of first conveying pivot is provided with the second motor, the both sides of first conveyer belt are provided with the backplate, the inside of second guiding gutter is provided with the second pivot, the one end of second pivot is provided with the third motor, the top of second pivot is provided with the second screen cloth, the lower surface four corners of second screen cloth is provided with the second spring, the inside of second conveyer belt is provided with the second conveying pivot, the one end of second conveying pivot is provided with the fourth motor.
Preferably, the first diversion trench is connected with the first rotation shaft clamping groove, and the inner diameter of the first diversion trench is matched with the outer diameter of the first rotation shaft.
Preferably, the first diversion trench is in sliding connection with the first screen, and the length of the first screen is slightly longer than that of the first diversion trench.
Preferably, the section of the first rotating shaft and the second rotating shaft between the inner surfaces of the first diversion trench and the second diversion trench is square.
Preferably, the first screen has a larger pore size than the second screen.
Preferably, the first screen is connected with a first spring screw, and the aperture of the first screen is slightly smaller than the diameter of a stone in concrete.
The working principle and the beneficial effects of the utility model are as follows:
The utility model provides a concrete wastewater recycling device, which is characterized in that a hopper and a sorting mechanism are arranged, when concrete boiling water is recycled, the concrete wastewater is poured into the hopper, the boiling water enters a first guide groove through a first screen, a first motor is operated to drive a first rotating shaft to rotate, the cross section of the first rotating shaft between the inner surfaces of the first guide grooves is square, the first rotating shaft is rotated to drive the first screen to vibrate, aggregates with larger stone equal diameters are filtered, the first screen is slightly longer than the first guide groove, the stones fall on a first conveyor belt and then move along with the first conveyor belt to be conveniently collected, the rest water passes through the first guide groove and enters a second guide groove through the second screen, the second motor drives the second screen to vibrate, the second screen filters silt with smaller diameter, the silt falls on the second conveyor belt from the second screen to be conveniently recycled independently, and the rest wastewater is conveniently recycled after entering a sedimentation tank from the second guide groove to be converted into clean water, so that the concrete wastewater is recycled.
Drawings
The utility model will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic view of the overall appearance structure of the present utility model;
FIG. 2 is a schematic diagram of a sorting mechanism according to the present utility model;
FIG. 3 is a schematic view of a partial structure of the sorting mechanism of the present utility model;
FIG. 4 is a schematic view of a partial structure of the sorting mechanism of the present utility model;
In the figure, 1, a hopper; 2, a sorting mechanism, 201, a first diversion trench, 202, a first rotating shaft, 203, a first motor, 204, a first screen, 205, a first spring, 206, a first conveyor belt, 207, a first conveying rotating shaft, 208, a second motor, 209, a guard plate, 210, a second diversion trench, 211, a second rotating shaft, 212, a third motor, 213, a second screen, 214, a second spring, 215, a second conveyor belt, 216, a second conveying rotating shaft, 217, a fourth motor, 3, a support frame, 4 and a sedimentation tank.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by one of ordinary skill in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, the utility model provides a concrete wastewater recycling device, which comprises a hopper 1 and a sorting mechanism 2, wherein a first diversion trench 201 is arranged below the hopper 1, a first conveyor belt 206 is arranged below the first diversion trench 201, a second diversion trench 210 is arranged below the first conveyor belt 206, a second conveyor belt 215 is arranged below the second diversion trench 210, a supporting frame 3 is arranged below the second conveyor belt 215, and a sedimentation tank 4 is arranged below the second diversion trench 210.
Specifically, the internally mounted of first guiding gutter 201 has first pivot 202, first motor 203 is installed to the one end of first pivot 202, the top of first pivot 202 is provided with first screen cloth 204, the lower surface four corners of first screen cloth 204 is provided with first spring 205, the inside of first conveyer belt 206 is provided with first conveying pivot 207, the one end of first conveying pivot 207 is provided with second motor 208, the both sides of first conveyer belt 206 are provided with backplate 209, the inside of second guiding gutter 210 is provided with second pivot 211, the one end of second pivot 211 is provided with third motor 212, the top of second pivot 211 is provided with second screen cloth 213, the lower surface four corners of second screen cloth 213 is provided with second spring 214, the inside of second conveyer belt 215 is provided with second conveying pivot 216, the one end of second conveying pivot 216 is provided with fourth motor 217, the practicality of device has been strengthened through above-mentioned setting.
Specifically, the first diversion trench 201 is connected with the first rotation shaft 202 through a clamping groove, the inner diameter of the first diversion trench 201 is matched with the outer diameter of the first rotation shaft 202, and the first rotation shaft 202 can rotate in the first diversion trench 201.
Specifically, the first diversion trench 201 is slidably connected with the first screen 204, and the length of the first screen 204 is slightly longer than that of the first diversion trench 201, so that waste water is conveniently separated from aggregate, the waste water enters the second diversion trench 210, and the aggregate enters the first conveyor belt 206.
Specifically, the cross section of the first rotating shaft 202 and the second rotating shaft 211 between the inner surfaces of the first diversion trench 201 and the second diversion trench 210 is square, and the square cross section of the first rotating shaft 202 and the second rotating shaft 211 can make the screen vibrate up and down during rotation, so that aggregates can be separated more rapidly.
Specifically, the first screen 204 has a larger pore size than the second screen 213, the first screen 204 filters the aggregates having a larger diameter, and the second screen 213 filters the aggregates having a smaller diameter.
Specifically, the first screen 204 is connected with the first spring 205 through screws, the aperture of the first screen 204 is slightly smaller than the diameter of stones in concrete, and the first spring 205 enables the first screen 204 to reset rapidly after vibration.
Working principle: when the concrete wastewater recycling device is used, firstly, concrete wastewater is poured into a charging hopper 1, concrete boiling water enters a first diversion trench 201 from the charging hopper 1 through a first screen 204, then a first motor 203 is operated to drive a first rotating shaft 202 to rotate, the first rotating shaft 202 rotates to drive the first screen 204 to vibrate, a first spring 205 enables the first screen 204 to bounce and then reset quickly, the first screen 204 filters and leaves aggregates with larger diameters such as stones on the first screen 204, the aggregates fall on a first conveyor belt 206 through the action of gravity and vibration, a second motor 208 is operated to drive a first conveyor rotating shaft 207 to rotate, the first conveyor rotating shaft 207 is operated to drive the first conveyor belt 206 to rotate, and larger aggregates are conveyed to the other end by the first conveyor belt 206, the rest waste water enters the second diversion trench 210 from the first diversion trench 201 through the second screen 213, the third motor 212 operates to drive the second rotating shaft 211 to rotate, the second rotating shaft 211 rotates to enable the second screen 213 to vibrate, aggregates with smaller diameters are filtered and remained on the second screen 213, aggregates with smaller diameters fall on the second conveyor belt 215 from the second screen 213 under the action of gravity, the fourth motor 217 operates to drive the second conveying rotating shaft 216 to rotate, the second conveying rotating shaft 216 drives the second conveyor belt 215 to operate so as to convey the aggregates with smaller diameters to the other end for convenient collection, finally the rest waste water is discharged into the sedimentation tank 4 by the second diversion trench 210, and the water is filtered and precipitated by the sedimentation tank to become clear water for convenient reuse, so that the use process of the concrete waste water recycling device is completed.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.