Waste water sedimentation tank cleaning device
Technical Field
The application relates to the field of sedimentation tanks, in particular to a waste water sedimentation tank cleaning device.
Background
The wastewater treatment is to treat the wastewater by physical, chemical and biological methods, so that the wastewater is purified, the pollution is reduced, the wastewater is recycled and reused, and water resources are fully utilized. Conventional wastewater is often treated by a sedimentation tank, which is a structure for removing suspended matters in water by using sedimentation, and the suspended matters in water are removed by using the natural sedimentation or coagulation sedimentation of water.
As shown in fig. 1, the wastewater sedimentation tank comprises a cuboid tank body 1, wastewater in iron separation is introduced into the tank body 1 for sedimentation, sludge and impurities can be sunk into the bottom of the tank after a period of sedimentation, clear water is arranged above the tank body 1, and the clear water is continuously used in the iron separation process.
To the correlation technique among the above-mentioned, the inventor thinks that the sedimentation tank is after long-time use, because the sludge amount in the sewage is more, need clear up the bottom of the pool, adopts artifical large tracts of land to shovel to the sedimentation tank mostly, wastes time and energy, and work efficiency is low moreover. .
SUMMERY OF THE UTILITY MODEL
In order to improve the work efficiency to the clearance of waste water sedimentation tank, this application provides a waste water sedimentation tank cleaning device.
The application provides a settling basin device of standing up adopts following technical scheme:
the utility model provides a waste water sedimentation tank cleaning device, includes the cell body of cuboid form, the inside rectangular scraper blade that is that has vertical setting of cell body passes the lateral wall and the scraper blade of cell body are provided with two first lead screws, two the one end that the cell body was kept away from to first lead screw is provided with makes lead screw pivoted actuating mechanism.
Through adopting above-mentioned technical scheme, the sedimentation tank is after long-time use, because the sludge volume in the sewage is more, needs clear up the bottom of the pool, adopts artifical large tracts of land to remove the clearance mostly to the sedimentation tank, wastes time and energy, and work efficiency is low moreover, through setting up the scraper blade, utilizes actuating mechanism to make the scraper blade remove in the cell body is inside, clears up the slay and the silt of bottom of the pool to improve the work efficiency to the clearance of waste water sedimentation tank.
Optionally, the driving mechanism includes a belt pulley fixedly connected to one end of the two first lead screws far away from the inside of the tank body, a belt connected to the two belt pulleys, and a first motor for rotating the belt pulley.
Through adopting above-mentioned technical scheme, utilize first motor to drive the belt pulley and rotate, the frequency band wheel drives two lead screws and rotates simultaneously to make the scraper blade remove inside the cell body, clearance bottom of the pool's slay and silt.
Optionally, the lower surface of the scraper is fixedly connected with a scraper with a triangular cross section, and the scraper is arranged along the length direction of the lower surface of the scraper.
Through adopting above-mentioned technical scheme, when utilizing the slay and the silt of scraper blade clearance bottom of the pool, utilize the scraper blade to be difficult to scrape off, be the triangle-shaped scraper blade through setting up the cross-section and more easily with slay and silt clean up.
Optionally, a guide rod is fixed in the tank body at a position far away from the first lead screw, and the guide rod penetrates through the scraper plate to be connected with the scraper plate in a rotating manner.
Through adopting above-mentioned technical scheme, the scraper blade is through first lead screw at the inside removal of cell body, and during the slay and the silt of clearance bottom of the pool, the scraper blade probably inclines to one end, leads to the scraping rule to contact with the bottom of the pool, through setting up the guide bar, makes the scraper blade more steady when the cell body is inside to be removed.
Optionally, the scraper blade is improved horizontally and is provided with a shunt tube, the lower surface of the shunt tube is provided with a plurality of spray heads, and the shunt tube is provided with a second lead screw for driving the shunt tube to move up and down.
Through adopting above-mentioned technical scheme, slay and silt adhesion are when the bottom of the pool, when utilizing the scraper blade to clear up, are difficult to scraped, wash the slay and the silt of adhesion at the bottom of the pool through setting up shunt tubes and shower nozzle, make the adhesion scraped at the slay and the silt of bottom of the pool more easily.
Optionally, the spray head is in threaded connection with the shunt tube.
Through adopting above-mentioned technical scheme, the shower nozzle causes the shower nozzle to block up or damage easily in long-term use, sets threaded connection through shower nozzle and shunt tubes to, makes the change to the shower nozzle more convenient.
Optionally, the scraper blade is located the deflector of the vertical setting of both sides fixedly connected with of shunt tubes, set up on the deflector and supply the shunt tubes to carry out gliding guide way.
Through adopting above-mentioned technical scheme, the shunt tubes is reciprocating the in-process, and the shunt tubes can be to one end slope, and the influence is washed bottom of the pool slay and silt, through setting up the deflector, makes the shunt tubes more steady when moving the tubes from top to bottom, makes the shower nozzle water spray more stable simultaneously.
Optionally, pulleys are fixedly connected to two ends of the shunt tube.
Through adopting above-mentioned technical scheme, when the shunt tubes reciprocated on the deflector, the honeycomb duct both ends probably took place the jamming with the deflector, and the influence is to the washing effect of bottom of the pool ore deposit and silt, through setting up the pulley at the both ends of shunt tubes, makes the shunt tubes when reciprocating, and is more smooth and easy.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the scraper, the scraper is moved in the tank body by utilizing the driving mechanism to clean slag and sludge at the bottom of the tank, so that the working efficiency of cleaning the wastewater sedimentation tank is improved;
2. the guide rods are arranged, so that the scraper can move more stably in the tank body;
3. slag and silt adhered to the bottom of the pool are washed by arranging the shunt pipes and the spray heads, so that the slag and the silt adhered to the bottom of the pool are easier to scrape.
Drawings
Fig. 1 is a schematic structural view of a tank body in the related art.
Fig. 2 is a schematic view showing the construction of the squeegee and the drive assembly in this embodiment.
Fig. 3 is a schematic view of the construction of the present embodiment embodying the flights and shunt tubes.
Fig. 4 is a schematic structural view showing the threaded connection of the nozzle in this embodiment.
Description of reference numerals: 1. a tank body; 11. a guide bar; 2. a squeegee; 21. scraping the strips; 22. a first lead screw; 23. a fixed block; 24. a guide plate; 241. a guide groove; 3. a drive assembly; 31. a belt pulley; 32. a belt; 33. a first motor; 4. a shunt tube; 41. a spray head; 42. a water inlet pipe; 43. a slider; 44. a second lead screw; 45. a second motor; 46. a pulley.
Detailed Description
The present application is described in further detail below with reference to figures 2-4.
The embodiment of the application discloses waste water sedimentation tank cleaning device. Referring to fig. 2 and 3, the cleaning device comprises a scraping plate 2 vertically arranged at one side of the tank body 1 and in a rectangular shape, the lower surface of the scraping plate 2 is fixedly connected with scraping strips 21 with triangular sections, the scraping strips 21 are arranged along the length direction of the lower surface of the scraping plate 2, first lead screws 22 are respectively arranged at the positions which penetrate through one side wall of the tank body 1 and two corners of the scraping plate 2 near the upper part, and a first lead screw 22 positioned in the tank body 1 is rotationally connected with the side wall of the tank body 1, the first lead screw 22 is in threaded connection with the scraping plate 2, one end of the two first lead screws 22 far away from the inside of the tank body 1 is provided with a driving mechanism 3 for driving the first lead screws 22 to rotate, the driving mechanism 3 comprises two belt pulleys 31 fixedly connected to the two first lead screws 22 far away from the inside of the tank body 1, a belt 32 for connecting the two belt pulleys 31, and a first motor 33 for driving the belt pulleys 31 to rotate, and the output end of the first motor 33 is fixedly connected with one of the belt pulleys 31.
After discharging the clear water of 1 inside of cell body, slay and silt are piled up at the bottom of the pool, when slay and the silt of the bottom of the pool are cleared up, start first motor 33, make belt 32 take turns 31 and rotate, thereby make first lead screw 22 drive scraper blade 2 and remove in 1 inside of cell body, scrape strip 21 and contact bottom 1 of cell body, when scraper blade 2 removes, scrape strip 21 and scrape the one side of cell body 1 with the silt and the slay of bottom of the pool, later the manual work will pile up silt and the slay clearance of 1 one side of cell body to 1 outside of cell body.
Two guide rods 11 are fixedly connected to the tank body 1, the guide rods 11 are located below the first lead screw 22, and the guide rods 11 penetrate through the positions, close to two corners below, of the scraper 2.
Scraper blade 2 is inside through first lead screw 22 removal in-process at cell body 1, and scraper blade 2 is probably unstable, takes place the slope to certain one side of cell body 1, leads to the strickle 21 can not contact cell body 1 or scraper blade 2 to take place to rock, makes scraper blade 2 more stable at the removal in-process through setting up guide bar 11.
Referring to fig. 3 and 4, a shunt 4 is horizontally arranged on the scraper 2, a plurality of nozzles 41 are arranged on the lower surface of the shunt 4, the nozzles 41 are in threaded connection with the water pipe, a water inlet pipe 42 is fixedly connected above the shunt 4, and the water inlet pipe 42 is communicated with an external water source (not shown).
The middle position that is close to top and bottom in scraper blade 2 side respectively fixedly connected with fixed block 23, the middle position fixedly connected with sliding block 43 that is close to scraper blade 2 one side at shunt tubes 4, it is provided with second lead screw 44 to pass two fixed blocks 23 and sliding block 43, and second lead screw 44 rotates with fixed block 23 to be connected, with sliding block 43 threaded connection, second motor 45 is installed to the one end that second lead screw 44 is close to the top, and second motor 45's output and second lead screw 44 fixed connection.
When the scraper blade 2 is used for cleaning slag and sludge at the bottom of the tank, part of the slag and the sludge can be adhered to the bottom of the tank and are difficult to scrape, and the slag and the sludge adhered to the bottom of the tank are washed through the shunt pipe 4 and the spray head 41, so that the slag and the sludge are easier to scrape by the scraper blade 2.
One surface of the scraper 2 close to the shunt tubes 4 is fixedly connected with two guide plates 24 which are vertically arranged, the guide plates 24 are positioned between the two lead screws, and guide grooves 241 for the shunt tubes 4 to slide up and down are formed in the length direction of the guide plates 24.
At shunt tubes 4 through the lead screw process of reciprocating, shunt tubes 4 probably incline to one end, the influence is to the clearance of bottom of the pool slay and silt, makes shunt tubes 4 both ends remove on deflector 24 through setting up deflector 24 to it is more stable when making shunt tubes 4 reciprocate.
Pulleys 46 are fixedly connected to both end portions of the shunt tube 4, respectively, and the pulleys 46 slide in the guide grooves 241.
When the shunt tube 4 slides on the guide plate 24, the shunt tube 4 can be stuck with the guide plate 24, and the pulleys 46 are arranged on two sides of the shunt tube 4, so that the shunt tube 4 can move up and down more smoothly.
The implementation principle of the waste water sedimentation tank cleaning device in the embodiment of the application is as follows: take out the clear water of 1 inside of cell body, when wasing the slay to the bottom of the pool, at first start second motor 45, make shunt tubes 4 remove to the position that is close to the bottom of the pool, start first motor 33 after that, make scraper blade 2 remove in 1 inside of cell body, utilize the slay and the silt clearance of scraping strip 21 with the bottom of the pool to one side of cell body 1, utilize shower nozzle 41 to wash slay and silt that will glue at the bottom of the pool, it is outside with accumulational slay and silt clearance to cell body 1 to be final manual work, after finishing slay and the silt clearance with the bottom of the pool, start second motor 45, make shunt tubes 4 upwards remove until being located 2 tops of scraper blade.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.