CN115594249B - Rural sewage collection and treatment device - Google Patents

Rural sewage collection and treatment device Download PDF

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Publication number
CN115594249B
CN115594249B CN202211027850.1A CN202211027850A CN115594249B CN 115594249 B CN115594249 B CN 115594249B CN 202211027850 A CN202211027850 A CN 202211027850A CN 115594249 B CN115594249 B CN 115594249B
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China
Prior art keywords
piece
collecting
water pumping
vacuum
collecting barrel
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Chinese (zh)
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CN115594249A (en
Inventor
李从军
唐祥红
关洵
王晓蓉
陶烨
石文君
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Ruiyao Environmental Technology Co ltd
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Ruiyao Environmental Technology Co ltd
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Priority to CN202211027850.1A priority Critical patent/CN115594249B/en
Publication of CN115594249A publication Critical patent/CN115594249A/en
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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/38Treatment of water, waste water, or sewage by centrifugal separation
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2201/00Apparatus for treatment of water, waste water or sewage
    • C02F2201/002Construction details of the apparatus

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Analytical Chemistry (AREA)
  • Mechanical Engineering (AREA)
  • Sink And Installation For Waste Water (AREA)
  • Sewage (AREA)

Abstract

The invention discloses a rural sewage collecting and treating device which comprises a collecting barrel, a collecting piece, a cleaning piece, a vacuum driving water pumping piece, a hydraulic driving piece, a vacuum water pumping pump and a connecting piece, wherein the collecting piece is positioned at the outer side of the collecting barrel, the vacuum driving water pumping piece is fixed at the upper side of the collecting barrel through a bracket, the cleaning piece is positioned in the collecting barrel, the vacuum driving water pumping piece drives the cleaning piece to vertically move, the connecting piece is used for connecting the vacuum driving water pumping piece and the hydraulic driving piece, the collecting barrel is communicated with the vacuum driving water pumping piece through a water pumping pipe, and the vacuum driving water pumping piece is communicated with the hydraulic driving piece. According to the invention, sundries and stains in the collecting barrel can be automatically cleaned, the sewage drives the impeller to rotate when passing through the hydraulic driving part, and the further impeller drives the cleaning part to rotate, so that the sundries and the stains on the cleaning part can be separated outwards due to centrifugal force, and the sundries and the stains can be automatically collected into the collecting part, and bacteria can be prevented from accumulating for a long time.

Description

Rural sewage collection and treatment device
Technical Field
The invention relates to the technical field of sewage treatment, in particular to a rural sewage collection and treatment device.
Background
For a long time, rural sewage which is relatively backward in economy is not well treated, such as kitchen sewage, toilet sewage and the like, and some areas can collect the sewage for centralized treatment, for example, the sewage collecting device for rural sewage treatment disclosed in Chinese patent application publication No. CN 210823865U is provided with a sealing component which can seal the top opening of a collecting barrel after the collecting barrel is filled with liquid, so that the operation is convenient; through the flowing back subassembly that sets up on the collecting vessel, can seal or open the flowing back hole to control flowing back hole discharge liquid, excellent in use effect's beneficial effect, but because sewage storage is in collection device, can get into debris and spot in collection device, especially can be in collection device's inner wall adhesion have the spot, be difficult for the clearance, easily breed the bacterium after long-time accumulation, send the peculiar smell, in this patent, can not clear up debris in its collecting vessel and the spot of its inner wall, this patent needs artifical manual to discharge the inside sewage of collecting vessel simultaneously, and efficiency is too low, is not applicable to the treatment of rural sewage.
In view of the above drawbacks, the present inventors have finally achieved the present invention through long-time studies and practices.
Disclosure of Invention
The invention aims to provide a sewage collecting and treating device capable of automatically cleaning sundries and stains in a collecting barrel.
The invention solves the technical problems through the following technical scheme that the vacuum-driven water pumping device comprises a collecting barrel, a collecting piece, a cleaning piece, a vacuum-driven water pumping piece, a hydraulic driving piece, a vacuum water pumping pump and a connecting piece, wherein the collecting piece is positioned at the outer side of the collecting barrel, the vacuum-driven water pumping piece is fixed at the upper side of the collecting barrel through a bracket, the cleaning piece is positioned in the collecting barrel, the vacuum-driven water pumping piece drives the cleaning piece to vertically move, the connecting piece is used for connecting the vacuum-driven water pumping piece and the hydraulic driving piece, the collecting barrel is communicated with the vacuum-driven water pumping piece through a water pumping pipe, the vacuum-driven water pumping piece is communicated with the hydraulic driving piece, and the vacuum water pumping pump is communicated with the hydraulic driving piece through a first conveying pipeline.
Preferably, the vacuum driving pumping piece comprises a vertical sealing pipe, a piston and a vertical rod, wherein the piston is movably and hermetically arranged inside the vertical sealing pipe, the vertical rod is arranged on the piston, and the vertical rod penetrates through the vertical sealing pipe and extends to the inside of the collecting barrel.
Preferably, the connecting piece includes adapter sleeve, spring, T shape square bar, goes up connection pad, tenon piece, lower connection pad, fourth of twelve earthly branches groove, adapter sleeve and hydraulic drive spare fixed connection, the rectangle inner chamber has been seted up to the adapter sleeve inside, the spring is arranged in the rectangle inner chamber, the upside of T shape square bar is arranged in the rectangle inner chamber, the lower extreme of T shape square bar runs through the adapter sleeve and with last connection pad fixed connection, the tenon piece is fixed in last connection pad downside, the lower connection pad is fixed in the montant, fourth of twelve earthly branches groove is seted up in the lower connection pad, just tenon piece and fourth of twelve earthly branches groove adaptation.
Preferably, the lifting piece comprises an electric push rod, a ball and an infrared sensor, wherein the electric push rod is obliquely arranged on the outer side of the vertical sealing tube through a mounting seat, the push rod is fixed at the telescopic end of the electric push rod, the ball is embedded to rotate and is arranged at the end part of the push rod, and the infrared sensor is arranged on the inner wall of the vertical sealing tube.
Preferably, the cleaning piece comprises a circular filter screen, a connecting ring and a scraping ring, wherein the circular filter screen is fixed at the lower end of the vertical rod, the connecting ring is fixed at the outer side of the circular filter screen, and the scraping ring is fixed at the outer side of the connecting ring.
Preferably, the hydraulic driving piece comprises a circular shell, an impeller, a connecting pipe and a drainage joint, wherein the circular shell is fixed on the upper side of the vertical sealing pipe, the impeller is rotatably installed in the circular shell, the rotating shaft of the impeller is fixedly connected with the connecting piece, the drainage joint is communicated and fixed on the outer side of the circular shell, and the connecting pipe is used for communicating the circular shell with the vertical sealing pipe.
Preferably, the outside of collecting vessel upper end is fixed with annular backplate, annular backplate passes through the wet return intercommunication with the collecting vessel, the collecting member includes two semi-annular collection boxes, leaks through-hole, first handle, two semi-annular collection boxes are located annular backplate, leak the through-hole and set up in semi-annular collection box, first handle is fixed in semi-annular collection box.
Preferably, the shielding piece comprises two semicircular cover plates, a second handle and a matching groove, wherein the second handle is fixed on the upper side of the semicircular cover plates, the matching groove is formed in the outer side of the lower surface of the semicircular cover plates, and the matching groove is matched with the annular guard plate.
Preferably, the first water level sensor is installed to the lateral wall of collecting vessel, second water level sensor is installed to the bottom of collecting vessel, the lateral wall intercommunication of collecting vessel is fixed with the water inlet connector, the water inlet connector passes through second transportation pipeline and sewage source intercommunication.
Preferably, the vacuum water pump is communicated with a plurality of first transportation pipelines through connecting pipelines, and a plurality of first transportation pipelines are provided with electronic valves.
Compared with the prior art, the invention has the beneficial effects that:
1. the vacuum water pump is operated, the piston moves upwards, sewage in the collecting barrel is pumped into the vertical sealing pipe and flows into the circular shell, and finally the sewage is discharged to the vacuum water pump through the first conveying pipeline, so that the sewage discharge efficiency is improved, and the integration is realized.
2. When the cleaning piece moves upwards, sundries and stains in the collecting barrel can be cleaned, the impeller is driven to rotate when sewage passes through the hydraulic driving piece, the further impeller drives the cleaning piece to rotate, the sundries and the stains on the cleaning piece can be separated outwards due to centrifugal force, and the sundries and the stains can be automatically collected into the collecting piece, so that bacteria can be prevented from accumulating for a long time.
Drawings
FIG. 1 is a schematic diagram of the structure of the present invention;
FIG. 2 is a schematic view of the front cross-sectional structure of FIG. 1;
FIG. 3 is a schematic cross-sectional view of the collection box of FIG. 1;
FIG. 4 is a schematic view of the collector and shield of FIG. 3;
FIG. 5 is a schematic view of the cleaning member of FIG. 3;
FIG. 6 is a schematic view of the connector of FIG. 2;
FIG. 7 is a schematic view of the lift element of FIG. 2;
Fig. 8 is a schematic diagram of a frame structure in which a plurality of collecting boxes are arranged in a concentrated manner in the invention.
The figures represent the numbers:
1-a collecting barrel; 101-a water inlet joint 101; 102-a water pumping pipe; 103-a first water level sensor; 104-a second water level sensor; 2-an annular guard plate; 201-a return pipe; 3-collecting member; 301-semi-annular collection box; 302-water leakage through holes; 303-a first handle; 4-blinders; 401-semicircular cover plate; 402-a second handle; 403-mating grooves; 5-cleaning piece; 501-a circular filter screen; 502-a connecting ring; 503-scraping ring; 6-vacuum driving the pumping piece; 601-vertical sealing tube; 602-a piston; 6201-reinforcing plate; 603-a vertical rod; 7-a hydraulic drive; 701-a circular housing; 702-an impeller; 703-connecting a tube; 704-a drain joint; 8-connecting piece; 801-connecting sleeve; 802-springs; 803-T-shaped square bar; 804-upper connection disc; 805-tenon blocks; 806-lower land 806; 807-mortise; 9-lifting piece; 901-an electric push rod; 902-pushing a rod; 903-balls; 904-an infrared sensor; 100-a vacuum suction pump 100; 200-an electronic valve; 300-sewage source.
Detailed Description
The above and further technical features and advantages of the present invention are described in more detail below with reference to the accompanying drawings.
Example 1
The embodiment provides a technical scheme: referring to fig. 1 and 2, the rural sewage collection treatment device comprises a collection barrel 1, a collection piece 3, a cleaning piece 5, a vacuum driving water pumping piece 6, a hydraulic driving piece 7, a vacuum water pumping pump 100 and a connecting piece 8, wherein a first water level sensor 103 is installed on the upper side of the side wall of the collection barrel 1, a second water level sensor 104 is installed at the bottom of the collection barrel 1, a water inlet connector 101 is fixedly communicated with the side wall of the collection barrel 1, the water inlet connector 101 is communicated with a sewage source 300 through a second conveying pipeline, the sewage source 300 is a toilet, a kitchen, a washing basin and the like and can be simultaneously communicated with the collection barrel 1, the vacuum water pumping pump 100, the first water level sensor 103 and the second water level sensor 104 are connected with an external controller, when the sewage level in the collection barrel 1 reaches the first water level sensor 103, the controller is signaled, the vacuum water pumping pump 100 is operated by the controller, when the water level in the collection barrel 1 is reduced to the second water level sensor 104, the operation of the vacuum water pumping pump 100 is stopped, and when the collection barrel 1 is installed, the water level 1 is required to be embedded on the upper surface of the ground, and the upper opening of the collection barrel 1 is only.
Referring to fig. 2, the vacuum driving water pumping piece 6 is fixed on the upper side of the collecting barrel 1 through a support, the vacuum driving water pumping piece 6 comprises a vertical sealing pipe 601, a piston 602 and a vertical rod 603, the vertical sealing pipe 601 is located at the central position of the collecting barrel 1, the piston 602 is movably and hermetically installed inside the vertical sealing pipe 601, the vertical rod 603 is installed inside the piston 602, the vertical rod 603 penetrates through the vertical sealing pipe 601 and extends to the inside of the collecting barrel 1, the vertical rod 603 is connected with the vertical sealing pipe 601 through sliding sealing, when the vacuum water pumping pump 100 operates, the inner cavity of the vertical sealing pipe 601 on the upper side of the piston 602 forms vacuum, the piston 602 drives the vertical rod 603 to move upwards, the bottom of the collecting barrel 1 is communicated with the lower side of the vertical sealing pipe 601 through a water pumping pipe 102, and the inside of the water pumping piece 6 and the hydraulic driving piece 7 forms a water conveying channel.
Referring to fig. 7, the hydraulic driving member 7 includes a circular housing 701, an impeller 702, a connecting pipe 703, and a drainage connector 704, wherein the circular housing 701 is fixed on the upper side of the vertical sealing pipe 601, the impeller 702 is rotatably mounted in the circular housing 701, and the rotating shaft of the impeller 702 is fixedly connected with the connecting member 8, the drainage connector 704 is fixedly connected with the outer side of the circular housing 701, the vacuum suction pump 100 is communicated with the drainage connector 704 through a first transportation pipeline, the connecting pipe 703 is used for communicating the circular housing 701 with the vertical sealing pipe 601, and when sewage in the vertical sealing pipe 601 flows into the circular housing 701, the impeller 702 is pushed to rotate by water flow.
Referring to fig. 2,6 and 7, the connecting piece 8 is used for connecting the vacuum driving pumping piece 6 and the hydraulic driving piece 7, the connecting piece 8 comprises a connecting sleeve 801, a spring 802, a T-shaped square bar 803, an upper connecting disc 804, tenon blocks 805, lower connecting discs 806 and mortise 807, the connecting sleeve 801 is fixedly connected with a rotating shaft of an impeller 702, rectangular inner cavities are formed in the connecting sleeve 801, the spring 802 is located in the rectangular inner cavities, the upper side of the T-shaped square bar 803 is located in the rectangular inner cavities, the T-shaped square bar 803 is matched with the rectangular inner cavities, the connecting sleeve 801 and the T-shaped square bar 803 can synchronously rotate, the lower end of the T-shaped square bar 803 penetrates through the connecting sleeve 801 and is fixedly connected with the upper connecting disc 804, the tenon blocks 805 are fixed on the lower side of the upper connecting disc 804, the tenon blocks 805 are 2-4 vertical rods and are uniformly distributed in an annular mode, the lower connecting disc 806 is fixed on the 603, the tenon blocks 807 are formed in the same number with the tenon blocks 805, the tenon blocks 805 are matched with the mortise blocks 603, and when the tenon blocks 807 are matched with the mortise blocks 803, and the tenon blocks 805 do not rotate upwards, and the tenon blocks 805 are matched with the mortise blocks 805, and when the tenon blocks 805 are compressed upwards, and the tenon blocks 805 are matched with the mortise blocks 805, and the tenon blocks 805 are correspondingly compressed, and the tenon blocks 805 are arranged downwards, and when the connecting blocks are matched with the tenon blocks 805.
Referring to fig. 7, the lifting piece 9 is further included, the number of the lifting pieces 9 is at least 2, and the lifting pieces 9 are uniformly distributed in a ring shape to ensure stability, the lifting piece 9 comprises an electric push rod 901, a push rod 902, balls 903 and an infrared sensor 904, the electric push rod 901 is obliquely installed on the outer side of a vertical sealing tube 601 through an installation seat, an inclined hole is formed in the installation seat, the push rod 902 is fixed to the telescopic end of the electric push rod 901, the push rod 902 is located in the inclined rod, the balls 903 are embedded and rotatably installed at the end of the push rod 902, the infrared sensor 904 is installed on the inner wall of the vertical sealing tube 601, the position of the infrared sensor 904 is higher than the port of the inclined hole, and the infrared sensor 904 is connected with a controller.
Specifically, when the piston 602 moves upward, the infrared sensor 904 senses the piston 602, the controller will receive the signal of the infrared sensor 904, the controller will extend the telescopic end of the electric push rod 901, and the push rod 902 will push the piston 602 upward, so that the piston 602 moves to the upper side of the connecting pipe 703 smoothly, and meanwhile, the stable connection of the connecting piece 8 is ensured; in order to increase the smooth connection between the piston 602 and the push rod 902, a reinforcing plate 6201 may be provided at the lower side of the piston 602, and the balls 903 contact the reinforcing plate 6201, so that the friction between the push rod 902 and the piston 602 may be reduced, and when the impeller 702 rotates, the vertical rod 603 will also rotate due to the connection between the hydraulic driving member and the vertical rod 603.
Referring to fig. 5, the vacuum driving water pumping part 6 drives the cleaning part 5 to move vertically, the cleaning part 5 is located in the collecting barrel 1, the cleaning part 5 comprises a circular filter screen 501, a connecting ring 502 and scraping rings 503, the circular filter screen 501 is fixed at the lower end of the vertical rod 603, the connecting ring 502 is fixed at the outer side of the circular filter screen 501, in order to ensure the strength of the circular filter screen 501, reinforcing rods can be fixed between the vertical rod 603 and the connecting ring 502, the scraping rings 503 are fixed at the outer side of the connecting ring 502, the number of the scraping rings 503 is preferably 2, and the scraping rings 503 are in contact with the inner wall of the collecting barrel 1.
Specifically, when the cleaning member 5 drives the water pumping member 6 to move upwards through the vacuum driving, the dirt adhered to the inner wall of the collecting barrel 1 is scraped down through the scraping ring 503, meanwhile, the round filter screen 501 salvages sundries in the collecting barrel 1, the cleaning member 5 is stopped at the upper side exceeding the collecting barrel 1, the cleaning member 5 is driven to rotate by the vertical rod 603, and the sundries on the cleaning member 5 are separated from the dirt outwards through centrifugal force generated during rotation.
Referring to fig. 3 and 4, the collecting member 3 is located outside the collecting vessel 1, the annular guard plate 2 is fixed on the outside of the upper end of the collecting vessel 1, the cross section of the annular guard plate 2 is in an L-shaped structure, the outside of the annular guard plate 2 is higher than the height of the collecting vessel 1, the annular guard plate 2 is communicated with the collecting vessel 1 through the water return pipe 201, the sewage in the annular guard plate 2 flows into the collecting vessel 1 again through the water return pipe 201, the collecting member 3 comprises two semi-annular collecting boxes 301, water leakage through holes 302 and a first handle 303, the two semi-annular collecting boxes 301 are located in the annular guard plate 2, the two semi-annular collecting boxes 301 can be just placed into the inner side of the annular guard plate 2, sundries and stains separated by the cleaning member 5 can be collected into the semi-annular collecting boxes 301, the water leakage through holes 302 are formed in the semi-annular collecting boxes 301, the water leakage through holes 302 correspond to the positions of the water return pipe 201 so that the sewage in the semi-annular collecting boxes 301 flows out, the first handle 303 is fixed in the semi-annular collecting boxes 301, and the quantity of the first handle 303 is 2 so that the semi-annular collecting boxes 301 can be taken out conveniently.
Referring to fig. 1, a shielding member 4 is further disposed on the upper side of the collecting member 3, the shielding member 4 can shield peculiar smell as much as possible, the shielding member 4 comprises two semicircular cover plates 401, second handles 402 and matching grooves 403, the second handles 402 are fixed on the upper sides of the semicircular cover plates 401, the number of the second handles 402 is 2, the second handles 402 are convenient for taking off the semicircular cover plates 401, the matching grooves 403 are formed in the outer sides of the lower surfaces of the semicircular cover plates 401, and the matching grooves 403 are matched with the annular protective plates 2 to ensure tightness.
Working principle: when the water level of the sewage in the collecting barrel 1 reaches the first water level sensor 103, the controller will operate the vacuum water pump 100, the vacuum water pump 100 will enable the first transportation pipeline to form vacuum, and then the piston 602 moves upwards under the action of negative pressure, meanwhile, the cleaning piece 5 is driven to move upwards, the cleaning piece 5 can clean sundries and stains in the collecting barrel 1, and when the cleaning piece moves to a certain position, the lifting piece 9 will operate, so that stable connection between the hydraulic driving piece 7 and the vertical rod 603 is ensured, meanwhile, the sewage is pumped into the vertical sealing pipe 601 and enters the circular shell 701, finally, the sewage is transported to the vacuum water pump 100 through the first transportation pipeline and discharged, flowing water flow is formed in the circular shell 701, the impeller 702 will be driven to rotate, the vertical rod 603 and the cleaning piece are driven to rotate, sundries and stains on the cleaning piece 5 can be separated outwards due to centrifugal force and are stored into the semi-annular collecting box 301, so that concentration is achieved, when the sewage in the collecting barrel 1 drops to the second water level sensor 104, the vacuum water pump 100 can be stopped, and the vacuum water pump 901 can be automatically contracted to the original cleaning position when the sewage is automatically contracted, and the vacuum water pump 100 can be automatically contracted to the position.
Example two
The embodiment provides a technical scheme: based on the first embodiment, referring to fig. 8, in this embodiment, the vacuum pump 100 is connected to a plurality of first transportation pipes through a connecting pipe 703, and a plurality of first transportation pipes are all provided with electronic valves 200, when the sewage in a certain collecting tank 1 reaches the first water level sensor 103, the controller will close other electronic valves 200 and operate the vacuum pump 100 to pump the sewage in the designated collecting tank 1, i.e. the sewage in a plurality of collecting tanks 1 can be pumped by one vacuum pump 100, thereby reducing the cost and facilitating popularization.
The foregoing description of the preferred embodiment of the invention is merely illustrative of the invention and is not intended to be limiting. It will be appreciated by persons skilled in the art that many variations, modifications, and even equivalents may be made thereto without departing from the spirit and scope of the invention as defined in the appended claims.

Claims (5)

1. The rural sewage collecting and treating device is characterized by comprising a collecting barrel, a collecting piece, a cleaning piece, a vacuum driving water pumping piece, a hydraulic driving piece, a vacuum water pumping pump and a connecting piece, wherein the collecting piece is positioned on the outer side of the collecting barrel, the vacuum driving water pumping piece is fixed on the upper side of the collecting barrel through a bracket, the cleaning piece is positioned in the collecting barrel, the vacuum driving water pumping piece drives the cleaning piece to vertically move, the connecting piece is used for connecting the vacuum driving water pumping piece and the hydraulic driving piece, the collecting barrel is communicated with the vacuum driving water pumping piece through a water pumping pipe, the vacuum driving water pumping piece is communicated with the hydraulic driving piece, and the vacuum water pumping pump is communicated with the hydraulic driving piece through a first transportation pipeline;
The vacuum driving water pumping piece comprises a vertical sealing pipe, a piston and a vertical rod, wherein the piston is movably and hermetically arranged in the vertical sealing pipe, the vertical rod is arranged in the piston, and the vertical rod penetrates through the vertical sealing pipe and extends into the collecting barrel; the bottom of the collecting barrel is communicated with the lower side of the vertical sealing pipe through a water pumping pipe, and a water delivery channel is formed inside the water pumping pipe, the vacuum driving water pumping piece and the hydraulic driving piece;
The hydraulic driving piece comprises a circular shell, an impeller, a connecting pipe and a drainage joint, wherein the circular shell is fixed on the upper side of the vertical sealing pipe, the impeller is rotatably arranged in the circular shell, a rotating shaft of the impeller is fixedly connected with the connecting piece, the drainage joint is fixedly communicated with the outer side of the circular shell, the vacuum suction pump is communicated with the drainage joint through a first conveying pipeline, and the connecting pipe is used for communicating the circular shell with the vertical sealing pipe;
The connecting piece comprises a connecting sleeve, a spring, a T-shaped square rod, an upper connecting disc, a tenon block, a lower connecting disc and a mortise, wherein the connecting sleeve is fixedly connected with the hydraulic driving piece, a rectangular inner cavity is formed in the connecting sleeve, the spring is positioned in the rectangular inner cavity, the upper side of the T-shaped square rod is positioned in the rectangular inner cavity, the lower end of the T-shaped square rod penetrates through the connecting sleeve and is fixedly connected with the upper connecting disc, the tenon block is fixed on the lower side of the upper connecting disc, the lower connecting disc is fixed on a vertical rod, the mortise is formed in the lower connecting disc, and the tenon block is matched with the mortise;
The lifting piece comprises an electric push rod, a ball and an infrared sensor, wherein the electric push rod is obliquely arranged on the outer side of a vertical sealing tube through a mounting seat, the push rod is fixed at the telescopic end of the electric push rod, the ball is embedded and rotatably arranged at the end part of the push rod, the infrared sensor is arranged on the inner wall of the vertical sealing tube, when the piston moves upwards, the controller receives a signal of the infrared sensor when sensing the piston, the controller extends the telescopic end of the electric push rod, and the push rod pushes the piston upwards, so that the piston smoothly moves to the upper side of a connecting tube, and meanwhile stable connection of the connecting piece is ensured;
The cleaning piece comprises a circular filter screen, a connecting ring and a scraping ring, wherein the circular filter screen is fixed at the lower end of the vertical rod, the connecting ring is fixed at the outer side of the circular filter screen, and the scraping ring is fixed at the outer side of the connecting ring.
2. The rural sewage collecting and treating device according to claim 1, wherein an annular guard plate is fixed on the outer side of the upper end of the collecting barrel, the annular guard plate is communicated with the collecting barrel through a water return pipe, the collecting piece comprises two semi-annular collecting boxes, a water leakage through hole and a first handle, the two semi-annular collecting boxes are located in the annular guard plate, the water leakage through hole is formed in the semi-annular collecting boxes, and the first handle is fixed to the semi-annular collecting boxes.
3. The rural sewage collecting and treating device according to claim 2, further comprising a shielding piece, wherein the shielding piece comprises two semicircular cover plates, a second handle and a matching groove, the second handle is fixed on the upper side of the semicircular cover plates, the matching groove is formed in the outer side of the lower surface of the semicircular cover plates, and the matching groove is matched with the annular guard plate.
4. The rural sewage collecting and treating device according to claim 1, wherein the side wall of the collecting barrel is provided with a first water level sensor, the bottom of the collecting barrel is provided with a second water level sensor, the side wall of the collecting barrel is fixedly communicated with a water inlet joint, and the water inlet joint is communicated with a sewage source through a second conveying pipeline.
5. The rural sewage collecting and treating device according to claim 4, wherein the vacuum water pump is communicated with a plurality of first transportation pipelines through connecting pipelines, and a plurality of first transportation pipelines are provided with electronic valves.
CN202211027850.1A 2022-08-25 2022-08-25 Rural sewage collection and treatment device Active CN115594249B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202211027850.1A CN115594249B (en) 2022-08-25 2022-08-25 Rural sewage collection and treatment device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202211027850.1A CN115594249B (en) 2022-08-25 2022-08-25 Rural sewage collection and treatment device

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CN115594249A CN115594249A (en) 2023-01-13
CN115594249B true CN115594249B (en) 2024-06-18

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN210395568U (en) * 2019-06-21 2020-04-24 潍坊市市政工程设计研究院有限公司 Vacuum drainage system that municipal administration sewage was collected
US11072552B2 (en) * 2015-10-20 2021-07-27 Augusto Eric Reijer Picozzi Sludge dehydrator

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11072552B2 (en) * 2015-10-20 2021-07-27 Augusto Eric Reijer Picozzi Sludge dehydrator
CN210395568U (en) * 2019-06-21 2020-04-24 潍坊市市政工程设计研究院有限公司 Vacuum drainage system that municipal administration sewage was collected

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