A treatment device based on a building drainage system
By designing a rolling roller and airbag system to separate plastic bags, combined with centrifugal separation and crushing paddle processing, the system achieves efficient classification and improved safety of building drainage equipment, solving the problem of poor treatment effect of existing equipment.
Patent Information
- Application Number
- CN202111597354.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-24
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2041-12-24
AI Technical Summary
Existing building drainage treatment equipment cannot effectively classify sewage, resulting in poor treatment performance.
A processing device including a sorting box, a hook assembly, and a sorting component was designed. Plastic bags are separated by a rolling roller, a motor-driven fixing nail, and an airbag system. Water and impurities are separated by centrifugal force, and further processed by a crushing paddle, an electric push cylinder, and an air extraction assembly. Finally, the bags are sorted and transported through a diversion pipe.
It achieves effective separation of plastic bags and efficient classification of sewage, avoids clogging, improves the efficiency and safety of sewage treatment, and reduces the dangers of odors and methane gas.
Smart Images

Figure CN114262079B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of house building drainage, in particular to a treatment equipment based on a house building drainage system. BACKGROUND
[0002] The house building drainage system is a general term for residential area, public building area, domestic building life drainage and rainwater drainage, and the building drainage usually stores the sewage in the storage room located underground or above ground by using the pipeline, and after storing a certain amount, the sewage is pumped away by the special cleaning personnel, and the building drainage treatment equipment is used to treat the sewage.
[0003] The building drainage usually concentrates the sewage for treatment, but the composition of the sewage is usually complex, and the common building drainage treatment equipment in the market cannot classify the sewage, resulting in poor sewage treatment effect. SUMMARY
[0004] The present application aims to provide a treatment equipment based on a house building drainage system to solve the problems in the background art.
[0005] In order to achieve the above object, the present application provides the following technical scheme: A kind of processing equipment based on housing construction drainage system, including classification box, hooking component and classification component, the top outside of the classification box is connected with inlet pipe, and the left side outer wall of classification box is provided with first motor, the right side of first motor is connected with rolling roller, the outside of rolling roller is connected with hooking component, the inside of classification box is provided with fixed rotating seat in middle end, and the inside of fixed rotating seat is placed with outer filter box, the bottom outside of outer filter box is equipped with first through-hole, and the inside of outer filter box is placed with inner filter box, the bottom outside of inner filter box is equipped with second through-hole, the right side of classification box is connected with second motor, and the bottom outside of second motor is placed with first driving gear, the outside surface of outer filter box is provided with first driven gear, the bottom middle end of outer filter box is connected with third motor, and the top outside of third motor is provided with rotating shaft, the outside of rotating shaft is connected with broken paddle, the bottom inside of inner filter box is provided with first sleeve gear, the outside of rotating shaft is provided with electric push cylinder, the bottom outside of electric push cylinder is connected with second sleeve gear, the bottom of both sides of inner filter box is equipped with first communication groove, the bottom of both sides of outer filter box is equipped with second communication groove, the bottom outside of classification box is connected with shunt seat, the classification component is placed in the bottom outside of shunt seat, and the bottom outside of classification component is provided with delivery pipe, the classification component includes slag pipe, electric control valve, rotating pipe sleeve, fourth motor, second driving gear, second driven gear, rotating pipe seat and shunt pipe, the outside of slag pipe is connected with electric control valve, and the outside middle end of slag pipe is provided with rotating pipe sleeve, the left side of slag pipe is connected with fourth motor, and the bottom outside of fourth motor is provided with second driving gear, the bottom outside of rotating pipe sleeve is placed with second driven gear, the end of slag pipe is connected with rotating pipe seat, and the bottom outside of rotating pipe seat is provided with shunt pipe, the slag pipe is connected with shunt pipe through rotating pipe seat, and rotating pipe seat and shunt pipe are vertically distributed.
[0006] Preferably, the hooking component includes a fixed nail, a gas pipe, a gas bag, and an auxiliary nail, the bottom outside of the fixed nail is connected with the gas pipe, and the inside middle end of the fixed nail is placed with the gas bag, the outside of the gas bag is provided with the auxiliary nail.
[0007] Preferably, the fixed nail is annularly distributed, and the gas pipe is connected with the gas bag through the fixed nail.
[0008] Preferably, the inner surface of the outer filter box and the outer surface of the inner filter box are fitted, and the outer filter box is rotationally connected with the fixed rotating seat.
[0009] Preferably, the first sleeve gear and the second sleeve gear are engaged with each other.
[0010] Preferably, the shape and size of the first connecting groove are the same as those of the second connecting groove, and the first connecting groove is symmetrically distributed along the vertical center line of the inner filter box.
[0011] Preferably, a drain pipe is connected to the bottom right side of the diversion seat, and a cleaning box is connected to the end of the drain pipe. A tumbling wheel seat is provided at the middle of the inner side of the cleaning box, and a filter screen is installed on the top outer side of the tumbling wheel seat. A water outlet pipe is connected to the top right side of the cleaning box, and an air extraction component is installed on the top outer side of the cleaning box.
[0012] Preferably, the air extraction assembly includes an air extraction box, an air extraction pipe, and an exhaust pipe. The air extraction box is connected to the air extraction pipe on both outer sides, and the air extraction box is connected to the exhaust pipe on the outer top.
[0013] This invention provides a treatment device based on a building drainage system, which has the following advantages: During the rotation of the fixing nail, plastic bags in the sewage can be hooked and separated, which can prevent the plastic bags from flowing away with the sewage and interfering with the subsequent sorting steps. The operation of the third motor can drive the inner filter box to rotate independently, which can change the distance between the first and second through holes, thereby allowing the device to freely adjust the volume of the filtered material according to the usage requirements.
[0014] 1. This invention uses a first motor to drive a rolling roller to rotate, which in turn drives a fixing pin to rotate. During the rotation of the fixing pin, the plastic bags in the sewage can be hooked and separated, which can prevent the plastic bags from flowing away with the sewage and interfering with subsequent sorting steps. In addition, air is supplied through the air supply pipe to inflate the air bladder. During the inflation of the air bladder, the auxiliary hook can be pushed out from the inside of the fixing pin. The auxiliary hook can improve the stability of the fixing pin in hooking the plastic bags and prevent the plastic bags from falling off during the hooking process.
[0015] 2. During the rotation of the external filter box of this invention, centrifugal force is generated, which allows water in the sewage inside the external filter box to be thrown out through the gap between the first and second through holes. However, the impurities in the sewage are too large to pass through the gap between the first and second through holes, thus separating the water from the impurities. In addition, the operation of the electric push cylinder can engage the first and second sleeve gears. At this time, the operation of the third motor can drive the internal filter box to rotate independently, which can change the distance between the first and second through holes. This allows the equipment to freely adjust the volume of the filtered material according to the usage requirements. Furthermore, by changing the distance between the first and second through holes, it is possible to prevent impurities from getting stuck inside the gap and causing blockage of the first and second through holes, thus preventing filtration.
[0016] 3. After the wastewater filtration is completed, the third motor drives the rotating shaft to rotate, which enables the crushing paddle to crush the impurities. This reduces the size of larger impurities, making subsequent cleaning and transportation easier. After the impurities are crushed, the first and second connecting gears engage, and the third motor rotates, causing the inner filter box to rotate on the inner surface of the outer filter box. This allows the first and second connecting grooves to be misaligned, thereby opening the bottom of the outer filter box. This allows the impurities to be removed from the bottom of the outer filter box for subsequent wastewater treatment.
[0017] 4. During the ascent of the water body, the present invention generates buoyancy, which drives the tumbling wheel seat to rotate. When the tumbling wheel seat rotates, it can agitate the water body, which can release residual gas in the water body. At this time, the air extraction box works, which can absorb the gas released in the cleaning box through the air extraction pipe and transport the gas away from the equipment through the exhaust pipe. By collecting the gas in the water body through the air extraction box, the odor in the water body can be reduced, and at the same time, it can avoid excessive methane gas in the water body, which can cause danger in the subsequent water treatment process. This is beneficial to improving the safety performance of the equipment. The water body that has been degassed and filtered can be discharged from the equipment through the water outlet pipe.
[0018] 5. When the electrically controlled valve of this invention is opened, debris can enter the inner side of the slag discharge pipe and be transported into the conveying pipe through the diversion pipe for processing. In addition, the fourth motor drives the second driving gear to rotate, which in turn drives the second driven gear to rotate. This allows the slag discharge pipe to rotate through the rotating sleeve. During the rotation of the slag discharge pipe, the rotating pipe seat drives the diversion pipe to rotate, which allows the diversion pipe to move to the top of different conveying pipes. When the equipment treats different types and sources of sewage, the rotation of the diversion pipe allows the equipment to classify and process impurities in sewage from different sources, which can improve the sewage treatment effect of the equipment. Attached Figure Description
[0019] Figure 1 This is a frontal view of the overall structure of a treatment device based on a building drainage system according to the present invention;
[0020] Figure 2 This is a schematic diagram of the hook assembly structure of a treatment device based on a building drainage system according to the present invention;
[0021] Figure 3 This is a schematic diagram of the internal and external filter box structure of a treatment device based on a building drainage system according to the present invention;
[0022] Figure 4 This is a schematic diagram of the first and second through holes of a treatment device based on a building drainage system according to the present invention.
[0023] Figure 5This is a schematic diagram of the internal structure of the external filter box of a treatment device based on a building drainage system according to the present invention.
[0024] Figure 6 This invention relates to a treatment device based on a building drainage system. Figure 5 Enlarged structural diagram at point A in the middle;
[0025] Figure 7 This is a schematic diagram of the first and second connecting channels of a treatment device based on a building drainage system according to the present invention.
[0026] Figure 8 This is a schematic diagram of the classification component structure of a treatment device based on a building drainage system according to the present invention.
[0027] In the diagram: 1. Sorting box; 2. Water inlet pipe; 3. First motor; 4. Rolling roller; 5. Hook assembly; 501. Fixing pin; 502. Air supply pipe; 503. Airbag; 504. Auxiliary hanging pin; 6. Fixed rotating seat; 7. External filter box; 8. First through hole; 9. Internal filter box; 10. Second through hole; 11. Second motor; 12. First driving gear; 13. First driven gear; 14. Third motor; 15. Rotating shaft; 16. Crusher; 17. First connecting gear; 18. Electric push cylinder; 19. Second connecting gear; 20. First connecting... 21. Second connecting channel; 22. Diverter seat; 23. Drain pipe; 24. Cleaning box; 25. Tilting wheel seat; 26. Filter screen; 27. Water outlet pipe; 28. Air extraction assembly; 2801. Air extraction box; 2802. Air extraction pipe; 2803. Exhaust pipe; 29. Classification assembly; 2901. Slag discharge pipe; 2902. Electrically controlled valve; 2903. Rotating sleeve; 2904. Fourth motor; 2905. Second driving gear; 2906. Second driven gear; 2907. Rotating sleeve seat; 2908. Diverter pipe; 30. Conveying pipe. Detailed Implementation
[0028] Please see Figures 1-8This invention provides a technical solution: a treatment device based on a building drainage system, comprising a sorting box 1, a hook assembly 5, and a sorting assembly 29. A water inlet pipe 2 is connected to the top outer side of the sorting box 1, and a first motor 3 is installed on the left outer wall of the sorting box 1. A rolling roller 4 is connected to the right side of the first motor 3. The hook assembly 5 is connected to the outer periphery of the rolling roller 4. A fixed rotating seat 6 is installed at the middle of the inner side of the sorting box 1, and an outer filter box 7 is placed inside the fixed rotating seat 6. A first through hole 8 is opened on the bottom outer side of the outer filter box 7, and an inner filter box 9 is placed inside the outer side of the outer filter box 7. A second through hole 10 is opened on the bottom outer side of the inner filter box 9. A second motor 11 is connected to the right outer side of the sorting box 1, and a first through hole 29 is placed on the bottom outer side of the second motor 11. The outer surface of the outer filter box 7 is provided with a first driven gear 13, the bottom middle of the outer filter box 7 is connected to a third motor 14, and the top outer side of the third motor 14 is provided with a rotating shaft 15. The outer side of the rotating shaft 15 is connected to a crushing paddle 16. The bottom inner side of the inner filter box 9 is provided with a first sleeve gear 17, the outer side of the rotating shaft 15 is provided with an electric push cylinder 18, the bottom outer side of the electric push cylinder 18 is connected to a second sleeve gear 19, the bottom two sides of the inner filter box 9 are provided with a first connecting groove 20, the bottom two sides of the outer filter box 7 are provided with a second connecting groove 21, the bottom outer side of the sorting box 1 is connected to a diverter seat 22, the sorting component 29 is placed on the bottom outer side of the diverter seat 22, and the bottom outer side of the sorting component 29 is provided with a conveying pipe 30.
[0029] Please see Figure 1 and Figure 2 The hook assembly 5 includes a fixing pin 501, an air supply pipe 502, an air bag 503, and an auxiliary hook 504. The bottom outer side of the fixing pin 501 is connected to the air supply pipe 502, and the middle inner side of the fixing pin 501 is equipped with the air bag 503. The auxiliary hook 504 is arranged around the outer perimeter of the air bag 503. The fixing pins 501 are arranged in a ring shape, and the air supply pipe 502 is connected to the air bag 503 through the fixing pins 501.
[0030] The specific operation is as follows: The inlet pipe 2 allows wastewater to enter the inner side of the sorting bin 1. The wastewater entering the sorting bin 1 will contact the rolling roller 4. At this time, the first motor 3 drives the rolling roller 4 to rotate, which in turn causes the fixing pin 501 to rotate. During the rotation, the fixing pin 501 can hook and separate the plastic bags in the wastewater, preventing the plastic bags from flowing away with the wastewater and interfering with subsequent sorting steps. Furthermore, air is supplied through the air pipe 502, causing the airbag 503 to inflate. During the inflation of the airbag 503, the auxiliary hook 504 can be released from... The inner side of the fixing nail 501 is pushed out, and with the assistance of the auxiliary hook 504, the stability of the fixing nail 501 in hooking the plastic bag can be improved, and the plastic bag is prevented from falling off during the hooking process. In addition, after the sewage treatment is completed, the air bag 503 retracts, which can cause the auxiliary hook 504 to retract back to the inner side of the fixing nail 501. When the rolling roller 4 continues to drive the fixing nail 501 to rotate, the plastic bag will detach from the surface of the fixing nail 501 due to insufficient hooking force and enter the outer filter box 7 for crushing. This can prevent too many plastic bags from being hooked on the surface of the hooking assembly 5, which will affect the hooking effect.
[0031] Please see Figures 1-8 The inner surface of the outer filter box 7 is in contact with the outer surface of the inner filter box 9, and the outer filter box 7 is rotatably connected to the fixed rotating seat 6. The first connecting gear 17 and the second connecting gear 19 mesh with each other. The shape and size of the first connecting groove 20 are the same as those of the second connecting groove 21, and the first connecting groove 20 is symmetrically distributed along the vertical center line of the inner filter box 9. The sorting component 29 includes a slag discharge pipe 2901, an electrically controlled valve 2902, a rotating pipe sleeve 2903, a fourth motor 2904, a second driving gear 2905, a second driven gear 2906, a rotating pipe seat 2907, and a diversion pipe 2908. The outer side of the slag discharge pipe 2901 is connected to an electrically controlled valve. Valve 2902, and a rotating sleeve 2903 is provided at the middle of the outer side of the slag discharge pipe 2901. A fourth motor 2904 is connected to the outer left side of the slag discharge pipe 2901, and a second driving gear 2905 is provided on the outer bottom of the fourth motor 2904. A second driven gear 2906 is provided on the outer bottom of the rotating sleeve 2903. A rotating pipe seat 2907 is connected to the end of the slag discharge pipe 2901, and a diversion pipe 2908 is provided on the outer bottom of the rotating pipe seat 2907. The slag discharge pipe 2901 is connected to the diversion pipe 2908 through the rotating pipe seat 2907, and the rotating pipe seat 2907 and the diversion pipe 2908 are distributed perpendicularly.
[0032] The specific operation is as follows: After the plastic bags in the sewage are separated, they can enter the inner side of the inner filter box 9 through the top of the outer filter box 7. At this time, the second motor 11 drives the first driving gear 12 to work, which enables the first driven gear 13 to drive the outer filter box 7 to rotate through the fixed rotating seat 6. During the rotation of the outer filter box 7, centrifugal force is generated, which allows the water in the sewage in the outer filter box 7 to be thrown out through the gap between the first through hole 8 and the second through hole 10. However, the impurities in the sewage are too large to pass through the gap between the first through hole 8 and the second through hole 10, which allows the water in the sewage to be separated from the impurities. In addition, the operation of the electric push cylinder 18 enables the first sleeve gear 17 to engage with the second sleeve gear 19. At this time, the third motor 14 works to drive the inner filter box 9 to rotate independently, which changes the distance between the first through hole 8 and the second through hole 10. This allows the equipment to freely adjust the volume of the filtered material according to usage requirements. In addition, by changing the distance between the first through hole 8 and the second through hole 10, it can prevent debris from getting stuck inside the gap and causing blockage of the first through hole 8 and the second through hole 10, thus preventing filtration. After the sewage is filtered, the third motor 14 drives the rotating shaft 15 to rotate, which enables the crushing paddle 16 to crush the debris. This reduces the size of larger impurities, making subsequent cleaning and transportation easier. After the impurities are crushed, the first sleeve gear 17 engages with the second sleeve gear 19, and the third motor 14 rotates, causing the inner filter box 9 to rotate on the inner surface of the outer filter box 7. This allows the first connecting groove 20 and the second connecting groove 21 to be misaligned, thereby opening the bottom of the outer filter box 7. This allows the debris to be removed from the bottom of the outer filter box 7 for subsequent sewage treatment.
[0033] Please see Figure 1 A drain pipe 23 is connected to the bottom right side of the diversion seat 22. A cleaning box 24 is connected to the end of the drain pipe 23. A roller seat 25 is provided in the middle of the inner side of the cleaning box 24. A filter screen 26 is installed on the top outer side of the roller seat 25. A water outlet pipe 27 is connected to the top right side of the cleaning box 24. An air extraction assembly 28 is installed on the top outer side of the cleaning box 24. The air extraction assembly 28 includes an air extraction box 2801, an air extraction pipe 2802 and an exhaust pipe 2803. The air extraction pipe 2802 is connected to the outer two sides of the air extraction box 2801. The exhaust pipe 2803 is connected to the top outer side of the air extraction box 2801.
[0034] The specific operation is as follows: After the water in the sewage is separated, it can enter the inside of the drain pipe 23 through the diversion seat 22. The drain pipe 23 is connected to the cleaning tank 24, allowing the water to enter the cleaning tank 24. As the water in the cleaning tank 24 gradually increases, it can come into contact with the filter screen 26. The filter screen 26 can filter the water again, separating the fine impurities inside. In addition, there are two filter screens 26, which can improve the overall filtration effect. Furthermore, the water will generate buoyancy during the rising process. The buoyancy can drive the tumbling wheel seat 25 to rotate. When the tumbling wheel seat 25 rotates, it can agitate the water, which can release the residual gas in the water. At this time, the air extraction box 2801 works, which allows the air extraction pipe 2802 to absorb the gas released in the cleaning tank 24 and transport the gas away from the equipment through the exhaust pipe 2803. By collecting the gas in the water through the air extraction box 2801, the odor in the water can be reduced, and the excessive methane gas in the water can be avoided. In the subsequent water treatment process... This avoids creating a hazard, which helps improve the safety performance of the equipment. The deaerated and filtered water can be discharged from the equipment through the outlet pipe 27. In addition, after the debris is removed from the bottom of the outer filter box 7, it can slide into the inside of the diversion seat 22. At this time, the electric control valve 2902 is opened, which allows the debris to enter the inside of the slag discharge pipe 2901 and be transported into the conveying pipe 30 through the diversion pipe 2908 for transportation and processing. At this time, the fourth motor 2904 drives the second drive gear 2905 to rotate, which can cause the second driven gear 2906 to rotate. This allows the slag discharge pipe 2901 to rotate through the rotating pipe sleeve 2903. During the rotation of the slag discharge pipe 2901, the rotating pipe seat 2907 can drive the diversion pipe 2908 to rotate, which allows the diversion pipe 2908 to move to the top of different conveying pipes 30. When the equipment treats different types and sources of sewage, the rotation of the diversion pipe 2908 can enable the equipment to classify and treat impurities in sewage from different sources, which can improve the sewage treatment effect of the equipment.
[0035] In summary, this treatment equipment based on the building's drainage system works as follows: First, the wastewater is fed into the sorting bin 1 through the inlet pipe 2. The wastewater then comes into contact with the rolling roller 4. At this time, the first motor 3 drives the rolling roller 4 to rotate, which in turn causes the fixing pin 501 to rotate. During the rotation of the fixing pin 501, the plastic bags in the wastewater are hooked and separated, preventing the plastic bags from flowing away with the wastewater and interfering with subsequent sorting steps. In addition, air is supplied through the air pipe 502, which inflates the airbag 503. During the inflation of the airbag 503, the auxiliary hook 504 is pushed out from the inside of the fixing pin 501. The auxiliary hook 504 helps to improve the stability of the fixing pin 501 in hooking the plastic bags, preventing the plastic bags from falling off during the hooking process.
[0036] After the plastic bags in the sewage are separated, they can enter the inner side of the inner filter box 9 through the top of the outer filter box 7. At this time, the second motor 11 drives the first driving gear 12 to work, which enables the first driven gear 13 to drive the outer filter box 7 to rotate through the fixed rotating seat 6. During the rotation of the outer filter box 7, centrifugal force is generated, which allows the water in the sewage in the outer filter box 7 to be thrown out through the gap between the first through hole 8 and the second through hole 10. The impurities in the sewage are too large to pass through the gap between the first through hole 8 and the second through hole 10, which allows the water in the sewage to be separated from the impurities. In addition, the electric push cylinder 18 can make the first sleeve gear 17 and the second sleeve gear 19 engage. At this time, the third motor 14 can drive the inner filter box 9 to rotate independently, which can change the distance between the first through hole 8 and the second through hole 10. This allows the equipment to freely adjust the volume of the filtered material according to the usage requirements. In addition, by changing the distance between the first through hole 8 and the second through hole 10, the situation of impurities getting stuck in the gap and causing the first through hole 8 and the second through hole 10 to be blocked and unable to filter can be avoided.
[0037] After the water in the sewage is separated, it can enter the inside of the drain pipe 23 through the diversion seat 22. The drain pipe 23 is connected to the cleaning tank 24, allowing water to enter the cleaning tank 24. As the water in the cleaning tank 24 gradually increases, it can come into contact with the filter screen 26. The filter screen 26 can filter the water again, separating the fine impurities inside. In addition, there are two filter screens 26, which can improve the overall filtration effect. Furthermore, the water will generate buoyancy during the rising process, which can drive the tumbling wheel seat 25 to rotate and tumble. When the wheel seat 25 rotates, it can agitate the water, which can release the residual gas in the water. At this time, the extraction box 2801 works, which allows the extraction pipe 2802 to absorb the gas released in the cleaning box 24 and transport the gas away from the equipment through the exhaust pipe 2803. By collecting the gas in the water through the extraction box 2801, the odor in the water can be reduced, and the excessive methane gas in the water can be avoided, which may cause danger in the subsequent water treatment process. The water that has been degassed and filtered can be discharged from the equipment through the outlet pipe 27.
[0038] After the wastewater filtration is completed, the third motor 14 drives the rotating shaft 15 to rotate, which enables the crushing paddle 16 to crush the debris. This reduces the size of larger impurities, making subsequent cleaning and transportation easier. After the impurities are crushed, the first and second gears engage, and the third motor 14 rotates, causing the inner filter box 9 to rotate on the inner surface of the outer filter box 7. This allows the first and second connecting grooves 20 and 21 to be misaligned, opening the bottom of the outer filter box 7. This allows the debris to be removed from the bottom of the outer filter box 7 for subsequent wastewater treatment. In addition, the airbag 503 retracts, causing the auxiliary hook 504 to retract into the inside of the fixing nail 501. As the rolling roller 4 continues to drive the fixing nail 501 to rotate, the plastic bag will detach from the surface of the fixing nail 501 due to insufficient hooking force and enter the outer filter box 7 for crushing. This avoids excessive plastic bags being hooked on the surface of the hook assembly 5, which affects the hooking effect.
[0039] Finally, after the debris is removed from the bottom of the outer filter box 7, it can slide into the inner side of the diversion seat 22. At this time, the electric control valve 2902 is opened, allowing the debris to enter the inner side of the slag discharge pipe 2901 and be transported into the conveying pipe 30 through the diversion pipe 2908 for transportation and processing. At this time, the fourth motor 2904 drives the second drive gear 2905 to rotate, which in turn drives the second driven gear 2906 to rotate. This allows the slag discharge pipe 2901 to rotate through the rotating sleeve 2903. During the rotation of the slag discharge pipe 2901, the rotating sleeve 2907 drives the diversion pipe 2908 to rotate, which allows the diversion pipe 2908 to move to the top of different conveying pipes 30. When the equipment treats different types and sources of sewage, the rotation of the diversion pipe 2908 allows the equipment to classify and process impurities in sewage from different sources, which can improve the sewage treatment effect of the equipment.
Claims
1. A treatment apparatus based on a building construction drainage system, characterized by, Including classification box (1), hook assembly (5) and classification assembly (29), the top outside of classification box (1) is connected with inlet pipe (2), and the left side outer wall of classification box (1) is provided with first motor (3), the right side of first motor (3) is connected with rolling roller (4), hook assembly (5) is connected to the outside of rolling roller (4) around, the inside of classification box (1) is provided with fixed rotating seat (6) in the middle end, and the inside of fixed rotating seat (6) is placed with outer filter box (7), the bottom outside of outer filter box (7) is provided with first through-hole (8), and the inside of outer filter box (7) is placed with inner filter box (9), the bottom outside of inner filter box (9) is provided with second through-hole (10), the right side of classification box (1) is connected with second motor (11), and the bottom outside of second motor (11) is placed with first driving gear (12), the outside surface of outer filter box (7) is provided with first driven gear (13), the bottom middle end of outer filter box (7) is connected with third motor (14), and the top outside of third motor (14) is provided with rotating shaft (15), the outside of rotating shaft (15) is connected with crushing paddle (16), the bottom inside of inner filter box (9) is provided with first socket gear (17), the outside of rotating shaft (15) is provided with electric push cylinder (18), the bottom outside of electric push cylinder (18) is connected with second socket gear (19), the bottom both sides of inner filter box (9) are provided with first communication groove (20), the bottom both sides of outer filter box (7) are provided with second communication groove (21), the bottom outside of classification box (1) is connected with shunt seat (22), classification assembly (29) is placed in the bottom outside of shunt seat (22), and classification assembly (29) bottom outside is provided with delivery pipe (30), classification assembly (29) includes slag discharge pipe (2901), electric control valve (2902), rotating pipe sleeve (2903), fourth motor (2904), second driving gear (2905), second driven gear (2906), rotating pipe seat (2907) and shunt pipe (2908), the outside of slag discharge pipe (2901) is connected with electric control valve (2902), and the outside middle end of slag discharge pipe (2901) is provided with rotating pipe sleeve (2903), the left side outside of slag discharge pipe (2901) is connected with fourth motor (2904), and the bottom outside of fourth motor (2904) is provided with second driving gear (2905), the bottom outside of rotating pipe sleeve (2903) is placed with second driven gear (2906), the end of slag discharge pipe (2901) is connected with rotating pipe seat (2907), and rotating pipe seat (2907) bottom outside is provided with shunt pipe (2908), slag discharge pipe (2901) is communicated with shunt pipe (2908) through rotating pipe seat (2907), and rotating pipe seat (2907) and shunt pipe (2908) are vertically distributed.
2. The treatment device based on the housing construction drainage system according to claim 1, characterized in that, The hooking assembly (5) comprises a fixing nail (501), a gas conveying pipe (502), an air bag (503) and an auxiliary hanging nail (504), the bottom outer side of the fixing nail (501) is connected with the gas conveying pipe (502), and the inner side middle end of the fixing nail (501) is provided with the air bag (503), the outer periphery of the air bag (503) is provided with the auxiliary hanging nail (504).
3. The treatment device based on the housing construction drainage system according to claim 2, characterized in that, The fixing nail (501) is annularly distributed, and the gas conveying pipe (502) is communicated with the air bag (503) through the fixing nail (501).
4. The treatment device based on the housing construction drainage system according to claim 1, characterized in that, The inner surface of the outer filter box (7) is attached to the outer surface of the inner filter box (9), and the outer filter box (7) is rotationally connected with the fixed rotating seat (6).
5. The treatment device based on the housing construction drainage system according to claim 1, characterized in that, The first set of gear (17) and the second set of gear (19) are engaged with each other.
6. The treatment device based on the housing construction drainage system according to claim 1, characterized in that, The shape and size of the first communication groove (20) are consistent with those of the second communication groove (21), and the first communication groove (20) is symmetrically distributed along the vertical center line of the inner filter box (9).
7. The treatment device based on the housing construction drainage system according to claim 1, characterized in that, The bottom right side of the shunt seat (22) is connected with a drain pipe (23), the tail end of the drain pipe (23) is connected with a cleaning box (24), the inner side middle end of the cleaning box (24) is provided with a rolling wheel seat (25), the top outer side of the rolling wheel seat (25) is provided with a filter screen (26), the top right side of the cleaning box (24) is connected with a water outlet pipe (27), and the top outer side of the cleaning box (24) is provided with an air extraction assembly (28).
8. The treatment device based on a building drainage system according to claim 7, characterized in that, The air extraction assembly (28) comprises an air extraction box (2801), an air extraction pipe (2802) and an exhaust pipe (2803), the outer sides of the air extraction box (2801) are connected with the air extraction pipe (2802), and the top outer side of the air extraction box (2801) is connected with the exhaust pipe (2803).
Citation Information
Patent Citations
Anti-blocking domestic sewage treatment device
CN212025026U
Solid-liquid separator
KR101425200B1