Prefabricated integrated pump house

By introducing sludge-clogging and accelerating components to cut sludge in prefabricated integrated pump houses, and combining them with cleaning components to clean the pump inlet, the problem of sludge blockage was solved, and smooth and efficient water delivery was achieved for the pump body and pipelines.

CN116641450BActive Publication Date: 2026-01-09SHANGHAI HAICHENG WATER TECH GRP CO LTD
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Patent Information

Application Number
CN202310806218.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-04
Publication Date
2026-01-09
Estimated Expiration
2043-07-04

AI Technical Summary

Technical Problem

In existing prefabricated integrated pump stations, sludge tends to accumulate in the pumps and pipes during the pumping process, leading to blockages. Current technologies reduce sludge entry by adjusting the contact height between the pump and the sludge at the bottom of the water source, but sludge still enters and causes blockages after long-term operation.

Method used

A prefabricated integrated pump house was designed, which includes a sludge pump, a water pump, an acceleration component, a grinding component, and a cleaning component. The grinding component cuts the sludge, the acceleration component increases the sludge conveying speed, and the cleaning component cleans the water pump inlet to prevent blockage.

Benefits of technology

It effectively prevents sludge from clogging the pump body and pipes, improves sludge cleaning efficiency, ensures smooth operation of pumps and pipes, and enhances water delivery efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to an assembled integrated pump house, which comprises a sludge pump, a water pump, a pump house, a crushing assembly, a cleaning assembly, an accelerating assembly and an energy-saving assembly. The sludge pump is installed in the pump house, and the sludge pump discharges sludge in a water source. The crushing assembly is installed in the sludge pump. The accelerating assembly is installed near the crushing assembly. The water pump is installed in the pump house. The cleaning assembly is installed in the water pump. The energy-saving assembly is installed on the top of the pump house. The application solves the problems that the water pump in the pump house is easily blocked by large sludge in the process of conveying water, and the filter device of the water pump needs to be manually cleaned.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of integrated pump house, in particular to an assembled integrated pump house. BACKGROUND

[0002] The assembled integrated pump house is a modular pump house device prepared in advance, which is composed of one or more water pumps, control systems, pipelines, valves and other components. The assembled integrated pump house can be quickly installed at the required place to meet the needs of people and is widely used in the fields of water supply, drainage and irrigation. In the process of conveying water, the water pump in the pump house draws water from the water source and conveys the drawn water into the pipeline. The control system in the pump house detects the water flow in the pipeline and automatically controls the start and stop of the pump to ensure appropriate water pressure. The filtering equipment inside the pump house can effectively remove impurities in the water, thereby making the conveyed water clean.

[0003] In the process of conveying water source by the existing assembled integrated pump house, the water pump in the assembled integrated pump house draws water. A filter is installed at the water inlet of the water pump. The assembled integrated pump house filters impurities in the water through the filter during the water drawing process, thereby ensuring the cleanliness of the conveyed water source.

[0004] When the assembled integrated pump house draws water from the water source, the sludge at the bottom of the water source will enter the water pump with the water. The filter at the water inlet of the water pump has poor filtering effect on the sludge, which causes the sludge to accumulate in the water pump, thereby causing the problem of blockage of the internal pipeline of the pump house. In the existing technology, the contact height between the water pump and the sludge at the bottom of the water source is adjusted to reduce the amount of sludge entering the water pump, thereby avoiding the problem of blockage of the pipeline caused by the accumulation of sludge in the water pump. However, under the long-term operation of the water pump, part of the sludge will enter the water pump with the suction force of the water, and the sludge will accumulate in the water pump and the pipeline, thereby causing the problems of blockage of the water pump and the internal pipeline.

[0005] In view of the above problems, the present application develops an assembled integrated pump house to solve these problems. SUMMARY

[0006] The purpose of the present application is to provide an assembled integrated pump house. The pump house integrates different types of pumps to convey sludge and water respectively, and utilizes the mutual correlation to avoid blockage of the pump body and the pipeline.

[0007] A prefabricated integrated pump house includes a sludge pump, a water pump, and a pump house. The sludge pump has a No. 1 motor inside and also includes an acceleration component, a cleaning component, and a pulverizing component. The sludge pump is fixedly installed inside the pump house. The sludge pump cleans sludge from the water source while preventing pump blockage. The pulverizing component is fixedly installed inside the sludge pump, cutting the sludge and discharging sludge from the pump's inner wall. An acceleration component for unblocking pipes is fixedly installed near the pulverizing component, increasing the speed at which sludge reaches the pulverizing component. This acceleration, combined with the pulverizing component's pulverizing action, improves the efficiency of the sludge pump in cleaning sludge from the water source. The water pump is fixedly installed inside the pump house, and a cleaning component is fixedly installed inside the water pump. The cleaning component cleans the water pump's inlet and, together with the centrifugal force generated by the impeller inside the water pump, removes impurities.

[0008] The shredding assembly includes an auger and blades. An auger is installed on the output shaft of the No. 1 motor inside the sludge pump. The auger is composed of spirally bonded steel bars and is spiral-shaped. The auger is fixedly installed at the sludge outlet of the sludge pump. The auger discharges large pieces of sludge cut by the blades from the sludge pump, preventing sludge from sticking to the inner wall of the sludge pump and causing blockage at the sludge outlet. The blades are installed near the sludge outlet and welded inside the sludge pump. Welding the blades to the sludge pump reduces the vibration generated when the blades cut the sludge, thereby allowing the blades to cut the sludge thoroughly and preventing sludge from clogging the pipes. The blades cut the sludge inside the sludge pump and work in conjunction with the auger that cleans the inner wall of the sludge pump outlet to improve the efficiency of sludge discharge and the unobstructed flow of the sludge pump outlet.

[0009] The acceleration assembly comprises a bevel gear, a handle, a connecting rod, a sliding block and a baffle, the bevel gear is connected with the output shaft of the motor by a shaft coupling, the shaft coupling reduces the pressure on the output shaft of the motor in the sludge pump, the transmission distance of the output shaft of the motor is far, the shaft coupling avoids the breakage of the output shaft of the motor in the sludge pump, the output shaft of the motor in the sludge pump is rotatably connected with the bevel gear which provides power for the handle, the handle is welded on the bevel gear, the handle rotates while the bevel gear rotates, which avoids the collision between the handle and the output shaft of the motor during the rotation of the handle, the handle is hinged with the connecting rod, the handle is hinged with the sliding block, and the baffle is obliquely installed in the sludge pump, thereby avoiding the winding of the sludge on the output shaft of the motor in the sludge pump, changing the transmission trajectory of the sludge in the sludge pump and improving the conveying speed of the sludge; the sludge pump shell is slidably connected with the sliding block which guides the sludge, thereby the sliding block pushes the sludge in the sludge pump during the reciprocating sliding of the sludge pump, accelerates the falling of the sludge and improves the working efficiency of the whole device, the material of one end of the sliding block includes but is not limited to stainless steel, so that the sludge in the sludge pump is not easy to be sprayed out from the connection between the sliding block and the sludge pump while the sliding block pushes the sludge, and a blocking ring is installed at the connection between the sludge pump and the sliding block, which makes the sludge not easy to be sprayed out from the connection.

[0010] The ratio of the thickness of one end of the sliding block to the thickness of the other end of the sliding block in the sludge pump is 2:1, the top of one end of the sliding block is pointed or cylindrical, one end of the sliding block is in the sludge pump, and the sliding block can better guide the sludge, the other end of the sliding block cooperates with the hole of the sludge pump to prevent the sliding block from moving back and forth to take the sludge out of the sludge pump, and the angle between the sliding block and the connecting rod is 120°-150°, the connecting rod drives the sliding block to move and limits the moving distance of the sliding block to prevent the sliding block from colliding with the inner wall of the sludge pump when guiding the sludge, and the angle between the sliding block and the connecting rod is less than 120.

[0011] Preferably, a spring is installed in the middle of the sliding block, which increases the guiding effect of the sliding block and reduces the wear of the sliding block and the inner wall of the sludge pump during the left and right sliding of the sliding block; the material of the spring includes but is not limited to stainless steel, the stainless steel spring has good corrosion resistance and can prevent corrosion of the sludge, and the surface of the stainless steel spring is relatively smooth, so the sludge is difficult to adhere to the spring, which avoids the influence of the adhesion of the sludge on the spring on the deformation of the spring itself and the wear of the ability of the spring itself, thereby the spring cannot cooperate with the acceleration assembly to accelerate the guiding of the sludge.

[0012] Preferably, the shielding plate is installed inside the sludge pump, the shielding plate is arranged obliquely, the shielding plate is 120°-150° with the inner wall of the sludge pump, so that the sludge on the shielding plate is affected by its own gravity, the sludge on the shielding plate can slide down and not accumulate on the shielding plate, thereby avoiding the sludge winding around the output shaft of the first motor and damaging the first motor; when the shielding plate is less than 120° with the sludge pump, the sludge is easy to wind around the output shaft of the motor; when the shielding plate is greater than 150° with the sludge pump, the sludge will accumulate on the shielding plate during the process of passing through the sludge pump, thereby causing the blockage inside the sludge pump.

[0013] Preferably, the material of the shielding plate is selected from, but not limited to, stainless steel. The shielding plate made of stainless steel makes the sludge accumulated on the shielding plate not easy to bend. The sludge contains corrosive substances. The shielding plate made of stainless steel makes the impurities in the sludge not easy to corrode the shielding plate. A coating is applied to the surface of the shielding plate to reduce the friction between the surface of the shielding plate and the sludge, prevent the sludge from adhering to the surface of the shielding plate, and the coating material on the surface of the shielding plate is selected from, but not limited to, polytetrafluoroethylene. The coating made of polytetrafluoroethylene has a low friction coefficient, a non-stick chemical substance, and a very smooth surface. The coating made of polytetrafluoroethylene makes the sludge on the shielding plate not easy to adhere. The first motor in the sludge pump drives the impeller to rotate to generate negative pressure. The coating made of polytetrafluoroethylene quickly slides the sludge on the shielding plate, prevents the adhesion of the sludge, and speeds up the discharge efficiency of the sludge.

[0014] The cleaning assembly comprises a second bevel gear, a second handle, a connecting rod, a fixed block, a first water blocking ring, a blocking block and a filter screen. The second bevel gear is engaged with a first bevel gear which changes the transmission direction. The second bevel gear is installed outside the water pump. The second handle is fixedly installed with the second bevel gear which provides power for the second handle. The inner wall of the water pump is fixedly installed with the first water blocking ring which prevents water from overflowing out of the water pump. The shaft of the second bevel gear is sleeved with the first water blocking ring. When the shaft of the second bevel gear rotates, the first water blocking ring will rotate by itself due to the friction between the shaft and the first water blocking ring. The second handle is driven by the second gear transmission shaft. The second handle makes a circular motion around the shaft of the second bevel gear. The second handle is hinged with the connecting rod. The connecting rod is rotatably connected with the fixed block. The second handle provides power for the connecting rod, and the connecting rod starts to move. The connecting rod is rotatably connected with the fixed block. The movement of the connecting rod drives the fixed block to move up and down, and in turn drives the filter screen to move up and down. The blocking block is welded to the inner wall of the water pump. The blocking block is in the shape of a semicircle and is arranged obliquely. The impurities scraped off the filter screen are discharged out of the water pump together with the water during the up-and-down movement of the filter screen. At the same time, the scraping effect of the impurities on the surface of the filter screen is improved.

[0015] The fixed block is fixedly connected with a filter screen for cleaning the water inlet of the water pump, the fixed block improves the stability of the filter screen, the fixed block is welded to the filter screen, so that the filter screen is not easy to tilt during the rising and falling process, and the impurities on the filter screen are scraped off with the blocking block; when the filter screen is hinged with the blocking block, the water pump extracts water from the water source, the water entering the water pump generates pressure on the filter screen, the filter screen is easy to tilt during the rising and falling process of the filter screen, the tilt of the filter screen will damage the filter screen, and the impurities on the filter screen will block the water inlet of the water pump if not cleaned for a long time, and the operation efficiency of the water pump is reduced; the filter screen is installed near the water inlet of the water pump, the blocking block is installed on the inner side of the water pump, the filter screen moves up and down in cooperation with the blocking block, thereby cleaning the impurities on the filter screen, and avoiding the blockage of the water inlet of the water pump.

[0016] Preferably, the material of the blade includes but is not limited to stainless steel. The stainless steel blade can avoid damage caused by a large amount of sludge. Under the driving of the sludge pump No. 1 motor, the centrifugal force of the impeller inside the sludge pump pushes the sludge to the sludge outlet of the sludge pump. The stainless steel blade cuts the sludge, and the sludge does not rebound onto the output shaft of the No. 1 motor under the elastic force of the blade, thereby damaging the No. 1 motor. The blade is installed in different heights or arranged in multiple layers, thereby interacting with the impeller inside the sludge pump to fully cut and discharge the sludge.

[0017] Preferably, the rising and falling speed of the filter screen is 0.8 m / min to 1.5 m / min, thereby enhancing the filtering effect of the filter screen on impurities in water. During the rising and falling process of the filter screen, the cleaning effect of the filter screen is enhanced, and the filtering of impurities in the filter screen is avoided during the rising and falling process. When the water pump is used for a long time, the water inlet of the water pump is blocked. If the moving speed of the filter screen exceeds 1.5 m / min, the speed of water flowing through the filter screen pores will increase, the filtering effect of the filter screen on impurities entering the water pump will decrease, and the friction of the filter screen will increase, causing wear and damage to the surface of the filter screen. If the moving speed of the filter screen is less than 0.8 m / min, the moving speed of the filter screen is insufficient, thereby increasing the pressure of water on the filter screen and damaging the filter screen.

[0018] The first bevel gear is engaged with the second bevel gear, the first bevel gear provides power for the cleaning assembly, the ascending and descending speed of the filter screen is controlled by the rotating speed of the second bevel gear, the rotating speed of the second bevel gear can be reduced by increasing the diameter of the first bevel gear, reducing the diameter of the second bevel gear and adjusting the gear rotating speed ratio between the first bevel gear and the second bevel gear, the rotating speed of the second bevel gear is reduced by adjusting the transmission ratio between the first bevel gear and the second bevel gear, the position change of the bevel gear is avoided, the shaft of the first motor is not increased, the load of the first motor is not increased, meanwhile, the diameter of the bevel gear is not increased, the movement speed of the accelerating assembly is reduced, and the conduction effect on the sludge is reduced.

[0019] The energy-saving assembly is installed on the roof of the pump house, the energy-saving assembly provides power for the sludge pump and the water pump and improves the applicability of the pump house, the energy-saving assembly comprises a second motor, a cylindrical nut, a solar panel, a supporting plate and a second water blocking ring, the solar panel is fixedly installed at the roof end of the pump house, the second motor is fixedly installed on the inner wall of the pump house, external threads are formed on the output shaft of the second motor, internal threads are formed in the inner wall of the cylindrical nut, the cylindrical nut is in threaded connection with the output shaft of the second motor, the up-and-down movement of the cylindrical nut is realized, the second water blocking ring is installed at the top end of the cylindrical nut, the second water blocking ring can block rainwater from entering the interior of the pump house when it rains, the material of the second water blocking ring is selected from but not limited to rubber, the rubber water blocking ring can effectively prevent water from entering the pump house, the rubber water blocking ring has good resilience, so that the rubber water blocking ring can automatically restore the original shape, the rubber water blocking ring can still maintain sealing property after multiple uses, the replacement of the water blocking ring is avoided, the supporting plate is installed on the cylindrical nut, the supporting plate is fixedly installed on the cylindrical nut, the second motor drives the up-and-down movement of the cylindrical nut, the up-and-down movement of the cylindrical nut enables the solar panel to be turned up and down, so that the solar panel can be fully heated, the solar panel charges the pump house, and thus the efficient operation of energy saving can be realized.

[0020] The beneficial effects of the present application are as follows:

[0021] 1、The assembly type integrated pump house provided by the present application integrates different types of pumps to respectively transport sludge and water, and utilizes the correlation between the pumps to avoid the blockage of the pump body and the pipeline.

[0022] 2、The assembly type integrated pump house provided by the present application cooperates with the cleaning assembly and the accelerating assembly, the accelerating assembly accelerates the sludge pump to remove the sludge in the water source, the cleaning assembly cleans the water inlet of the water pump, the movement of the cleaning assembly makes the water outlet of the water pump not easy to be blocked, and thus the efficiency of the pump house in transporting the water source is improved.

[0023] 3. The assembled integrated pump house provided by the application, the pump house is matched with the accelerating assembly and the chopping assembly, the chopping assembly cuts the sludge in the sludge pump and transports the sludge out of the sludge pump, the accelerating assembly has the effect of conducting the sludge into the sludge pump, accelerates the chopping of the sludge and improves the efficiency of discharging the sludge out of the sludge pump. BRIEF DESCRIPTION OF DRAWINGS

[0024] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed in the specific embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0025] Figure 1 is a perspective view of the sludge pump and the water pump matched by the present application;

[0026] Figure 2 is a top view of the cleaning assembly and the water pump position relationship of the present application;

[0027] Figure 3 is a front view of the accelerating assembly and the chopping assembly position relationship of the present application;

[0028] Figure 4 is a structural schematic view of the accelerating assembly of the present application;

[0029] Figure 5 is a structural schematic view of the cleaning assembly of the present application;

[0030] Figure 6 is a structural schematic view of the energy-saving assembly of the present application;

[0031] Figure 7 is a structural schematic view of the chopping assembly of the present application;

[0032] Figure 8 is a perspective structural schematic view of the present application.

[0033] In the figure: 1, pump house house; 2, chopping assembly; 21, auger; 22, blade; 3, cleaning assembly; 31, No. 2 bevel gear; 32, No. 1 water blocking ring; 33, No. 2 handle; 34, connecting rod; 35, fixed block; 36, filter screen; 37, blocking block; 4, accelerating assembly; 41, No. 1 bevel gear; 42, No. 1 handle; 43, connecting rod; 44, sliding block; 45, shielding plate; 5, energy-saving assembly; 51, No. 2 motor; 52, cylindrical nut; 53, No. 2 water blocking ring; 54, support plate; 55, solar panel; 6, sludge pump; 61, No. 1 motor; 7, water pump. DETAILED DESCRIPTION

[0034] In order to better understand the above technical solutions, the above technical solutions will be described in detail below in conjunction with the drawings and specific embodiments of the specification.

[0035] Embodiment one: a prefabricated integrated pump house, comprising a sludge pump 6, a water pump 7, a pump house 1, further comprising an acceleration assembly 4, a cleaning assembly 3, a crushing assembly 2 and an energy saving assembly 5, the sludge pump 6 is installed inside the pump house 1, the sludge pump 6 discharges the sludge in the water source, the water pump 7 will not block the inside of the water pump 7 in the process of pumping water, the crushing assembly 2 is installed inside the sludge pump 6, the crushing assembly 2 crushes the large sludge entering the sludge pump 6, at the same time, the crushing assembly 2 discharges the crushed sludge out of the sludge pump 6, the acceleration assembly 4 is installed near the crushing assembly 2, the acceleration assembly 4 is fixedly installed near the crushing assembly 2, the acceleration assembly 4 increases the speed of the sludge reaching the crushing assembly 2, cooperates with the crushing assembly 2 to crush the sludge, and further improves the efficiency of the sludge pump 6 to clean the sludge in the water source, the water pump 7 is installed inside the pump house 1, the cleaning assembly 3 is installed near the water pump 7, the water pump 7 is fixedly installed with the cleaning assembly 3 for cleaning impurities at the water inlet of the water pump 7, the energy saving assembly 5 is installed on the top of the pump house 1, the energy saving assembly 5 reduces the consumption of energy and improves the applicability of the pump house.

[0036] The crushing assembly 2 comprises an auger 21 and a blade 22, the auger 21 is provided on the output shaft of the No. 1 motor 61 inside the sludge pump 6, the auger 21 is composed of spiral steel bars that are bonded together, the auger 21 is in a spiral shape, the auger 21 is installed at the sludge outlet of the sludge pump 6, under the driving of the No. 1 motor 61 inside the sludge pump 6, the rotating spiral blade discharges the sludge cut by the blade 22 out of the sludge pump 6, the blade 22 is installed near the sludge outlet, the blade 22 is welded in the sludge pump 6, the welding of the blade 22 and the sludge pump 6 reduces the vibration generated when the blade 22 cuts the sludge, thereby enabling the blade 22 to fully cut the sludge and preventing the sludge from blocking the pipeline, under the driving of the No. 1 motor 61 inside the sludge pump 6, the impeller inside the sludge pump 6 generates negative pressure to suck the sludge into the sludge pump 6, the centrifugal force generated by the rotating impeller pushes the sludge to the sludge outlet of the sludge pump 6, the blade 22 cuts the sucked sludge, so that the sludge will not block the pipeline, the blade 22 realizes cutting of the sludge in the sludge pump 6, cooperates with the auger 21 for cleaning the inner wall of the sludge outlet of the sludge pump 6, and further improves the efficiency of the sludge pump 6 to discharge sludge and the smoothness of the sludge outlet of the sludge pump 6.

[0037] In the prior art, the sludge pump 6 uses spiral blades to discharge sludge out of the sludge pump 6, but there is often sludge in the sludge pump 6, which blocks the sludge pump 6, in the present application, the crushing assembly 2 is used to crush the sludge entering the sludge pump 6, preventing the sludge from blocking the sludge pump 6.

[0038] The acceleration assembly 4 comprises a bevel gear 41, a handle 42, a connecting rod 43, a sliding block 44 and a shielding plate 45, the bevel gear 41 is connected with the output shaft of the motor 61 by a shaft coupling, the shaft coupling reduces the pressure of the output shaft of the motor 61 in the sludge pump 6, the transmission distance of the output shaft of the motor 61 is far, and the shaft coupling avoids the breakage of the output shaft of the motor 61 in the sludge pump 6, the handle is fixedly installed on the bevel gear 41, the handle 42 is welded on the bevel gear 41, the bevel gear 41 rotates while the handle 42 rotates, which avoids the collision between the handle 42 and the output shaft of the motor 61 during rotation, and the connecting rod 43 is hinged with the handle 42.

[0039] The handle 42 is hinged with the sliding block 44, the sliding block 44 is in sliding connection with the sludge pump 6, so that the sludge in the sludge pump 6 is pushed by the sliding block 44 during reciprocating sliding, the falling of the sludge is accelerated, and the working efficiency of the whole device is improved, the volume of one side of the sliding block 44 is greater than that of the other side, the top of one end of the sliding block 44 is cylindrical, one end of the sliding block 44 is inside the sludge pump 6, the sliding block 44 can better realize the conduction of the sludge, the other end of the sliding block 44 cooperates with the hole of the sludge pump 6, and the material of one end of the sliding block 44 includes but is not limited to stainless steel, so that the sludge in the sludge pump 6 is not easy to be sprayed out from the connection between the sliding block 44 and the sludge pump 6 when the sliding block 44 pushes the sludge, and a blocking ring is installed at the connection between the sludge pump 6 and the sliding block 44, so that the sludge is not easy to be sprayed out from the connection.

[0040] The shielding plate 45 is installed inside the sludge pump 6, the shielding plate 45 is arranged obliquely, the shielding plate 45 is 120°-150° with the inner wall of the sludge pump 6, so that the sludge on the shielding plate 45 is affected by its own gravity, the sludge on the shielding plate 45 can slide down and is not accumulated on the shielding plate 45, so that the sludge is not wound on the output shaft of the motor 61, and the motor 61 is not damaged.

[0041] The material of the shielding plate 45 is stainless steel. The shielding plate 45 made of stainless steel is not easy to bend when the sludge is accumulated on the shielding plate 45. The sludge contains corrosive substances. The shielding plate 45 made of stainless steel is not easy to be corroded by impurities in the sludge. A coating is applied to the surface of the shielding plate 45 to reduce the friction between the surface of the shielding plate 45 and the sludge, prevent the sludge from adhering to the surface of the shielding plate 45, and the coating material on the surface of the shielding plate 45 is selected from but not limited to polytetrafluoroethylene. The coating made of polytetrafluoroethylene has a low friction coefficient, a non-stick chemical substance, and a very smooth surface. The coating made of polytetrafluoroethylene prevents the sludge on the shielding plate 45 from adhering. The No. 1 motor 61 in the sludge pump 6 drives the impeller to rotate to generate negative pressure. The coating made of polytetrafluoroethylene quickly slides the sludge on the shielding plate 45, prevents the sludge from adhering, and speeds up the discharge efficiency of the sludge.

[0042] In the prior art, a filter is installed at the water inlet of the water pump 7. After the filter at the water pump 7 filters for a period of time, the filter needs to be disassembled and cleaned. The disassembly and assembly are troublesome. The cleaning assembly 3 of the present application brings the impurities at the water inlet of the water pump 7 out of the water pump 7 under the action of the impeller in the water pump 7, thereby improving the overall convenience of the water pump 7.

[0043] The cleaning assembly includes a No. 2 bevel gear 31, a No. 2 handle 33, a connecting rod 34, a fixed block 35, a blocking block 37, and a filter screen 36. The No. 2 bevel gear 31 is engaged with the No. 1 bevel gear 41. The No. 2 bevel gear 31 is installed on the outside of the water pump 7. The No. 2 handle 33 is fixedly installed on the shaft of the No. 2 bevel gear 31. A water blocking ring 32 is sleeved on the shaft of the No. 2 bevel gear 31. When the shaft of the No. 2 bevel gear 31 rotates, the water blocking ring 32 rotates by itself due to the friction between the shaft and the water blocking ring 32, preventing water from overflowing in the water pump 7. The No. 2 handle 33 performs circular motion around the shaft of the No. 2 bevel gear 31 under the drive of the transmission shaft of the No. 2 bevel gear 31. The No. 2 handle 33 is hinged with the connecting rod 34. The No. 2 handle 33 provides power to the connecting rod 34, and the connecting rod 34 starts to move. The connecting rod 34 is rotatably connected with the fixed block 35. The movement of the connecting rod 34 drives the fixed block 35 to move up and down, and in turn drives the filter screen 36 to move up and down.

[0044] The fixed block 35 is fixedly connected with the filter screen 36 for cleaning the water inlet of the water pump 7, the fixed block 35 is welded to the filter screen 36, so that the filter screen 36 is not easy to tilt during the rising and falling process, and the impurities on the filter screen 36 are scraped off by the blocking block 37; when the filter screen 36 is hinged to the blocking block 37, the water pump 7 extracts water from the water source, and the water entering the water pump 7 has pressure on the filter screen 36. During the rising and falling process of the filter screen 36, the filter screen 36 is easy to tilt, which will damage the filter screen 36. If the impurities on the filter screen 36 are not cleaned for a long time, the water inlet of the water pump 7 will be blocked. At the same time, the impurities on the filter screen 36 need to be cleaned by stopping the operation of the water pump 7 and disassembling the filter screen 36, which reduces the operation efficiency of the water pump 7; the filter screen 36 is installed near the water inlet of the water pump 7, the blocking block 37 is installed inside the water pump 7, and the filter screen 36 moves up and down in cooperation with the blocking block 37, thereby cleaning the impurities on the filter screen 36, and avoiding the blockage of the water inlet of the water pump 7.

[0045] The rising and falling speed of the filter screen 36 is 0.8m / min-1.5m / min, thereby enhancing the filtering effect of the filter screen 36 on the impurities in the water. During the rising and falling process of the filter screen 36, the cleaning effect of the filter screen 36 is enhanced, and the filtering of the impurities by the filter screen 36 during the rising and falling process is avoided, and the water inlet of the water pump 7 is blocked after long-term use of the water pump 7.

[0046] The first bevel gear 41 is engaged with the second bevel gear 31, the first bevel gear 41 provides power for the cleaning assembly 3, the rising and falling speed of the filter screen 36 is controlled by the rotating speed of the second bevel gear 31, the transmission ratio between the first bevel gear 41 and the second bevel gear 31 is adjusted to reduce the rotating speed of the second bevel gear 31, thereby avoiding increasing the load of the first motor.

[0047] The material of the blade 22 is stainless steel, which can avoid damage of a large amount of sludge to the blade 22. Under the driving of the first motor of the sludge pump 6, the centrifugal force of the impeller inside the sludge pump 6 pushes the sludge to the sludge outlet of the sludge pump 6. The stainless steel blade 22 cuts the sludge, and the stainless steel blade 22 will not cause the sludge to rebound onto the output shaft of the first motor 61 under the action of the elastic force of the blade 22, thereby damaging the first motor 61; the blades 22 are arranged in different heights and are arranged in a staggered manner, so that the fan and the blades 22 interact with each other, thereby fully cutting the sludge and discharging the sludge out of the sludge pump 6.

[0048] The energy-saving assembly 55 comprises the second motor 51, the cylindrical nut 52, the solar panel 55, the supporting plate 54, the second water-blocking ring 53, the solar panel 55 is installed at the top end of the pump house 1, the second motor 51 is fixedly installed on the inner wall of the pump house, an external thread is formed in the output shaft of the second motor 51, an internal thread is formed in the inner wall of the cylindrical nut 52, the cylindrical nut 52 is in threaded connection with the output shaft of the second motor 51, the up-and-down movement of the cylindrical nut 52 is realized, the second water-blocking ring 53 is installed at the top end of the cylindrical nut 52, the second water-blocking ring 53 can block the rainwater from entering the pump house when it rains, the material of the second water-blocking ring 53 is selected to be rubber, the rubber water-blocking ring can effectively prevent the water from entering the pump house, the rubber water-blocking ring has good resilience, so that the rubber water-blocking ring can automatically restore the original shape, the rubber water-blocking ring can still maintain the sealing property after being used for many times, the replacement of the water-blocking ring is avoided, the supporting plate 54 is installed on the cylindrical nut 52, the supporting plate 54 is fixedly installed below the solar panel 55, the second motor 51 drives the up-and-down movement of the cylindrical nut 52 through rotation, the up-and-down movement of the cylindrical nut 52 enables the solar panel 55 to be turned up and down, so that the solar panel 55 can be fully heated, the solar panel 55 charges the pump house, so that the energy-saving high-efficiency operation can be realized.

[0049] The first motor 61 of the sludge pump 6 starts to work, drives the impeller to rotate to generate negative pressure, sucks the sludge in the water source into the sludge pump 6, the bevel gear connected with the first motor 61 in the sludge pump 6 starts to rotate, thereby drives the first handle 42 to rotate, the first handle 42 drives the connecting rod 43 to move, thereby the sliding block starts to swing left and right, the sludge in the sludge pump 6 is guided through the left-and-right swinging of the sliding block, the sludge on the baffle 45 slides off, the centrifugal force generated by the rotating impeller pushes the sludge in the sludge pump 6 to the sludge outlet of the sludge pump 6, the cutter 22 arranged near the sludge outlet of the sludge pump 6 cuts the sludge, the auger 21 formed in the output shaft of the first motor 61 in the sludge pump 6 conveys the cut sludge out of the sludge pump 6.

[0050] The water pump 7 is running at the same time, the motor in the water pump 7 starts to rotate, the impeller starts to rotate, the rotating impeller generates negative pressure, and then the water is sucked into the water pump 7, the first bevel gear 41 rotates to drive the second bevel gear 31 to rotate, the second bevel gear 31 rotates to drive the second handle 33 to rotate, the second handle 33 drives the connecting rod 34 to move, the connecting rod 34 drives the fixed block 35 to move, the fixed block 35 is fixedly connected with the filter screen 36, the filter screen 36 moves up and down, the up and down movement of the filter screen 36 scrapes off the impurities on the filter screen 36, the impurities on the filter screen 36 are scraped off, and under the action of the centrifugal force of the fan, the impurities are discharged from the water pump 7 together with the water, so that the water outlet of the water pump 7 is not blocked, the second motor 51 of the energy-saving assembly 5 starts to rotate, the cylindrical nut 52 is threadedly connected with the output shaft of the second motor 51, the cylindrical nut 52 starts to move up and down, the support plate 54 on the cylindrical nut 52 is fixedly connected with the solar panel 55, the solar panel 55 moves up and down to make the solar panel 55 be heated uniformly, improve the power generation efficiency of the solar panel 55, so that the pump house can save energy, and the applicability of the pump house is improved.

[0051] In the embodiment two, the chopping assembly 2 comprises an auger 21 and a blade 22, the auger 21 is arranged on the output shaft of the first motor 61 in the sludge pump 6, the auger 21 is composed of spiral steel bars which are bonded together, the auger 21 is in a spiral shape, and the auger 21 is arranged at the sludge outlet of the sludge pump 6. Under the driving of the first motor 61 in the sludge pump 6, the rotating spiral blade discharges the sludge cut by the blade 22 from the sludge pump 6, the blade 22 is arranged near the sludge outlet, and the blade 22 is welded in the sludge pump 6. The welding of the blade 22 and the sludge pump 6 reduces the vibration generated by the blade 22 when cutting the sludge, so that the blade 22 can cut the sludge sufficiently, and the sludge cannot block the pipeline. Under the driving of the first motor 61 in the sludge pump 6, the impeller in the sludge pump 6 generates negative pressure to suck the sludge into the sludge pump 6, and the centrifugal force generated by the rotating impeller pushes the sludge to the sludge outlet of the sludge pump 6. The blade 22 cuts the large sludge sucked into the sludge pump 6, so that the sludge cannot block the pipeline. The blade 22 cuts the sludge in the sludge pump 6, cooperates with the auger 21 which cleans the inner wall of the sludge outlet of the sludge pump 6, and thus improves the sludge discharging efficiency of the sludge pump 6 and the smoothness of the sludge outlet of the sludge pump 6.

[0052] The accelerating assembly 4 comprises a bevel gear 41, a handle 42, a connecting rod 43, a sliding block 44 and a shielding plate 45, the bevel gear 41 is connected with the output shaft of the motor 61 by a shaft coupling, the shaft coupling reduces the pressure of the output shaft of the motor 61 in the sludge pump 6, the transmission distance of the output shaft of the motor 61 is far, the shaft coupling avoids the breakage of the output shaft of the motor 61 in the sludge pump 6, the handle is fixedly installed on the bevel gear 41, the handle is welded on the bevel gear 41, the bevel gear 41 rotates, the handle 42 rotates, avoiding the collision between the handle 42 and the output shaft of the motor 61 in the rotating process, the connecting rod 43 and the handle 42 are hinged, and the handle 42 and the sliding block 44 are hinged.

[0053] The sliding block 44 is slidably connected with the sludge pump 6, so that the sludge in the sludge pump 6 is pushed by the sliding block 44 in the reciprocating sliding process, the falling of the sludge is accelerated, and the working efficiency of the whole device is improved, one side of the sliding block 44 is larger in volume than the other side, the top of one end of the sliding block 44 is cylindrical, one end of the sliding block 44 is inside the sludge pump 6, the sliding block 44 can better realize the conduction effect on the sludge, the other end of the sliding block 44 is matched with the hole of the sludge pump 6, and the material of one end of the sliding block 44 includes but is not limited to stainless steel, so that the sludge in the sludge pump 6 is not easy to spray out from the connection between the sliding block 44 and the sludge pump 6 when the sludge is pushed, a water blocking ring 32 is installed at the connection between the sludge pump 6 and the sliding block 44, and the water blocking ring 32 makes the sludge not easy to spray out from the connection.

[0054] The rotating blade is fixedly installed at the sludge inlet of the sludge pump 6, under the action of the motor 61 in the sludge pump 6, the sludge enters the sludge pump 6, the rotating blade at the sludge inlet of the sludge pump 6 cuts the sludge, under the action of the gravity of the sludge itself, the rotating blade stirs and crushes the sludge while improving the conduction effect on the sludge, the rotating blade cuts the sludge, the cutting sludge is further cut by the stirring assembly 2, the cutting effect of the stirring assembly 2 on the sludge is prevented from being poor, the outlet of the sludge pump 6 is prevented from being blocked, the rotating blade cooperates with the accelerating assembly 4 to improve the conduction efficiency of the sludge, and the rotating blade prevents the shielding plate 45 from being damaged due to the influence of the gravity of the shielding plate 45.

[0055] The basic principle, main features and advantages of the present application are shown and described. Those skilled in the art should understand that the present application is not limited to the above examples, the above examples and the description in the specification are only to illustrate the principle of the present application, various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. An assembled integrated pump house, comprising a sludge pump (6), a water pump (7), and a pump house building (1), wherein a No. 1 motor (61) is arranged inside the sludge pump (6). Also include stirring assembly (2), cleaning assembly (3) and acceleration assembly (4), the pump house (1) is internally fixedly installed with sludge pump (6), the sludge pump (6) is internally fixedly installed with stirring assembly (2), the stirring assembly (2) includes auger (21), blade (22), the auger (21) is fixedly connected on the output shaft of sludge pump (6) inside No.1 motor (61), the sludge pump (6) is fixedly installed with auger (21) at the sludge outlet, the sludge pump (6) is fixedly installed with blade (22) near the sludge outlet; The stirring assembly (2) is fixedly installed with the acceleration assembly (4) of dredging pipeline, and the acceleration assembly (4) includes No.1 bevel gear (41), the output shaft of No.1 motor (61) inside sludge pump (6) is rotatably connected with No.1 bevel gear (41), the pump house (1) is internally fixedly installed with water pump (7), and the water pump (7) is internally fixedly installed with cleaning assembly (3);Cleaning assembly (3) includes No.2 bevel gear (31), the transmission direction of No.2 bevel gear (31) is changed by meshing with No.1 bevel gear (41), and No.2 bevel gear (31) is fixedly installed on the outer side of water pump (7); The thickness ratio of one end of sliding block (44) in sludge pump (6) and the thickness of the other end of sliding block (44) is 2:1, and the angle between sliding block (44) and connecting rod (43) is 120°-150°; The acceleration assembly (4) includes No.1 handle (42), connecting rod (43), sliding block (44) and baffle (45), No.1 handle (42) is fixedly installed on No.1 bevel gear (41), connecting rod (43) and No.1 handle (42) are rotatably connected, connecting rod (43) and sliding block (44) are rotatably connected, sludge pump (6) is slidably connected with sliding block (44), and baffle (45) is obliquely installed in sludge pump (6); The cleaning assembly (3) includes No.2 handle (33), connecting rod (34), fixed block (35), blocking block (37), filter screen (36) and No.1 water baffle (32), No.2 handle (33) is fixedly installed with No.2 bevel gear (31), No.1 water baffle (32) is fixedly installed on the inner wall of water pump (7), No.2 handle (33) is rotatably connected with connecting rod (34), connecting rod (34) is rotatably connected with fixed block (35), fixed block (35) is fixedly connected with filter screen (36), filter screen (36) is fixedly installed near the water inlet of water pump (7), and blocking block (37) is fixedly installed on the inner side of water pump (7).

2. The prefabricated integrated pump house according to claim 1, characterized in that: The pump house house (1) top is provided with energy-saving assembly (5), the energy-saving assembly (5) includes second motor (51), cylindrical nut (52), solar panel (55), support plate (54), second water retaining ring (53), the pump house house (1) top is fixedly provided with solar panel (55), the second motor (51) is fixedly installed in the inner wall of pump house house (1), the output shaft of second motor (51) is provided with external thread, the inner wall of cylindrical nut (52) is provided with internal thread, the top of cylindrical nut (52) is provided with second water retaining ring (53), and support plate (54) is fixedly installed on the cylindrical nut (52).

3. The prefabricated integrated pump house according to claim 1, characterized in that: The blades (22) are arranged by different height staggered installation.

Citation Information

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