CN223461563U - An online water quality detection device - Google Patents
An online water quality detection deviceInfo
- Publication number
- CN223461563U CN223461563U CN202422754829.2U CN202422754829U CN223461563U CN 223461563 U CN223461563 U CN 223461563U CN 202422754829 U CN202422754829 U CN 202422754829U CN 223461563 U CN223461563 U CN 223461563U
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- rotating shaft
- fixedly connected
- inlet pipe
- water inlet
- water quality
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Abstract
The utility model relates to the technical field of water quality detection and discloses an online water quality detection device which comprises a water quality detection device body and a water inlet pipe arranged on one side of the water quality detection device body, wherein a cavity is formed in the water inlet pipe, a filtering baffle is fixedly connected in the cavity of the water inlet pipe, a speed reduction rotating shaft is rotatably connected in the filtering baffle, a plurality of crushing blades are uniformly and fixedly connected to the outer surface of the speed reduction rotating shaft, a sweeping plate is fixedly connected to the outer surface of the speed reduction rotating shaft, a plurality of brushes are uniformly and fixedly connected to one side of the sweeping plate, the plurality of brushes of the sweeping plate are in contact with the filtering baffle, a collecting chamber is fixedly connected in the water inlet pipe, and a driving assembly for driving the speed reduction rotating shaft to rotate is formed in the water inlet pipe. The inside that is convenient for block the rubble that carries in the external rivers gets into the water quality testing device body through being provided with filtering baffle, is convenient for collect its rubble that blocks down through setting up the collecting chamber.
Description
Technical Field
The utility model relates to the technical field of water quality detection, in particular to an online water quality detection device.
Background
The on-line water quality analyzer is a water quality monitoring tool, can automatically monitor various parameters of water quality in real time, and can provide requirements for various industries such as tap water supply, medicine, pharmacy, sewage treatment, municipal administration, electric power and energy, food processing, plastics, automobiles, semiconductors, tires, metallurgy, material treatment, mining, printing, petroleum and natural gas and the like.
As in the patent application with the prior art publication number of CN213302172U, the utility model discloses an online water quality detection device, which comprises an online water quality analyzer main body, wherein a water intake is inserted on one side of a sample processing chamber, a water pump is arranged on the water intake, a shunt pipe is arranged at the lower end of the water intake, one side of the online water quality analyzer main body is connected with the sample processing chamber, a rotating shaft is arranged on the inner wall of the sample processing chamber, the position of the rotating shaft corresponds to the position of the shunt pipe, a funnel is arranged on the inner wall of the sample processing chamber, the funnel is positioned at the lower end of the rotating shaft, and a driving motor is arranged at the front end of the sample processing chamber. This online water quality testing device sets up automatic pivoted pivot through the shunt tubes lower extreme at the sample processing room, sets up crushing blade on the epaxial plectrum to can break stone, the sand in the sample water that flows from the shunt tubes, get into inside the filter tube after making the volume of stone sand diminish and filter, thereby reduced the risk that water inlet department blockked up, guaranteed the life of online water quality analyzer main part.
In the prior art, the crushing blades are arranged, so that stones and sand in sample water flowing out of the shunt pipe can be crushed, the volume of the stones and sand is reduced, the stones and sand enter the filter pipe to be filtered, and the stones and sand are prevented from entering the water quality analyzer.
Disclosure of utility model
The utility model aims to provide an online water quality detection device, which solves the problems that in the prior art, the filtering capacity of a filtering pipe is gradually saturated under the long-time working condition, so that stones are filled in the filtering pipe, a funnel is blocked, and the normal passing of water flow is influenced.
The utility model provides the technical scheme that the online water quality detection device comprises a water quality detection device body and a water inlet pipe arranged on one side of the water quality detection device body, wherein a cavity is formed in the water inlet pipe, a filtering baffle is fixedly connected in the cavity of the water inlet pipe, a speed reduction rotating shaft is rotatably connected in the filtering baffle, a plurality of crushing blades are uniformly and fixedly connected to the outer surface of the speed reduction rotating shaft, a sweeping plate is fixedly connected to the outer surface of the speed reduction rotating shaft, a plurality of brushes are uniformly and fixedly connected to one side of the sweeping plate, the plurality of brushes of the sweeping plate are in contact with the filtering baffle, a collecting chamber is fixedly connected in the water inlet pipe, and a driving component for driving the speed reduction rotating shaft to rotate is formed in the water inlet pipe.
As the preference of above-mentioned technical scheme, drive assembly is including rotating the driven pivot of connecting in the inlet tube inside, driven pivot has the speed reduction pivot to be connected, driven pivot surface fixedly connected with driven bevel gear, the inside rotation of inlet tube is connected with the initiative pivot, the bottom fixedly connected with initiative bevel gear of initiative pivot, initiative bevel gear and driven bevel gear meshing.
As the optimization of the technical scheme, the top of the water inlet pipe is fixedly connected with a micro motor, and the output end of the micro motor extends to the top of the driving rotating shaft and is fixedly connected with the top of the driving rotating shaft.
As the optimization of the technical scheme, the inside of the water inlet pipe is provided with the planetary gear reducer, the input end of the planetary gear reducer is fixedly connected with the driven rotating shaft, and the output end of the planetary gear reducer is fixedly connected with the speed reduction rotating shaft.
As the preferable of the above technical scheme, the inside of the water inlet pipe is configured with a pump chamber, the outer surface of the driven rotating shaft is uniformly and fixedly connected with a plurality of water turbine blades inside the pump chamber, and the plurality of water turbine blades are adapted to the inner wall of the pump chamber.
As the optimization of the technical scheme, the two ends of the water inlet pipe are respectively fixedly connected with the supporting frames, and the driven rotating shaft and the speed reduction rotating shaft are respectively provided with two supporting frames for rotating connection.
As a preferable mode of the above technical scheme, a sealing door is hinged at the bottom of the collecting chamber, and the sealing door is sealed with the inside of the collecting chamber.
As the optimization of the technical scheme, one end of the water inlet pipe is fixedly connected with a flange plate, and a plurality of screw holes are uniformly formed in the flange plate.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the driving bevel gear is driven to rotate through the rotation of the driving rotating shaft, at the moment, the driving bevel gear is meshed with the driven bevel gear, so that the driven rotating shaft is driven to rotate, at the moment, the driven rotating shaft is driven to rotate to drive the planetary gear reducer to rotate to drive the speed reduction rotating shaft to rotate, meanwhile, the speed reduction rotating shaft is driven to rotate to drive the crushing blade to rotate and the sweeping plate to rotate, when water flows into the water inlet pipe, impurities and crushed stone enter the water inlet pipe, at the moment, the crushed stone is contacted with the crushing blade to be crushed into small blocks by the crushing blade and then blocked by the filtering baffle, meanwhile, the crushed stone is driven to enter the collecting chamber under the sweeping of the sweeping plate, the crushed stone is influenced by gravity and can be deposited in the collecting chamber, the crushed stone is prevented from entering the water quality detection device body through the filtering baffle to damage the inside of the water quality detection device body, the crushing blade is arranged to crush large crushed stone, so that the blocking pressure of the filtering baffle is lightened, the speed reduction rotating shaft is reduced through the planetary gear reducer to enhance the crushing torque of the crushing blade, and meanwhile, the sweeping plate is slowed down, and the filtering baffle is enabled to slowly filter the influence on the water flow by the sweeping baffle.
Drawings
FIG. 1 is a schematic diagram of a three-dimensional structure of an on-line water quality testing device;
FIG. 2 is a schematic view of the structure of a water inlet pipe in an on-line water quality testing device;
FIG. 3 is a schematic cross-sectional view of a water inlet pipe in an on-line water quality testing apparatus;
FIG. 4 is a schematic view of a water turbine blade and a filtering baffle in an on-line water quality testing apparatus.
In the figure, 100 parts of a water quality detection device body, 101 parts of a water inlet pipe, 102 parts of a flange plate, 103 parts of a pump chamber, 200 parts of a driven rotating shaft, 201 parts of a water turbine blade, 202 parts of a filtering baffle plate, 203 parts of a supporting frame, 300 parts of a driving rotating shaft, 301 parts of a driving bevel gear, 302 parts of a driven bevel gear, 303 parts of a micro motor, 400 parts of a sweeping plate, 401 parts of a planetary gear reducer, 402 parts of a decelerating rotating shaft, 403 parts of a crushing blade, 404 parts of a collecting chamber, 405 parts of a sealing door.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
Example 1
As shown in figures 1-4, the utility model provides a technical scheme that the online water quality detection device comprises a water quality detection device body 100 and a water inlet pipe 101 arranged on one side of the water quality detection device body, wherein a cavity is formed in the water inlet pipe 101, a filtering baffle 202 is fixedly connected in the cavity of the water inlet pipe 101, a speed reduction rotating shaft 402 is rotatably connected in the filtering baffle 202, a plurality of crushing blades 403 are uniformly and fixedly connected to the outer surface of the speed reduction rotating shaft 402, a sweeping plate 400 is fixedly connected to the outer surface of the speed reduction rotating shaft 402, a plurality of brushes are uniformly and fixedly connected to one side of the sweeping plate 400, the plurality of brushes of the sweeping plate 400 are in contact with the filtering baffle 202, a collecting chamber 404 is fixedly connected in the water inlet pipe 101, and a driving component for driving the speed reduction rotating shaft 402 to rotate is formed in the water inlet pipe 101.
As an implementation manner in this embodiment, as shown in fig. 1-4, the driving assembly includes a driven rotating shaft 200 rotatably connected to the inside of a water inlet pipe 101, the driven rotating shaft 200 is connected with a reduction rotating shaft 402, the outer surface of the driven rotating shaft 200 is fixedly connected with a driven bevel gear 302, the inside of the water inlet pipe 101 is rotatably connected with a driving rotating shaft 300, the bottom of the driving rotating shaft 300 is fixedly connected with a driving bevel gear 301, the driving bevel gear 301 is meshed with the driven bevel gear 302, the top of the water inlet pipe 101 is fixedly connected with a micro motor 303, the output end of the micro motor 303 extends to the top of the driving rotating shaft 300 and is fixedly connected with the top of the driving rotating shaft, a planetary gear reducer 401 is arranged in the water inlet pipe, the input end of the planetary gear reducer 401 is fixedly connected with the driven rotating shaft 200, and the output end of the planetary gear reducer 401 is fixedly connected with the reduction rotating shaft 402.
Specifically, the driving bevel gear 301 is rotated through the driving rotating shaft 300 and then drives the driving bevel gear 301 to rotate, at this moment, the driving bevel gear 301 is meshed with the driven bevel gear 302, thereby the driven rotating shaft 200 is rotated, at this moment, the driven rotating shaft 200 is rotated and then drives the planetary gear reducer 401 to rotate, and meanwhile, the reduction rotating shaft 402 is rotated and drives the crushing blade 403 to rotate and the sweeping plate 400 to rotate, when water flows into the water inlet pipe 101, the water flows carry impurities and the crushed stone enter the water inlet pipe 101, at this moment, the crushed stone is contacted with the crushing blade 403 and crushed into small blocks by the crushing blade 403, then the crushed stone is blocked by the filtering baffle 202, meanwhile, the crushed stone is driven to enter the collecting chamber 404 under the sweeping of the sweeping plate 400, the crushed stone is influenced by gravity and can be precipitated in the collecting chamber 404, the crushed stone is conveniently blocked from entering the water quality detection device body 100 through the filtering baffle 202, the crushed stone is prevented from entering the water quality detection device body 100 to damage the inside, the crushed stone can be crushed by the crushing blade 403, and then the blocking pressure of the filtering baffle 202 is relieved, the reduction rotating shaft 402 can be reduced through the planetary gear reducer 401, and thus the crushing torque of the crushing blade 403 is enhanced, the crushing blade 403 is improved, the crushing force is improved, and the filtering baffle 202 is simultaneously filtered and the water is slowly filtered.
Wherein, the bottom hinged joint of collecting chamber 404 has sealing door 405, and sealing door 405 is airtight with the inside of collecting chamber 404, and the accessible opens sealing door 405 and carries out centralized processing to the rubble in the collecting chamber 404, is convenient for open collecting chamber 404 and carries out centralized processing to the rubble of its collection through being provided with sealing door 405, further improves its convenience, need not to dismantle inlet tube 101 and clear up its inside.
To sum up, be convenient for drive driven pivot 200 through being provided with the drive assembly and carry out the transmission and simultaneously planetary gear reducer 401 is slowed down to speed reduction pivot 402 for its crushing blade 403 has stronger torque force, improves crushing effect, sweeps the surface of board 400 slow stable clean filter baffle 202 simultaneously, sweeps into the inside of collection room 404 with the rubble that its filter baffle 202 blockked down, and secondly, sealing door 405 can take out the rubble of collection in the collection room 404, further improves the convenience.
Example 2
As shown in fig. 1-4, based on the same concept as that of the above embodiment 1, the present embodiment further provides an on-line water quality testing device, which includes a water quality testing device body 100 and a water inlet pipe 101 installed at one side thereof, wherein a cavity is formed in the water inlet pipe 101, a filtering baffle 202 is fixedly connected in the cavity of the water inlet pipe 101, a speed reduction rotating shaft 402 is rotatably connected in the filtering baffle 202, a plurality of crushing blades 403 are uniformly and fixedly connected to the outer surface of the speed reduction rotating shaft 402, a sweeping plate 400 is fixedly connected to the outer surface of the speed reduction rotating shaft 402, a plurality of brushes are uniformly and fixedly connected to one side of the sweeping plate 400, the plurality of brushes of the sweeping plate 400 are in contact with the filtering baffle 202, a collecting chamber 404 is fixedly connected in the interior of the water inlet pipe 101, and a driving assembly for driving the speed reduction rotating shaft 402 to rotate is formed in the interior of the water inlet pipe 101.
As an implementation manner in this embodiment, as shown in fig. 1-4, a pump chamber 103 is configured in the water inlet pipe 101, a plurality of water turbine blades 201 are uniformly and fixedly connected to the outer surface of the driven rotating shaft 200 and located in the pump chamber 103, the plurality of water turbine blades 201 are adapted to the inner wall of the pump chamber 103, two supporting frames 203 are fixedly connected to two ends of the water inlet pipe 101 respectively, two supporting frames 203 are rotatably connected to the driven rotating shaft 200 and the decelerating rotating shaft 402 respectively, a flange plate 102 is fixedly connected to one end of the water inlet pipe 101, and a plurality of screw holes are uniformly formed in the flange plate 102.
Specifically, the driven rotating shaft 200 is driven to rotate by the driving component, and at this time, the plurality of water turbine blades 201 are driven to rotate under the rotation of the driven rotating shaft 200, so that the water flow in the pump chamber 103 enters the water quality detection device body 100, and the speed of accelerating the water flow is realized.
Wherein, thereby through being provided with a plurality of water turbine blades 201 drive rivers and pass through inlet tube 101 fast, and then improve its water quality testing's efficiency, can make rivers stable through pump chamber 103 through being provided with pump chamber 103 and its adaptation, can be connected with external water pipe fast through being provided with pump chamber 103, and then improve its seal.
Further, external water flow enters the water quality detection device body 100 through the water inlet pipe 101 to detect the water quality of the water, and is communicated with the external water pipe through the water inlet pipe 101, so that the external water flow continuously flows into the water quality detection device body 100 to detect the water quality of the water without stopping the machine, the detection comprehensiveness of the water quality of the water flow is improved, and the water quality detection device body 100 is not described in detail in the prior art.
The working principle is that in use, through connecting and communicating the water inlet pipe 101 with an external water pipe, the water inlet pipe 101 is communicated with the external water pipe, at the moment, external water flows into the water quality detection device body 100 through the water inlet pipe 101 to detect the water quality, at the moment, the miniature motor 303 is started to drive the driving rotary shaft 300 to rotate, the driving rotary shaft 300 is rotated to drive the driving bevel gear 301 to rotate, at the moment, the driving bevel gear 301 is meshed with the driven bevel gear 302, thereby driving the driven rotary shaft 200 to rotate, a plurality of water turbine blades 201 are driven to rotate under the rotation of the driven rotary shaft 200, thereby driving the water flow in the pump chamber 103 to enter the water quality detection device body 100, thereby realizing the speed of accelerating the water flow, at the moment, the driven rotary shaft 200 rotates to drive the planetary gear reducer 401 to rotate and further drive the speed-reducing rotary shaft 402 to rotate, at the same time, the speed reducing rotary shaft 402 rotates to drive the crushing blade 403 to rotate and the sweeping plate 400, when the water flows into the water inlet pipe 101, at the moment, the crushed stone contacts with the crushing blade 403 to be crushed into small blocks, then is blocked by the filtering baffle 202, at the moment, the time, the crushed stone is driven into the inside of the collecting chamber 404 under the sweeping of the sweeping plate 400, the gravity is influenced by the rotation of the water flow, the water flow in the collecting chamber 201, the water quality can be concentrated by the gravity, and the inside the collecting chamber is filtered by the filter stone, and the inside the filter stone, the inside the filter body 404, and the inside the sealing door 404 is concentrated, and the inside the sealing door 404, and the inside the filter body 404, and the filter body, and the inside the filter body can be not subjected to be sealed.
The above embodiments are only for illustrating the technical solution of the present utility model, and are not limiting.
Claims (8)
1. An on-line water quality detection device comprises a water quality detection device body (100) and a water inlet pipe (101) arranged on one side of the water quality detection device body, and is characterized in that a cavity is formed in the water inlet pipe (101), a filtering baffle (202) is fixedly connected in the cavity of the water inlet pipe (101), a speed reduction rotating shaft (402) is rotatably connected in the inside of the filtering baffle (202), a plurality of crushing blades (403) are uniformly and fixedly connected to the outer surface of the speed reduction rotating shaft (402), a sweeping plate (400) is fixedly connected to the outer surface of the speed reduction rotating shaft (402), a plurality of brushes are uniformly and fixedly connected to one side of the sweeping plate (400), the plurality of brushes of the sweeping plate (400) are in contact with the filtering baffle (202), a collecting chamber (404) is fixedly connected in the inside of the water inlet pipe (101), and a driving assembly for driving the speed reduction rotating shaft (402) is arranged in the inside of the water inlet pipe (101).
2. The on-line water quality testing device of claim 1, wherein the driving assembly comprises a driven rotating shaft (200) rotatably connected to the inside of the water inlet pipe (101), the driven rotating shaft (200) is connected with a speed reduction rotating shaft (402), a driven bevel gear (302) is fixedly connected to the outer surface of the driven rotating shaft (200), a driving rotating shaft (300) is rotatably connected to the inside of the water inlet pipe (101), a driving bevel gear (301) is fixedly connected to the bottom of the driving rotating shaft (300), and the driving bevel gear (301) is meshed with the driven bevel gear (302).
3. The on-line water quality testing device of claim 2, wherein the top of the water inlet pipe (101) is fixedly connected with a micro motor (303), and the output end of the micro motor (303) extends to the top of the driving rotating shaft (300) and is fixedly connected with the driving rotating shaft.
4. The on-line water quality detection device according to claim 3, wherein a planetary gear reducer (401) is arranged in the water inlet pipe (101), an input end of the planetary gear reducer (401) is fixedly connected with the driven rotating shaft (200), and an output end of the planetary gear reducer (401) is fixedly connected with the speed reduction rotating shaft (402).
5. The on-line water quality testing device of claim 2, wherein the inner part of the water inlet pipe (101) is provided with a pump chamber (103), the outer surface of the driven rotating shaft (200) is uniformly and fixedly connected with a plurality of water turbine blades (201) in the pump chamber (103), and the plurality of water turbine blades (201) are matched with the inner wall of the pump chamber (103).
6. The on-line water quality testing device of claim 5, wherein the two ends of the water inlet pipe (101) are respectively and fixedly connected with a supporting frame (203), and the driven rotating shaft (200) and the decelerating rotating shaft (402) are respectively and rotatably connected with two supporting frames (203).
7. An in-line water quality testing apparatus according to claim 2, wherein the bottom of the collection chamber (404) is hinged with a sealing door (405), the sealing door (405) being sealed from the interior of the collection chamber (404).
8. The on-line water quality detection device of claim 1, wherein one end of the water inlet pipe (101) is fixedly connected with a flange plate (102), and a plurality of screw holes are uniformly formed in the flange plate (102).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422754829.2U CN223461563U (en) | 2024-11-12 | 2024-11-12 | An online water quality detection device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422754829.2U CN223461563U (en) | 2024-11-12 | 2024-11-12 | An online water quality detection device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223461563U true CN223461563U (en) | 2025-10-21 |
Family
ID=97355787
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422754829.2U Active CN223461563U (en) | 2024-11-12 | 2024-11-12 | An online water quality detection device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223461563U (en) |
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2024
- 2024-11-12 CN CN202422754829.2U patent/CN223461563U/en active Active
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