Sewage pipeline detection device

By installing a connecting ring and control valve inside the sewage pipeline, combined with a water pump and a detector, the problem of sewage detection devices being unable to be installed in sewage pipelines was solved, enabling real-time detection inside the sewage pipeline and simplifying the operation process.

CN223965273UActive Publication Date: 2026-03-03CHIZHOU DEQI ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202520525281.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2026-03-03
Estimated Expiration
2035-03-25

AI Technical Summary

Technical Problem

Existing wastewater detection devices cannot be installed in wastewater pipelines for real-time monitoring, and therefore cannot obtain specific information about the wastewater in real time.

Method used

A sewage pipeline detection device was designed. By setting connecting rings on both sides of the installation pipe and installing a moving plate and slider inside the control valve, combined with a water pump and a detector, the sewage can be circulated and detected in the pipeline. The connecting rings are connected to the sewage pipeline flange, the moving plate controls the sewage flow direction, the slider stabilizes the moving plate, and the water pump pumps out the detected sewage.

Benefits of technology

It enables convenient detection of sewage inside pipelines, eliminating the need for operators to take samples and allowing for real-time monitoring of sewage conditions. The detection process is convenient and efficient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a sewage pipeline detection device. The sewage pipeline detection device comprises a mounting pipe, connecting rings are arranged on two sides of the mounting pipe, two groups of first communicating pipes are symmetrically mounted at the bottom of the mounting pipe, the bottoms of the group of first communicating pipes on the left side are connected with a control valve through the first connecting pipes, and the first connecting pipes are mounted at the top and the bottom of the control valve. The movable plate is installed in the control valve, the control valve can be closed through the movable plate, the two first connecting pipes are not communicated with each other, the screw rod is rotationally connected to the left side of the movable plate, the movable plate can be driven to move left and right by rotating the screw rod, and therefore opening and closing of the control valve can be achieved through movement of the movable plate. Therefore, an operator can control whether sewage in a sewage pipeline enters a second guide pipe and a second communicating pipe through a control valve or not and finally enters a detector when flowing through the mounting pipe.
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Description

Technical Field

[0001] This utility model belongs to the field of sewage treatment technology, and in particular relates to a sewage pipeline detection device. Background Technology

[0002] Wastewater treatment refers to the process of treating and purifying wastewater containing various organic matter, inorganic matter, suspended solids, microorganisms, and other pollutants generated in urban, industrial, and rural areas. Wastewater treatment involves separating, transforming, or decomposing pollutants and harmful substances in wastewater through physical, chemical, and biological methods to purify the wastewater. To protect the environment and human health, the state has established corresponding standards for wastewater discharge. The primary goal of wastewater treatment is to meet national discharge standards and reduce environmental pollution. After treatment, the treated water can be reused, such as for farmland irrigation and industrial use, thereby achieving water conservation and utilization. Wastewater treatment can also repair damaged ecosystems and improve their health and stability. Wastewater testing is necessary during the treatment process.

[0003] Current wastewater testing devices require wastewater to be removed from the wastewater pipes for testing, making it impossible to install the device inside the pipes for real-time monitoring. Consequently, it is impossible to obtain specific information about the wastewater in real time. Therefore, it is necessary to provide a wastewater pipe testing device to solve the above problems. Utility Model Content

[0004] The technical content of this utility model is to provide a sewage pipeline detection device.

[0005] To address the aforementioned problems, this utility model provides a sewage pipeline detection device, including an installation pipe with connecting rings on both sides. Two sets of first connecting pipes are symmetrically installed at the bottom of the installation pipe. The bottom of the left set of first connecting pipes is connected to a control valve via a first connecting pipe. The top and bottom of the control valve are both equipped with first connecting pipes. The bottom of the right set of first connecting pipes is connected to a first conduit. The bottom of the control valve is connected to a second conduit, and the bottom of the second conduit is connected to a second connecting pipe. The second connecting pipe is installed on top of the detector. A water pump is installed on the right side of the instrument. A third connecting pipe is installed on the top of the water pump and is connected to the first conduit. A partition plate is installed in the middle of the control valve. A movable plate is installed inside the control valve. Sliding grooves are opened on both sides of the movable plate, in which sliders are installed. A pull plate is installed on the left side of the movable plate. A screw is connected to the left side of the pull plate. A screw tube is installed on the outside of the screw. A throttle is installed at the left end of the screw. A base plate is installed at the bottom of the detector. Fixed tubes are installed at the four corners of the base plate. Positioning rods are installed in the fixed tubes.

[0006] As a further solution of this utility model, six sets of fixing holes are evenly opened on the connecting ring, and through holes are opened at the top and bottom of the control valve. The through holes are located in the right side area of ​​the partition plate. Two sets of first connecting pipes are installed on the two sets of through holes, and the first connecting pipes are connected to the internal structure of the control valve.

[0007] As a further solution of this utility model, the size of the movable plate installed inside the control valve is adapted to the right side size of the internal partition plate of the control valve. A through groove adapted to the movable plate is opened in the middle of the partition plate. The left side of the movable plate is flush with the left side of the partition plate. The screw installed on the left side of the pull plate is rotatably connected to the pull plate. The screw is set in the left side area of ​​the internal partition plate of the control valve. The screw tube is installed in the mounting hole opened on the left side of the control valve. The screw passes through the screw tube and extends out of the control valve. The handle is set as a T-shaped structure, and the screw can be rotated by the handle.

[0008] As a further solution of this utility model, the slider is fixedly installed on the inner walls of both sides of the right side region of the inner partition plate of the control valve. The length of the slider is the same as the length of the right side region of the inner partition plate of the control valve. The two sets of sliders can play a role in vertical stabilizing the moving plate.

[0009] As a further solution of this utility model, the fixing tube is fixedly installed in the through holes opened at the four corners of the base plate, the top of the positioning rod is set as a hexagonal structure, and the outer side of the positioning rod and the inner side of the fixing tube are provided with matching threaded grooves. By rotating the positioning rod, the positioning rod can be moved along the fixing tube.

[0010] As a further solution of this utility model, the water pump is connected to the detector, and the water pump can pump the sewage out of the detector.

[0011] Compared with related technologies, the sewage pipeline detection device provided by this utility model has the following beneficial effects:

[0012] 1. This utility model involves installing connecting rings on both sides of the installation pipe, with six sets of fixing holes evenly spaced on the connecting rings to connect to the flange assembly of the sewage pipe. This allows the installation pipe to be installed into the sewage pipe. During installation, the water flow direction should be from left to right inside the installation pipe, allowing sewage to flow into the detector for testing. After testing, the sewage is pumped back into the installation pipe by a pump installed on the right side of the detector, thus achieving a sewage testing cycle. This eliminates the need for operators to take samples during sewage testing; simply installing the device into the sewage pipe is sufficient, making it extremely convenient.

[0013] 2. This utility model installs a movable plate inside the control valve. The movable plate can close the control valve, making the two sets of first connecting pipes disconnected from each other. A screw is rotatably connected to the left side of the movable plate. Rotating the screw can drive the movable plate to move left and right. Thus, the movement of the movable plate can realize the opening and closing of the control valve, thereby controlling the connection and closure of the two sets of first connecting pipes. This allows the operator to control whether the sewage in the sewage pipe flows through the installation pipe and enters the second conduit and the second connecting pipe through the control valve and finally enters the detector.

[0014] 3. This utility model installs a slider on the inside of the control valve. The slider is fixedly installed on the inner walls of the right side area of ​​the inner partition plate of the control valve. The length of the slider is the same as the length of the right side area of ​​the inner partition plate of the control valve. The sliding plate has grooves on both sides, and the slider is in the grooves. During the movement of the moving plate, the slider moves relative to the grooves on both sides of the moving plate. The two sets of sliders can play a role in vertical stabilization of the moving plate, so that the moving plate will not sway vertically due to the downward pressure of the water flow. Attached Figure Description

[0015] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings.

[0016] Figure 1 This is a top-view three-dimensional structural diagram of a sewage pipeline detection device according to the present invention;

[0017] Figure 2 This is a bottom-view three-dimensional structural diagram of a sewage pipeline detection device according to the present invention;

[0018] Figure 3 This is a top view of the base plate structure of a sewage pipeline detection device according to the present invention;

[0019] Figure 4 This is a top view schematic diagram of the control valve structure of a sewage pipeline detection device according to the present invention;

[0020] Figure 5 This is a cross-sectional view of the control valve structure of a sewage pipeline detection device according to the present invention;

[0021] Figure 6 This is a schematic diagram of the internal structure of the control valve of a sewage pipeline detection device according to the present invention.

[0022] In the diagram: 1. Installation pipe; 2. Connecting ring; 3. First connecting pipe; 4. First connecting pipe; 5. Control valve; 6. First conduit; 7. Second conduit; 8. Second connecting pipe; 9. Detector; 10. Water pump; 11. Third connecting pipe; 12. Divider plate; 13. Moving plate; 14. Slider; 15. Pull plate; 16. Screw; 17. Screw tube; 18. Turning handle; 19. Base plate; 20. Fixing pipe; 21. Positioning rod. Detailed Implementation

[0023] Please refer to the following: Figure 1-6 A sewage pipeline detection device includes an installation pipe 1, with connecting rings 2 on both sides of the installation pipe 1. Two sets of first connecting pipes 3 are symmetrically installed at the bottom of the installation pipe 1. The bottom of the left set of first connecting pipes 3 is connected to a control valve 5 via a first connecting pipe 4. The top and bottom of the control valve 5 are both connected to the first connecting pipe 4. The bottom of the right set of first connecting pipes 3 is connected to a first conduit 6. The bottom of the control valve 5 is connected to a second conduit 7. The bottom of the second conduit 7 is connected to a second connecting pipe 8. The second connecting pipe 8 is installed on the top of a detector 9. A water pump 10 is installed on the right side of the detector 9. A third connecting pipe 11 is installed at the top of the control valve 5, and the third connecting pipe 11 is connected to the first conduit 6. A partition plate 12 is installed in the middle of the control valve 5. A movable plate 13 is installed inside the control valve 5. Slide grooves are opened on both sides of the movable plate 13, in which sliders 14 are installed. A pull plate 15 is installed on the left side of the movable plate 13. A screw 16 is connected to the left side of the pull plate 15. A screw tube 17 is installed on the outside of the screw 16. A throttle 18 is installed at the left end of the screw 16. A base plate 19 is installed at the bottom of the detector 9. A fixing pipe 20 is installed at the four corners of the base plate 19. A positioning rod 21 is installed in the fixing pipe 20.

[0024] Preferably, six sets of fixing holes are evenly provided on the connecting ring 2 so as to connect it to the flange assembly of the sewage pipe, thereby installing the installation pipe 1 into the sewage pipe. When installing the installation pipe 1, the water flow direction needs to be from left to right inside the installation pipe 1. The top and bottom of the control valve 5 are provided with through holes, which are located in the right side area of ​​the partition plate 12. Two sets of first connecting pipes 4 are installed on the two sets of through holes, thereby connecting the internal structure of the first connecting pipes 4 and the control valve 5.

[0025] Preferably, the dimensions of the movable plate 13 installed inside the control valve 5 are adapted to the right side dimensions of the internal partition plate 12 of the control valve 5. The movable plate 13 can close the control valve 5, preventing the two sets of first connecting pipes 4 from communicating with each other. A through groove adapted to the movable plate 13 is opened in the middle of the partition plate 12. The left side of the movable plate 13 is flush with the left side of the partition plate 12. The screw 16 installed on the left side of the pull plate 15 is rotatably connected to the pull plate 15. The screw 16 is located in the left side region of the internal partition plate 12 of the control valve 5. The screw tube 17 is installed in the mounting hole opened on the left side of the control valve 5. The screw 16 passes through the helical tube 17 and extends out of the control valve 5. The handle 18 is set with a T-shaped structure. The screw 16 can be rotated by the handle 18, which causes the screw 16 to move along the helical tube 17, thereby driving the moving plate 13 to move along the through groove opened on the partition plate 12. The movement of the moving plate 13 can realize the opening and closing of the control valve 5, thereby controlling the connection and closure of the two sets of first connecting pipes 4. This allows the operator to control whether the sewage in the sewage pipe flows through the installation pipe 1 and enters the second conduit 7 and the second connecting pipe 8 through the control valve 5 and finally enters the detector 9.

[0026] Preferably, the slider 14 is fixedly installed on the inner walls of both sides of the right side region of the inner partition plate 12 of the control valve 5. The length of the slider 14 is the same as the length of the right side region of the inner partition plate 12 of the control valve 5. During the movement of the moving plate 13, the slider 14 moves relative to the grooves opened on both sides of the moving plate 13. The two sets of sliders 14 can play a role in vertical stabilization of the moving plate 13, so that the moving plate 13 will not sway vertically due to the downward pressure of the water flow.

[0027] Preferably, the fixing pipe 20 is fixedly installed in the through holes opened at the four corners of the base plate 19. The top of the positioning rod 21 is set as a hexagonal structure. The outer side of the positioning rod 21 and the inner side of the fixing pipe 20 are provided with matching threaded grooves. By rotating the positioning rod 21, the positioning rod 21 can be moved along the fixing pipe 20, and the positioning rod 21 can be installed on the ground or equipment near the sewage pipe. Thus, the base plate 19 is fixedly installed by the four sets of positioning rods 21, thereby realizing the fixed installation of the whole device near the sewage pipe.

[0028] Preferably, the water pump 10 and the detector 9 are connected. When the sewage flows through the installation pipe 1, it enters the control valve 5 through the first connecting pipe 3 on the left side, and then enters the second conduit 7 through the first connecting pipe 4 at the bottom of the control valve 5. Then it enters the detector 9 through the second connecting pipe 8. The detector 9 can detect and analyze the sewage. The detector 9 is commercially available. The water pump 10 can send the sewage in the detector 9 into the third connecting pipe 11 at the top of the water pump 10. Then the sewage enters the first conduit 6, and then enters the first connecting pipe 3 on the right side at the bottom of the installation pipe 1 and finally returns to the interior of the installation pipe 1, thereby realizing the sewage detection cycle.

[0029] The standard parts used in this embodiment can be purchased directly from the market, and can also be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art, and the structure and principle of the components known to those skilled in the art can be known by those skilled in the art through technical manuals or conventional experimental methods.

[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made to these embodiments, or they can be used directly or indirectly, without departing from the principles and spirit of the present invention. In other related technical fields, the scope of the present invention is defined by the appended claims and their equivalents, and they are similarly included within the patent protection scope of the present invention.

Claims

1. A sewer pipeline detection device comprising a mounting tube (1), two sides of the mounting tube (1) are provided with connecting rings (2), characterized in that: The bottom of the installation pipe (1) is symmetrically provided with two groups of first communication pipes (3), the bottom of the first communication pipe (3) on the left side is connected with a control valve (5) through a first connecting pipe (4), the top and bottom of the control valve (5) are provided with the first connecting pipe (4), the bottom of the first communication pipe (3) on the right side is connected with a first guide pipe (6), the bottom of the control valve (5) is connected with a second guide pipe (7), the bottom of the second guide pipe (7) is connected with a second communication pipe (8), the second communication pipe (8) is installed on the top of a detector (9), a water pump (10) is installed on the right side of the detector (9), a third communication pipe (11) is installed on the top of the water pump (10) and connected with the first guide pipe (6), a partition plate (12) is installed in the middle of the control valve (5), a moving plate (13) is installed in the control valve (5), sliding grooves are formed in the two sides of the moving plate (13) and provided with sliding blocks (14), a pull plate (15) is installed on the left side of the moving plate (13), a screw rod (16) is connected with the left side of the pull plate (15), a screw pipe (17) is installed on the outer side of the screw rod (16), a rotating handle (18) is installed on the left end of the screw rod (16), a bottom plate (19) is installed on the bottom of the detector (9), fixed pipes (20) are installed at the four corners of the bottom plate (19) and provided with positioning rods (21).

2. A sewer pipeline inspection apparatus as claimed in claim 1, wherein: Six groups of fixed holes are uniformly formed in the connecting ring (2), and through holes are formed in the top and bottom of the control valve (5) and located in the right side area of the partition plate (12), two groups of first connecting pipes (4) are installed on the two groups of through holes and connected with the internal structure of the control valve (5).

3. A sewer pipeline inspection apparatus as defined in claim 1, wherein: The size of the moving plate (13) installed in the control valve (5) is matched with the size of the right side of the internal partition plate (12) of the control valve (5), a through groove matched with the moving plate (13) is formed in the middle of the partition plate (12), the left side of the moving plate (13) is flush with the left side of the partition plate (12), the screw rod (16) installed on the left side of the pull plate (15) is rotationally connected with the pull plate (15), the screw rod (16) is arranged in the left side area of the internal partition plate (12) of the control valve (5), the screw pipe (17) is installed in the mounting hole formed in the left side of the control valve (5), the screw rod (16) passes through the screw pipe (17) and extends out of the control valve (5), and the rotating handle (18) is arranged in a T-shaped structure.

4. A sewer pipeline inspection apparatus as defined in claim 1, wherein: The sliding blocks (14) are fixedly installed on the two inner walls of the right side area of the internal partition plate (12) of the control valve (5), and the length of the sliding blocks (14) is the same as the length of the right side area of the internal partition plate (12) of the control valve (5).

5. A sewer pipeline inspection apparatus as defined in claim 1, wherein: The fixed pipes (20) are fixedly installed in the through holes formed at the four corners of the bottom plate (19), the top of the positioning rod (21) is arranged in a hexagonal structure, and the outer side of the positioning rod (21) and the inner side of the fixed pipe (20) are provided with matched screw grooves.

6. A sewer pipeline inspection apparatus as defined in claim 1, wherein: The water pump (10) is connected with the detector (9).