Wastewater monitoring device
By designing a wastewater monitoring device with automatic adjustment and collection mechanism, the problem that existing devices are inconvenient to collect and detect water samples at different locations is solved, and automated collection and detection is realized, and working efficiency is improved.
Patent Information
- Application Number
- CN202421157703.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-24
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-05-24
AI Technical Summary
The existing wastewater monitoring device is not convenient for collecting and testing water samples in different locations. Staff need to manually place water samples, which increases the workload of staff and reduces work efficiency.
A wastewater monitoring device including an installation cabinet, a driving mechanism, a regulating mechanism and a water intake mechanism is designed. Through the coordination of the servo motor and the telescopic tube, automatic adjustment of the filter head position and automatic collection and detection of water samples are achieved.
It realizes convenient collection and detection of water samples at different locations, reduces the amount of operation of staff and improves work efficiency.
Smart Images

Figure CN222952333U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wastewater monitoring, in particular to a wastewater monitoring device. Background Art
[0002] Wastewater monitoring is one of the main objects of environmental monitoring. All the work of wastewater monitoring includes the selection of monitoring items, water sample collection, water sample preservation and the analysis and determination of various test objects.
[0003] After searching, the patent number is CN218240021U, and the name is a utility model of an efficient wastewater monitoring device, including a trough plate and a round mouth. Through research and analysis, it is found that although it has the advantages of facilitating the disassembly and assembly of the wastewater monitoring device and improving work efficiency, it still has the following disadvantages to a certain extent.
[0004] For example, during the use of the device, it is not convenient to collect water samples at different locations, it is not convenient to test water samples at each location, and it is not convenient for staff to use. Staff are required to place water samples manually, which increases their workload and reduces work efficiency. In order to solve the above technical problems, we have designed a wastewater monitoring device. Utility Model Content
[0005] The purpose of the utility model is to provide a wastewater monitoring device, which has the advantages of convenient detection and sampling, and solves the problems that the device is inconvenient to collect water samples at different positions, inconvenient to detect water samples at various positions, inconvenient for staff to use, and requires staff to manually place water samples, which increases the workload of staff and reduces work efficiency.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a wastewater monitoring device, comprising an installation cabinet, a mounting plate is connected to the top of the installation cabinet by bolts, a water quality detector is installed on the front side of the top of the installation plate by bolts, a driving mechanism is arranged on the rear side of the installation cabinet, the driving mechanism includes a mounting frame, an adjustment mechanism is arranged on the top of the mounting frame, the adjustment mechanism includes a connecting plate and a first telescopic tube, a water intake mechanism is arranged on the rear side of the connecting plate, the water intake mechanism includes a second telescopic tube, a third servo motor is connected to the bottom of the installation plate by bolts, a loading hole plate is arranged on the top of the loading hole plate, and a water storage cup is arranged through the top of the loading hole plate.
[0007] Preferably, the driving mechanism includes a fixed plate, the front side of the fixed plate is connected to the mounting cabinet by bolts, the bottom of the fixed plate is connected to a first servo motor by bolts, the transmission shaft of the first servo motor is connected to a rotating plate by bolts, and the top of the rotating plate is connected to the mounting frame by bolts.
[0008] Preferably, the adjustment mechanism includes a vertical plate, the bottom of the vertical plate is connected to the mounting frame by bolts, the top of the mounting plate is connected to a water injection head by bolts, the surface of the vertical plate is connected to a second servo motor by bolts, the transmission shaft of the second servo motor is connected to a threaded rod by bolts, the surface of the threaded rod is threadedly sleeved with a threaded block, the rear side of the threaded block is connected to the connecting plate by bolts, the top of the vertical plate is connected to the first telescopic tube by bolts, and the front side of the mounting frame is connected to a water pump by bolts.
[0009] Preferably, the surface of the connecting plate is slidably connected to the vertical plate, the water suction pipe of the water pump is connected to the first telescopic pipe through a pipeline, and the water outlet pipe of the water pump is connected to the water injection head through a pipeline.
[0010] Preferably, the water intake mechanism includes a driving block, the rear side of the connecting plate is connected to the driving block by bolts, an electric telescopic rod is provided through the top of the driving block, the bottom of the electric telescopic rod is connected to a filter head by bolts, the top of the filter head is connected to a second telescopic tube, the top of the second telescopic tube is connected to the first telescopic tube, and the top of the driving block is connected to the first telescopic tube by bolts.
[0011] Preferably, a supporting ring plate is welded to the bottom of the carrier hole plate, and the bottom of the supporting ring plate is slidably connected to the mounting plate.
[0012] Compared with the prior art, the beneficial effects of the utility model are as follows:
[0013] 1. The utility model drives the rotating plate and the mounting frame to rotate through the transmission shaft of the first servo motor, drives the vertical plate, the threaded rod, the threaded block, the connecting plate and the driving block to rotate through the mounting frame, drives the electric telescopic rod, the filter head and the second telescopic tube to rotate through the driving block, and adjusts the position of the filter head; drives the threaded rod to rotate through the transmission shaft of the second servo motor, drives the threaded block, the connecting plate and the driving block to move forward and backward through the threaded rod, drives the electric telescopic rod, the filter head and the second telescopic tube to move forward and backward through the driving block, and adjusts the position of the filter head;
[0014] 2. After the utility model adjusts the position of the filter head, the electric telescopic rod is used to perform telescopic movement to drive the filter head to move up and down, and the filter head is inserted into the wastewater. The water pump pumps out the wastewater through the pipeline, the first telescopic tube and the second telescopic tube. The water pumped out by the water pump injects the wastewater into the water storage cup through the water injection head. The transmission shaft of the third servo motor drives the carrier orifice plate and the water storage cup to rotate, and the water storage cup containing the wastewater is rotated to the bottom of the detection head of the water quality detector. The wastewater is tested by the water quality detector to complete the monitoring of the wastewater. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is the axonometric drawing of the structure of the utility model;
[0016] Figure 2 It is a three-dimensional diagram of the third servo motor and the water storage cup of the utility model;
[0017] Figure 3 It is a three-dimensional diagram of the fixing plate and the mounting frame of the utility model;
[0018] Figure 4 It is a stereoscopic diagram of the water injection head and the second telescopic tube of the utility model.
[0019] In the figure: 1. installation cabinet; 2. installation plate; 3. water quality detector; 4. fixed plate; 5. first servo motor; 6. rotating plate; 7. mounting frame; 8. water injection head; 9. vertical plate; 10. second servo motor; 11. threaded rod; 12. threaded block; 13. connecting plate; 14. driving block; 15. first telescopic tube; 16. water pump; 17. electric telescopic rod; 18. filter head; 19. second telescopic tube; 20. third servo motor; 21. loading hole plate; 22. water storage cup; 23. driving mechanism; 24. adjusting mechanism; 25. water intake mechanism. DETAILED DESCRIPTION
[0020] See also Figure 1-Figure 4 A wastewater monitoring device includes an installation cabinet 1, the top of the installation cabinet 1 is connected to a mounting plate 2 by bolts, a water quality detector 3 is installed on the front side of the top of the installation plate 2 by bolts, a driving mechanism 23 is arranged on the rear side of the installation cabinet 1, the driving mechanism 23 includes a mounting frame 7, an adjusting mechanism 24 is arranged on the top of the mounting frame 7, the adjusting mechanism 24 includes a connecting plate 13 and a first telescopic tube 15, a water intake mechanism 25 is arranged on the rear side of the connecting plate 13, the water intake mechanism 25 includes a second telescopic tube 19, a third servo motor 20 is connected to the bottom of the installation plate 2 by bolts, a loading hole plate 21 is arranged on the top of the third servo motor 20, and a water storage cup 22 is arranged through the top of the loading hole plate 21.
[0021] See also Figure 1 and Figure 3 The driving mechanism 23 includes a fixed plate 4, the front side of the fixed plate 4 is connected to the installation cabinet 1 by bolts, the bottom of the fixed plate 4 is connected to the first servo motor 5 by bolts, the transmission shaft of the first servo motor 5 is connected to the rotating plate 6 by bolts, and the top of the rotating plate 6 is connected to the mounting frame 7 by bolts. By setting the rotating plate 6, the mounting frame 7 can be supported and the mounting frame 7 can be rotated stably.
[0022] See also Figure 1 and Figure 4The adjusting mechanism 24 includes a vertical plate 9, the bottom of the vertical plate 9 is connected to the mounting frame 7 by bolts, the top of the mounting plate 2 is connected to a water injection head 8 by bolts, the surface of the vertical plate 9 is connected to a second servo motor 10 by bolts, and the transmission shaft of the second servo motor 10 is connected to a threaded rod 11 by bolts. By setting the vertical plate 9, it is convenient to support the second servo motor 10 and the threaded rod 11, and it is convenient for the second servo motor 10 and the threaded rod 11 to work normally. A threaded block 12 is threadedly sleeved on the surface of the threaded rod 11, and the rear side of the threaded block 12 is connected to a connecting plate 13 by bolts. The top of the vertical plate 9 is connected to the first telescopic tube 15 by bolts, and the front side of the mounting frame 7 is connected to a water pump 16 by bolts.
[0023] See also Figure 4 The surface of the connecting plate 13 is slidably connected to the vertical plate 9, and the water suction pipe of the water pump 16 is connected to the first telescopic tube 15 through a pipeline. By setting the first telescopic tube 15, it is convenient to perform telescopic movement, which can facilitate the movement of the driving block 14. The water outlet pipe of the water pump 16 is connected to the water injection head 8 through a pipeline.
[0024] See also Figure 1 and Figure 4 The water intake mechanism 25 includes a driving block 14, the rear side of the connecting plate 13 is connected to the driving block 14 by bolts, an electric telescopic rod 17 is provided through the top of the driving block 14, the bottom of the electric telescopic rod 17 is connected to the filter head 18 by bolts, and the top of the filter head 18 is connected to the second telescopic tube 19. By providing the second telescopic tube 19, it is convenient to perform telescopic movement, it is convenient to provide activity space for the filter head 18, and it is convenient to move the filter head 18. The top of the second telescopic tube 19 is connected to the first telescopic tube 15, and the top of the driving block 14 is connected to the first telescopic tube 15 by bolts.
[0025] See also Figure 1 and Figure 2 A supporting ring plate is welded to the bottom of the loading hole plate 21, and the bottom of the supporting ring plate is slidably connected to the mounting plate 2. By setting the supporting ring plate, the loading hole plate 21 can be supported and rotated.
[0026] When in use, the device is controlled by an external controller, the transmission shaft of the first servo motor 5 drives the rotating plate 6 and the mounting frame 7 to rotate, the mounting frame 7 drives the vertical plate 9, the threaded rod 11, the threaded block 12, the connecting plate 13 and the driving block 14 to rotate, the driving block 14 drives the electric telescopic rod 17, the filter head 18 and the second telescopic tube 19 to rotate, and the position of the filter head 18 is adjusted, the transmission shaft of the second servo motor 10 drives the threaded rod 11 to rotate, the threaded block 12, the connecting plate 13 and the driving block 14 are driven to move back and forth through the threaded rod 11, and the electric telescopic rod 17, the filter head 18 and the second telescopic tube 19 are driven to move back and forth through the driving block 14, and the position of the filter head 18 is adjusted. After the position adjustment of 18 is completed, the electric telescopic rod 17 is used to make a telescopic movement to drive the filter head 18 to move up and down, and the filter head 18 is inserted into the wastewater. The water pump 16 pumps out the wastewater through the pipeline, the first telescopic tube 15 and the second telescopic tube 19. The water pumped out by the water pump 16 is injected into the water storage cup 22 through the water injection head 8. Then, the position of the filter head 18 is adjusted again through the above operation, and water samples at different positions are extracted. The extracted water can be received through different water storage cups 22. The transmission shaft of the third servo motor 20 drives the carrier orifice plate 21 and the water storage cup 22 to rotate, and the water storage cup 22 containing the wastewater is rotated to the bottom of the detection head of the water quality detector 3. The wastewater is detected by the water quality detector 3 to complete the monitoring of the wastewater.
[0027] To sum up: the wastewater monitoring device, through the second telescopic tube 19, the third servo motor 20, the loading hole plate 21, the water storage cup 22, the driving mechanism 23, the adjustment mechanism 24 and the water intake mechanism 25, solves the problem that the device is inconvenient to collect water samples at different positions, inconvenient to detect water samples at various positions, inconvenient for staff to use, and requires staff to manually place water samples, which increases the workload of staff and reduces work efficiency.
Claims
1. A wastewater monitoring device, comprising an installation cabinet (1), characterized in that: The top of the installation cabinet (1) is connected to a mounting plate (2) by bolts, and a water quality detector (3) is installed on the front side of the top of the installation plate (2) by bolts. A driving mechanism (23) is arranged on the rear side of the installation cabinet (1), and the driving mechanism (23) includes a mounting frame (7). An adjusting mechanism (24) is arranged on the top of the mounting frame (7). The adjusting mechanism (24) includes a connecting plate (13) and a first telescopic tube (15). A water intake mechanism (25) is arranged on the rear side of the connecting plate (13), and the water intake mechanism (25) includes a second telescopic tube (19). The bottom of the installation plate (2) is connected to a third servo motor (20) by bolts, and a loading hole plate (21) is arranged on the top of the third servo motor (20), and a water storage cup (22) is arranged through the top of the loading hole plate (21).
2. A wastewater monitoring device according to claim 1, characterized in that: The driving mechanism (23) comprises a fixed plate (4), the front side of the fixed plate (4) is connected to the installation cabinet (1) by bolts, the bottom of the fixed plate (4) is connected to a first servo motor (5) by bolts, the transmission shaft of the first servo motor (5) is connected to a rotating plate (6) by bolts, and the top of the rotating plate (6) is connected to a mounting frame (7) by bolts.
3. A wastewater monitoring device according to claim 1, characterized in that: The adjusting mechanism (24) comprises a vertical plate (9), the bottom of the vertical plate (9) is connected to the mounting frame (7) by bolts, the top of the mounting plate (2) is connected to a water injection head (8) by bolts, the surface of the vertical plate (9) is connected to a second servo motor (10) by bolts, the transmission shaft of the second servo motor (10) is connected to a threaded rod (11) by bolts, the surface of the threaded rod (11) is threadedly sleeved with a threaded block (12), the rear side of the threaded block (12) is connected to a connecting plate (13) by bolts, the top of the vertical plate (9) is connected to a first telescopic tube (15) by bolts, and the front side of the mounting frame (7) is connected to a water pump (16) by bolts.
4. A wastewater monitoring device according to claim 3, characterized in that: The surface of the connecting plate (13) is slidably connected to the vertical plate (9), the water suction pipe of the water pump (16) is connected to the first telescopic pipe (15) through a pipeline, and the water outlet pipe of the water pump (16) is connected to the water injection head (8) through a pipeline.
5. A wastewater monitoring device according to claim 1, characterized in that: The water intake mechanism (25) comprises a driving block (14), the rear side of the connecting plate (13) is connected to the driving block (14) by bolts, an electric telescopic rod (17) is provided through the top of the driving block (14), the bottom of the electric telescopic rod (17) is connected to a filter head (18) by bolts, the top of the filter head (18) is connected to a second telescopic tube (19), the top of the second telescopic tube (19) is connected to the first telescopic tube (15), and the top of the driving block (14) is connected to the first telescopic tube (15) by bolts.
6. A wastewater monitoring device according to claim 1, characterized in that: A supporting ring plate is welded to the bottom of the object-carrying hole plate (21), and the bottom of the supporting ring plate is slidably connected to the mounting plate (2).
Citation Information
Patent Citations
Efficient wastewater monitoring device
CN218240021U