Intelligent sewage monitor
By improving the float structure and the protective design of the pH sensor, the problems of unstable floating of the monitor and easy damage to the sensor were solved, achieving higher stability and monitoring accuracy.
Patent Information
- Application Number
- CN202422833375.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Traditional wastewater monitoring instruments are unstable and prone to tipping over, and the pH sensors lack protection, affecting the accuracy of monitoring results.
A combined structure of float plate, float ring, extension plate, mounting ring, buffer plate and counterweight was designed to enhance floating stability, and a protective structure was set on the outside of the pH sensor to prevent debris from impacting it.
This improves the stability of the monitoring instrument on the water surface and the protection of the pH sensor, ensuring the accuracy of the monitoring results.
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Figure CN223565681U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of mechatronics, specifically relates to a sewage intelligent monitor. BACKGROUND
[0002] Water quality monitor has very extensive water quality detection and test application, such as river, lake, pond, dam, well, ocean, groundwater, industrial wastewater, municipal sewage, agricultural water, fish farm etc., need to use water quality monitor to monitor and analyze water quality in the process of sewage treatment, and the traditional monitoring mode is to take sample to the monitoring water area, and then detect through the laboratory, and this monitoring mode is more cumbersome, and the detection period is long, so that the result of detection will produce deviation, and at the same time, the work burden of monitoring personnel is increased.
[0003] After retrieval, the prior art discloses an intelligent water quality monitor for sewage treatment (publication number: CN206627506U), which is recorded in the document "the top of the sealing shell is provided with a solar cell panel, the bottom of the sealing shell is provided with a foam float plate, the bottom of the foam float plate is provided with a connecting shaft sleeve, the bottom of the connecting shaft sleeve is inserted with a PH sensor, the inner cavity of the sealing shell is provided with a central processing unit, the top of the central processing unit is connected with a voltage stabilizer through a wire, the input end of the voltage stabilizer is connected with a battery pack through a wire, the input end of the battery pack is connected with a power interface through a wire, the left side of the central processing unit is connected with an A / D converter through a data line, the output end of the A / D converter is connected with a GPS locator and a data extractor through a data line, the output end of the data extractor is connected with a data interface through a data line, the bottom of the central processing unit is connected with a storage hard disk through a data line, the right side of the central processing unit is connected with a data collector and a wireless data transmitter through a data line, and the output end of the data collector is connected with a data comparator through a data line." The monitor can monitor the PH value of the monitored water area in real time by placing the PH sensor in the water. The PH value monitored by the PH sensor and the water area position data monitored by the GPS locator are compared by the data comparator. The comparison result of the monitoring data is transmitted to the server of the monitoring center through the wireless data transmitter, so that the monitoring personnel can master the PH value in the monitored water area at any time, and the pollution content of the monitored water area is judged, and the work burden of the monitoring personnel is reduced. However, the monitor is only floated on the water surface by the foam float plate, and the weight above the monitor is relatively large, which leads to the fact that the monitor is easily turned on one side by accident when floating on the water surface, thereby being not conducive to the monitoring of sewage. If the volume of the foam float plate is increased, the convenience of carrying or storing the monitor will be reduced. In addition, the PH sensor of the monitor lacks a corresponding protection structure on the outside, so that the PH sensor is easily damaged by the impact of moving debris in the sewage, thereby increasing the probability of damage of the monitor and affecting the accuracy of the water quality data monitoring result. Practical new type content
[0004] In order to overcome the defects of the prior art, the present application provides an intelligent sewage monitor to solve the problems in the background art.
[0005] In order to achieve the above object, the utility model provides a sewage intelligent monitor, it includes: floating plate and filter board, the upper surface fixed connection intelligent control assembly is connected to the solar cell panel on the upper surface of intelligent control assembly, the lower surface fixed connection PH sensor is connected to the connecting shaft sleeve of floating plate outside symmetry opening storage groove, and the extension board is connected in the storage groove through the spring, and the position corresponding to the limiting rod is opened the limiting groove on the extension board surface, and the edge fixed connection float ring is connected to the lower surface of floating plate, both ends of filter board are fixedly connected with mounting ring and counterweight, and the mounting ring is fixedly connected with the connecting shaft sleeve through the bolt, and the PH sensor is located in the filter board inside, and the outside symmetry connection buffer board of filter board.
[0006] Preferably, the floating plate is in a circular structure, the floating ring fixedly connected to the lower surface of the floating plate is in a circular ring structure, the axial section of the floating ring is in a right trapezoidal structure, the floating cavity opened in the floating ring is in a circular ring structure, and the outer arc surface of the floating ring is in an inclined surface structure.
[0007] Preferably, the outer arc surface of the floating plate is equidistantly opened with four groups of storage grooves along the circumference, the four groups of storage grooves are in a rectangular structure, two groups of buffer grooves are symmetrically opened on the side surface of the storage groove, and one group of springs is fixedly connected in the two groups of buffer grooves.
[0008] Preferably, the extension board is in a rectangular structure, the size of the extension board and the storage groove is matched, the end surface of one end of the extension board is in an arc surface structure, two groups of springs are fixedly connected to the end surface of the other end of the extension board, and the limiting groove opened on the surface of the extension board is in a strip-shaped structure.
[0009] Preferably, the mounting ring is in a whole circular ring structure, the axial section of the mounting ring is in an L-shaped structure, the size of one end of the inner cavity of the mounting ring is matched with the size of the outer side surface of the connecting shaft sleeve, and the size of the other end of the inner cavity of the mounting ring is greater than the size of the outer side surface of the PH sensor.
[0010] Preferably, the filter board fixedly connected to the lower surface of the mounting ring is in a cylindrical structure, the size of the inner side surface of the filter board is greater than the size of the outer side surface of the PH sensor, a plurality of buffer boards are fixedly connected to the outer arc surface of the filter board along the circumference at equidistant intervals, the buffer board is in a semicircular ring structure, and the counterweight fixedly connected to the lower end of the filter board is in a circular structure.
[0011] Preferably, the outer arc surface of the floating plate is movably connected with one end of the limiting plate through the bearing near the opening of the storage groove, the four groups of limiting plates and the four groups of storage grooves are one-to-one corresponding, and the limiting plate is in a rectangular structure.
[0012] Compared with the prior art, the utility model have the advantages that through the cooperation of the extension plate, the limiting rod and the floating ring, the actual contact area between the floating plate and the water surface can be increased, thereby the stability of the monitoring instrument when floating on the water surface can be effectively enhanced, the probability of overturning due to accidents is reduced, the floating plate and the extension plate can be stored, thereby the convenience of carrying or storing the monitoring instrument is not reduced, through the cooperation of the mounting ring, the buffer plate, the filter plate and the counterweight, the protective structure can be arranged on the outer side of the PH sensor, the probability of the PH sensor being impacted by the sundries in the sewage during use is reduced, thereby the probability of the monitoring instrument being damaged is reduced, the accuracy of the water quality monitoring structure is ensured, and the stability of the monitoring instrument when floating on the water surface is further enhanced. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a front view schematic diagram of the utility model embodiment.
[0014] Figure 2 It is a floating plate top view schematic diagram of the utility model embodiment.
[0015] Figure 3 It is a bottom view schematic diagram of the utility model embodiment.
[0016] Figure 4 It is a floating plate and floating ring cross section structure schematic diagram of the utility model embodiment.
[0017] In the drawing: 1, intelligent control assembly;2, floating plate;3, limiting rod;4, limiting plate;5, extension plate;6, limiting groove;7, floating ring;8, connecting shaft sleeve;9, mounting ring;10, buffer plate;11, PH sensor;12, filter plate;13, counterweight. DETAILED DESCRIPTION
[0018] Referring to Figures 1 to 4 As shown in the utility model provides a sewage intelligent monitoring instrument, including: floating plate 2 and filter plate 12, floating plate 2 upper surface fixed connection intelligent control assembly 1, intelligent control assembly 1 upper surface fixed connection solar cell panel, floating plate 2 lower surface through connecting shaft sleeve 8 fixed connection PH sensor 11, the floating plate 2 outer side face symmetry is set up and is stored in groove, and extension plate 5 is through spring sliding connection in storage groove, and storage groove top is through screw joint hole screw joint limiting rod 3, and extension plate 5 surface corresponding limiting rod 3's position set up limiting groove 6, while floating plate 2 lower surface's edge fixed connection floating ring 7, the both ends of filter plate 12 are fixed connection mounting ring 9 and counterweight 13 respectively, and mounting ring 9 is through bolt fixed connection connecting shaft sleeve 8, and PH sensor 11 is located in filter plate 12 inside, while filter plate 12 outer side face symmetry connects buffer plate 10.
[0019] In the embodiment, the sewage intelligent monitor is placed in the water area to be monitored, so that the floating plate 2 can float on the water surface, and the limiting plate 4 is rotated to release the limitation of the limiting plate 4 on the receiving groove, and then the extension plate 5 slides outward under the action of the compression spring, so that the extension plate 5 can be smoothly unfolded outside the floating plate 2, thereby increasing the actual contact area between the floating plate 2 and the water surface and enhancing the stability of the sewage intelligent monitor when floating. The floating ring 7 is arranged, which can not only enhance the buoyancy of the sewage intelligent monitor, but also assist in reducing the probability of the sewage intelligent monitor turning over. The filter plate 12, the buffer plate 10 and the counterweight 13 can be arranged outside the PH sensor 11 through the cooperation of the mounting ring 9, thereby effectively enhancing the protection effect of the sewage intelligent monitor on the PH sensor 11. When the impurities in the sewage hit the PH sensor 11, the impurities will first contact the buffer plate 10, and the buffer plate 10 weakens the impact force of the impurities through its own deformation. The arrangement of the filter plate 12 can further limit the impact distance of the impurities, so as to avoid the impurities directly impacting the PH sensor 11, thereby reducing the probability of damage of the PH sensor 11 and improving the stability of the sewage intelligent monitor in use and the accuracy of the water quality monitoring result.
[0020] Meanwhile, the solar cell panel and the PH sensor 11 in the present application are respectively electrically connected with the intelligent control assembly 1, and the installation of the related modules and the circuit structure inside the intelligent control assembly 1, and the working principle of the sewage intelligent monitor in the sewage monitoring process are all mature technologies, which have been fully disclosed in an intelligent water quality monitor for sewage treatment (publication number: CN206627506U).
[0021] As a preferred implementation manner, the floating plate 2 is in a circular structure, the floating ring 7 fixedly connected to the lower surface of the floating plate 2 is in a circular ring structure, and the axial section of the floating ring 7 is in a right trapezoidal structure. Meanwhile, the floating cavity inside the floating ring 7 is in a circular ring structure, and the outer arc surface of the floating ring 7 is in an inclined surface structure.
[0022] In the embodiment, as Figure 1 , Figure 3 and Figure 4 , the arrangement of the floating ring 7 can effectively enhance the buoyancy of the monitor as a whole, and the inclined surface structure of the outer side surface of the floating ring 7 can assist in enhancing the stability of the monitor when floating on the water surface.
[0023] As a preferred implementation manner, the outer arc surface of the floating plate 2 is circumferentially and equidistantly provided with four groups of receiving grooves, and the four groups of receiving grooves are all in rectangular structures, and two groups of buffer grooves are symmetrically arranged on the side surface of the receiving groove, and one group of springs is respectively fixedly connected in the two groups of buffer grooves.
[0024] In the embodiment, as Figure 1 and Figure 2The opening of the accommodating groove enables the inside of the floating plate 2 to accommodate the extension plate 5, thereby effectively reducing the overall volume of the monitor when the monitor is carried or stored, and improving the convenience and flexibility of the monitor when used.
[0025] As a preferable embodiment, the extension plate 5 is in a rectangular structure, the size of the extension plate 5 and the accommodating groove are matched, and the end face of one end of the extension plate 5 is in an arc face structure, the other end of the extension plate 5 is fixedly connected with two groups of springs, and the limiting groove 6 opened on the surface of the extension plate 5 is in a long strip structure.
[0026] In the embodiment, as shown in Figure 1 , Figure 2 and Figure 4 , the size of the extension plate 5 and the accommodating groove are matched, thereby assisting in enhancing the stability of the extension plate 5 when moving, and the size of the limiting rod 3 lower end and the limiting groove 6 are matched, so that the limiting rod 3 can limit the moving range of the extension plate 5 through the limiting groove 6, thereby reducing the probability that the extension plate 5 directly separates from the floating plate 2 under the action of the compression spring.
[0027] As a preferable embodiment, the mounting ring 9 is in a whole circular ring structure, the axial section of the mounting ring 9 is in an L-shaped structure, and the size of one end of the inner cavity of the mounting ring 9 which is relatively large is matched with the size of the outer side of the connecting shaft sleeve 8, and the size of the other end of the inner cavity of the mounting ring 9 which is relatively small is larger than the size of the outer side of the PH sensor 11.
[0028] In the embodiment, as shown in Figure 1 and Figure 3 , the mounting ring 9 is provided, so that the filter plate 12 can be stably arranged on the outer side of the PH sensor 11, thereby effectively enhancing the protection effect of the monitor on the PH sensor 11, and reducing the probability that the PH sensor 11 is damaged due to accidental impact.
[0029] As a preferable embodiment, the filter plate 12 fixedly connected with the lower surface of the mounting ring 9 is in a cylindrical structure, the size of the inner side of the filter plate 12 is larger than the size of the outer side of the PH sensor 11, a plurality of buffer plates 10 are fixedly connected with the outer circular arc surface of the filter plate 12 along the circumference at equal intervals, the buffer plate 10 is in a semi-circular ring structure, and the weight block 13 fixedly connected with the lower end of the filter plate 12 is in a circular structure.
[0030] In the embodiment, as shown in Figure 1 and Figure 3The size of the inner side of the filter plate 12 is greater than the size of the outer side of the PH sensor 11, so that the probability of the filter plate 12 directly impacting the PH sensor 11 when the filter plate 12 is deformed due to impact is effectively reduced, and the buffer plate 10 is made of rubber material, so that the impact force of the sundries in the sewage on the outer side of the filter plate 12 is effectively weakened through the buffer plate 10, thereby assisting in reducing the probability of the filter plate 12 being deformed due to impact, thereby enhancing the protection effect of the monitoring instrument on the PH sensor 11, and the counterweight 13 is arranged, thereby assisting in enhancing the stability of the monitoring instrument when floating.
[0031] As a preferred embodiment, the outer circular surface of the floating plate 2 is movably connected to one end of the limiting plate 4 through a bearing, and the four sets of limiting plates 4 and the four sets of receiving grooves are one-to-one corresponding, and the limiting plate 4 has a rectangular structure.
[0032] In the embodiment, as Figure 1 、 Figure 3 and Figure 4 , one end of the limiting plate 4 is movably connected to the outer side of the floating plate 2 through a bearing, so that the free end of the limiting plate 4 naturally droops under the action of gravity, and thus the limiting plate 4 can effectively limit the reset expansion of the extension plate 5 and the squeezed spring when the extension plate 5 is squeezed into the receiving groove, thereby improving the convenience of carrying and storing the monitoring instrument.
[0033] The sewage intelligent monitoring instrument can effectively increase the actual contact area between the floating plate 2 and the water surface through the cooperation of the floating plate 2, the floating ring 7, the limiting rod 3 and the extension plate 5, thereby assisting in enhancing the stability of the monitoring instrument when floating, and through the cooperation of the mounting ring 9, the filter plate 12, the buffer plate 10 and the counterweight 13, the protection effect of the monitoring instrument on the PH sensor 11 can be enhanced, and the stability of the monitoring instrument when floating can be assisted.
Claims
1. An intelligent sewage monitor comprising: The utility model provides a kind of intelligent control device for water quality monitoring, including floating plate (2) and filter plate (12), the upper surface of floating plate (2) is fixedly connected with intelligent control component (1), the upper surface of intelligent control component (1) is fixedly connected with solar cell panel, the lower surface of floating plate (2) is fixedly connected with PH sensor (11) by connecting shaft sleeve (8), it is characterized by: the outside of floating plate (2) is symmetrically provided with receiving groove, and extension plate (5) is slidably connected in receiving groove by spring, and the top of receiving groove is screwed with limiting rod (3) through screwing hole, and the surface of extension plate (5) is provided with limiting slot (6) corresponding to the position of limiting rod (3), while the edge of the lower surface of floating plate (2) is fixedly connected with float ring (7), and the both ends of filter plate (12) are respectively fixedly connected with mounting ring (9) and counterweight (13), and mounting ring (9) is fixedly connected with connecting shaft sleeve (8) by bolt, and PH sensor (11) is located in filter plate (12) inside, while the outside of filter plate (12) is symmetrically connected with buffer plate (10).
2. The intelligent sewage monitoring instrument according to claim 1, characterized in that, The floating plate (2) is circular structure, the floating ring (7) fixedly connected with the lower surface of the floating plate (2) is circular ring structure, and the axial section of the floating ring (7) is right trapezoidal structure, while the floating cavity provided in the floating ring (7) is circular ring structure, and the outer arc surface of the floating ring (7) is inclined surface structure.
3. The intelligent sewage monitoring instrument according to claim 1, characterized in that, The outer arc surface of the floating plate (2) is provided with four groups of receiving grooves at equal intervals in the circumferential direction, and the four groups of receiving grooves are all rectangular structures, and two groups of buffer grooves are symmetrically provided in the side surface of the receiving groove, and one group of springs is respectively fixedly connected in the two groups of buffer grooves.
4. The intelligent sewage monitoring instrument according to claim 1, characterized in that, The extension plate (5) is rectangular structure, the size of the extension plate (5) and the receiving groove is matched, and the end face of one end of the extension plate (5) is arc surface structure, and the end face of the other end of the extension plate (5) is fixedly connected with two groups of springs, and the limiting slot (6) provided on the surface of the extension plate (5) is strip-shaped structure.
5. The intelligent sewage monitoring instrument according to claim 1, characterized in that, The mounting ring (9) is overall circular ring structure, the axial section of the mounting ring (9) is L-shaped structure, and the size of one end of the inner cavity of the mounting ring (9) is larger than the size of the outer side surface of the connecting shaft sleeve (8), and the size of the other end of the inner cavity of the mounting ring (9) is larger than the size of the outer side surface of the PH sensor (11).
6. The intelligent sewage monitoring instrument according to claim 1, characterized in that, The filter plate (12) fixedly connected with the lower surface of the mounting ring (9) is cylindrical structure, and the size of the inner side surface of the filter plate (12) is larger than the size of the outer side surface of the PH sensor (11), and a plurality of groups of buffer plates (10) are fixedly connected at equal intervals in the circumferential direction along the outer arc surface of the filter plate (12), and the buffer plate (10) is semicircular ring structure, and the counterweight (13) fixedly connected with the lower end of the filter plate (12) is circular structure.
7. The intelligent sewage monitoring instrument according to claim 1, characterized in that, The outer arc surface of the floating plate (2) is movably connected with one end of the limiting plate (4) through bearing near the opening of the receiving groove, and the four groups of limiting plates (4) and the four groups of receiving grooves are one-to-one corresponding, and the limiting plate (4) is rectangular structure.
Citation Information
Patent Citations
Sewage treatment's intelligent water quality monitoring system
CN206627506U