Water quality detector for environmental governance

By designing a water quality detector for storage boxes and sliding mechanisms, the problem of low water sample collection and storage efficiency in the prior art is solved, and efficient storage and detection of multiple water samples is achieved, and detection efficiency is improved.

CN223159304UActive Publication Date: 2025-07-29HEBEI LANGFANG HYDROLOGICAL SURVEY & RES CENT (HEBEI LANGFANG WATER BALANCE TESTING CENT)
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Patent Information

Application Number
CN202422374481.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-29
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

Existing water quality detectors cannot efficiently collect and store different water samples, resulting in low detection efficiency and cannot be suitable for water quality detection in multiple scenarios.

Method used

A water quality detector for environmental governance is designed, including a storage box and a sliding mechanism. A multiple sampling tube is provided in the storage box. Through the cooperation of the sliding mechanism and the flip plate, the storage sample is stored in the storage box and the sampling tube are conveniently taken, and the water sample is prevented from mixing.

Benefits of technology

It realizes efficient storage and detection of different water samples, avoids the impact of water samples on the detection results and improves the detection efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a water quality detector for environmental governance, which relates to the technical field of water quality detectors and comprises a protective box and a storage box, a fixed plate is arranged in the protective box, sliding grooves are formed in the inner walls of the fixed plate and the protective box, movable plates are arranged in the sliding grooves in a sliding manner, upright posts are arranged on the movable plates, and the upright posts are connected with the storage box. Supporting blocks are arranged on the four stand columns, storage boxes are arranged on the side walls of the supporting blocks, a plurality of sampling pipes are placed in the containing groove, a supporting plate is arranged between the two stand columns in a sliding mode, and the sampling pipes in the storage boxes are used for storing water samples, so that the water samples in different areas are conveniently stored and detected; when the storage box slides out of the protection box, the supporting plate ascends along the inclined groove and drives the ejector rod to penetrate into the storage box, the overturning plate drives the multiple sampling pipes placed on the overturning plate to slide upwards, and a user can check and take the sampling pipes conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of water quality detectors, in particular to a water quality detector for environmental governance. Background Technique

[0002] Environmental governance is a comprehensive process aimed at controlling environmental pollution by using various means to achieve the goals of improving environmental quality and sustainable development. Water quality detection is the process of monitoring and measuring the types of pollutants in water bodies, the concentrations of various pollutants and their changing trends, and evaluating the water quality status. Water quality detection can be divided into two categories: one is the comprehensive indicators reflecting water quality status, such as temperature, chromaticity, turbidity, pH value, conductivity, suspended solids, dissolved oxygen, chemical oxygen demand, and biochemical oxygen demand, etc.; the other is toxic substances, such as phenol, cyanide, arsenic, lead, chromium, cadmium, mercury, and organic pesticides, etc.

[0003] Existing water quality detectors are usually handheld, and users need to insert the probe of the detector into the water for detection. The internal structure of the detector is relatively simple and cannot collect and store different water samples. When conducting comparative tests on water samples, frequent sampling is required, resulting in low water quality detection efficiency and being unable to be applied to water quality detection in different scenarios. Content of the Utility Model

[0004] The purpose of the utility model is to provide a water quality detector for environmental governance to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] A water quality detector for environmental governance, including a protective box, further including:

[0007] A storage box. There is a fixed plate inside the protective box. Both the fixed plate and the inner wall of the protective box are provided with sliding grooves. An activity plate is slidably arranged inside the sliding grooves. Columns are arranged on the activity plate. Support blocks are arranged on all four columns. A storage box is arranged on the side wall of the support block. A storage groove is opened inside the storage box. A plurality of sampling tubes are placed inside the storage groove. A support plate is slidably arranged between two columns. A connecting spring is arranged between the support plate and the support block. The connecting spring is sleeved on the column. A plurality of ejector rods are arranged on the support plate;

[0008] A guide plate. A turning plate is arranged inside the storage groove. One end of the ejector rod penetrates into the storage box and contacts the turning plate. A guide plate is arranged inside the protective box. A guide groove matching with the support plate is arranged on the guide plate. A detector body is arranged on the fixed plate. A detection port and a printing slot are arranged on the detector body;

[0009] The sliding mechanism is connected to the movable plate and can drive the movable plate and the storage box to slide out from the interior of the protective box.

[0010] On the basis of the above technical solutions, the present invention also provides the following optional technical solutions:

[0011] In an optional solution: the sliding mechanism includes a movable frame, a connecting plate and a fixed frame, a movable frame is slidingly provided on the outside of the protective box, fixed frames are provided on both sides of the fixed frame, a connecting plate is provided at the bottom of the movable plate, a connecting groove is opened on the outside of the protective box, and the connecting plate passes through the connecting groove and is connected to the movable frame.

[0012] In an optional solution: a square groove is opened inside the fixing frame, a pull plate is slidably set inside the square groove, a fixing pin is set on the pull plate, a cylindrical hole matching the fixing pin is opened on the side wall of the protective box, and a reset spring is sleeved on the outside of the fixing pin.

[0013] In an optional solution, a locking bolt is provided on the outside of the support block, and the support block is fixedly connected to the column through the locking bolt.

[0014] In an optional solution: a rotating shaft is provided at one end of the flip plate, and the flip plate is rotatably arranged inside the receiving slot via the rotating shaft.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] The water quality detector used in environmental management detects water samples through the detector body, and multiple sampling tubes inside the storage box store water samples, which is convenient for storing and testing water samples from different areas. When the storage box slides out from the inside of the protective box, the support plate rises along the inclined slot and drives the push rod to penetrate into the storage box. The push rod lifts the flip plate upward, and the flip plate drives the multiple sampling tubes placed on it to slide upward, which is convenient for users to check and take the sampling tubes. A variety of different water samples are placed in the storage box in turn to prevent mixing between different water samples and affect subsequent testing and use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a structural diagram of a water quality detector used in environmental management.

[0018] Figure 2 This is a schematic diagram of the structure of the storage box in the water quality tester used in environmental governance.

[0019] Figure 3 This is a cross-sectional view of the storage box in a water quality tester used for environmental management.

[0020] Figure 4 This is a schematic diagram of the structure of the flip plate in the water quality tester used in environmental management.

[0021] Annotation of reference numerals: 1 - protective box, 101 - connecting groove, 102 - cylindrical hole, 2 - fixing plate, 3 - column, 4 - storage box, 401 - storage slot, 5 - support block, 6 - sampling tube, 7 - sliding groove, 8 - movable plate, 9 - movable frame, 10 - connecting plate, 11 - fixing frame, 111 - square groove, 12 - pulling plate, 13 - fixing pin, 14 - return spring, 15 - detector body, 16 - detection port, 17 - printing groove, 18 - movable plate, 181 - guiding groove, 19 - connecting spring, 20 - support plate, 21 - ejector rod, 22 - flipping plate, 23 - rotating shaft, 24 - locking bolt. Detailed implementation manners

[0022] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below in conjunction with the accompanying drawings and embodiments; in the drawings or descriptions, similar or identical parts use the same reference numerals, and in actual applications, the shapes, thicknesses or heights of the components can be enlarged or reduced. The various embodiments listed in the present utility model are only used to illustrate the present utility model, and are not used to limit the scope of the present utility model. Any obvious modification or change made to the present utility model does not depart from the spirit and scope of the present utility model.

[0023] In one embodiment, as Figures 1-4 shown, a water quality detector for environmental governance includes a protective box 1, and further includes:

[0024] A storage box 4, a fixing plate 2 is fixedly arranged inside the protective box 1, sliding grooves 7 are opened on both the fixing plate 2 and the inner wall of the protective box 1, a movable plate 8 is slidably arranged inside the sliding grooves 7, a column 3 is fixedly arranged on the movable plate 8, support blocks 5 are arranged on all four columns 3, a storage box 4 is arranged on the side wall of the support block 5, a storage slot 401 is opened inside the storage box 4, and a plurality of sampling tubes 6 are placed inside the storage slot 401, which can collect and store different water samples. A support plate 20 is slidably arranged between the two columns 3, the support plate 20 is located below the storage box 4, a connecting spring 19 is arranged between the support plate 20 and the support block 5, and the connecting spring 19 makes the support plate 20 in Figure 2 the initial position through elasticity. The connecting spring 19 is sleeved on the column 3, and a plurality of ejector rods 21 are arranged on the support plate 20, and the top ends of the ejector rods 21 slide into the storage slot 401.

[0025] The guide plate 18 is provided inside the storage groove 401 with a flip plate 22. The bottom ends of multiple sampling tubes 6 are all located on the flip plate 22. One end of the ejector rod 21 penetrates into the storage box 4 and contacts the flip plate 22. The guide plate 18 is provided inside the protection box 1. The guide plate 18 is provided with a guide groove 181 that cooperates with the support plate 20. The guide groove 181 is composed of a horizontal groove and an inclined groove. The support plate 20 can slide along the guide groove 181. The fixed plate 2 is provided with a detector body 15. The detector body 15 is provided with a detection port 16 and a printing groove 17;

[0026] The sliding mechanism is connected to the movable plate 8 and can drive the movable plate 8 and the storage box 4 to slide out of the protection box 1.

[0027] The water quality detector for environmental governance stores water samples through multiple sampling tubes 6 inside the storage box 4, and can store and detect water samples in different areas. When the storage box 4 slides out of the protection box 1, the support plate 20 slides along the guide groove 181. The support plate 20 rises along the inclined groove and drives the ejector rod 21 to penetrate into the storage box 4. The ejector rod 21 jacks up the flip plate 22, and the flip plate 22 drives the multiple sampling tubes 6 placed thereon to slide upward, facilitating the user to view and take the sampling tubes 6. When the storage box 4 slides back into the protection box 1, the flip plate 22 moves downward, and the multiple sampling tubes 6 slide back into the storage groove 401. As an embodiment, the left - right, up - down positions of each component shown in the drawings are only an arrangement method, and the specific positions are set according to specific needs.

[0028] In one embodiment, as Figures 1-3 shown, the sliding mechanism includes a movable frame 9, a connecting plate 10, and a fixed frame 11. The movable frame 9 is slidably arranged outside the protection box 1. The fixed frame 11 is provided on both sides of the fixed frame 9. The bottom of the movable plate 8 is provided with a connecting plate 10. The protection box 1 is provided with a communication groove 101 outside. The connecting plate 10 passes through the communication groove 101 and is connected to the movable frame 9. The movable frame 9 drives the movable plate 8 to move through the connecting plate 10, and the movable plate 8 drives the column 3 and the storage box 4 to move.

[0029] In one embodiment, as Figures 1-3 shown, the fixed frame 11 is provided with a square groove 111 inside. A pull plate 12 is slidably arranged inside the square groove 111. The pull plate 12 is provided with a fixing pin 13. The side wall of the protection box 1 is provided with a cylindrical hole 102 that cooperates with the fixing pin 13. A return spring 14 is sleeved outside the fixing pin 13. The fixing pin 13 passes through the movable frame 9 and penetrates into the cylindrical hole 102, and can fix the movable frame 9.

[0030] In one embodiment, as Figures 1-2As shown, a locking bolt 24 is provided outside the support block 5, and the support block 5 is fixedly connected to the column 3 through the locking bolt 24.

[0031] In one embodiment, as Figure 4 shown, a rotating shaft 23 is provided at one end of the flipping plate 22, and the flipping plate 22 is rotatably arranged inside the storage groove 401 through the rotating shaft 23.

[0032] In the above embodiment of the present utility model, a water quality detector for environmental governance is provided. By pulling the pull plate 12 inside the movable fixing frame 11, the fixing pin 13 on the pull plate 12 slides out of the cylindrical hole 102. The movable frame 9 drives the movable plate 8 to move through the connecting plate 10. The movable plate 8 drives the storage box 4 to slide out of the protection box 1. The support plate 20 rises along the guide groove 181 and drives the ejector rod 21 to penetrate into the storage box 4. The ejector rod 21 pushes the flipping plate 22 upward. The flipping plate 22 drives a plurality of sampling tubes 6 placed thereon to slide upward, enabling water quality sampling and storage. The water sample is placed into the detection port 16 of the detector body 15 for detection. After the detection is completed, the storage box 4 slides back into the protection box 1.

[0033] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A water quality detector for environmental governance, comprising a protective box, characterized in that, Further comprising: A storage box, a fixing plate is arranged inside the protection box, sliding grooves are formed in both the fixing plate and the inner wall of the protection box, a movable plate is slidably arranged inside the sliding grooves, a column is arranged on the movable plate, support blocks are arranged on all four columns, a storage box is arranged on the side wall of the support block, a storage groove is formed inside the storage box, a plurality of sampling tubes are placed inside the storage groove, a support plate is slidably arranged between the two columns, a connecting spring is arranged between the support plate and the support block, the connecting spring is sleeved on the column, and a plurality of ejector rods are arranged on the support plate; A guide plate, a turning plate is arranged inside the storage groove, one end of the ejector rod penetrates into the storage box and contacts the turning plate, a guide plate is arranged inside the protection box, a guide groove matched with the support plate is arranged on the guide plate, a detector body is arranged on the fixing plate, and a detection port and a printing groove are arranged on the detector body; A sliding mechanism, connected to the movable plate, capable of driving the movable plate and the storage box to slide out from inside the protection box.

2. The water quality detector for environmental governance according to claim 1, wherein The sliding mechanism includes a movable frame, a connecting plate and a fixed frame, the movable frame is slidably arranged outside the protection box, fixed frames are arranged on both sides of the fixed frame, the connecting plate is arranged at the bottom of the movable plate, a communication groove is formed outside the protection box, and the connecting plate passes through the communication groove and is connected to the movable frame.

3. The water quality detector for environmental governance according to claim 2, characterized in that, A square groove is formed inside the fixed frame, a pull plate is slidably arranged inside the square groove, a fixing pin is arranged on the pull plate, a cylindrical hole matched with the fixing pin is formed in the side wall of the protection box, and a return spring is sleeved outside the fixing pin.

4. The water quality detector for environmental governance according to claim 1, wherein, A locking bolt is arranged outside the support block, and the support block is fixedly connected to the column through the locking bolt.

5. The water quality detector for environmental governance according to claim 1, characterized in that A rotating shaft is arranged at one end of the turning plate, and the turning plate is rotatably arranged inside the storage groove through the rotating shaft.