Water environment detection auxiliary device

By designing a water environment detection auxiliary device including a base plate, a moving wheel, an anti-slip mechanism and a hydraulic telescopic rod, the problem of inconvenience in sampling at sub-zero temperature is solved, and convenient ice breaking and stable sampling is achieved.

CN223205187UActive Publication Date: 2025-08-08无锡致承科技有限公司
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Patent Information

Application Number
CN202422379082.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-08-08
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The existing water environment detection auxiliary device requires the user to carry an ice breaker device to break the ice at subzero temperature, resulting in inconvenience in sampling.

Method used

A water environment detection auxiliary device is designed, including a base plate, a moving wheel, an anti-slip mechanism, a connecting column, a hydraulic telescopic rod and an ice breaker. The ice breaker is driven to rotate and descend through the hydraulic telescopic rod, and the stability and portability of the device are improved by combining the moving wheel and an anti-slip mechanism.

Benefits of technology

It realizes convenient ice-breaking sampling at sub-zero temperatures, improves the stability and portability of the device, and reduces the time and labor intensity of artificial ice-breaking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an auxiliary device for water environment detection, which belongs to the technical field of water environment detection and comprises a bottom plate and moving wheels mounted at the bottom of the bottom plate, an anti-skid mechanism is mounted on the bottom plate, a connecting column is rotatably mounted on the bottom plate, and two supporting components are symmetrically mounted on the connecting column. Wherein a first hydraulic telescopic rod is installed on one supporting assembly, a motor plate is installed at the output end of the first hydraulic telescopic rod, a motor is installed on the motor plate, an ice breaking cone is installed at the output end of the motor, and a water taking mechanism is installed on the other supporting assembly. The first hydraulic telescopic rod is arranged, the motor is started to drive the ice breaking cone to rotate, the first hydraulic telescopic rod is started to drive the ice breaking cone to descend so that the ice surface can be broken, the detection auxiliary device can be conveniently moved through the moving wheels, then the ice breaking cone can be conveniently moved to the ice breaking position, and carrying is convenient.
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Description

Technical Field

[0001] The utility model relates to a detection auxiliary device, in particular to a water environment detection auxiliary device, belonging to the technical field of water environment detection. Background Art

[0002] The water environment refers to the spatial environment in which water is formed, distributed and transformed in nature. It refers to the water bodies surrounding human space and that can directly or indirectly affect human life and development, as well as the various natural factors and related social factors that determine their normal functions. Water is in a state of dynamic equilibrium with continuous circulation on the earth. The surface water environment includes rivers, lakes, reservoirs, oceans, ponds, swamps, glaciers, etc. The groundwater environment includes springs, shallow groundwater, deep groundwater, etc.

[0003] However, when the existing water environment detection auxiliary device is actually used, in areas with sub-zero temperatures and thick ice on the water surface, sampling and testing requires the use of an ice-breaking device to break the ice before water samples can be taken out. The user needs to carry the ice-breaking device to break the ice, which is time-consuming and labor-intensive to carry and inconvenient for sampling. Utility Model Content

[0004] The main purpose of the utility model is to provide a water environment detection auxiliary device in order to solve the problem that the user needs to carry an ice-breaking device to break ice, which is inconvenient for sampling.

[0005] The purpose of the utility model can be achieved by adopting the following technical solutions:

[0006] A water environment detection auxiliary device includes a base plate and a movable wheel installed at the bottom of the base plate, an anti-slip mechanism is installed on the base plate, a connecting column is rotatably installed on the base plate, two support assemblies are symmetrically installed on the connecting column, a first hydraulic telescopic rod is installed on one of the support assemblies, a motor plate is installed on the output end of the first hydraulic telescopic rod, a motor is installed on the motor plate, an ice-breaking cone is installed on the output end of the motor, and a water intake mechanism is installed on the other support assembly.

[0007] Preferably, the anti-slip mechanism includes a threaded rod, a turning handle, an anti-slip plate and spikes, the threaded rod is threadedly connected to the base plate, the anti-slip plate is installed at the bottom of the threaded rod, a plurality of spikes are installed at the bottom of the anti-slip plate, the turning handle is installed at the top of the threaded rod, and the first anti-slip pad is installed on the turning handle.

[0008] Preferably, a rotating block is installed at the bottom of the connecting column, and a rotating groove that cooperates with the rotating block is opened on the bottom plate.

[0009] Preferably, a plurality of rotating cavities are provided on the rotating block, and balls are rotatably installed inside the rotating cavities.

[0010] Preferably, a connecting block is mounted on the connecting column, a positioning rod is mounted on the connecting block, and slots cooperating with the positioning rod are provided on both the bottom plate and the connecting block.

[0011] Preferably, a top plate is installed on the top of the positioning rod, a handle is installed on the top plate, and a second anti-slip pad is installed on the handle.

[0012] Preferably, the support assembly includes a support block, a support rod and a top block, the support block is installed on the connecting column, the support rod is installed on the support block, a top block is installed at one end of the support rod, and the first hydraulic telescopic rod is installed at the bottom of one of the top blocks.

[0013] Preferably, the water intake mechanism includes a second hydraulic telescopic rod, a support plate, a connecting rod, a connecting frame, a collecting cylinder, a water inlet pipe and a first solenoid valve. The bottom of the other top block is equipped with a second hydraulic telescopic rod, the output end of the second hydraulic telescopic rod is equipped with a support plate, the bottom of the support plate is equipped with a connecting rod, one end of the connecting rod is equipped with a connecting frame, the collecting cylinder is equipped on the connecting frame, the collecting cylinder is equipped with a water inlet pipe, and the water inlet pipe is equipped with a first solenoid valve.

[0014] Beneficial technical effects of the utility model:

[0015] 1. According to the water environment detection auxiliary device of the present invention, by setting a first hydraulic telescopic rod, the motor is started to drive the ice-breaking cone to rotate, and the first hydraulic telescopic rod is started to drive the ice-breaking cone to descend to break the ice surface. By setting movable wheels, the detection auxiliary device can be easily moved, and then the ice-breaking cone can be easily moved to the ice-breaking position, which is more convenient to carry.

[0016] 2. By setting a threaded rod and rotating the threaded rod to drive the anti-skid plate to descend, the sharp nails come into contact with the ice surface, which can improve the stability of the detection auxiliary device and the stability of the icebreaker when breaking ice. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 This is a schematic diagram of the structure of the mobile wheel of the utility model;

[0019] Figure 3 This is a schematic diagram of the positioning rod structure of the utility model;

[0020] Figure 4 This is a schematic diagram of the rotating block structure of the present utility model;

[0021] Figure 5 This is a schematic diagram of the water inlet pipe structure of the utility model;

[0022] Figure 6 This is a schematic diagram of the threaded rod structure of the present utility model.

[0023] In the figure: 1. Base plate; 2. Threaded rod; 3. Turning handle; 4. Anti-skid plate; 5. Spike; 6. Connecting block; 7. Top plate; 8. Handle; 9. Connecting column; 10. Support block; 11. Support rod; 12. Top block; 13. First hydraulic telescopic rod; 14. Motor; 15. Motor plate; 16. Ice breaker; 17. Second hydraulic telescopic rod; 18. Support plate; 19. Connecting rod; 20. Connecting frame; 21. Collection cylinder; 22. Water inlet pipe; 23. First solenoid valve; 24. Moving wheel; 25. Drain pipe; 26. Second solenoid valve; 27. Positioning rod; 28. Turning block; 29. Ball bearing. DETAILED DESCRIPTION

[0024] In order to make the technical solution of the present invention more clear and specific to those skilled in the art, the present invention is described in further detail below with reference to embodiments and drawings, but the implementation manner of the present invention is not limited thereto.

[0025] like Figures 1-6 As shown, the water environment detection auxiliary device provided by this embodiment includes a base plate 1 and a moving wheel 24 installed at the bottom of the base plate 1, an anti-skid mechanism is installed on the base plate 1, a connecting column 9 is rotatably installed on the base plate 1, and two supporting assemblies are symmetrically installed on the connecting column 9, one of the supporting assemblies is installed with a first hydraulic telescopic rod 13, an output end of the first hydraulic telescopic rod 13 is installed with a motor plate 15, a motor 14 is installed on the motor plate 15, and an ice-breaking cone 16 is installed at the output end of the motor 14, and a water intake mechanism is installed on the other supporting assembly, the anti-skid mechanism includes a threaded rod 2, a turning handle 3, an anti-skid plate 4 and a spike 5, a threaded rod 2 is threadedly connected to the base plate 1, an anti-skid plate 4 is installed at the bottom of the threaded rod 2, and a plurality of spikes 5 are installed at the bottom of the anti-skid plate 4 A turning handle 3 is installed on the top of the threaded rod 2, and a first anti-slip pad is installed on the turning handle 3. By setting the first hydraulic telescopic rod 13, the motor 14 is started to drive the ice-breaking cone 16 to rotate. The first hydraulic telescopic rod 13 is started to drive the ice-breaking cone 16 to descend to break the ice surface. By setting the moving wheel 24, it is easy to move the detection auxiliary device, and then it is easy to move the ice-breaking cone 16 to the ice-breaking position, which is more convenient to carry. By setting the threaded rod 2, the threaded rod 2 is rotated to drive the anti-slip plate 4 to descend, and the spike 5 contacts the ice surface, which can improve the stability of the detection auxiliary device and the stability of the ice-breaking cone 16 when breaking ice. By setting the turning handle 3, the threaded rod 2 can be easily rotated, and by setting the first anti-slip pad, the friction of the threaded rod 2 can be increased.

[0026] In this embodiment, if Figure 1 、 Figure 3 and Figure 4As shown, a rotating block 28 is installed at the bottom of the connecting column 9, and a rotating groove that cooperates with the rotating block 28 is opened on the bottom plate 1. By setting the rotating block 28 and the rotating groove for rotation, it is convenient to rotate the connecting column 9 to adjust the direction of the ice-breaking cone 16 and the collecting cylinder 21. A plurality of rotating cavities are opened on the rotating block 28, and a ball 29 is installed for rotation inside the rotating cavity. By setting the ball 29, the friction force of the rotation of the rotating block 28 can be reduced. A connecting block 6 is installed on the connecting column 9, and a positioning rod 27 is installed on the connecting block 6. The bottom plate 1 and the connecting block 6 are both provided with a slot that cooperates with the positioning rod 27. By setting the positioning rod 27 and engaging with the slot, the rotating connecting column 9 can be limited. A top plate 7 is installed on the top of the positioning rod 27, and a handle 8 is installed on the top plate 7. A second anti-slip pad is installed on the handle 8. By setting the handle 8, it is convenient to pull the positioning rod 27, and by setting the second anti-slip pad, the friction force of the handle 8 can be increased.

[0027] In this embodiment, if Figure 1 、 Figure 3 、 Figure 4 and Figure 5 As shown, the support assembly includes a support block 10, a support rod 11 and a top block 12. The support block 10 is installed on the connecting column 9, and the support rod 11 is installed on the support block 10. The top block 12 is installed at one end of the support rod 11, and a first hydraulic telescopic rod 13 is installed at the bottom of one of the top blocks 12. By setting the support block 10, the support rod 11 and the top block 12 to cooperate with each other, the ice-breaking cone 16 and the collecting cylinder 21 can be supported. The water intake mechanism includes a second hydraulic telescopic rod 17, a support plate 18, a connecting rod 19, a connecting frame 20, a collecting cylinder 21, a water inlet pipe 22 and a first electromagnetic Valve 23, a second hydraulic telescopic rod 17 is installed at the bottom of the other top block 12, and a support plate 18 is installed at the output end of the second hydraulic telescopic rod 17, and a connecting rod 19 is installed at the bottom of the support plate 18. A connecting frame 20 is installed at one end of the connecting rod 19, and a collecting cylinder 21 is installed on the connecting frame 20, and a water inlet pipe 22 is installed on the collecting cylinder 21. A first solenoid valve 23 is installed on the water inlet pipe 22. The second hydraulic telescopic rod 17 is started to drive the collecting cylinder 21 to descend, and the collecting cylinder 21 is lowered into the water. The connecting rod 19 is started to open the water inlet pipe 22, so that sampling can be carried out.

[0028] In this embodiment, if Figures 1-6 As shown, the working process of a water environment detection auxiliary device provided in this embodiment is as follows:

[0029] Step 1: Move the auxiliary device to the working position by moving the wheel 24, and rotate the threaded rod 2 to drive the threaded rod 2 and the spike 5 to descend so that the spike 5 contacts the ice surface;

[0030] Step 2: The motor 14 is started to drive the ice-breaking cone 16 to rotate, and the first hydraulic telescopic rod 13 is started to drive the ice-breaking cone 16 to descend to break the ice surface;

[0031] Step 3: Rotate the connecting column 9 to adjust the direction of the ice-breaking cone 16 and the collecting cylinder 21, insert the positioning rod 27 into the slot to limit the rotating connecting column 9, start the second hydraulic telescopic rod 17 to drive the collecting cylinder 21 to descend, and lower the collecting cylinder 21 into the water. The first solenoid valve 23 is started to take samples through the water inlet pipe 22.

[0032] In summary, in this embodiment, according to the water environment detection auxiliary device of this embodiment, by providing the first hydraulic telescopic rod 13, the motor 14 is started to drive the ice-breaking cone 16 to rotate, and the first hydraulic telescopic rod 13 is started to drive the ice-breaking cone 16 to descend to break the ice surface. By providing the moving wheel 24, it is convenient to move the detection auxiliary device, and then it is convenient to move the ice-breaking cone 16 to the ice-breaking position, which is more convenient to carry. By providing the threaded rod 2, the threaded rod 2 is rotated to drive the anti-slip plate 4 to descend, and the spike 5 contacts the ice surface, which can improve the stability of the detection auxiliary device and the stability of the ice-breaking cone 16 when breaking ice. By providing the turning handle 3, it is convenient to rotate the threaded rod 2, and by providing the first anti-slip pad, the friction of the threaded rod 2 can be increased. Friction, by setting the rotating block 28 to be rotatably connected with the rotating groove, it is convenient to rotate the connecting column 9 to adjust the direction of the ice-breaking cone 16 and the collecting cylinder 21; by setting the ball 29, the friction of the rotating block 28 can be reduced; by setting the positioning rod 27 to be engaged with the slot, the connecting column 9 after rotation can be limited; by setting the handle 8, it is convenient to pull the positioning rod 27; by setting the second anti-slip pad, the friction of the handle 8 can be increased; by setting the support block 10, the support rod 11 and the top block 12 to cooperate with each other, the ice-breaking cone 16 and the collecting cylinder 21 can be supported; the second hydraulic telescopic rod 17 is started to drive the collecting cylinder 21 to descend, and the collecting cylinder 21 is lowered into the water. The connecting rod 19 is started to open the water inlet pipe 22, and sampling can be carried out.

[0033] For example, certain words are used in the specification and claims to refer to specific components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. This specification and claims do not use differences in names as a way to distinguish components, but use differences in the functions of the components as the criteria for distinction. For example, "including" mentioned throughout the specification and claims is an open term and should be interpreted as "including but not limited to". "Approximately" means that within an acceptable error range, those skilled in the art can solve technical problems within a certain error range and basically achieve technical effects.

[0034] It should be noted that the terms "include," "comprises," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a product or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such product or system. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of other identical elements in the product or system comprising the element.

[0035] The foregoing description shows and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. Rather, the present invention can be used in various other combinations, modifications, and environments and can be modified within the scope of the inventive concept described herein by the teachings above or by techniques or knowledge in the relevant art. Modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention are intended to be within the scope of the appended claims.

Claims

1. A water environment detection auxiliary device, characterized in that: The invention comprises a base plate (1) and a moving wheel (24) installed at the bottom of the base plate (1); an anti-skid mechanism is installed on the base plate (1); a connecting column (9) is rotatably installed on the base plate (1); two supporting assemblies are symmetrically installed on the connecting column (9); a first hydraulic telescopic rod (13) is installed on one of the supporting assemblies; a motor plate (15) is installed on the output end of the first hydraulic telescopic rod (13); a motor (14) is installed on the motor plate (15); an ice-breaking cone (16) is installed on the output end of the motor (14); and a water intake mechanism is installed on the other supporting assembly.

2. A water environment detection auxiliary device according to claim 1, characterized in that: The anti-slip mechanism comprises a threaded rod (2), a turning handle (3), an anti-slip plate (4) and spikes (5); the threaded rod (2) is threadedly connected to the bottom plate (1); the anti-slip plate (4) is installed at the bottom of the threaded rod (2); a plurality of spikes (5) are installed at the bottom of the anti-slip plate (4); the turning handle (3) is installed at the top of the threaded rod (2); and a first anti-slip pad is installed on the turning handle (3).

3. The water environment detection auxiliary device according to claim 1, characterized in that: A rotating block (28) is installed at the bottom of the connecting column (9), and a rotating groove that cooperates with the rotating block (28) is opened on the bottom plate (1).

4. A water environment detection auxiliary device according to claim 3, characterized in that: The rotating block (28) is provided with a plurality of rotating cavities, and balls (29) are rotatably mounted inside the rotating cavities.

5. The water environment detection auxiliary device according to claim 1, characterized in that: A connecting block (6) is mounted on the connecting column (9), a positioning rod (27) is mounted on the connecting block (6), and slots that cooperate with the positioning rod (27) are provided on both the base plate (1) and the connecting block (6).

6. A water environment detection auxiliary device according to claim 5, characterized in that: A top plate (7) is installed on the top of the positioning rod (27), a handle (8) is installed on the top plate (7), and a second anti-slip pad is installed on the handle (8).

7. The water environment detection auxiliary device according to claim 1, characterized in that: The support assembly comprises a support block (10), a support rod (11) and a top block (12); the support block (10) is mounted on the connecting column (9); the support rod (11) is mounted on the support block (10); one end of the support rod (11) is mounted with a top block (12); and the bottom of one of the top blocks (12) is mounted with the first hydraulic telescopic rod (13).

8. The water environment detection auxiliary device according to claim 7, characterized in that: The water intake mechanism comprises a second hydraulic telescopic rod (17), a support plate (18), a connecting rod (19), a connecting frame (20), a collecting cylinder (21), a water inlet pipe (22) and a first solenoid valve (23); the bottom of the other top block (12) is provided with a second hydraulic telescopic rod (17); the output end of the second hydraulic telescopic rod (17) is provided with a support plate (18); the bottom of the support plate (18) is provided with a connecting rod (19); one end of the connecting rod (19) is provided with a connecting frame (20); the collecting cylinder (21) is provided with a water inlet pipe (22); and the water inlet pipe (22) is provided with a first solenoid valve (23).