CN220490823U - Soil environment monitoring device - Google Patents

Soil environment monitoring device Download PDF

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Publication number
CN220490823U
CN220490823U CN202321799230.XU CN202321799230U CN220490823U CN 220490823 U CN220490823 U CN 220490823U CN 202321799230 U CN202321799230 U CN 202321799230U CN 220490823 U CN220490823 U CN 220490823U
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CN
China
Prior art keywords
turnover
face
monitoring device
environment monitoring
soil environment
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Active
Application number
CN202321799230.XU
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Chinese (zh)
Inventor
娄英斌
施巍
于丰阁
王祥
石文静
刘少玉
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Inverbo Technology Changzhou Co ltd
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Inverbo Technology Changzhou Co ltd
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Priority to CN202321799230.XU priority Critical patent/CN220490823U/en
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Publication of CN220490823U publication Critical patent/CN220490823U/en
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Abstract

The utility model relates to the technical field of environmental monitoring, in particular to a soil environment monitoring device, which is internally provided with a main box body, wherein the upper end surface of the main box body is fixedly provided with a guide pipe, and the innovation point of the utility model is that: according to the utility model, the turnover frame and the rubber plate are driven to swing to a certain angle by starting to rotate through the turnover shaft, and the turnover frame and the rubber plate enter soil through the rotation sleeve and the detection probe.

Description

Soil environment monitoring device
Technical Field
The utility model relates to the technical field of environmental monitoring, in particular to a soil environment monitoring device.
Background
The environmental monitoring is to track the change of environmental quality through the detection of the content and the discharge amount of various substances influencing human beings and the environment, determine the environmental quality level, and provide a basis and guarantee for the work such as environmental management, pollution control and the like.
Among the existing soil environment monitoring devices technique on the market, most soil environment monitoring devices are relatively large-scale, and then because the structure is complicated, and then inconvenient carry to in some mountain areas or the region that topography is more complicated, and then be inconvenient for the transportation, lead to the probe to damage moreover, and then directly influenced the accuracy of monitoring.
Disclosure of Invention
The utility model aims to provide a soil environment monitoring device which is used for overcoming the defects in the prior art.
According to the soil environment monitoring device, the soil environment monitoring device comprises a main box body, the upper end face of the main box body is fixedly provided with a guide pipe, a rotating cavity with a downward opening is arranged in the guide pipe, a rotating motor is fixedly arranged in the inner wall of the rotating cavity, a rotating shaft is rotationally arranged in the guide pipe, the upper end face of the rotating shaft is in power connection with the rotating motor, the outer circular surface of the rotating shaft is rotationally provided with a rotating sliding block capable of moving up and down, the rotating sliding block plays a role in regulating and controlling the detection depth, the rotating sliding block is in rotating fit with the rotating shaft, the lower end face of the rotating sliding block is fixedly provided with a rotating sleeve, the lower end face of the rotating sleeve is fixedly provided with a detection probe, and the detection probe plays a role in detection.
In some embodiments, the upper end surface of the main box body is fixedly provided with a pneumatic telescopic rod capable of telescopic movement, and the pneumatic telescopic rod plays a role in adjusting according to the height of a user.
In some embodiments, the other end of the pneumatic telescopic rod is fixedly provided with a sliding frame capable of moving along the outer circular surface of the guide tube.
In some embodiments, handles which are symmetrical left and right are respectively and fixedly arranged on the left end face and the right end face of the sliding frame.
In some embodiments, a control panel is fixedly arranged on the upper end surface of the sliding frame, and the control panel plays a role in regulating and controlling the motor.
In some embodiments, a display screen is fixedly arranged on the upper end face of the sliding rack, and the display screen plays a role in displaying detection results.
In some embodiments, the main box body is internally provided with a turnover cavity which is connected with the outside and is bilaterally symmetrical.
In some embodiments, a turnover motor is fixedly arranged in the front wall of the turnover cavity, and a turnover shaft is rotatably arranged between the front wall and the rear wall of the turnover cavity.
In some embodiments, the front end surface of the turnover shaft is in power connection with the turnover motor, and the outer circular surface of the turnover shaft is fixedly provided with a turnover frame.
In some embodiments, a rubber plate is fixedly arranged on the end face of one side, close to the center, of the turnover frame, and the rubber plate plays a role in increasing friction force.
Compared with the prior art, the utility model has the advantages that:
1. according to the utility model, the turning motor which is bilaterally symmetrical starts to start to drive the turning shaft to rotate, and then drives the turning frame and the rubber plate to swing to a certain angle, at the moment, the two feet of a worker respectively step on the upper surfaces of the bilaterally symmetrical rubber plates, and meanwhile, the worker controls the control panel, and then drives the pneumatic telescopic rod to start to move upwards, and further drives the sliding frame and the handle to move to a designated height, so that a user can conveniently hold the handle with both hands, and the height adjustment according to the height of the user is realized, and the stability of subsequent monitoring is further ensured.
2. According to the utility model, the rotating motor starts to start to drive the rotating shaft to rotate, the rotating sliding block is driven to move downwards, the rotating sleeve and the detection probe are driven to enter soil, and the monitoring of different soil layers according to the requirements of a user is realized through the control of the control panel.
Drawings
FIG. 1 is a left side view of the present utility model;
FIG. 2 is a rear view of the present utility model;
FIG. 3 is a front view of the present utility model;
FIG. 4 is a schematic illustration of A-A of FIG. 3 in accordance with the present utility model;
FIG. 5 is a schematic illustration of B-B of FIG. 3 in accordance with the present utility model;
fig. 6 is a schematic view of the exterior appearance of the present utility model at the rotating sleeve member of fig. 4.
In the figure:
11. a main case; 12. a pneumatic telescopic rod; 13. a handle; 14. a sliding frame; 15. a guide tube; 16. a rotating motor; 17. rotating the sliding block; 18. a rotating shaft; 19. rotating the sleeve; 20. a detection probe; 21. a rotating chamber; 22. a turnover shaft; 23. a turnover motor; 24. a rubber plate; 25. a turnover frame; 26. a control panel; 27. a display screen; 28. and a turnover cavity.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
Referring to fig. 1-6, in a first embodiment of the present utility model, an embodiment of a soil environment monitoring device is provided, which includes a main casing 11, a guide tube 15 is fixedly disposed on an upper end surface of the main casing 11, a rotation cavity 21 with a downward opening is disposed in the guide tube 15, a rotation motor 16 is fixedly disposed in an inner wall of the rotation cavity 21, a rotation shaft 18 is rotationally disposed in the guide tube 15, an upper end surface of the rotation shaft 18 is dynamically connected to the rotation motor 16, a rotation slider 17 capable of moving up and down is rotationally disposed on an outer circumferential surface of the rotation shaft 18, the rotation slider 17 plays a role of regulating and controlling a detection depth, the rotation slider 17 is rotationally matched with the rotation shaft 18, a rotation sleeve 19 is fixedly disposed on a lower end surface of the rotation slider 17, a detection probe 20 is fixedly disposed on a lower end surface of the rotation sleeve 19, and the detection probe 20 plays a role of detection.
The utility model discloses a pneumatic telescopic handle, including main box 11, pneumatic telescopic handle 12, guide tube 15, control panel 26 plays the effect of regulation and control motor, the fixed display screen 27 that is equipped with of sliding frame 14 up end, display screen 27 plays the effect of showing the detection result.
The main box 11 is internally provided with a turnover cavity 28 which is connected with the outside and is bilaterally symmetrical, the front wall of the turnover cavity 28 is internally fixedly provided with a turnover motor 23, a turnover shaft 22 is rotatably arranged between the front wall and the rear wall of the turnover cavity 28, the front end surface of the turnover shaft 22 is in power connection with the turnover motor 23, the outer circular surface of the turnover shaft 22 is fixedly provided with a turnover frame 25, one side end surface of the turnover frame 25, which is close to the center, is fixedly provided with a rubber plate 24, and the rubber plate 24 plays a role in increasing friction force.
The specific working flow is as follows:
the worker soil environment monitoring device conveys to the appointed position, at this moment, a flat ground is found, at this moment, the main box 11 can be vertically placed on the ground, meanwhile, the worker controls the control panel 26, and then drives the bilateral symmetry turning motor 23 to start, and then drives the turning shaft 22 to start rotating, and then drives the turning rack 25 and the rubber plate 24 to swing to a certain angle, at this moment, the worker steps on the upper surface of the bilateral symmetry rubber plate 24 respectively by feet, at this moment, the worker controls the control panel 26, and then drives the pneumatic telescopic rod 12 to start moving upwards, and then drives the sliding rack 14 and the handle 13 to move to the appointed height, and then the user can hold the handle 13 with hands, so that the height adjustment according to the height of the user is realized, and the stability of subsequent monitoring is further ensured.
At this moment, the rotating motor 16 starts to start, and then drives the rotating shaft 18 to start rotating, and then drives the rotating slide block 17 to start moving downwards, and then drives the rotating sleeve 19 and the detecting probe 20 to enter the soil, and due to the control of the control panel 26, the monitoring of different soil layers is achieved according to the requirements of a user, when the monitoring is completed, the overturning frame 25, the rotating slide block 17, the rotating sleeve 19 and the detecting probe 20 are reset to the original positions, and further the detecting probe 20 is ensured to be reset to the rotating cavity 21 to be fully protected, the monitoring accuracy is further ensured, and due to the fact that the volume of the soil environment monitoring device is smaller, the carrying is further ensured, the transportation in a mountain area or a relatively complex road is further ensured, and therefore the portability of the soil environment monitoring device is ensured.
The above embodiments are merely illustrative embodiments of the present utility model, but the technical features of the present utility model are not limited thereto, and any changes or modifications made by those skilled in the art within the scope of the present utility model are included in the scope of the present utility model.

Claims (7)

1. The utility model provides a soil environment monitoring device, includes main box (11), its characterized in that: the novel box is characterized in that a guide pipe (15) is fixedly arranged on the upper end face of the main box body (11), a rotating cavity (21) with a downward opening is formed in the guide pipe (15), a rotating motor (16) is fixedly arranged in the inner wall of the rotating cavity (21), a rotating shaft (18) is rotationally arranged on the guide pipe (15), and the upper end face of the rotating shaft (18) is in power connection with the rotating motor (16);
the rotary probe is characterized in that a rotary sliding block (17) capable of moving up and down is arranged on the outer circular surface of the rotary shaft (18) in a rotary mode, the rotary sliding block (17) is in rotary fit with the rotary shaft (18), a rotary sleeve (19) is fixedly arranged on the lower end face of the rotary sliding block (17), and a detection probe (20) is fixedly arranged on the lower end face of the rotary sleeve (19).
2. A soil environment monitoring device according to claim 1, wherein: the upper end face of the main box body (11) is fixedly provided with a pneumatic telescopic rod (12) capable of telescopic movement.
3. A soil environment monitoring device according to claim 2, wherein: the other end of the pneumatic telescopic rod (12) is fixedly provided with a sliding frame (14) which can move along the outer circular surface of the guide pipe (15).
4. A soil environment monitoring device according to claim 3, wherein: handles (13) which are bilaterally symmetrical are respectively and fixedly arranged on the left end face and the right end face of the sliding frame (14), and a control panel (26) is fixedly arranged on the upper end face of the sliding frame (14).
5. A soil environment monitoring device according to claim 3, wherein: the upper end face of the sliding rack (14) is fixedly provided with a display screen (27).
6. A soil environment monitoring device according to claim 1, wherein: the novel turnover box is characterized in that a turnover cavity (28) which is connected with the outside and is bilaterally symmetrical is arranged in the main box body (11), a turnover motor (23) is fixedly arranged in the front wall of the turnover cavity (28), a turnover shaft (22) is rotatably arranged between the front wall and the rear wall of the turnover cavity (28), and the front end face of the turnover shaft (22) is in power connection with the turnover motor (23).
7. The soil environment monitoring device of claim 6, wherein: the outer circular surface of the turnover shaft (22) is fixedly provided with a turnover frame (25), and the end surface of one side of the turnover frame (25) close to the center is fixedly provided with a rubber plate (24).
CN202321799230.XU 2023-07-10 2023-07-10 Soil environment monitoring device Active CN220490823U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321799230.XU CN220490823U (en) 2023-07-10 2023-07-10 Soil environment monitoring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321799230.XU CN220490823U (en) 2023-07-10 2023-07-10 Soil environment monitoring device

Publications (1)

Publication Number Publication Date
CN220490823U true CN220490823U (en) 2024-02-13

Family

ID=89840392

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321799230.XU Active CN220490823U (en) 2023-07-10 2023-07-10 Soil environment monitoring device

Country Status (1)

Country Link
CN (1) CN220490823U (en)

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