Agricultural facility environment detection equipment
By designing automated detection and limiting devices, the problem of unstable movement of the extension rod was solved, enabling automatic extension and retraction of the detection head, thus improving the stability and convenience of detection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BAOTOU ZHINONG TECHNOLOGY CO LTD
- Filing Date
- 2025-01-08
- Publication Date
- 2026-05-08
AI Technical Summary
In existing agricultural facility environmental monitoring devices, the extension rod is prone to moving up and down during the testing process, resulting in unstable testing and requiring manual extension, which is inconvenient to use.
An agricultural facility environmental monitoring device was designed, which includes a detection device and a limiting device. The device uses a drive motor to drive a rotating rod and a lifting rod to automatically extend and retract the detection head, and uses a conical rod to limit the position in the soil to ensure stable detection.
It achieves automatic extension and retraction of the detection head, improving the stability and convenience of detection. The structure is simple and easier to use.
Smart Images

Figure CN224216690U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of environmental monitoring technology, specifically, it relates to an environmental monitoring device for agricultural facilities. Background Technology
[0002] Existing technologies involve testing the soil at the planting site before planting crops, using information such as soil moisture to guide planting operations. However, during the testing process of existing technologies, the inventors discovered the following problems:
[0003] The prior art discloses an agricultural facility environmental monitoring device (202211618533.7), which includes a detector, the detector being connected to a monitoring frame via a connecting wire, and further includes: an insertion rod head; a scraping groove at the lower end of the insertion rod head; an extension rod threadedly connected to the insertion rod head; a sealing cap threadedly connected to the extension rod, the connecting wire passing through the sealing cap; wherein, the insertion rod head is provided with a lower air chamber; an air inflation device; and a conical head.
[0004] In existing technologies, an extension rod is inserted into the ground for testing. However, these technologies lack a device to limit the extension rod's movement, which can cause it to move up and down during testing, affecting the testing process. Furthermore, the existing testing equipment requires manual extension, which is cumbersome. Therefore, existing technologies have certain drawbacks.
[0005] In view of this, this utility model is proposed. Utility Model Content
[0006] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by this utility model is as follows:
[0007] An agricultural facility environmental monitoring device, wherein:
[0008] This includes an extension rod, with a connecting base fixedly installed on each of the left and right side walls of the extension rod, and a support leg fixedly installed on the bottom wall of each of the two connecting bases.
[0009] The device includes a detection device, which includes a lifting rod, a rotating rod above the lifting rod, a connecting rod fixedly installed on the bottom wall of the lifting rod, a detection head fixedly installed on the bottom wall of the connecting rod, a conical head fixedly installed on the bottom wall of the detection head, and a conical plate fixedly installed on the bottom wall of the extension rod.
[0010] The device includes a limiting device, which includes two lifting plates. Multiple abutments are fixedly installed on the bottom wall of each lifting plate. Two sets of conical heads are arranged in a ring array on the inner side wall of the extension rod. Multiple conical rods are fixedly installed at equal intervals on the far end of each conical head.
[0011] In a preferred embodiment of this utility model, a drive motor is provided above the rotating rod, the drive motor is fixedly connected to the top wall of the cavity of the extension rod, and the output end of the drive motor is fixedly connected to the top wall of the rotating rod.
[0012] In a preferred embodiment of this utility model, the bottom wall of the rotating rod is hollowed out, the upper part of the lifting rod is threadedly connected to the cavity of the rotating rod, and a second limiting rod is fixedly installed on both the left and right side walls of the lifting rod.
[0013] In a preferred embodiment of this utility model, two side rods are fixedly installed on the left and right side walls of the cavity of the extension rod. The ends of the two second limiting rods that are far apart from each other are respectively movably installed between the two corresponding side rods. The detection head passes through the conical plate and is movably connected to the penetration point of the conical plate. The connecting rod is movably installed in the cavity of the conical plate.
[0014] In a preferred embodiment of this utility model, the two sets of conical heads are respectively located below the two lifting plates. The two lifting plates are fixedly installed on the side wall of the lifting rod. An inclined plate is electrostatically installed on the side wall where the multiple conical heads are close to each other. The multiple inclined plates are in an inclined state from low to high, from close to each other to far away from each other. The position of the abutment plate corresponds to that of the inclined plate.
[0015] In a preferred embodiment of this utility model, a drive plate is fixedly installed on the bottom wall of the multiple conical heads that are close to each other, and a spring is fixedly installed on the wall of the multiple drive plates that are far apart from each other. The other ends of the multiple springs are fixedly connected to the inner side wall of the extension rod.
[0016] In a preferred embodiment of this utility model, a limiting block is fixedly installed on each of the two side walls corresponding to the plurality of conical heads, and a plurality of first limiting rods are fixedly installed on the inner side wall of the extension rod cavity. The plurality of first limiting rods pass through the corresponding limiting blocks and are movably connected to the through-holes of the limiting blocks. A plurality of through holes are opened on the side wall of the extension rod at the positions corresponding to the conical heads, and the conical heads are movably installed in the cavity of the through holes.
[0017] Compared with the prior art, the present invention has the following advantages:
[0018] 1. In summary, by setting up a detection device and a limiting device, the lifting rod can be driven to move up and down, thereby moving the detection head. The detection head is extended to detect the soil. During the movement of the lifting rod, multiple conical rods are inserted into the soil for limiting. Compared with the existing technology, this method is convenient to use and has a simple structure.
[0019] 2. In summary, by setting up a drive motor, rotating rod, lifting rod, side rod, second limit rod, detection head, connecting rod, conical plate, and conical head, the rotation of the drive motor output can drive the rotating rod to rotate, thereby driving the lifting rod to move up and down, and causing the detection head to extend for detection. It is convenient to use and has a simple structure.
[0020] 3. In summary, by setting up a perforation, lifting plate, abutment, conical head, conical rod, spring, drive plate, limit block, first limit rod, and inclined plate, multiple conical rods can be moved by the lifting rod moving up and down. During the detection process, multiple conical rods are inserted into the soil for limiting. After the detection is completed, multiple conical rods automatically reset. It is convenient to use and has a simple structure.
[0021] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0022] In the attached diagram:
[0023] Figure 1 This is a perspective view of one side of the present invention;
[0024] Figure 2 This is a perspective view of the other side of the present invention;
[0025] Figure 3 This is a perspective view of the limiting device of this utility model;
[0026] Figure 4 This is a perspective view of one side of the detection device of this utility model;
[0027] Figure 5 This is a perspective view of the other side of the detection device of this utility model.
[0028] In the diagram: 10. Extension rod; 11. Connecting base; 12. Support leg; 13. Perforation; 14. Drive motor; 15. Rotating rod; 16. Lifting rod; 17. Side rod; 18. Lifting plate; 19. Connecting rod; 20. Detection head; 21. Conical head; 22. Support plate; 23. Conical rod; 24. Spring; 25. Drive plate; 26. Limiting block; 27. First limiting rod; 28. Conical plate; 29. Second limiting rod; 30. Inclined plate. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate this utility model.
[0030] like Figure 1 and Figure 2 As shown, an agricultural facility environmental monitoring device, wherein:
[0031] The extension rod 10 has a connecting base 11 fixedly installed on both its left and right sides, and a support leg 12 fixedly installed on the bottom side of each connecting base 11.
[0032] The device includes a detection device, which includes a lifting rod 16, a rotating rod 15 above the lifting rod 16, a connecting rod 19 fixedly installed on the bottom wall of the lifting rod 16, a detection head 20 fixedly installed on the bottom wall of the connecting rod 19, a conical head 21 fixedly installed on the bottom wall of the detection head 20, and a conical plate 28 fixedly installed on the bottom wall of the extension rod 10.
[0033] The device includes a limiting device, which includes two lifting plates 18. Multiple abutments 22 are fixedly installed on the bottom wall of each of the two lifting plates 18. Two sets of conical heads 21 are arranged in a ring array on the inner side wall of the extension rod 10. Multiple conical rods 23 are fixedly installed at equal intervals on the far end of each conical head 21.
[0034] It is worth noting that the extension rod 10, connecting base 11, support leg 12 and detection head 20 have all been disclosed in an agricultural facility environmental monitoring device (202211618533.7), and will not be described in detail here.
[0035] In practical use, the detection device can be moved up and down by rotating the rotating rod 15. The detection head 20 is extended by moving the lifting rod 16 up and down. When the detection head 20 is underground, information such as moisture in the soil can be detected. The limiting device can drive multiple conical heads 21 to move during the descent of the lifting rod 16. The movement of multiple conical heads 21 inserts multiple conical rods 23 into the soil to limit the extension rod 10, which facilitates the detection operation.
[0036] In summary, by setting up a detection device and a limiting device, the lifting rod 16 can be driven to move up and down, thereby moving the detection head 20. The detection head 20 is extended to detect the soil. During the movement of the lifting rod 16, multiple conical rods 23 are inserted into the soil for limiting. Compared with the existing technology, this method is convenient to use and has a simple structure.
[0037] like Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, a drive motor 14 is provided above the rotating rod 15. The drive motor 14 is fixedly connected to the top wall of the cavity of the extension rod 10, and the output end of the drive motor 14 is fixedly connected to the top wall of the rotating rod 15.
[0038] The bottom wall of the rotating rod 15 is hollowed out, and the upper part of the lifting rod 16 is threadedly connected to the cavity of the rotating rod 15. A second limiting rod 29 is fixedly installed on both the left and right side walls of the lifting rod 16.
[0039] Two side rods 17 are fixedly installed on the left and right side walls of the cavity of the extension rod 10. The ends of the two second limiting rods 29, which are far apart from each other, are movably installed between the two corresponding side rods 17. The detection head 20 passes through the conical plate 28 and is movably connected to the penetration point of the conical plate 28. The connecting rod 19 is movably installed in the cavity of the conical plate 28. The drive motor 14 and the detection head 20 are both electrically connected to the power supply and the switch.
[0040] In practical use, when the output end of the drive motor 14 rotates, it can cause the rotating rod 15 to rotate. The rotation of the rotating rod 15 can drive the lifting rod 16 to move up and down. The lifting rod 16 cannot rotate due to the limitation of the connecting rod 19 and the first limit rod 27. The up and down movement of the lifting rod 16 can drive the connecting rod 19 to move up and down. The up and down movement of the connecting rod 19 can drive the detection head 20 to move up and down. The up and down movement of the detection head 20 can drive the conical head 21 to move up and down. The conical end of the conical head 21 can be easily inserted into the soil, and then the detection head 20 can be extended to detect the soil. The conical plate 28 can protect and limit the detection head 20.
[0041] In summary, by setting up a drive motor 14, a rotating rod 15, a lifting rod 16, a side rod 17, a second limit rod 29, a detection head 20, a connecting rod 19, a conical plate 28, and a conical head 21, the rotation of the output end of the drive motor 14 can drive the rotating rod 15 to rotate, thereby driving the lifting rod 16 to move up and down, and causing the detection head 20 to extend for detection. It is convenient to use and has a simple structure.
[0042] like Figure 1 , Figure 2 and Figure 3As shown, the two sets of conical heads 21 are located below the two lifting plates 18 respectively. The two lifting plates 18 are fixedly installed on the side wall of the lifting rod 16. An inclined plate 30 is electrostatically installed on the side wall where the multiple conical heads 21 are close to each other. The multiple inclined plates 30 are in an inclined state from low to high, from close to each other to far away from each other. The position of the abutment plate 22 corresponds to that of the inclined plate 30.
[0043] A drive plate 25 is fixedly installed on the bottom wall of the multiple conical heads 21 that are close to each other, and a spring 24 is fixedly installed on the wall of the multiple drive plates 25 that are far apart from each other. The other end of the multiple springs 24 is fixedly connected to the inner side wall of the extension rod 10.
[0044] A limiting block 26 is fixedly installed on each of the two side walls corresponding to the multiple conical heads 21. Multiple first limiting rods 27 are fixedly installed on the inner side wall of the extension rod 10. The multiple first limiting rods 27 pass through the corresponding limiting block 26 and are movably connected to the through point of the limiting block 26. Multiple through holes 13 are opened on the side wall of the extension rod 10 at the position corresponding to the conical head 21. The conical head 21 is movably installed in the cavity of the through hole 13.
[0045] In practical use, when the lifting rod 16 moves up and down, it can drive the two lifting plates 18 to move up and down. The movement of the two lifting plates 18 can drive the multiple abutment plates 22 to rotate. The movement of the multiple abutment plates 22 can drive the multiple inclined plates 30 to move away from each other through the inclined surfaces of the multiple inclined plates 30. The multiple inclined plates 30 cannot move up and down due to the limitation of the conical head 21. The movement of the multiple inclined plates 30 can drive the multiple conical heads 21 to move. The movement of the multiple conical heads 21 can drive the multiple conical rods 23 to move. The movement of the multiple conical rods 23 can penetrate the through hole 13 and be inserted into the soil to perform the limiting operation. When the multiple abutment plates 22 move upward, they can disengage from the inclined plates 30. The force of the spring 24 can push the multiple drive plates 25 to move closer to each other. The movement of the drive plates 25 can drive the conical heads 21 to reset, and then drive the conical rods 23 to reset. The limiting block 26 and the first limiting rod 27 can both limit the conical heads 21.
[0046] In summary, by setting up the perforation 13, lifting plate 18, abutment plate 22, conical head 21, conical rod 23, spring 24, drive plate 25, limit block 26, first limit rod 27 and inclined plate 30, multiple conical rods 23 can be moved by the lifting rod 16 moving up and down. During the detection process, multiple conical rods 23 are inserted into the soil for limiting. After the detection is completed, multiple conical rods 23 automatically reset. It is convenient to use and has a simple structure.
[0047] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.
Claims
1. An agricultural facility environmental monitoring device, characterized in that, The following is stated: Includes an extension rod (10), on which a connecting base (11) is fixedly installed on both the left and right sides of the extension rod (10), and on the bottom side of each of the two connecting bases (11) a support leg (12) is fixedly installed: The device includes a detection device, which includes a lifting rod (16), a rotating rod (15) above the lifting rod (16), a connecting rod (19) fixedly installed on the bottom wall of the lifting rod (16), a detection head (20) fixedly installed on the bottom wall of the connecting rod (19), a conical head (21) fixedly installed on the bottom wall of the detection head (20), and a conical plate (28) fixedly installed on the bottom wall of the extension rod (10). The device includes a limiting device, which includes two lifting plates (18). Multiple abutments (22) are fixedly installed on the bottom wall of each of the two lifting plates (18). Two sets of conical heads (21) are arranged in a ring array on the inner side wall of the extension rod (10). Multiple conical rods (23) are fixedly installed at equal intervals on the annularly opposite end of the multiple conical heads (21).
2. The agricultural facility environmental monitoring equipment according to claim 1, characterized in that, A drive motor (14) is provided above the rotating rod (15). The drive motor (14) is fixedly connected to the top wall of the cavity of the extension rod (10). The output end of the drive motor (14) is fixedly connected to the top wall of the rotating rod (15).
3. The agricultural facility environmental monitoring equipment according to claim 2, characterized in that, The bottom wall of the rotating rod (15) is hollowed out, and the upper part of the lifting rod (16) is threadedly connected to the cavity of the rotating rod (15). A second limiting rod (29) is fixedly installed on both the left and right side walls of the lifting rod (16).
4. The agricultural facility environmental monitoring equipment according to claim 3, characterized in that, Two side rods (17) are fixedly installed on the left and right side walls of the cavity of the extension rod (10). The ends of the two second limiting rods (29) that are far apart from each other are respectively movably installed between the two corresponding side rods (17). The detection head (20) penetrates the conical plate (28) and is movably connected to the penetration point of the conical plate (28). The connecting rod (19) is movably installed in the cavity of the conical plate (28).
5. The agricultural facility environmental monitoring equipment according to claim 1, characterized in that, The two sets of conical heads (21) are located below the two lifting plates (18). The two lifting plates (18) are fixedly installed on the side wall of the lifting rod (16). An inclined plate (30) is electrostatically installed on the side wall where the multiple conical heads (21) are close to each other. The multiple inclined plates (30) are in an inclined state from low to high, from close to each other to far away from each other. The position of the abutment plate (22) corresponds to that of the inclined plate (30).
6. The agricultural facility environmental monitoring equipment according to claim 5, characterized in that, A drive plate (25) is fixedly installed on the bottom wall of the multiple conical heads (21) that are close to each other, and a spring (24) is fixedly installed on the wall of the multiple drive plates (25) that are far apart from each other. The other end of the multiple springs (24) is fixedly connected to the inner wall of the cavity of the extension rod (10).
7. The agricultural facility environmental monitoring equipment according to claim 6, characterized in that, Each of the multiple conical heads (21) has a limiting block (26) fixedly installed on its two side walls. Multiple first limiting rods (27) are fixedly installed on the inner side wall of the extension rod (10). The multiple first limiting rods (27) pass through the corresponding limiting block (26) and are movably connected to the through point of the limiting block (26). Multiple through holes (13) are opened on the side wall of the extension rod (10) at the position corresponding to the conical head (21). The conical head (21) is movably installed in the cavity of the through hole (13).
Citation Information
Patent Citations
Agricultural facility environment detection device
CN116165363A