Soil layer thickness accurate detection structure for non-tillage agricultural land recovery

By installing structures such as fixing blocks, fixing plates, side plates, and stepping plates on the detector, the problem of laborious removal of traditional soil thickness detection structures is solved, and convenient and stable soil thickness detection operation is achieved.

CN223691747UActive Publication Date: 2025-12-19SURVEYING & MAPPING GEOGRAPHIC INFORMATION CENT OF SICHUAN GEOLOGICAL SURVEY & RES INST
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Patent Information

Application Number
CN202522405132.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-13
Publication Date
2025-12-19
Estimated Expiration
2035-11-13

AI Technical Summary

Technical Problem

Traditional structures for accurately detecting the soil thickness in the restoration of non-agricultural land are laborious to remove when taking out the detector, lacking convenient stress points, which makes removal inconvenient.

Method used

A fixing block is installed on the surface of the detector, and a fixing plate and a side plate are connected. A reinforcing rod is welded to the side plate. The fixing seat is connected to the first grip. A foot plate is welded to the bottom of the collar to provide a convenient force point. The foot plate and collar ensure the stability of the detector when it is pulled out.

Benefits of technology

It provides convenient force points, reduces the labor intensity when removing the detector, and improves the convenience and stability of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a soil layer thickness accurate detection structure for non-tillage agricultural land recovery, which belongs to the technical field of soil layer thickness detection and comprises a detector, a solar panel and a control box, one end of the detector is connected with the control box through a circuit, the control box is connected with the solar panel through a circuit, and a fixing block is mounted on the surface of the detector. Fixing plates are fixedly connected to the side faces of the fixing blocks, side plates are welded to the side faces of the fixing plates, and reinforcing rods are welded to the surfaces of the side plates. According to the soil layer thickness accurate detection structure for non-tillage agricultural land recovery, a fixing block is installed on the surface of a detector, a fixing plate is fixedly connected to the side face of the fixing block, a side plate is welded to the side face of the fixing plate, then a first grip is used as a stress point, and the detector can be pulled out through the first grip; at the moment, the first grip can provide a convenient force bearing point, the direction stability of the detector can be guaranteed through the pedal and the lantern ring when the detector is pulled out, and the detector is more convenient to pull out.
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Description

Technical Field

[0001] This utility model belongs to the field of soil thickness detection technology, and in particular relates to a precise soil thickness detection structure for the restoration of non-arable land. Background Technology

[0002] In the process of restoring non-agricultural land, it is necessary to know the soil layer thickness. Soil moisture detection is usually used to detect the soil moisture content and thus determine the soil layer thickness at that location. At this time, a precise soil layer thickness detection structure for non-agricultural land restoration will be needed during the detection process.

[0003] The existing soil thickness precision detection structures on the market have the following problems in actual use: In the actual use of traditional non-arable land restoration soil thickness precision detection structures, because the detector is located inside the soil layer during use, it needs to be removed after the device is finished. The detector is usually removed by pulling it out, but the detector itself does not have a force-bearing point that is easy to bear force. Therefore, it is relatively difficult and inconvenient to remove the detector. Utility Model Content

[0004] The purpose of this invention is to provide a structure for accurately detecting soil thickness for the restoration of non-arable land, in order to solve the technical problems mentioned in the background art.

[0005] To achieve the above objectives, the specific technical solution of this utility model is as follows: a soil layer thickness precision detection structure for the restoration of non-arable land, comprising a detector, a solar panel, and a control box. One end of the detector is connected to the control box via a circuit, and the control box is connected to the solar panel via a circuit. A fixing block is installed on the surface of the detector, and a fixing plate is fixedly connected to the side of the fixing block. A side plate is welded to the side of the fixing plate, and reinforcing rods are welded to the surface of the side plate. The reinforcing rods are symmetrically distributed. A fixing plate is welded to the other end of the reinforcing rods. A fixing seat is fixedly connected to the top of the side plate, and a first handle is fixedly connected to the other end of the fixing seat. A collar is fitted onto the surface of the detector, and a step plate is welded to the bottom of the collar.

[0006] Preferably, the solar panel is connected to a mounting column at its bottom, a first clamping ring is welded to the back of the control box, a second clamping ring is welded to the back of the control box, a first fixing piece is welded to the surface of the first clamping ring, a second fixing piece is welded to the surface of the second clamping ring, bolts are sleeved inside the first and second fixing pieces, nuts are sleeved on the surface of the bolts, one end of the nut is attached to the side of the second fixing piece, and the inner walls of the first and second clamping rings are attached to the surface of the mounting column.

[0007] Preferably, the detector surface is welded with an outer threaded rod, the outer threaded rod is in symmetrical distribution, the other end of the outer threaded rod penetrates through a fixed block, the surface of the outer threaded rod is sleeved with a knob, and one end of the knob is attached to the side of the fixed block.

[0008] Preferably, the mounting column is provided with a hole, one end of the first clamping ring is provided with a limiting assembly, the limiting assembly comprises a strip-shaped plate, a spring, a plug rod and a fixed strip, one end of the first clamping ring is welded with the strip-shaped plate, the side of the strip-shaped plate is welded with the spring, the other end of the spring is welded with the fixed strip, the side of the fixed strip is welded with the plug rod, the other end of the plug rod penetrates through the strip-shaped plate, the other end of the plug rod is embedded in the hole, and one end of the second clamping ring is provided with the limiting assembly.

[0009] Preferably, the side of the fixed strip is welded with a second handle, the second handle is located on both sides of the mounting column, and the bottom of the mounting column is welded with a bottom plate.

[0010] Preferably, the fixed block is in symmetrical distribution, and the first handle is in symmetrical distribution.

[0011] The soil layer thickness accurate detection structure for non-cultivated farmland recovery has the following advantages: the soil layer thickness accurate detection structure for non-cultivated farmland recovery is characterized in that a fixed block is mounted on the surface of a detector, a fixed plate is fixedly connected to the side of the fixed block, a side plate is welded to the side of the fixed plate, a reinforcing rod is welded to the surface of the side plate, the reinforcing rod is in symmetrical distribution, the other end of the reinforcing rod is welded to the fixed plate, the fixed seat is fixedly connected to the top of the side plate, the first handle is fixedly connected to the other end of the fixed seat, a sleeve ring is sleeved on the surface of the detector, and a stepping plate is welded to the bottom of the sleeve ring; when the detector is inserted into the soil layer, the sleeve ring moves to the top of the detector under the constraint of the ground, at this time, the stepping plate moves with the sleeve ring; then when the detector is pulled out, the foot can be directly stepped on the stepping plate, then the first handle is used as the stress point, and the detector can be pulled out outward through the first handle; at this time, the first handle can provide a convenient stress point, and the stability of the direction of the detector when being pulled out can be ensured through the stepping plate and the sleeve ring, and the detector is more convenient to pull out. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments, and it should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation to the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0013] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0014] Figure 2The utility model discloses a stepping plate structure schematic diagram shows that

[0015] Figure 3 The utility model discloses a Figure 2 The A part of enlargement of middle shows that

[0016] Figure 4 The utility model discloses a Figure 2 The B part of enlargement of middle shows.

[0017] Marked illustration in the drawing: 1, install the column, 2, solar panel, 3, control box, 4, detector, 5, bottom plate, 6, step on the board, 7, the thimble, 8, side plate, 9, fixed seat, 10, first handle, 11, reinforcing rod, 12, fixed plate, 13, fixed block, 14, outer thread rod, 15, knob, 16, first clamping ring, 17, second clamping ring, 18, first fixed sheet, 19, second fixed sheet, 20, bolt, 21, nut, 22, fixed strip, 23, plug rod, 24, spring, 25, jack, 26, second handle, 27, strip board. Specific implementation

[0018] In the following, only some exemplary embodiments are simply described. As those skilled in the art can realize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the embodiments of the utility model. Therefore, the drawings and the description are considered to be exemplary in nature rather than limiting.

[0019] In the description of the embodiments of the utility model, it is understood that the orientation or positional relationship indicated by the terms "length", "vertical", "horizontal", "top", "bottom" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the embodiments of the utility model and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the embodiments of the utility model.

[0020] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more features. In the description of the embodiments of the utility model, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0021] In the embodiments of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected, or it can be communicated; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication or interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0022] The following disclosure provides many different embodiments or examples for implementing different structures of the embodiments of the present application. In order to simplify the disclosure of the embodiments of the present application, the components and settings of specific examples are described below. Of course, they are only examples, and the purpose is not to limit the embodiments of the present application. In addition, the embodiments of the present application can refer to the same reference numerals and / or reference letters in different examples, and such repetition is for the purpose of simplification and clarity, which does not indicate the relationship between the various embodiments and / or settings discussed.

[0023] In order to better understand the purpose, structure and function of the present application, the soil layer thickness accurate detection structure for non-cultivated farmland restoration is further described in detail below in combination with the drawings.

[0024] As shown in Figures 1-4 The soil layer thickness accurate detection structure for non-cultivated farmland restoration of the present application, as shown in the drawings, comprises a detector 4, a solar panel 2 and a control box 3. One end of the detector 4 is connected to the control box 3 through a line, and the control box 3 is connected to the solar panel 2 through a line. The surface of the detector 4 is provided with a fixed block 13, the side of the fixed block 13 is fixedly connected with a fixed plate 12, the side of the fixed plate 12 is welded with a side plate 8, the surface of the side plate 8 is welded with a reinforcing rod 11. By installing the reinforcing rod 11, the connection strength between the side plate 8 and the fixed plate 12 can be strengthened, so that the side plate 8 will not be easily broken, and the stability of the side plate 8 can be ensured during use. The reinforcing rod 11 is in a symmetrical distribution form, and the other end of the reinforcing rod 11 is welded with the fixed plate 12. The top of the side plate 8 is fixedly connected with a fixed seat 9, and the other end of the fixed seat 9 is fixedly connected with a first handle 10. The surface of the detector 4 is sleeved with a sleeve ring 7, and the bottom of the sleeve ring 7 is welded with a stepping plate 6. By installing the stepping plate 6, the sleeve ring 7 and the first handle 10, when the detector 4 is pulled out, the foot can be directly stepped on the stepping plate 6, and then the first handle 10 is used as the stress point, and the detector 4 can be pulled out outward through the first handle 10. At this time, the first handle 10 can provide a convenient stress point, and the stability of the direction of the detector 4 when pulled out can be ensured through the stepping plate 6 and the sleeve ring 7, and the pulling is more convenient.

[0025] The solar panel 2 is connected to the mounting column 1, the first clamping ring 16 is welded on the back of the control box 3, the second clamping ring 17 is welded on the back of the control box 3, the first fixed sheet 18 is welded on the surface of the first clamping ring 16, the second fixed sheet 19 is welded on the surface of the second clamping ring 17, the bolt 20 is sleeved in the first fixed sheet 18 and the second fixed sheet 19, the nut 21 is sleeved on the surface of the bolt 20, one end of the nut 21 is attached to the side of the second fixed sheet 19, the inner walls of the first clamping ring 16 and the second clamping ring 17 are attached to the surface of the mounting column 1, by installing the first clamping ring 16, the second clamping ring 17, the bolt 20 and the nut 21, when installing the control box 3, the first clamping ring 16 and the second clamping ring 17 can be sleeved on the mounting column 1 respectively, until the inner walls of the first clamping ring 16 and the second clamping ring 17 are attached to the surface of the mounting column 1, then the bolt 20 penetrates the first fixed sheet 18 and the second fixed sheet 19, then the nut 21 is sleeved on the surface of the bolt 20, one end of the nut 21 is threadedly connected to one end of the bolt 20, and the second fixed sheet 19 and the first fixed sheet 18 tighten the first clamping ring 16 and the second clamping ring 17 through the bolt 20 and the nut 21, at this time, the friction between the first clamping ring 16, the second clamping ring 17 and the surface of the mounting column 1 is increased, and then the control box 3 is fixed on the surface of the mounting column 1, which can ensure the stability of the control box 3.

[0026] The detector 4 is welded with an external threaded rod 14 on the surface, the external threaded rod 14 is in a symmetrical distribution form, the other end of the external threaded rod 14 penetrates the fixed block 13, the external threaded rod 14 is sleeved with a knob 15 on the surface, one end of the knob 15 is attached to the side of the fixed block 13, by installing the external threaded rod 14, when installing the side plate 8, the external threaded rod 14 can penetrate the fixed block 13, then the knob 15 can be sleeved on the surface of the external threaded rod 14, until one end of the knob 15 presses the surface of the fixed block, at this time, the side plate 8 can be provided with the installation and fixing effect, which is very convenient to install.

[0027] A mounting column 1 is provided with a hole 25, one end of the first clamping ring 16 is provided with a limiting assembly, the limiting assembly comprises a strip-shaped plate 27, a spring 24, a plug rod 23 and a fixed strip 22, the first clamping ring 16 is welded with the strip-shaped plate 27 at one end, the strip-shaped plate 27 is welded with the spring 24 at the side, the other end of the spring 24 is welded with the fixed strip 22, the fixed strip 22 is welded with the plug rod 23 at the side, the other end of the plug rod 23 penetrates the strip-shaped plate 27, and the other end of the plug rod 23 is embedded in the hole 25, one end of the second clamping ring 17 is provided with a limiting assembly, by installing the limiting assembly, when installing the control box 3, the spring 24 can be pulled first, at this time, the spring 24 will be extended, until the plug rod 23 is separated from the strip-shaped plate 27, then the control box 3 is moved to the installation position, then the plug rod 23 is moved by the contraction of the spring 24, until the plug rod 23 is embedded in the hole 25, at this time, the control box 3 can be preliminarily fixed on the mounting column 1, then the control box 3 does not need to be held when installing, which is more convenient to install.

[0028] The second handle 26 is welded on the side of the fixed strip 22, and is located on both sides of the mounting column 1. The bottom of the mounting column 1 is welded with the bottom plate 5. By installing the second handle 26, when pulling the spring 24, the second handle 26 can be used as a force point. Through the second handle 26, the spring 24 can be directly forced. It is very convenient to use.

[0029] The fixed block 13 is in a symmetrical distribution form, and the first handle 10 is in a symmetrical distribution form. By the distribution form of the first handle 10, when pulling out the detector 4, the force can be more stable and convenient. It is very convenient to use.

[0030] The working principle of the soil thickness precision detection structure for non-cultivated land restoration is as follows: when using the device, the control box 3 should be installed first. At this time, the spring 24 can be pulled first when the control box 3 is installed. At this time, the spring 24 will be extended until the insertion rod 23 is separated from the strip-shaped plate 27. Then move the control box 3 to the installation position. Then use the contraction of the spring 24 to move the insertion rod 23 until the insertion rod 23 is embedded in the insertion hole 25. At this time, the control box 3 is preliminarily fixed on the mounting column 1. At this time, the inner walls of the first clamping ring 16 and the second clamping ring 17 are attached to the surface of the mounting column 1. Then use the bolt 20 to penetrate the first fixed sheet 18 and the second fixed sheet 19. Then the nut 21 is sleeved on the surface of the bolt 20. One end of the nut 21 is threadedly connected to one end of the bolt 20. The second fixed sheet 19 and the first fixed sheet 18 are tightened by the bolt 20 and the nut 21 to tighten the first clamping ring 16 and the second clamping ring 17. At this time, the friction between the first clamping ring 16, the second clamping ring 17 and the surface of the mounting column 1 is increased. The control box 3 is fixed on the surface of the mounting column 1. The stability of the control box 3 can be ensured when in use. Then the detector 4 penetrates the sleeve ring 7. Finally, the detector 4 is inserted into the soil layer and can be used. When the detector 4 is inserted into the soil layer, the sleeve ring 7 will move to the top of the detector 4 under the constraint of the ground. At this time, the stepping plate 6 will move with the sleeve ring 7. When it is necessary to pull out the detector 4, since the fixed block 13 is installed on the surface of the detector 4, and the fixed plate 12 is fixedly connected on the side of the fixed block 13, the side plate 8 is welded on the side of the fixed plate 12, the reinforcing rod 11 is welded on the surface of the side plate 8, the reinforcing rod 11 is in a symmetrical distribution form, and the other end of the reinforcing rod 11 is welded with the fixed plate 12, the fixed seat 9 is fixedly connected to the top of the side plate 8, and the other end of the fixed seat 9 is fixedly connected with the first handle 10, the sleeve ring 7 is sleeved on the surface of the detector 4, and the stepping plate 6 is welded to the bottom of the sleeve ring 7. At this time, when pulling out the detector 4, the foot can be directly stepped on the stepping plate 6. Then use the first handle 10 as a force point. Through the first handle 10, the detector 4 can be pulled out. At this time, the first handle 10 can provide a convenient force point. Through the stepping plate 6 and the sleeve ring 7, the stability of the direction of the detector 4 when being pulled out can be ensured. It is more convenient to pull out.

[0031] It can be understood that the utility model is described through some embodiments, and the person skilled in the art knows that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the utility model. In addition, under the guidance of the utility model, these features and embodiments can be modified to adapt to specific conditions and materials without departing from the spirit and scope of the utility model. Therefore, the utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the application belong to the scope protected by the utility model.

Claims

1. A structure for accurately detecting the thickness of soil layers for the restoration of non-cultivated land, comprising a detector (4), a solar panel (2) and a control box (3), one end of the detector (4) being connected to the control box (3) through a line, and the control box (3) being connected to the solar panel (2) through a line, characterized in that: The detector (4) surface mounting fixed block (13), the fixed block (13) side fixed connection fixed plate (12), the fixed plate (12) side welding side plate (8), the side plate (8) surface welding reinforcement bar (11), the reinforcement bar (11) is in symmetrical distribution form, the reinforcement bar (11) the other end welding fixed plate (12), the side plate (8) top fixed connection fixed seat (9), the fixed seat (9) the other end fixed connection first handle (10), the detector (4) surface sleeve ring (7), the ring (7) bottom welding pedal (6). ​ 2. The structure for precision detection of soil layer thickness for the restoration of non-cultivated land according to claim 1, characterized in that: The solar panel (2) bottom connection installation column (1), the control box (3) back welding first clamp ring (16), the control box (3) back welding second clamp ring (17), the first clamp ring (16) surface welding first fixed sheet (18), the second clamp ring (17) surface welding second fixed sheet (19), the first fixed sheet (18) and second fixed sheet (19) inside sleeve bolt (20), the bolt (20) surface sleeve nut (21), the nut (21) one end adheres to the second fixed sheet (19) side, the first clamp ring (16) and second clamp ring (17) inner wall adhere to the surface of installation column (1).

3. The soil thickness precision detecting structure for the non-cultivated land restoration according to claim 1, characterized in that: The detector (4) surface welding outer thread rod (14), the outer thread rod (14) is in symmetrical distribution form, the outer thread rod (14) the other end penetrates fixed block (13), the outer thread rod (14) surface sleeve knob (15), the knob (15) one end adheres to the fixed block (13) side.

4. The structure for precision detection of soil layer thickness for the restoration of non-cultivated land according to claim 2, characterized in that: The installation column (1) surface opening bushing (25), the first clamp ring (16) one end is provided with a limiting assembly, the limiting assembly includes strip plate (27), spring (24), plug rod (23) and fixed strip (22), the first clamp ring (16) one end welding strip plate (27), the strip plate (27) side welding spring (24), the spring (24) the other end welding fixed strip (22), the fixed strip (22) side welding plug rod (23), the plug rod (23) the other end penetrates strip plate (27), the plug rod (23) the other end is embedded in the inside of bushing (25), the second clamp ring (17) one end is provided with a limiting assembly.

5. The structure for precision detection of soil layer thickness for the restoration of non-cultivated land according to claim 4, characterized in that: The fixed strip (22) side welding second handle (26), the second handle (26) is located on both sides of installation column (1), the installation column (1) bottom welding bottom plate (5).

6. The structure for accurate detection of soil layer thickness for the restoration of non-cultivated land according to claim 1, characterized in that: The fixed block (13) is in symmetrical distribution form, the first handle (10) is in symmetrical distribution form.