Water and soil conservation monitoring device convenient to position

By combining the fitting parts and adjusting screws, the convenience and stability of positioning and fixing the soil and water conservation monitoring device are enhanced, solving the problems of inconvenient positioning and poor stability of the device, and ensuring stable use of the device in severe weather.

CN224109471UActive Publication Date: 2026-04-10ZHEJIANG HUASHUI ENG TECH CONSULTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG HUASHUI ENG TECH CONSULTING CO LTD
Filing Date
2025-01-22
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing soil and water conservation monitoring devices are inconvenient to locate and fix, and have poor stability. They are prone to shaking and tipping over due to weather factors, affecting their use and causing damage.

Method used

It adopts a combination structure of fitting part, adjusting screw, main motor, moving block, push plate and fitting block, combined with auxiliary ring, fastening plate and long bolt, to increase the contact area and contact strength with the ground, and realize convenient positioning and multiple fixation by driving the adjusting screw through motor.

Benefits of technology

This improves the ease and stability of positioning and fixing the monitoring device, reduces the likelihood of shaking and damage caused by weather factors, and ensures the normal use of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The water and soil conservation monitoring device convenient to position comprises an embedding part and a main body part, an adjusting groove is formed in the upper end of the embedding part, an adjusting lead screw is movably connected into the adjusting groove through a bearing, the two ends of the adjusting lead screw are symmetrically connected with moving blocks in a screwed mode, and the side faces of the moving blocks are movably connected with one end of a push plate through a bearing; the surface of the main body part is sleeved with an auxiliary ring, the inner side of the auxiliary ring is symmetrically provided with storage grooves, the interiors of the storage grooves are slidably connected with fastening plates through limiting blocks, and the side faces of the storage grooves are in threaded connection with long bolts through threaded connection holes; the upper end surface of the embedding part is fixedly connected with a main motor. According to the utility model, through the cooperation of the adjusting screw rod, the moving block, the push plate and the embedding block, the contact area between the monitoring device and the ground is effectively increased, thereby assisting in improving the positioning and fixing convenience of the monitoring device.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water and soil conservation monitoring technical field, concretely relates to a water and soil conservation monitoring device convenient to position. BACKGROUND

[0002] Water and soil conservation refers to the prevention and control measures taken to the water and soil loss caused by natural factors and human activities, small watershed refers to the closed catchment area with small area formed by the watershed ridge and export section, the maximum watershed area is generally not more than fifty square kilometers, each small watershed is an independent natural catchment unit and an economic unit for the development of agriculture, forestry and animal husbandry production, is distributed in the upper reaches of a large river, a small watershed is a water and soil loss unit, the occurrence and development of water and soil loss have certain regularity in the whole process in small watershed, and the corresponding monitoring device needs to be used in water and soil conservation. SUMMARY

[0003] In order to overcome the defects existing in the prior art, a water and soil conservation monitoring device convenient to position is provided to solve the problems in the background art.

[0004] In order to achieve the above purpose, a water and soil conservation monitoring device convenient to position is provided, which comprises: a fitting part and a main body part, the two ends of the main body part are fixedly connected with the fitting part and a water and soil conservation monitoring assembly, an adjusting groove is formed in the upper end of the fitting part, an adjusting screw is movably connected in the adjusting groove through a bearing, and the two ends of the adjusting screw are symmetrically screwed with moving blocks, one end of a push plate is movably connected with the side surface of the moving block through a bearing, the other end of the push plate is movably connected with an embedding block through a bearing, a through hole is formed in the position corresponding to the embedding block on the side surface of the adjusting groove, an auxiliary ring is sleeved on the surface of the main body part, receiving grooves are symmetrically formed in the inner side of the auxiliary ring, a fastening plate is slidably connected in the receiving groove through a limiting block, long bolts are screwed in the side surface of the receiving groove through screw holes, a main motor is fixedly connected with the upper end surface of the fitting part, the main motor is connected with the adjusting screw through a coupling, and a containing groove is formed in the position corresponding to the main motor on the lower end surface of the main body part.

[0005] Preferably, the fitting part is in overall cylindrical structure, the lower end of the fitting part is in conical structure, the continuous groove formed in the lower end of the arc surface of the fitting part is in screw thread structure, and the adjusting groove formed in the upper end of the fitting part is in cylindrical structure.

[0006] Preferably, the middle part of the side of the adjusting groove is circumferentially provided with four groups of through holes at equal intervals, the through holes have a square structure as a whole, the top and bottom of the through holes are fixedly connected with mounting plates, the cross section of the mounting plates has an L-shaped structure, and the surface of the separation membrane is fixedly connected with the mounting plates through fixing nails.

[0007] Preferably, the adjusting groove is symmetrically connected with two groups of guide rods, the two groups of guide rods have a cylindrical structure, the two groups of moving blocks connected with the adjusting lead screws have a square structure, and the surface of the moving blocks is provided with guide holes corresponding to the positions of the guide rods.

[0008] Preferably, the push plate has a rectangular structure, the embedded block movably connected with the push plate has a triangular prism structure, the cross section of the embedded block close to one end of the separation membrane has an isosceles triangle structure, and the embedded block, the push plate, the moving block and the adjusting lead screw are combined to form a cross structure.

[0009] Preferably, the main body part has a cylindrical structure, the size of the main body part is matched with that of the embedded part, the surface of the main body part is symmetrically provided with a plurality of scale lines, the auxiliary ring sleeve connected with the surface of the main body part has a convex-shaped structure in cross section, and a plurality of auxiliary holes are circumferentially provided at equal intervals on the edge of the upper surface of the auxiliary ring.

[0010] Preferably, the fastening plate has a fan ring structure, the size of the fastening plate is matched with that of the receiving groove, the top and bottom of the receiving groove close to the opening are symmetrically connected with a plurality of limiting blocks, the limiting blocks have a square structure, the surface of the fastening plate is provided with limiting grooves corresponding to the positions of the limiting blocks, and the inner arc surface of the fastening plate is fixedly connected with a fastening layer.

[0011] Compared with the prior art, the utility model has the advantages that through the cooperation of the embedded part, the adjusting lead screw, the main motor, the moving block, the push plate and the embedded block, the monitoring device can be conveniently positioned and fixed, the continuous groove provided on the surface of the embedded part can assist in reducing the difficulty of positioning and embedding the embedded part, can assist in increasing the contact area of the embedded part and the ground soil, the embedded block and the push plate can be used for twice fixing between the embedded part and the ground, can enhance the stability of the monitoring device, through the cooperation of the auxiliary ring, the fastening plate and the long bolt, the contact area of the main body part and the ground surface can be assisted to increase, so that the problem of shaking and tilting of the monitoring device due to weather factors can be reduced, the normal use of the monitoring device can be ensured, and the probability of damage of the monitoring device can be reduced. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a front view schematic diagram of the utility model embodiment.

[0013] Figure 2 It is an embedded block part expanded schematic diagram of the utility model embodiment.

[0014] Figure 3 It is the top view schematic drawing of the fitting part of the utility model embodiment.

[0015] Figure 4 It is the top view schematic drawing of the main part and the auxiliary ring of the utility model embodiment.

[0016] In the drawing: 1, fitting part; 2, adjusting groove; 3, moving block; 4, separation membrane; 5, fitting block; 6, mounting plate; 7, push plate; 8, main motor; 9, main part; 10, auxiliary ring; 11, long bolt; 12, fastening plate; 13, water and soil conservation monitoring assembly; 14, guide rod; 15, adjusting screw rod; 16, limit block. DETAILED DESCRIPTION

[0017] Referring to Figures 1 to 4 As shown in the drawing, the utility model provides a water and soil conservation monitoring device convenient to position, including: fitting part 1 and main part 9, the both ends of main part 9 are fixedly connected fitting part 1 and water and soil conservation monitoring assembly 13 respectively, the upper end of fitting part 1 is equipped with adjusting groove 2, adjusting screw rod 15 is movably connected in adjusting groove 2 through bearing, and the both ends of adjusting screw rod 15 are symmetrically screwed moving block 3, and one end of push plate 7 is movably connected through bearing on the side surface of moving block 3, the other end of push plate 7 is movably connected fitting block 5 through bearing, and the position corresponding to fitting block 5 is equipped with through hole on the side surface of adjusting groove 2, the surface of main part 9 is sleeved auxiliary ring 10, and the inside of auxiliary ring 10 is symmetrically equipped with storage groove, and fastening plate 12 is slidably connected in storage groove through limit block 16, and long bolt 11 is screwed through screwing hole on the side surface of storage groove, and the upper end surface of fitting part 1 is fixedly connected main motor 8, and main motor 8 is connected adjusting screw rod 15 through coupling, and the lower end surface of main part 9 is equipped with accommodating groove corresponding to the position of main motor 8.

[0018] In this embodiment, the location where the soil and water conservation monitoring device needs to be installed is first determined. Then, the fitting part 1 of the monitoring device is positioned and embedded in the corresponding location. After the fitting part 1 is positioned and embedded, the monitoring device is connected to an external power source, and the main motor 8 is turned on. The main motor 8 drives the adjusting screw 15 to rotate through the coupling. The adjusting screw 15 pushes the two sets of screwed moving blocks 3 to move relative to each other. Then, the moving blocks 3 push the fitting block 5 to move towards the corresponding through-hole direction through the push plate 7. As a result, the fitting block 5 will break through the separator membrane 4 and embed itself in the soil in the horizontal plane, thereby effectively enhancing the soil and water conservation monitoring. To ensure the stability of the connection between the soil conservation monitoring device and the ground, the auxiliary ring 10 is then lowered so that its lower surface is in contact with the ground surface. The long bolt 11 is rotated, and it moves through the bolted hole. The long bolt 11 then pushes the fastening plate 12 to move, and the fastening plate 12 presses against the surface of the main body 9 through the fastening layer, thereby completing the fixed connection between the main body 9 and the auxiliary ring 10. This effectively reduces the probability of the monitoring device shaking or tilting. Then, the corresponding data can be monitored through the scale lines on the surface of the soil and water conservation monitoring component 13 and the main body 9.

[0019] In a preferred embodiment, the fitting part 1 is cylindrical in shape, while the lower end of the fitting part 1 is conical. The continuous groove at the lower end of the arc surface of the fitting part 1 is threaded, and the adjustment groove 2 at the upper end of the fitting part 1 is cylindrical.

[0020] In this embodiment, as Figure 1 and Figure 3 The tapered structure at the lower end of the fitting part 1 facilitates the positioning and embedding of the monitoring device, and the continuous grooves on the surface of the fitting part 1 help to increase the contact area with the soil, thereby improving the stability of the monitoring device after it is positioned and fixed.

[0021] As a preferred embodiment, four sets of through openings are equally spaced around the center of the side of the adjusting groove 2. The through openings are generally square in shape, and the top and bottom of the through openings are fixedly connected to the mounting plate 6. The cross-section of the mounting plate 6 is L-shaped. At the same time, the separator membrane 4 is fixedly connected to the mounting plate 6 by fixing nails.

[0022] In this embodiment, as Figure 1 , Figure 2 and Figure 3 The installation plate 6 allows the separator membrane 4 to easily close the through opening, thereby preventing soil from falling into the adjustment groove 2 when the fitting part 1 is inserted, ensuring the stability of the screw connection between the adjustment screw 15 and the moving block 3, reducing the probability of transmission failure. At the same time, the separator membrane 4 is made of easily breakable size to ensure that the fitting block 5 can extend smoothly.

[0023] As a preferable embodiment, the two groups of guide rods 14 are symmetrically connected in the adjusting groove 2, both of which are in cylindrical structure, and the two groups of moving blocks 3 screwed by the adjusting screw 15 are in square structure, and the surface of the moving block 3 corresponds to the position of the guide hole of the guide rod 14.

[0024] In the embodiment, as shown in Figure 2 and Figure 3 , the size of the guide rod 14 and the guide hole are matched, which can assist to enhance the stability of the moving block 3 when moving, and can also ensure that the four groups of embedded blocks 5 are always opposite to the corresponding through hole, so that the embedded block 5 can be smoothly extended.

[0025] As a preferable embodiment, the push plate 7 is in rectangular structure, the embedded block 5 movably connected by the push plate 7 is in triangular prism structure, the cross section of the embedded block 5 close to one end of the partition film 4 is in isosceles triangle structure, and the embedded block 5, the push plate 7, the moving block 3 and the adjusting screw 15 are combined to form a cross structure.

[0026] In the embodiment, as shown in Figure 1 and Figure 2 , the structure of the embedded block 5 can effectively reduce the resistance when the embedded block 5 is embedded in the soil, and reduce the difficulty of secondary fixation of the monitoring device, and the fixing structure composed of the embedded block 5 and the push plate 7 can effectively enhance the stability of the fixation between the monitoring device and the soil.

[0027] As a preferable embodiment, the main body 9 is in cylindrical structure, the size of the main body 9 and the embedded part 1 are matched, the surface of the main body 9 is symmetrically provided with a plurality of scale lines, the shaft section of the auxiliary ring 10 sleeved on the surface of the main body 9 is in convex structure, and a plurality of auxiliary holes are symmetrically arranged on the edge of the upper surface of the auxiliary ring 10.

[0028] In the embodiment, as shown in Figure 1 and Figure 4 , the scale lines provided on the surface of the main body 9 can facilitate the user to intuitively connect and position the soil erosion condition, and the auxiliary holes provided on the auxiliary ring 10 can make the monitoring device also be able to embed the ground nail into the ground through the auxiliary hole, so as to complete the auxiliary fixation of the detection device, and further enhance the stability of the monitoring device as a whole.

[0029] As a preferable embodiment, the fastening plate 12 is in fan ring structure, the size of the fastening plate 12 and the receiving groove are matched, a plurality of limiting blocks 16 are symmetrically connected on the top and the bottom plate close to the opening end of the receiving groove, the limiting block 16 is in square structure, a limiting groove is provided on the surface of the fastening plate 12 corresponding to the position of the limiting block 16, and the inner arc surface of the fastening plate 12 is fixedly connected with the fastening layer.

[0030] In the embodiment, as shown inFigure 1 and Figure 4 The soft rubber material is adopted for the fastening layer, so that the stability of the fastening between the fastening plate 12 and the main body 9 is enhanced, and the setting of the auxiliary ring 10 can effectively increase the contact area between the monitoring device and the ground surface, so as to assist in reducing the probability of shaking and falling of the monitoring device.

[0031] The water and soil conservation monitoring device convenient to position can assist in increasing the contact area between the monitoring device and the ground, so as to assist in improving the convenience of positioning and fixing of the monitoring device, and the stability of the water and soil conservation monitoring device after positioning and installation is effectively enhanced through various fixing structures.

Claims

1. A soil conservation monitoring device for ease of positioning, comprising: The utility model relates to a soil and water conservation monitoring assembly, which comprises a fitting part (1) and a main body part (9), the two ends of the main body part (9) are fixedly connected with the fitting part (1) and a soil and water conservation monitoring assembly (13) respectively, characterized in that an adjusting groove (2) is formed in the upper end of the fitting part (1), an adjusting screw rod (15) is movably connected in the adjusting groove (2) through a bearing, the two ends of the adjusting screw rod (15) are symmetrically screwed with moving blocks (3), one end of a push plate (7) is movably connected to the side surface of the moving block (3) through a bearing, the other end of the push plate (7) is movably connected to a fitting block (5) through a bearing, meanwhile, a through hole is formed in the side surface of the adjusting groove (2) corresponding to the position of the fitting block (5), an auxiliary ring (10) is sleeved on the surface of the main body part (9), a plurality of receiving grooves are symmetrically formed in the inner side of the auxiliary ring (10), a fastening plate (12) is slidably connected in the receiving groove through a limiting block (16), a long bolt (11) is screwed in the side surface of the receiving groove through a screw hole, meanwhile, a main motor (8) is fixedly connected to the upper end surface of the fitting part (1), the main motor (8) is connected with the adjusting screw rod (15) through a shaft coupling, and a containing groove is formed in the lower end surface of the main body part (9) corresponding to the position of the main motor (8).

2. The water and soil conservation monitoring device for easy positioning according to claim 1, characterized in that, The fitting part (1) is in a whole cylindrical structure, the lower end of the fitting part (1) is in a conical structure, the continuous groove formed in the lower end of the arc surface of the fitting part (1) is in a screw thread structure, and the adjusting groove (2) formed in the upper end of the fitting part (1) is in a cylindrical structure.

3. The water and soil conservation monitoring device of claim 1, wherein, Four groups of through holes are formed in the middle of the side surface of the adjusting groove (2) along the circumferential direction at equal intervals, the through holes are in a whole square structure, the top and bottom of the through holes are fixedly connected with mounting plates (6), the cross section of the mounting plate (6) is in an L-shaped structure, and the separating membrane (4) is fixedly connected with the mounting plate (6) through a fixing nail.

4. The water and soil conservation monitoring device of claim 1, wherein, Two groups of guide rods (14) are symmetrically connected in the adjusting groove (2), the two groups of guide rods (14) are in a cylindrical structure, the two groups of moving blocks (3) screwed with the adjusting screw rod (15) are in a square structure, and a guide hole is formed in the surface of the moving block (3) corresponding to the position of the guide rod (14).

5. The water and soil conservation monitoring device of claim 1, wherein, The push plate (7) is in a rectangular structure, the fitting block (5) movably connected with the push plate (7) is in a triangular prism structure, the cross section of the end of the fitting block (5) close to the separating membrane (4) is in an isosceles triangle structure, and the fitting block (5), the push plate (7), the moving block (3) and the adjusting screw rod (15) are combined to form a cross structure.

6. The water and soil conservation monitoring device of claim 1, wherein, The main body part (9) is in a cylindrical structure, the size of the main body part (9) and the fitting part (1) is matched, a plurality of scale lines are symmetrically formed in the surface of the main body part (9), the shaft cross section of the auxiliary ring (10) sleeved on the surface of the main body part (9) is in a convex character structure, and a plurality of auxiliary holes are formed in the edge of the upper surface of the auxiliary ring (10) at equal intervals.

7. The water and soil conservation monitoring device of claim 1, wherein, The fastening plate (12) is in a fan ring structure, the size of the fastening plate (12) and the receiving groove is matched, a plurality of limiting blocks (16) are symmetrically connected to the top and bottom of the opening end of the receiving groove, the limiting block (16) is in a square structure, a limiting groove is formed in the surface of the fastening plate (12) corresponding to the position of the limiting block (16), and the inner arc surface of the fastening plate (12) is fixedly connected with a fastening layer.