Soil reinforcing device for water and soil conservation

By designing a combined soil reinforcement device, the problem of inconvenient installation and disassembly of wire mesh was solved, realizing simple wire mesh operation and efficient soil reinforcement process, and reducing the labor intensity of operators.

CN224243817UActive Publication Date: 2026-05-15邢台市信都区朱野灌区事务中心
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
邢台市信都区朱野灌区事务中心
Filing Date
2025-04-27
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

In existing technologies, the separation of anchors in the process of soil reinforcement with wire mesh is quite troublesome, which increases the labor intensity of operators. In addition, the installation and disassembly of wire mesh are inconvenient, which affects the efficiency of soil sampling and testing.

Method used

A soil reinforcement device for soil and water conservation was designed. It adopts a combination structure of fixed base plate, positioning slot, positioning frame, positioning sleeve, wire mesh, installation groove, fixing spring, guide rod, hollow connecting rod, slider and movable shielding plate, which realizes the simple installation, disassembly and flipping of wire mesh, and facilitates sampling and testing.

Benefits of technology

It simplifies the installation and dismantling process of wire mesh, reduces the labor intensity of operators, and improves the replacement efficiency of wire mesh and the installation efficiency in soil reinforcement projects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of soil reinforcement devices, in particular to a soil reinforcement device for water and soil conservation, which comprises two fixed bottom plates, two positioning slots are arranged on one side of each fixed bottom plate, L-shaped positioning frames are clamped on the inner walls of the four positioning slots, and the positioning frames are fixed on the fixed bottom plates. And one end of each of the four positioning frames is fixedly connected with a positioning sleeve. Compared with the prior art, the device has the advantages that the fixed bottom plate, the positioning slot, the positioning frame, the positioning sleeve, the steel wire mesh, the mounting groove, the fixed spring, the guide rod, the hollow connecting insertion rod, the sliding block and the movable baffle plate are arranged in a matched manner, so that the steel wire mesh can be turned over when an area where the steel wire mesh needs to be maintained is sampled and detected, and the sampling and detecting operation is relatively simple and convenient; moreover, the steel wire mesh is relatively simple and convenient to mount and dismount, when the steel wire mesh is damaged, the steel wire mesh is convenient to replace, and the fixed bottom plate and connecting components thereof do not need to be dismounted when the steel wire mesh is replaced, so that the labor intensity of operators is reduced.
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Description

Technical Field

[0001] This utility model relates to the technical field of soil reinforcement devices, and in particular to a soil reinforcement device for soil and water conservation. Background Technology

[0002] Soil and water conservation refers to a series of measures and methods to protect land and water resources, prevent soil erosion and water pollution, and achieve the goals of protecting farmland and wetlands, preventing water pollution, reducing natural disasters, and maintaining ecological balance. Soil reinforcement refers to a series of technical means to improve the bearing capacity and stability of soil, preventing soil erosion and landslides. In soil and water conservation, soil reinforcement is necessary to maintain the bearing capacity and stability of the soil. Laying reinforcing materials such as steel mesh, wire mesh, or synthetic materials inside or on the surface of the soil is one way to reinforce the soil, thereby improving its shear strength and impermeability.

[0003] When installing wire mesh on the ground, anchors (such as expansion plugs, anchor rods, etc.) are used to fix the wire mesh. Although this method can stably fix the wire mesh, if it is necessary to perform sampling or testing on the area below the wire mesh, the anchors need to be separated from the ground. Separating the anchors is a complicated operation and increases the labor intensity of the operators. Therefore, a soil stabilization device for soil and water conservation is needed to solve the above problems. Utility Model Content

[0004] The purpose of this invention is to at least solve one of the aforementioned technical defects.

[0005] Therefore, one objective of this utility model is to provide a soil reinforcement device for soil and water conservation, so as to solve the problems mentioned in the background art and overcome the shortcomings of the existing technology.

[0006] To achieve the above objectives, one embodiment of this utility model provides a soil reinforcement device for soil and water conservation, comprising two fixed base plates. Two positioning slots are provided on one side of each of the two fixed base plates. An L-shaped positioning frame is engaged with the inner wall of each of the four positioning slots. A positioning sleeve is fixedly connected to one end of each of the four positioning frames. A wire mesh is fixedly connected to one side of each of the four positioning frames. Two mounting grooves are provided on one side of each of the two fixed base plates. A fixing spring and a guide rod are fixedly connected to the inner wall of each of the four mounting grooves. Hollow connecting rods are slidably connected to the outer surface of each of the four guide rods. A slider is fixedly connected to the outer surface of each of the four hollow connecting rods. A movable baffle is fixedly connected to the top side of each of the four sliders. Two connecting rods are fixedly connected to opposite sides of the two fixed base plates.

[0007] Preferably, one of the above solutions has two connecting slots on one side of the fixed base plate, and two connecting blocks are fixedly connected to one side of the other fixed base plate, with a fixing insertion hole on one side of each of the two connecting blocks.

[0008] Preferably, in any of the above solutions, a plurality of anchor rods are fixedly installed on the bottom side of the fixed base plate.

[0009] Preferably, in any of the above embodiments, the slider is located inside the mounting groove, the slider is slidably connected to the mounting groove, the end of the fixing spring away from the inner wall of the mounting groove is fixedly connected to the slider, the hollow connecting rod passes through the fixed base plate, the hollow connecting rod is slidably connected to the fixed base plate, the position of the hollow connecting rod corresponds to the position of the positioning slot, and the outer diameter of the hollow connecting rod is adapted to the inner diameter of the positioning sleeve.

[0010] Preferably, in any of the above embodiments, the movable shield corresponds to the position of the mounting groove, the length of the movable shield is greater than the length of the mounting groove, and the width of the movable shield is greater than the width of the mounting groove.

[0011] Preferably, in any of the above solutions, the connecting block and the connecting slot are T-shaped, the positions of the connecting block and the connecting slot correspond, the sizes of the connecting block and the connecting slot are adapted to each other, and the diameter of the fixing hole is adapted to the outer diameter of the hollow connecting rod.

[0012] Compared with the prior art, the advantages and beneficial effects of this utility model are as follows:

[0013] 1. Through the coordinated arrangement of a fixed base plate, positioning slot, positioning frame, positioning sleeve, wire mesh, mounting groove, fixing spring, guide rod, hollow connecting rod, slider, and movable shielding plate, the wire mesh can be flipped over when sampling and testing are required in the area maintained by the wire mesh. This simplifies the sampling and testing operation, as well as the installation and disassembly of the wire mesh. It also facilitates replacement when the wire mesh is damaged, and the fixed base plate and its connecting components do not need to be removed when replacing the wire mesh, reducing the labor intensity of the operators.

[0014] 2. The combination of fixed spring, guide rod, hollow connecting rod, slider, movable baffle, connecting slot, connecting block and fixed hole makes it easy to connect two fixed base plates. This makes it easier to install multiple wire meshes when a large amount of soil needs to be reinforced in soil and water conservation projects, thus improving the efficiency of wire mesh installation. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 This is a cross-sectional structural diagram of the fixed base plate and its connecting components of this utility model;

[0017] Figure 3 This is a schematic diagram of the structure of this utility model without the assembled wire mesh;

[0018] Figure 4 This is a structural schematic diagram of the wire mesh and its connecting components of this utility model.

[0019] In the diagram: 1-Fixed base plate, 2-Positioning slot, 3-Positioning frame, 4-Positioning sleeve, 5-Wire mesh, 6-Mounting groove, 7-Fixed spring, 8-Guide rod, 9-Hollow connecting rod, 10-Slider, 11-Moving baffle, 12-Connecting rod, 13-Connecting slot, 14-Connecting block, 15-Fixed insertion hole, 16-Anchor rod. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings, but the scope of protection of the present invention is not limited to the following description.

[0021] like Figures 1 to 4As shown, a soil reinforcement device for soil and water conservation includes two fixed base plates 1. Two positioning slots 2 are provided on one side of each of the two fixed base plates 1, symmetrically distributed on one side. An L-shaped positioning frame 3 is fitted into the inner wall of each of the four positioning slots 2. The width of the positioning frame 3 matches the width of the positioning slot 2. The bottom side of the positioning frame 3 is on the same horizontal plane as the bottom side of the fixed base plate 1. A positioning sleeve 4 is fixedly connected to one end of each of the four positioning frames 3. The length of the positioning sleeve 4 matches the length of the positioning slot 2. A wire mesh 5 is fixedly connected to one side of the base plate 3. Two mounting slots 6 are opened on one side of each of the two fixed base plates 1. Fixed springs 7 and guide rods 8 are fixedly connected to the inner walls of each of the four mounting slots 6. Hollow connecting rods 9 are slidably connected to the outer surfaces of each of the four guide rods 8. Slider blocks 10 are fixedly connected to the outer surfaces of each of the four hollow connecting rods 9. Movable baffle plates 11 are fixedly connected to the top sides of each of the four sliders 10. Two connecting rods 12 are fixedly connected to opposite sides of the two fixed base plates 1. When installing the wire mesh 5, the movable baffle plates 11 on the two fixed base plates 1 are pulled, causing the sliders to... 10. Move the hollow connecting rod 9 and remove it from the positioning slot 2. At this time, the fixing spring 7 is compressed. Then, the positioning bracket 3 is inserted into the positioning slot 2, and the positioning sleeve 4 is aligned with the hollow connecting rod 9. Then, slowly release the moving cover plate 11. Under the reaction force of the fixing spring 7, the hollow connecting rod 9 is inserted into the positioning sleeve 4, thus completing the installation of the wire mesh 5. This makes the installation of the wire mesh 5 simple, and it is also easy to remove and replace the wire mesh 5. The operation is relatively simple. Under normal conditions, the hollow connecting rod 9 is inserted into the positioning sleeve 4. When it is necessary to perform sampling and testing on the area below the wire mesh 5, a movable shielding plate 11 on a fixed base plate 1 can be moved. At this time, the slider 10 will drive the hollow connecting rod 9 to move and move the hollow connecting rod 9 out of the positioning sleeve 4. Then, one end of the wire mesh 5 can be rotated so that the wire mesh 5 no longer blocks the area to be protected. At this time, soil sampling or testing can be performed, and the wire mesh 5 can be directly removed to perform soil sampling or testing.

[0022] As an optional technical solution of this utility model, two connecting slots 13 are opened on one side of one fixed base plate 1, and two connecting blocks 14 are fixedly connected to one side of the other fixed base plate 1. A fixed insertion hole 15 is opened on one side of the two connecting blocks 14. When connecting the two fixed base plates 1, the movable baffle 11 on the two fixed base plates 1 is pulled, so that the slider 10 drives the hollow connecting rod 9 to move and move the hollow connecting rod 9 out of the positioning slot 2. At this time, the fixing spring 7 is in a compressed state. Then, the connecting block 14 is inserted into the connecting slot 13. At this time, the fixed insertion hole 15 corresponds to the position of the hollow connecting rod 9. Then, the movable baffle 11 is slowly released. Under the reaction force of the fixing spring 7, the hollow connecting rod 9 is inserted into the fixed insertion hole 15, thereby completing the operation of connecting the two fixed base plates 1.

[0023] As an optional technical solution of this utility model, a number of anchor rods 16 are fixedly installed on the bottom side of the fixed base plate 1, and the fixed base plate 1 can be fixed to the ground by means of the anchor rods 16.

[0024] As an optional technical solution of this utility model, the slider 10 is located inside the mounting groove 6 and is slidably connected to the mounting groove 6. The end of the fixed spring 7 away from the inner wall of the mounting groove 6 is fixedly connected to the slider 10, so that the slider 10 can move smoothly and the fixed spring 7 can undergo elastic deformation. A part of the guide rod 8 is located inside the fixed spring 7, which can prevent the fixed spring 7 from bending during the elastic deformation process. The hollow connecting rod 9 passes through the fixed base plate 1 and is slidably connected to the fixed base plate 1. The hollow connecting rod 9 corresponds to the position of the positioning slot 2. The outer diameter of the hollow connecting rod 9 is adapted to the inner diameter of the positioning sleeve 4, so that the hollow connecting rod 9 can move smoothly and be inserted into the interior of the positioning sleeve 4.

[0025] As an optional technical solution of this utility model, the position of the movable shielding plate 11 corresponds to that of the mounting groove 6. The length of the movable shielding plate 11 is greater than the length of the mounting groove 6, and the width of the movable shielding plate 11 is greater than the width of the mounting groove 6. The movable shielding plate 11 can shield the mounting groove 6 to prevent external factors from entering the interior of the mounting groove 6, thereby ensuring the service life of the fixed spring 7.

[0026] As an optional technical solution of this utility model, the connecting block 14 and the connecting slot 13 are T-shaped, the positions of the connecting block 14 and the connecting slot 13 are corresponding, and the sizes of the connecting block 14 and the connecting slot 13 are adapted to each other. The connection between the two fixed base plates 1 is relatively firm through the connecting block 14 and the connecting slot 13. The diameter of the fixed insertion hole 15 is adapted to the outer diameter of the hollow connecting rod 9, so that the hollow connecting rod 9 can be smoothly inserted into the interior of the fixed insertion hole 15.

[0027] The working principle of a soil stabilization device for soil and water conservation, which connects the wire mesh 5 to the fixed base plate 1, is as follows:

[0028] 1) Pull the movable baffles 11 on the two fixed base plates 1 to make the slider 10 move the hollow connecting rod 9 and move the hollow connecting rod 9 out of the positioning slot 2. At this time, the fixed spring 7 is in a compressed state.

[0029] 2) Insert the positioning bracket 3 into the positioning slot 2 and align the positioning sleeve 4 with the hollow connecting rod 9;

[0030] 3) Slowly release the movable cover plate 11, and under the reaction force of the fixed spring 7, the hollow connecting rod 9 is inserted into the interior of the positioning sleeve 4, thereby completing the installation of the wire mesh 5.

[0031] In summary, this soil reinforcement device for soil and water conservation, through the coordinated arrangement of a fixed base plate 1, positioning slot 2, positioning frame 3, positioning sleeve 4, wire mesh 5, mounting groove 6, fixing spring 7, guide rod 8, hollow connecting rod 9, slider 10, and movable shielding plate 11, allows the wire mesh 5 to be flipped over when sampling and testing are required in the area maintained by the wire mesh 5. This simplifies the sampling and testing operation, as well as the installation and removal of the wire mesh 5. Furthermore, it facilitates replacement when the wire mesh 5 is damaged. The operation is simplified, and the fixed base plate 1 and its connecting components do not need to be removed when replacing the wire mesh 5, reducing the labor intensity of the operators. The combination of fixed spring 7, guide rod 8, hollow connecting rod 9, slider 10, movable shield 11, connecting slot 13, connecting block 14 and fixed insertion hole 15 makes it easier to connect two fixed base plates 1. This makes it easier to install multiple wire meshes 5 when a large amount of soil needs to be reinforced in soil and water conservation projects, thus improving the efficiency of wire mesh installation.

Claims

1. A soil reinforcement device for soil and water conservation, characterized in that: It includes two fixed base plates (1), each of the two fixed base plates (1) has two positioning slots (2) on one side, each of the four positioning slots (2) has an L-shaped positioning frame (3) attached to its inner wall, each of the four positioning frames (3) has a positioning sleeve (4) fixedly connected to one end, each of the four positioning frames (3) has a wire mesh (5) fixedly connected to one side, each of the two fixed base plates (1) has two mounting slots (6) on one side, each of the four mounting slots (6) has a fixing spring (7) and a guide rod (8) fixedly connected to its inner wall, each of the four guide rods (8) has a hollow connecting rod (9) slidably connected to its outer surface, each of the four hollow connecting rods (9) has a slider (10) fixedly connected to its outer surface, each of the four sliders (10) has a movable baffle plate (11) fixedly connected to its top side, and each of the two fixed base plates (1) has two connecting rods (12) fixedly connected to the opposite side.

2. The soil reinforcement device for soil and water conservation according to claim 1, characterized in that: One of the fixed base plates (1) has two connecting slots (13) on one side, and the other fixed base plate (1) has two connecting blocks (14) fixedly connected to one side, and the two connecting blocks (14) have fixed insertion holes (15) on one side.

3. The soil reinforcement device for soil and water conservation according to claim 2, characterized in that: Several anchor rods (16) are fixedly installed on the bottom side of the fixed base plate (1).

4. A soil reinforcement device for soil and water conservation according to claim 3, characterized in that: The slider (10) is located inside the mounting groove (6), and the slider (10) is slidably connected to the mounting groove (6). The end of the fixed spring (7) away from the inner wall of the mounting groove (6) is fixedly connected to the slider (10). The hollow connecting rod (9) passes through the fixed base plate (1), and the hollow connecting rod (9) is slidably connected to the fixed base plate (1). The hollow connecting rod (9) corresponds to the position of the positioning slot (2), and the outer diameter of the hollow connecting rod (9) is adapted to the inner diameter of the positioning sleeve (4).

5. A soil reinforcement device for soil and water conservation according to claim 4, characterized in that: The movable shield (11) is positioned opposite to the mounting groove (6), the length of the movable shield (11) is greater than the length of the mounting groove (6), and the width of the movable shield (11) is greater than the width of the mounting groove (6).

6. A soil reinforcement device for soil and water conservation according to claim 5, characterized in that: The connecting block (14) and the connecting slot (13) are T-shaped. The positions of the connecting block (14) and the connecting slot (13) are corresponding. The sizes of the connecting block (14) and the connecting slot (13) are compatible. The diameter of the fixing hole (15) is compatible with the outer diameter of the hollow connecting rod (9).