A soil stabilizing mesh

By incorporating a structure of netting reel, hooks, protrusions and grooves, nails, and spring hangers into the soil stabilization net, the problem of existing stabilization nets being unable to adhere tightly to the soil on sloping terrain is solved, achieving multi-layer protection and convenient assembly and disassembly, thus enhancing the stability of the mountain.

CN224363290UActive Publication Date: 2026-06-16MINGDA MARINE ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MINGDA MARINE ENG CO LTD
Filing Date
2025-05-23
Publication Date
2026-06-16

AI Technical Summary

Technical Problem

Existing soil stabilization nets are difficult to fit tightly to the ground on sloping terrain to provide sufficient lateral support, and are not easy to connect and disassemble quickly, affecting the transportation and use efficiency of the protective nets.

Method used

A soil stabilization net was designed. Stability is increased by inserting net wires through the loops in the net body and securing them with wire buckles. Protrusions and grooves are set on the connecting box to facilitate multi-layer stacking and quick connection. The net is fixed to the soil using nails and cones, combined with a spring and hanging rod structure to achieve a tight fit between the net body and the soil and easy assembly and disassembly.

Benefits of technology

It achieves a tight fit between the netting and the soil surface, provides multi-layer protection, improves connection strength and assembly/disassembly efficiency, reduces the impact of rainwater on the soil, and enhances the stability of the mountain.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to fastening net technical field, concretely relates to soil fastening net, including the net body and the net body left and right sides are equipped with a plurality of connecting boxes, and the net body front and back ends are equipped with a plurality of connecting blocks, the net body four weeks are equipped with a plurality of equidistance arrangement's ring mouth, and the ring mouth four weeks are equipped with the grid, the first side edge groove is set up in connecting box one side, a plurality of first hanging rods are equipped in the first side edge groove, and the net line is inserted in the ring mouth on the net body, and the net line both ends are fixed through the wire buckle with the ring mouth, increase the overall structural stability of net line and ring mouth, realize net line and ring mouth disassembly convenient, and the user moves along the net line direction and continuously raises net line, realizes the net body and ground contact area continuously smaller, reduces the net body time, and the ring mouth is removed into the first hanging rod through the first hanging rod setting and realizes the net body and connecting box quick connection and fixed, and the first hanging rod shape is inverted L type, prevents the ring mouth from falling off from the first hanging rod inside.
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Description

Technical Field

[0001] This utility model relates to the field of soil fastening netting technology, specifically a soil fastening netting. Background Technology

[0002] When constructing roads in mountainous areas, geological disasters such as landslides are prone to occur, posing a threat to the safety of roads and pedestrians. Soil reinforcement nets, as a new type of geosynthetic material, can effectively solve these problems, and therefore the demand for them in engineering construction is constantly increasing.

[0003] CN217923675U discloses a soil stabilization net, including an installation frame. A protective net is fixedly installed on the installation frame. Two installation slots are provided in the installation frame, distributed from left to right. A set of four slots are provided on the two installation frames, penetrating the upper and lower ends. The slots are arranged in a rectangular array. The installation slots are connected to the slots. A fixing mechanism is installed in each of the four slots. Two connecting seats are fixedly installed on the lower wall of each of the two installation slots, arranged front and back. A connecting mechanism is movably installed between the two front and back connecting seats, and the connecting mechanism cooperates with the fixing mechanism.

[0004] The above technical solution connects the fixing mechanism and the connecting mechanism by rotating the rotating rod, which can prevent the installation frame from detaching from the fixing mechanism, resulting in better fixing effect and improved practicality. However, the screw in this device is not suitable for large-area soil fastening nets, and the net surface of this device is not in contact with the ground. On slopes and other terrains, the fastening net cannot fit tightly with the ground, making it difficult to provide sufficient lateral support to the soil. In addition, this device is inconvenient to quickly connect and disassemble the protective net and the installation frame, and the protective net cannot be rolled up, making it inconvenient to transport. Utility Model Content

[0005] The purpose of this invention is to provide a soil stabilization net to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A soil stabilization net includes a net body and several connecting boxes on the left and right sides of the net body, and several connecting blocks on the front and rear sides of the net body. The net body has several equally spaced rings around its perimeter, and a grid around the rings. A first side groove is opened on one side of each connecting box, and several first hanging rods are provided inside the first side groove. A rectangular block is symmetrically arranged in the middle of the inside of the connecting box, and a cylindrical groove is opened in the middle of the rectangular block. A first spring is provided on the outside of the rectangular block, and a cylindrical block is provided in the middle of the first spring. A pressing block is provided at the outer end of the cylindrical block. A protrusion is provided at the right end of the top of the connecting box, and a groove is opened at the bottom of the connecting box corresponding to the protrusion. A second fastening block and a first fastening block are respectively provided at the upper and lower ends of the outer walls on both sides of the connecting box. A U-shaped plate is provided on one side wall of each connecting block, and a second insertion port is provided on the U-shaped plate.

[0008] Preferably, a take-up net is provided inside the opening, and the take-up net is provided with a buckle at both ends.

[0009] In this invention, the loop openings are bonded and fixed to the mesh. The take-up net line is interwoven with each loop opening on a single path. The wire buckle and the take-up net line are integrally formed. The wire buckle includes a male buckle and a female buckle. Pressing the male buckle makes it embed into the female buckle. The spring piece inside the female buckle deforms under force and then springs back to lock the male buckle, achieving a tight fixation. The wire opening is set to increase the connection strength between the take-up net line and the loop opening. Wire buckles are set at both ends of the take-up net line to facilitate quick fixation of the take-up net line and the loop opening. The user can remove one end of the wire buckle, lift the take-up net line and move it to move the loop openings together along the take-up net line. The user can walk along the direction of the take-up net line while lifting the take-up net line to stack the net body in the middle, reducing the overall net body time. The entire net body is made of coconut fiber mesh, which is softer than stainless steel, allowing the net body to fit better with the soil surface.

[0010] Preferably, the rectangular block has a U-shaped strip at one end, a first insertion port at the front end of the U-shaped strip, an L-shaped block at the rear end of the cylindrical block, and an opening at the corresponding position of the connecting box and the push block, with limiting plates at the upper and lower ends of the opening respectively.

[0011] In this invention, a second spring is provided between the U-shaped plate and the connecting block. Both ends of the second spring are respectively bonded to the U-shaped plate and the connecting block. A handle is provided at the right end of the U-shaped plate, with its upper and lower ends corresponding to the connecting block. Moving the handle backward causes the U-shaped plate to compress the second spring. The bottom of the rectangular block is bonded to the inner wall of the connecting box. One end of the first spring is bonded to the rectangular block, and the other end is bonded to the pressing block. A cylindrical block is inserted into the first spring. The cylindrical block, pressing block, and L-shaped block are integrally formed. The bonding allows the pressing block and cylindrical block to move back and forth, compressing and releasing the first spring, while simultaneously changing the position of the L-shaped block. In the normal state of the first spring, the first insertion port on the U-shaped strip is inserted into the L-shaped block. A small square is provided at the rear end of the L-shaped block, which is also integrally formed. The small square is inserted into the second socket of the U-shaped plate on the connecting block, and the connecting block is connected to the connecting box. The pressing block is moved towards the cylindrical groove. At this time, the first spring is compressed, and the L-shaped block is tightly attached to the inner wall of the left end of the first socket, realizing the separation of the small square from the second socket. At this time, the connecting block is separated from the connecting box. The limiting plate and the connecting box are integrally formed. The limiting plates are set at the upper and lower ends of the pressing block to limit the range of movement of the pressing block. The first hanging rod is inverted L shape, and the bottom of the first hanging rod and the corresponding part of the inner wall of the first side groove are integrally formed. The position of the first hanging rod corresponds to the position of the ring on the net body. No net wire is set inside the ring on the edge of the net body. Moving the ring into the inside of the first hanging rod realizes the fixing of the net body and the connecting box, realizing the connection of multiple layers of net body and the first hanging rod, realizing multi-layer protection of the soil surface, and increasing the convenience of assembling and disassembling the ring and the connecting box.

[0012] Preferably, the bottom of the connecting box is symmetrically provided with a first top groove, the inner wall surface of the first top groove is provided with a plurality of rectangular strips at equal intervals, the first top groove is provided with a first top block, and rectangular grooves are provided at the corresponding positions of the first top block and the rectangular strips.

[0013] In this invention, the rectangular strip and the first top groove are integrally formed, and the shape and size of the rectangular strip and the rectangular groove are matched to achieve a tight fit between the first top block and the first top groove.

[0014] Preferably, a second threaded groove is formed in the middle of the first top block, and a first threaded groove is formed in the connecting box at the position corresponding to the second threaded groove, and a first nut is provided inside the first threaded groove.

[0015] In this utility model, the first nut is threadedly connected to the second threaded groove and the first threaded groove, so that the first nut can be screwed into the first threaded groove and the second threaded groove to fix the first top block and the connecting box. The threaded connection increases the overall structural strength of the connecting box and the first top block.

[0016] Preferably, a third threaded groove is formed in the middle of the bottom of the first top block, a nail cone is provided inside the third threaded groove, a threaded ring is provided on the outer ring of the bottom of the nail cone, and the nail cone is threadedly connected to the first top block.

[0017] In this invention, the nail cone and the threaded ring are integrally formed. The threaded ring is set on the outer ring of the nail cone to realize the threaded connection between the nail cone and the first top block. The threaded connection enables the nail cone and the first top block to be quickly fixed and separated.

[0018] Preferably, the protrusion and the groove are adapted to each other in size and shape, the first fastening block and the second fastening block have symmetrical screw holes at their front ends, the first fastening block and the second fastening block have arc grooves inside, the arc grooves have semi-circular disks inside, the front end of the semi-circular disks has semi-circular blocks, and the outer ring of the semi-circular disks has rotating rods.

[0019] In this invention, the protrusions and grooves are sized to match, facilitating the insertion and fixing of the two connecting boxes. Screws are installed inside the screw holes. Connecting holes are provided at corresponding positions on the screw holes of the connecting boxes and the first and second fastening blocks. Screwing the screws into the screw holes and connecting holes connects and fixes the first and second fastening blocks to the connecting boxes. The first and second fastening blocks are placed symmetrically, with their straight edges aligned with the lower and upper edges of the connecting boxes. The semi-circular disc is sized to match the arc-shaped groove. The semi-circular disc is bonded and fixed to the rotating rod, and the semi-circular disc is inserted into the arc-shaped groove. The rotating rod passes through the arc-shaped groove, and the front end of the semi-circular disk is bonded and fixed to the semi-circular block. Rotating the rotating rod causes the semi-circular disk to rotate inside the arc-shaped groove, and the rotation of the semi-circular disk causes the semi-circular block to rotate. When the two connecting boxes are stacked and fixed, rotating the rotating rod causes the semi-circular blocks on the first and second fastening blocks to rotate 90 degrees in the same direction. At this time, the first and second fastening blocks are connected and fixed to each other, increasing the structural stability of the stacked connecting boxes. This allows the edge of the rainproof cloth to be connected to the top connecting block and the hanging rod part of the connecting box, reducing the possibility of rainwater flowing into the soil under the bottom net and causing landslides on the slope.

[0020] Preferably, the bottom of the connecting block is symmetrically provided with a second top groove, and each second top groove is provided with a second top block.

[0021] In this invention, the shape and size of the second top groove are adapted to the second top block, so that the outer wall of the second top block and the inner wall of the second top groove are tightly fitted. A fourth threaded groove is opened at the middle of the two sides of the connecting block and the second top block, and a second nut is provided inside the fourth threaded groove. The second nut is screwed into the fourth threaded groove to fix the second top block and the connecting block. A fifth threaded groove is opened at the bottom of the second top block, and a nail cone is provided at the bottom of the second top block. The size of the threaded ring on the fifth threaded groove and the nail cone are adapted to each other, so that the nail cone and the connecting block can be quickly connected and disassembled. The nail cone is provided at the bottom of the connecting box and the connecting block to facilitate the direct insertion of the nail cone into the soil and fixation. The friction between the nail cone and the soil increases the overall structural stability of the connecting block and the connecting box. A second side groove is opened at the position corresponding to the ring opening of the connecting block. A second hanging rod is provided inside the second side groove corresponding to the ring opening. The second hanging rod facilitates the quick connection and disassembly of the left end and the top end of the net body with the connecting block.

[0022] Compared with the prior art, the beneficial effects of this utility model are:

[0023] 1. This utility model increases the overall structural stability of the net and the ring by inserting a take-up net line inside the ring opening on the net body, and fixing both ends of the take-up net line to the ring opening with a buckle. This makes it easy to disassemble the take-up net line and the ring opening. The user moves along the direction of the take-up net line and continuously lifts the take-up net line, thereby continuously reducing the contact area between the net body and the ground and reducing the take-up time. The ring opening is moved into the first hanging rod to achieve quick connection and fixation between the net body and the connecting box. The first hanging rod is inverted L-shaped to prevent the ring opening from falling off the inside of the first hanging rod.

[0024] 2. This utility model enables the stacking of multiple connecting boxes by setting protrusions and grooves on the top and bottom of the connecting box. The connection strength between the connecting boxes is increased by setting the first fastening block and the second fastening block for quick connection and disassembly. At the same time, different layers of mesh are stacked on the soil surface according to different protection requirements. By setting the push block, the first spring, the U-shaped strip and the U-plate, the push block and the handle are moved to enable the connecting box and the connecting block to be quickly connected and separated. Multiple nails are threaded to the third thread groove and the fifth thread groove respectively to achieve quick fixation and disassembly of the nails and the connecting box and the connecting block. Attached Figure Description

[0025] Figure 1 This is a schematic diagram showing the position and structure of the mesh body, connecting box, and connecting block of this utility model;

[0026] Figure 2 This is a schematic diagram of the layered structure of the grid and the opening position of this utility model;

[0027] Figure 3 This is a schematic diagram of the connection state between the first hanging rod and the ring of this utility model;

[0028] Figure 4This is a schematic diagram showing the connection status of multiple connecting boxes and rectangular blocks according to this utility model;

[0029] Figure 5 This is a schematic diagram showing the positional structure of the push block, cylindrical block, and first spring of this utility model;

[0030] Figure 6 This is a schematic diagram showing the position and structure of the top groove and the first threaded groove of this utility model;

[0031] Figure 7 This is a schematic diagram of the top block and nail cone positions of this utility model;

[0032] Figure 8 This is a schematic diagram showing the positional structure of the second fastening block and the first fastening block of this utility model.

[0033] The meanings of the labels in the diagram are as follows:

[0034] 1. Net body; 10. Mesh; 11. Enclosure; 12. Net cable reel; 120. Cable clip;

[0035] 2. Connecting box; 20. First side groove; 200. First hanging rod; 21. Press block; 210. Cylindrical block; 211. L-shaped block; 22. Rectangular block; 220. Cylindrical groove; 221. U-shaped strip; 222. First socket; 23. First spring; 24. Limiting plate; 25. First nut; 250. First threaded groove; 26. First top groove; 260. Rectangular strip; 27. First top block; 270. Rectangular groove; 271. Second threaded groove; 272. Third threaded groove; 28. Nail cone; 280. Threaded ring;

[0036] 3. First fastening block; 30. Screw hole; 300. Arc groove; 31. Semicircular disc; 32. Semicircular block; 33. Second fastening block; 330. Rotating rod; 34. Protrusion; 340. Groove;

[0037] 4. Connecting block; 40. U-shaped plate; 41. Second socket; 42. Second top groove; 43. Second top block. Detailed Implementation

[0038] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0039] Please see Figures 1-8 This embodiment provides a technical solution:

[0040] A soil stabilization net includes a net body 1 and several connecting boxes 2 on the left and right sides of the net body 1, and several connecting blocks 4 at the front and rear ends of the net body 1. A first side groove 20 is opened on one side of the connecting box 2, and several first hanging rods 200 are provided inside the first side groove 20. A rectangular block 22 is symmetrically arranged in the middle of the connecting box 2. A cylindrical groove 220 is opened in the middle of the rectangular block 22. A first spring 23 is provided on the outside of the rectangular block 22. A cylindrical block 210 is provided in the middle of the first spring 23. A pressing block 21 is provided at the outer end of the cylindrical block 210. A U-shaped strip 221 is provided at one end of the rectangular block 22. A first insertion port 222 is opened at the front end of the U-shaped strip 221. An L-shaped block 211 is provided at the rear end of the cylindrical block 210. An opening is opened at the corresponding position of the connecting box 2 and the pressing block 21. A limiting plate 24 is provided at the upper and lower ends of the opening.

[0041] In this utility model, a second spring is provided between the U-shaped plate 40 and the connecting block 4. Both ends of the second spring are respectively bonded to the U-shaped plate 40 and the connecting block 4. A handle is provided at the right end of the U-shaped plate 40, with its upper and lower ends corresponding to the connecting block 4. Moving the handle backward causes the U-shaped plate 40 to compress the second spring. The bottom of the rectangular block 22 is bonded and fixed to the inner wall of the connecting box 2. One end of the first spring 23 is bonded and fixed to the rectangular block 22, and the other end of the first spring 23 is bonded and fixed to the pressing block 21. A cylindrical block... 210 is internally inserted into the first spring 23. The cylindrical block 210, the push block 21, and the L-shaped block 211 are integrally formed structures, and are glued together to allow for back-and-forth movement. The push block 21 and the cylindrical block 210 compress and release the first spring 23, while simultaneously changing the position of the L-shaped block 211. In the normal state of the first spring 23, the first insertion port 222 on the U-shaped strip 221 is inserted into the L-shaped block 211. The rear end of the L-shaped block 211 has a small square, and the L-shaped block 211 and the small square are integrally formed structures. At this time, the small square... The block 21 is inserted into the second socket 41 of the U-shaped plate 40 on the connecting block 4. The connecting block 4 is connected to the connecting box 2. The pressing block 21 moves towards the cylindrical groove 220. At this time, the first spring 23 is compressed, and the L-shaped block 211 fits tightly against the inner wall of the left end of the first socket 222, realizing the separation of the small block from the second socket 41. At this time, the connecting block 4 separates from the connecting box 2. The limiting plate 24 and the connecting box 2 are integrally formed. The limiting plate 24 is set at the upper and lower ends of the pressing block 21 to limit the vertical movement range of the pressing block 21. A hanging rod 200 is inverted L shape, and the bottom of the first hanging rod 200 and the inner wall of the first side groove 20 are integrally formed. The position of the first hanging rod 200 corresponds to the position of the loop 11 on the net body 1. No net wire 12 is set inside the loop 11 on the edge of the net body 1. Moving the loop 11 into the first hanging rod 200 fixes the net body 1 and the connecting box 2, realizes the connection between the multi-layer net body 1 and the first hanging rod 200, realizes multi-layer protection of the soil surface, and increases the ease of disassembly and assembly of the loop 11 and the connecting box 2.

[0042] Among them, the bottom of the connecting box 2 is symmetrically provided with a first top groove 26, and the inner wall surface of the first top groove 26 is provided with a number of rectangular strips 260 at equal intervals. The first top groove 26 is provided with a first top block 27, and rectangular grooves 270 are provided at the corresponding positions of the first top block 27 and the rectangular strips 260.

[0043] In this utility model, the rectangular strip 260 and the first top groove 26 are integrally formed structures, and the rectangular strip 260 and the rectangular groove 270 are matched in shape and size to achieve a tight fit between the first top block 27 and the first top groove 26.

[0044] Secondly, a second threaded groove 271 is opened in the middle of the first top block 27, and a first threaded groove 250 is opened at the corresponding position of the connecting box 2 and the second threaded groove 271. A first nut 25 is provided inside the first threaded groove 250.

[0045] In this utility model, the first nut 25 is threadedly connected to the second threaded groove 271 and the first threaded groove 250, so that the first top block 27 and the connecting box 2 can be fixed by screwing the first nut 25 into the first threaded groove 250 and the second threaded groove 271. The threaded connection increases the overall structural strength of the connecting box 2 and the first top block 27.

[0046] In addition, a third threaded groove 272 is opened in the middle of the bottom of the first top block 27, and a nail cone 28 is provided inside the third threaded groove 272. A threaded ring 280 is provided on the outer ring of the bottom of the nail cone 28, and the nail cone 28 is threadedly connected to the first top block 27.

[0047] In this utility model, the nail cone 28 and the threaded ring 280 are integrally formed. The threaded ring 280 is set on the outer ring of the nail cone 28 to realize the threaded connection between the nail cone 28 and the first top block 27. The threaded connection realizes the quick fixing and separation of the nail cone 28 and the first top block 27.

[0048] Specifically, a protrusion 34 is provided at the top right end of the connecting box 2, and a groove 340 is provided at the bottom of the connecting box 2 corresponding to the protrusion 34. A second fastening block 33 and a first fastening block 3 are respectively provided at the upper and lower ends of the outer walls on both sides of the connecting box 2. The protrusion 34 and the groove 340 are matched in size and shape. Screw holes 30 are symmetrically provided at the front ends of the first fastening block 3 and the second fastening block 33. An arc-shaped groove 300 is provided inside the first fastening block 3 and the second fastening block 33. A semi-circular disk 31 is provided inside the arc-shaped groove 300. A semi-circular block 32 is provided at the front end of the semi-circular disk 31. A rotating rod 330 is provided on the outer ring of the semi-circular disk 31.

[0049] In this invention, the protrusion 34 and the groove 340 are sized to match, facilitating the insertion and fixing of the two connecting boxes 2. Screws are installed inside the screw holes 30. Corresponding connecting holes are provided on the screw holes 30 of the connecting box 2 and the first fastening block 3 and the second fastening block 33. Screwing the screws into the screw holes 30 and connecting holes connects and fixes the first fastening block 3, the second fastening block 33, and the connecting box 2. The first fastening block 3 and the second fastening block 33 are placed symmetrically, and their straight edges are aligned with the lower and upper edges of the connecting box 2. The semicircular disk 31 is sized to match the arc-shaped groove 300. The semicircular disk 31 is bonded and fixed to the rotating rod 330. The semicircular disk 31 and the arc-shaped groove 300 are... The 00 is inserted and the rotating rod 330 passes through the arc groove 300. The front end of the semi-circular disk 31 is bonded and fixed to the semi-circular block 32, so that rotating the rotating rod 330 drives the semi-circular disk 31 to rotate inside the arc groove 300. The rotation of the semi-circular disk 31 drives the semi-circular block 32 to rotate. When the two connecting boxes 2 are stacked and fixed, rotating the rotating rod 330 causes the semi-circular block 32 on the first fastening block 3 and the second fastening block 33 to rotate 90 degrees in the same direction. At this time, the first fastening block 3 and the second fastening block 33 are connected and fixed to each other, increasing the structural stability of the stacked two connecting boxes 2. This connects the edge of the rainproof cloth to the top connecting block 4 and the hanging rod part of the connecting box 2, reducing the possibility of rainwater flowing into the soil under the bottom net body 1 and causing landslides on the slope.

[0050] The net body 1 has several equally spaced openings 11 around its perimeter, and a grid 10 around the openings 11. Inside the openings 11, there is a take-up net line 12, and at both ends of the take-up net line 12, there are wire buckles 120.

[0051] In this utility model, the loop 11 is bonded and fixed to the grid 10. The take-up net 12 is inserted into each loop 11 on a single path. The wire buckle 120 and the take-up net 12 are integrally formed. The wire buckle 120 includes a male buckle and a female buckle. Pressing the male buckle makes it embed into the female buckle. The spring in the female buckle deforms under force and then rebounds to lock the male buckle, achieving a tight fixation. The wire opening is set to increase the connection strength between the take-up net 12 and the loop 11. The wire buckles 120 are set at both ends of the take-up net 12 to facilitate the quick fixation of the take-up net 12 and the loop 11. The user can remove one end of the wire buckle 120 and lift the take-up net 12 to move the loops 11 together along the take-up net 12. The user can walk along the direction of the take-up net 12 while lifting the take-up net 12 to stack the net body 1 in the middle, reducing the time for integrating the net body 1. The net body 1 is made of coconut fiber net, which is softer than stainless steel, allowing the net body 1 to fit better with the soil surface.

[0052] A U-shaped plate 40 is provided on one side wall of the connecting block 4, and a second insertion port 41 is provided on the U-shaped plate 40. A second top groove 42 is symmetrically opened at the bottom of the connecting block 4, and a second top block 43 is provided inside each second top groove 42.

[0053] In this invention, the second top groove 42 and the second top block 43 are matched in shape and size, so that the outer wall of the second top block 43 and the inner wall of the second top groove 42 are tightly fitted. A fourth threaded groove is opened at the corresponding midpoint on both sides of the connecting block 4 and the second top block 43, and a second nut is provided inside the fourth threaded groove. Screwing the second nut into the fourth threaded groove fixes the second top block 43 to the connecting block 4. A fifth threaded groove is opened at the bottom of the second top block 43, and a nail cone 28 is provided at the bottom of the second top block 43. The fifth threaded groove and the thread on the nail cone 28... The ring 280 is size-matched, enabling quick connection and disassembly of the nail cone 28 and the connecting block 4. The nail cone 28 is set at the bottom of the connecting box 2 and the connecting block 4 to facilitate direct insertion and fixation of the nail cone 28 into the soil. The friction between the nail cone 28 and the soil increases the overall structural stability of the connecting block 4 and the connecting box 2. A second side groove is opened at the corresponding position of the ring opening 11 on the connecting block 4. A second hanging rod is provided inside the second side groove at the corresponding position of the ring opening 11. The second hanging rod facilitates quick connection and disassembly of the left and top ends of the net body 1 with the connecting block 4.

[0054] In this embodiment of the soil stabilization net, when in use, firstly, several loops 11 with net-receiving wires 12 and wire buckles 120 are connected to the corresponding meshes 10 to form a net body 1. The first top block 27 is placed into the connecting box 2 with the first threaded groove 250 and the first top groove 26. The second top block 43 is placed into the connecting block 4 with the U-shaped plate 40 and the second top groove 42. The first nut 25 and the second nut are screwed into the connecting box 2 and the connecting block 4 respectively and tightened. Several nails 28 are connected to the corresponding third threaded groove 272 and the fifth threaded groove respectively. The nails 28 at the bottom of the connecting box 2 and the connecting block 4 are inserted into the corresponding soil. The push block 21 with the cylindrical block 210 is moved along the direction of the limiting plate 24 onto the rectangular block 22. The first spring 23 is attached to the cylindrical slot 220 and the two ends of the first spring 23 are respectively attached to the corresponding positions of the cylindrical block 210 and the rectangular block 22. At this time, the L-shaped block 211 at the rear end of the cylindrical block 210 is inside the first insertion port 222 on the U-shaped strip 221. The rear end of the U-shaped plate 40 with the handle is connected to the second spring. The edge ring 11 of the net body 1 is moved into the corresponding connecting box 2 and the outer ring of the hanging rod inside the connecting block 4. The button 21 and the handle are moved to insert the U-shaped plate 40 at the front end of the connecting block 4 into the small square at the rear end of the L-shaped block 211. The first fastening block 3 and the second fastening block 33 with the semi-circular disc 31 and the rotating rod 330 are placed in the corresponding positions of the connecting box 2. The screw is screwed into the screw hole 30 and tightened. The protrusion 34 is attached to the corresponding position on the top of the connecting box 2.

[0055] When the net body 1 needs to be dismantled, the user removes several loops 11 from the corresponding hanging poles, then opens the hook 120 at one end of the net reel 12, holds the net reel 12 in hand, and moves along the direction of the net reel 12. At the same time, the user continuously lifts the net reel 12 upwards, so that the contact area between the net body 1 and the soil gradually decreases. When the user reaches the other end of the net reel 12, he wraps the net reel 12 around the outside of the net body 1 and ties one end of the hook 120 through the wrapped part of the net reel 12. At this time, the net body 1 is stored. When the connecting block 4 separates from the connecting box 2, the user moves the push block 21 towards the cylindrical groove 220, and at the same time moves the U-shaped plate 40 backward through the handle. At this time, the connecting block 4 separates from the connecting box 2. Using auxiliary tools, the nails 28 corresponding to the bottom of the connecting block 4 and the connecting box 2 are pulled out of the soil.

Claims

1. A soil stabilization net, comprising a net body (1) and a plurality of connecting boxes (2) provided on the left and right sides of the net body (1), and a plurality of connecting blocks (4) provided at the front and rear ends of the net body (1), characterized in that: The mesh body (1) has several matrix-arranged rings (11) around its perimeter, and a grid (10) around the rings (11). A first side groove (20) is opened on one side of the connecting box (2). Several first hanging rods (200) are provided inside the first side groove (20). A rectangular block (22) is symmetrically arranged in the center of the connecting box (2). A cylindrical groove (220) is opened in the center of the rectangular block (22). A first spring (23) is provided on the outside of the rectangular block (22). 3) A cylindrical block (210) is provided in the middle, and a pressing block (21) is provided at the outer end of the cylindrical block (210). A protrusion (34) is provided at the right end of the top of the connecting box (2). A groove (340) is opened at the bottom of the connecting box (2) corresponding to the protrusion (34). A second fastening block (33) and a first fastening block (3) are provided at the upper and lower ends of the outer walls on both sides of the connecting box (2). A U-shaped plate (40) is provided on one side wall of the connecting block (4), and a second insertion port (41) is provided on the U-shaped plate (40).

2. The soil stabilization net according to claim 1, characterized in that: The inside of the opening (11) is provided with a net-receiving line (12), and the two ends of the net-receiving line (12) are provided with a wire buckle (120).

3. The soil stabilization net according to claim 1, characterized in that: The rectangular block (22) has a U-shaped strip (221) at one end, and a first insertion port (222) is opened at the front end of the U-shaped strip (221). The cylindrical block (210) has an L-shaped block (211) at the rear end. The connecting box (2) has an opening at the corresponding position of the push block (21), and a limiting plate (24) is provided at the upper and lower ends of the opening.

4. The soil stabilization net according to claim 1, characterized in that: The bottom of the connecting box (2) is symmetrically provided with a first top groove (26). The inner wall surface of the first top groove (26) is provided with several rectangular strips (260) at equal intervals. The first top groove (26) is provided with a first top block (27). Rectangular grooves (270) are provided at the corresponding positions of the first top block (27) and the rectangular strips (260).

5. The soil stabilization net according to claim 4, characterized in that: The first top block (27) has a second threaded groove (271) in the middle, and the connecting box (2) has a first threaded groove (250) at the corresponding position of the second threaded groove (271). The first threaded groove (250) is provided with a first nut (25).

6. The soil stabilization net according to claim 4, characterized in that: The first top block (27) has a third threaded groove (272) in the middle of its bottom. The third threaded groove (272) has a nail cone (28) inside. The bottom outer ring of the nail cone (28) has a threaded ring (280). The nail cone (28) is threadedly connected to the first top block (27).

7. The soil stabilization net according to claim 1, characterized in that: The protrusion (34) and the groove (340) are adapted to each other in size and shape. The first fastening block (3) and the second fastening block (33) have symmetrical screw holes (30) at their front ends. The first fastening block (3) and the second fastening block (33) have arc grooves (300) inside. The arc grooves (300) have a semi-circular disk (31) inside. The semi-circular disk (31) has a semi-circular block (32) at its front end. The semi-circular disk (31) has a rotating rod (330) on its outer ring.

8. The soil stabilization net according to claim 1, characterized in that: The connecting block (4) has a second top groove (42) symmetrically opened at the bottom, and each second top groove (42) has a second top block (43) inside.