Side slope protection net and side slope treatment system
By designing a separable slope protection net system, including deformable base plates, interlaced protective ropes, and fixing buckles, the problem of inconvenient transportation of the protection net was solved, achieving low-cost and efficient slope protection.
Patent Information
- Application Number
- CN202520443013.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-13
AI Technical Summary
Existing protective nets are inconvenient and costly to transport, making them difficult to effectively transport to high-altitude dangerous rock mass areas for installation.
Design a separable slope protection net system, including a deformable soft base plate, staggered protective ropes and fixing buckles, which are fixed by inserting fixing rods into the slope. The base plate and protective ropes are assembled to form a net structure. The components are separated during transportation and assembled on site.
This enabled convenient and low-cost transportation of protective netting, ensuring the stability and safety of high-altitude unstable rock masses and reducing construction costs.
Smart Images

Figure CN223838103U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of slope protection net technology, specifically to a slope protection net and slope treatment system. Background Technology
[0002] High-altitude unstable rock masses refer to unstable geological bodies located at high altitudes and cut and separated by multiple sets of structural planes. The formation of high-altitude unstable rock masses is mainly due to the cutting action of multiple structural planes, resulting in poor rock mass stability and a susceptibility to geological disasters such as landslides. These geological bodies are typically located at high altitudes outside the roadbed boundary line, exhibiting high instability and potential danger.
[0003] To ensure the stability and safety of high-lying unstable rock masses, a series of prevention and control measures are required. The main method is to use protective netting to shield these masses. The netting can buffer and block falling rocks, preventing them from hitting people or landing on roads and obstructing traffic.
[0004] Existing protective nets are manufactured in factories and then transported to high-altitude dangerous rock areas for workers to lay. The protective nets are inconvenient to transport and have high transportation costs. Utility Model Content
[0005] The present invention aims to provide a slope protection net and a slope treatment system to solve the above-mentioned problems. Specifically, the present invention is achieved through the following technical solution:
[0006] In the first aspect, this utility model provides a slope protection net, including a base plate, a protective rope, a fixing buckle, and a fixing rod;
[0007] The substrate is constructed as a deformable flexible board, and has a protective surface facing the slope and a free surface facing away from the slope.
[0008] Several protective ropes are provided and are arranged alternately on the free surface of the substrate;
[0009] Each protective rope has multiple connection points where it intersects with other protective ropes, and the connection points are fixed to the base plate by fasteners;
[0010] Each protective rope extends to both ends of the base plate and is connected to a fixing rod, which is used to insert into the slope and fix the base plate.
[0011] In one possible design, the fastener includes a base post, a base cap, and a pressure post;
[0012] The base column is equipped with slots for threading protective ropes, and correspondingly, the slots are connected to the outside.
[0013] The base column has a free end and a connecting end. The base cover is movably set at the connecting end of the base column by a thread. The pressure column is fixedly connected to the base cover and inserted into the slot. Correspondingly, the base column and the base cover are connected by a thread. When the base cover slides back and forth along the base column, the pressure column moves accordingly to press against or move away from the protective rope.
[0014] In one possible design, one of the free end of the base column and the base cover is fixedly connected to the base plate, while the other is used to rotate the retaining clip so that the base column and the base cover can move relative to each other.
[0015] In one possible design, the base column includes side plates and end plates;
[0016] The side panels are provided in several ways and are spaced apart on the same circumference. Accordingly, the multiple side panels form a hollow cylindrical structure with open ends.
[0017] The cylindrical structure is connected to the outside world through the gap between two adjacent side plates, and the protective rope passes through the gap through the cylindrical structure accordingly.
[0018] The cylindrical structure has two opposing ends, one end of which is connected to an end plate and the other end is connected to a base cover.
[0019] In one possible design, the safety rope includes a first rope body arranged along a first direction and a second rope body arranged along a second direction;
[0020] The first rope body is provided in several parts, with two adjacent first rope bodies spaced apart and arranged in parallel; the second rope body is provided in several parts, with two adjacent second rope bodies spaced apart and arranged in parallel.
[0021] There is an angle between the first direction and the second direction, and the angle ranges from 0° to 180°.
[0022] In one possible design, the angle between the first direction and the second direction is 90°, and correspondingly, the first rope and the second rope are perpendicular to each other.
[0023] In one possible design, one of the first rope and the second rope is arranged horizontally, and the other is arranged vertically.
[0024] In one possible design, a number of socket groups are provided on the free surface of the substrate, each socket group including at least two socket rings located on the same straight line, and correspondingly, the socket rings are disposed on the substrate, and a protective rope can be threaded through each socket group.
[0025] In one possible design, each socket assembly includes two socket rings, with the two socket rings located at two opposite sides of the substrate.
[0026] Secondly, this utility model provides a slope treatment system, including the aforementioned slope protection net.
[0027] Compared with the prior art, this utility model has the following advantages and beneficial effects:
[0028] The components of the slope protection net can be separated. When the components are transported to the construction site, they are then assembled, making transportation more convenient and solving the problems of inconvenient and costly transportation of protection nets in the prior art. Attached Figure Description
[0029] The accompanying drawings, which are included to provide a further understanding of the embodiments of the present invention and form part of this application, do not constitute a limitation thereof. In the drawings:
[0030] Figure 1 This is a schematic diagram of a slope protection net.
[0031] Figure 2 for Figure 1 A magnified schematic diagram of the structure at point A in the middle.
[0032] Figure 3 This is a structural diagram of the fixing buckle.
[0033] Figure 4 for Figure 3 A cross-sectional structural diagram.
[0034] The attached diagram shows the markings and corresponding component names:
[0035] 10. Base plate; 20. Protective rope; 21. First rope body; 22. Second rope body; 30. Fixing buckle; 31. Base column; 311. Side plate; 312. End plate; 32. Base cover; 33. Pressure column; 34. Slot; 40. Fixing rod; 50. Connecting ring. Detailed Implementation
[0036] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings. The illustrative embodiments and descriptions of this utility model are only used to explain this utility model and are not intended to limit this utility model.
[0037] Example:
[0038] like Figures 1-4 As shown, a slope protection net includes a base plate 10, a protective rope 20, a fixing buckle 30, and a fixing rod 40;
[0039] The substrate 10 is constructed as a deformable flexible plate, and the substrate 10 has a protective surface facing the slope and a free surface facing away from the slope.
[0040] Several protective ropes 20 are provided and are staggered on the free surface of the base plate 10;
[0041] Each protective rope 20 has multiple connection points that intersect with other protective ropes 20, and the connection points are fixed to the base plate 10 by fixing buckles 30;
[0042] Both ends of each protective rope 20 extend out of the base plate 10 and are connected to a fixing rod 40, which is used to insert into the slope and fix the base plate 10.
[0043] In the slope protection net, the base plate 10 is a soft board made of any suitable existing material. When the base plate 10 covers the slope such as high dangerous rocks, the base plate 10 deforms, so that the protective surface of the base plate 10 fits tightly against the slope, effectively reducing the gap between the base plate 10 and the slope, and allowing the base plate 10 to better cover the slope.
[0044] The protective rope 20 is fixed to the base plate 10 by the fixing buckle 30. Multiple protective ropes 20 interweave to form a mesh structure, which improves the support and protection performance of the slope protection net and makes the distribution of the protective ropes 20 on the base plate 10 more regular, so as to facilitate assembly and laying.
[0045] Meanwhile, the end of each protective rope 20 extends to the outside of the base plate 10 and is connected to the fixing rod 40. After the base plate 10 covers the slope, the fixing rod 40 is inserted into the slope to fix the slope protection net on the slope, thereby achieving buffering and blocking of the slope, preventing rockfall, and effectively solving problems such as injuring pedestrians and damaging property caused by rockfall, as well as the problem of fallen rock accumulating on the road and affecting traffic.
[0046] Furthermore, the slope protection net can be used in a more flexible manner depending on the target user. Specifically, if there are large, unstable rocks on the slope, the slope protection net is generally placed over them. If there are small, unstable rocks on the slope, the slope protection net can be placed over them or unfolded and placed under them as a barrier net, so that the unstable rocks can fall onto the slope protection net after they loosen. Alternatively, the slope protection net can be flexibly set up according to the actual situation.
[0047] To address the problems existing in the prior art, the various components of the slope protection net can be separated. When the components are transported to the construction site, they are then assembled, making transportation more convenient and solving the problems of inconvenient and high transportation costs of the protection net in the prior art.
[0048] During the assembly of the slope protection net, the protective ropes 20 are staggered on the base plate 10 and fixed by the fixing buckles 30, and the ends of the protective ropes 20 are connected to the fixing rods 40. It is easy to understand that, under normal circumstances, the protective ropes 20 can be staggered in pairs. If necessary, the number of staggered protective ropes 20 can be increased to improve the structural strength of the slope protection net.
[0049] Taking the treatment of high-lying unstable rock as an example, the implementation of the slope protection net is explained as follows: Several fixed rods 40 are inserted above the high-lying unstable rock, and a protective rope 20 is connected to each fixed rod 40. This part of the protective ropes 20 forms the first group of ropes. The base plate 10 is connected to the protective ropes 20 of the first group of ropes through fixing buckles 30. Then, a second group of ropes is installed, which includes several protective ropes 20. The protective ropes 20 in the first group of ropes and the second group of ropes are intertwined. After the protective ropes 20 are installed, the base plate 10 is pushed down, and the base plate 10 naturally rests on the high-lying unstable rock. Then, the remaining fixed rods 40 are inserted into the slope to fix the slope protection net. That is, the slope protection net is installed and set on the slope at the same time, or the slope protection net can be assembled first and then installed and fixed on the slope.
[0050] It is easy to understand that, apart from high-altitude dangerous rocks, the slope protection net can also be used for any other suitable type of slope treatment.
[0051] In one possible implementation, the fixing buckle 30 includes a base post 31, a base cover 32, and a pressure post 33;
[0052] The base column 31 is provided with a slot 34 for threading the protective rope 20, and the slot 34 is connected to the outside.
[0053] The base column 31 has a free end and a connecting end. The base cover 32 is movably set at the connecting end of the base column 31 by a thread. The pressure column 33 is fixedly connected to the base cover 32 and inserted into the slot 34. Correspondingly, the base column 31 and the base cover 32 are connected by a thread. When the base cover 32 slides back and forth along the base column 31, the pressure column 33 moves accordingly to press against or move away from the protective rope 20.
[0054] Based on the above design, the slot 34 connects to the outside, allowing the protective rope 20 to be threaded onto the base column 31. The slot 34 also has a certain volume to allow at least two protective ropes 20 to be threaded onto the base column 31 simultaneously. When the protective rope 20 passes through the base column 31, the rotation of the base column 31 is restricted by the protective rope 20; therefore, it is preferable to screw on the base cover 32. Screwing the base cover 32 causes the base cover 32 and the pressure post 33 to move along the base column 31, allowing the pressure post 33 to approach and press against the protective rope 20, thus connecting the fixing buckle 30 to the protective rope 20 and securing the protective rope 20.
[0055] Simultaneously, the fixing buckle 30 securely connects to the base plate 10, thus also fixing the protective rope 20 to the base plate 10. Furthermore, as... Figure 1 As shown, the same protective rope 20 has multiple connection points that intersect with other protective ropes 20, and each connection point is provided with a fixing buckle 30, or multiple protective ropes 20 intersect at the fixing buckles 30. Based on this, the same protective rope 20 is fixed by multiple fixing buckles 30, which improves the connection effect between the protective rope 20 and the base plate 10.
[0056] Conversely, during disassembly, the base cover 32 is screwed on so that the base cover 32 and the pressure column 33 move along the base column 31, so that the pressure column 33 is detached from the protective rope 20, and the workers can then pull the protective rope 20 out of the fixing buckle 30.
[0057] Specifically, regarding the connection between the fixing buckle 30 and the base plate 10, one of the free end of the base post 31 and the base cover 32 is fixedly connected to the base plate 10, while the other is used to rotate the fixing buckle 30 so that the base post 31 and the base cover 32 can move relative to each other.
[0058] Optionally, such as Figure 4 As shown, the base column 31 includes a side plate 311 and an end plate 312;
[0059] Several side plates 311 are provided and spaced apart on the same circumference. Correspondingly, the multiple side plates 311 form a hollow cylindrical structure with open ends.
[0060] The cylindrical structure is connected to the outside world through the gap between two adjacent side plates 311, and correspondingly, the protective rope 20 passes through the gap through the cylindrical structure;
[0061] The cylindrical structure has two opposite ends, one end of which is connected to the end plate 312 and the other end is connected to the base cover 32.
[0062] Based on the above design, there are several side plates 311. For example, four side plates 311 are provided and spaced 90° apart, so that the slots 34 are constructed in a cross shape, and the two protective ropes 20 passing through the base column 31 are perpendicular to each other. Alternatively, while ensuring the structural strength of the base column 31, any other suitable number of side plates 311 can be selected.
[0063] The end plate 312 can be made of any suitable material and in any suitable shape. This utility model does not impose any restrictions on this.
[0064] Optionally, such as Figure 2 As shown, the protective rope 20 includes a first rope body 21 arranged along a first direction and a second rope body 22 arranged along a second direction;
[0065] There are several first ropes 21, with two adjacent first ropes 21 spaced apart and arranged in parallel; there are several second ropes 22, with two adjacent second ropes 22 spaced apart and arranged in parallel.
[0066] There is an angle between the first direction and the second direction, and the angle ranges from 0° to 180°.
[0067] Based on the above design scheme, two protective ropes 20, namely a first rope body 21 and a second rope body 22, are simultaneously threaded onto the same fixing buckle 30. Both the first rope body 21 and the second rope body 22 are made of steel wire rope or any other suitable existing rope. The included angle between the first rope body 21 and the second rope body 22 is selected according to the actual situation so that the structural performance of the slope protection net meets the protection requirements.
[0068] The included angle ranges from 0° to 180°, offering a wide range of choices and flexible application, better adapting to different construction environments. For example, if the included angle between the first and second directions is 90°, then the first rope 21 and the second rope 22 are perpendicular to each other. Furthermore, one of the first rope 21 and the second rope 22 is positioned horizontally, while the other is positioned vertically.
[0069] Based on this, the protective ropes 20 of the slope protection net are more evenly distributed, and the installation and removal of the protective ropes 20 are more convenient and easier while ensuring structural strength.
[0070] In one possible implementation, a plurality of socket groups are provided on the free surface of the substrate 10, each socket group including at least two socket rings 50 located on the same straight line, and correspondingly, the socket rings 50 are disposed on the substrate 10, and a protective rope 20 can be threaded through each socket group.
[0071] Based on the above design, the insertion and removal of the protective rope 20 are made more convenient by using the connecting ring 50 to restrict and guide the direction of insertion. It is easy to understand that the connecting ring 50 can be constructed in any suitable shape.
[0072] Optionally, such as Figure 1 As shown, each socket assembly includes two socket rings 50, and the two socket rings 50 are located at two opposite sides of the substrate 10. Based on this, the number of socket rings 50 is minimized to save economic costs.
[0073] This embodiment introduces a slope treatment system based on the aforementioned slope protection net. The slope treatment system includes the slope protection net. Based on the above design, the slope treatment system can also include other suitable functional modules, enriching its functionality to meet different work requirements and improving its practicality. Furthermore, it is readily understood that these functional modules can be selected from any suitable existing equipment, offering a wide range of choices.
[0074] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. It should be understood that the above description is only a specific embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A slope protection net, characterized in that, It includes a base plate (10), a protective rope (20), a fixing buckle (30), and a fixing rod (40); The substrate (10) is constructed as a deformable soft plate, and the substrate (10) has a protective surface facing the slope and a free surface facing away from the slope. Several protective ropes (20) are provided and are staggered on the free surface of the base plate (10); Each protective rope (20) has multiple connection points that intersect with other protective ropes (20), and the connection points are fixed to the base plate (10) by a fixing buckle (30); Both ends of each protective rope (20) extend out of the base plate (10) and are connected to a fixing rod (40), which is used to insert into the slope and fix the base plate (10).
2. The slope protection net according to claim 1, characterized in that, The fixing buckle (30) includes a base post (31), a base cover (32), and a pressure post (33); The base column (31) is provided with a slot (34) for threading a protective rope (20), and the slot (34) is connected to the outside. The base column (31) has a free end and a connecting end. The base cover (32) is movably set at the connecting end of the base column (31) by a thread. The pressure column (33) is fixedly connected to the base cover (32) and inserted into the slot (34). Correspondingly, the base column (31) and the base cover (32) are connected by a thread. When the base cover (32) slides back and forth along the base column (31), the pressure column (33) moves accordingly to press against or move away from the protective rope (20).
3. The slope protection net according to claim 2, characterized in that, One of the free end of the base column (31) and the base cover (32) is fixedly connected to the base plate (10), and the other is used to rotate the fixing buckle (30) so that the base column (31) and the base cover (32) can move relative to each other.
4. The slope protection net according to claim 2, characterized in that, The base column (31) includes a side plate (311) and an end plate (312); The side plates (311) are provided in a number and are spaced apart on the same circumference. Accordingly, the multiple side plates (311) form a hollow cylindrical structure with open ends. The tubular structure is connected to the outside world through the gap between two adjacent side plates (311), and correspondingly, the protective rope (20) passes through the gap through the tubular structure; The cylindrical structure has two opposing ends, one end of which is connected to an end plate (312) and the other end is connected to a base cover (32).
5. The slope protection net according to any one of claims 1-4, characterized in that, The protective rope (20) includes a first rope body (21) arranged in a first direction and a second rope body (22) arranged in a second direction; There are several first rope bodies (21), with two adjacent first rope bodies (21) spaced apart and arranged in parallel; there are several second rope bodies (22), with two adjacent second rope bodies (22) spaced apart and arranged in parallel. There is an angle between the first direction and the second direction, and the angle ranges from 0° to 180°.
6. The slope protection net according to claim 5, characterized in that, The angle between the first direction and the second direction is 90°, and correspondingly, the first rope (21) and the second rope (22) are perpendicular to each other.
7. The slope protection net according to claim 6, characterized in that, One of the first rope (21) and the second rope (22) is set in the horizontal direction, and the other is set in the vertical direction.
8. The slope protection net according to claim 1, characterized in that, A plurality of socket groups are provided on the free surface of the substrate (10), each socket group including at least two socket rings (50) located on the same straight line. Correspondingly, the socket rings (50) are provided on the substrate (10), and a protective rope (20) can be threaded through each socket group.
9. The slope protection net according to claim 8, characterized in that, Each socket assembly includes two socket rings (50), and the two socket rings (50) are located at two opposite sides of the substrate (10).
10. A slope treatment system, characterized in that, The slope protection netting includes any one of claims 1-9.