Slope reinforcing device
By combining prefabricated slope structures with biodegradable materials, the problem of low construction efficiency in existing slope reinforcement projects has been solved, achieving rapid installation and efficient slope reinforcement, and enhancing vegetation cover and mountain stability.
Patent Information
- Application Number
- CN202520505989.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-21
AI Technical Summary
Existing slope reinforcement components are inconvenient to maintain, resulting in low construction efficiency and susceptibility to environmental impacts, making it impossible to quickly and effectively improve slope stability.
The prefabricated slope structure includes a first infiltration trench, a second infiltration trench, a vegetation trench, and a fixing stake. Combined with biodegradable materials, it enables rapid installation and vegetation coverage, enhancing the connection and stability between the slope and the mountain.
It improves the construction efficiency of slope reinforcement, reduces the amount of cement splicing, reduces the amount of engineering work, increases vegetation coverage, reduces soil erosion and landslide risk, and does not pollute the environment.
Smart Images

Figure CN223922217U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of side slope reinforcement, especially to a side slope reinforcement device. BACKGROUND
[0002] Side slope reinforcement refers to the measures to improve the stability of open pit side slope, which improves the stability of side slope by setting up slope angle retaining wall under the slope angle of side slope fracture zone, setting up anti -slip pile on partial fracture zone or side slope and grouting to the rock layer with opening joint and fissure. These measures are not only conducive to safety, but also can increase the side slope angle and reduce stripping engineering quantity.
[0003] Side slope reinforcement is a common protection system for dams and mountains, which can effectively improve the stability of dams and mountains and effectively reduce the landslide phenomenon caused by the environment. However, the existing side slope reinforcement components of mountains are mostly cemented, which has large engineering quantity, and needs to be completely removed and re-built when one part is damaged, which not only wastes time and effort, but also reduces the construction efficiency due to the environment, thereby reducing the efficiency of side slope reinforcement.
[0004] Therefore, we designed a side slope reinforcement device. CONTENT OF UTILITY MODEL
[0005] The utility model aims at solving the problem of low efficiency of side slope reinforcement caused by inconvenient maintenance of prior art, and provides a side slope reinforcement device.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0007] A side slope reinforcement device, comprising a prefabricated slope body, a first permeation groove for fitting the mountain is formed on the prefabricated slope body, and a second permeation groove for forming the slope body is formed on the prefabricated slope body.
[0008] A first extension angle for improving the support effect of the mountain is arranged on the prefabricated slope body, a plurality of first fixed pestles for reducing the landslide of the mountain are arranged on the prefabricated slope body, and a vegetation groove for improving the connection with the mountain is symmetrically formed on the prefabricated slope body.
[0009] Preferably, a plurality of transplanting holes for planting grass are formed on the first permeation groove, and a plurality of fitting strips for reducing soil loss are arranged on the second permeation groove.
[0010] Preferably, the first extension angle is fixedly connected with the prefabricated slope body through a prefabricated rib, and a second extension angle is arranged at the other end of the prefabricated slope body.
[0011] Preferably, the first fixing pests are arranged linearly on the second extension angle, and the first fixing pests are fixedly connected to the second extension angle by fasteners. The first extension angle is provided with a third fixing pest for improving the connection of the mountain body, and the middle section of the precast slope is provided with a plurality of second fixing pests for improving the connection of the mountain body.
[0012] Preferably, a water trough is provided in the middle section of the precast slope, and a biodegradable plastic net for simple rainwater filtration is provided in the water trough. Multiple root holes for the extension of vegetation roots are provided on the vegetation trough.
[0013] Preferably, the first infiltration groove is symmetrically provided with water diversion channels for guiding rainwater into the biodegradable plastic net, and the middle section of the precast slope is provided with an inner cavity, which is connected to the water diversion channels. The inner cavity is provided with a plurality of fertilizer strips for providing nutrients to the vegetation.
[0014] The beneficial effects of this utility model are as follows:
[0015] 1. This utility model, through the setting of the first and second permeation grooves, enables the precast slope to quickly find the position to fit with the mountain, thereby reducing the amount of cement splicing and masonry work. At the same time, the first permeation groove can increase the vegetation coverage of the mountain, thereby reducing the probability of landslides, while the second permeation groove can improve the formation of the slope, thereby improving the fitting efficiency of the precast slope with the mountain. Compared with the existing technology, it reduces the engineering masonry work and does not reduce the efficiency of construction and reinforcement due to environmental impact.
[0016] 2. This utility model increases the coverage of fixed vegetation on the precast slope by setting up vegetation troughs, thereby strengthening the vegetation coverage around the precast slope and reducing soil erosion. It also prevents landslides. The biodegradable plastic netting can effectively prevent the water diversion trough from becoming clogged and will not pollute the surrounding environment. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the slope reinforcement device proposed in this utility model;
[0018] Figure 2 This is a top view of a slope reinforcement device proposed in this utility model;
[0019] Figure 3 This is a side view of a slope reinforcement device proposed in this utility model;
[0020] Figure 4 for Figure 3 Enlarged view of the structure of the Chinese A label.
[0021] In the figure: 1, prefabricated slope body; 2, first permeable groove; 3, second permeable groove; 4, first extension angle; 5, second extension angle; 6, transplanting hole; 7, first fixed pestle; 8, second fixed pestle; 9, third fixed pestle; 10, water diversion groove; 11, vegetation groove; 12, root hole; 13, degradable plastic net; 14, fertilizer strip. DETAILED DESCRIPTION
[0022] REFERENCE Figures 1-4 A slope reinforcement device, comprising a prefabricated slope body 1, which is formed by a prefabricated formwork in the prior art and cement pouring, and does not need to be poured again on the same day, which is convenient for places with complex environment and difficult construction, and can effectively reduce the manual present masonry method through the prefabricated way, thereby speeding up the work efficiency of the mountain slope reinforcement. The first permeable groove 2 is an existing technology, which is opened on the upper half of the prefabricated slope body 1, and is mainly used for reinforcing the connection between the prefabricated slope body 1 and the mountain, and improving the vegetation coverage rate. The second permeable groove 3 is mainly used for reducing the mountain landslide, and forming a slope through later rainwater erosion, thereby increasing the adhesion of the prefabricated slope body 1 and the mountain soil.
[0023] A plurality of transplanting holes 6 for planting grass are opened on the first permeable groove 2, and the transplanting holes 6 are rectangular, which can be used for sowing grass seeds or transplanting turf in the early stage, thereby improving the vegetation coverage effect. A plurality of adhesion strips for reducing soil loss are provided on the second permeable groove 3, which are formed at the same time as the prefabricated slope body 1, flush with the bottom of the prefabricated slope body 1, and convenient for adhesion to the mountain.
[0024] A first extension angle 4 for improving the support effect of the mountain is provided on the prefabricated slope body 1, which is arranged at the lower end of the prefabricated slope body 1, and is used for improving the effect of the lower edge of the prefabricated slope body 1, thereby improving the connection effect with the mountain. The first extension angle 4 is fixedly connected with the prefabricated slope body 1 through a prefabricated rib, which is a steel bar embedded before the prefabricated slope body 1 is made, and is exposed at the bottom of the prefabricated slope body 1, thereby facilitating the fixed connection of the first extension angle 4. The other end of the prefabricated slope body 1 is provided with a second extension angle 5, which is fixed to the other end of the prefabricated slope body 1, and is fixed through the prefabricated rib.
[0025] The first fixed pestle 7 is arranged linearly on the second extension angle 5, and three first fixed pestles 7 are arranged in total, and the first fixed pestle 7 is fixedly connected with the second extension angle 5 through a fastener, the fastener is a metal rectangular ring, the first fixed pestle 7 is fixed on the second extension angle 5, and the third fixed pestle 9 for improving the connection of the mountain is arranged on the first extension angle 4, the third fixed pestle 9 is arranged at the bottom end of the prefabricated slope body 1 and is connected with the mountain through a plug-in mode, the plug-in mode can facilitate dismounting of the prefabricated slope body 1, so that the replacement efficiency is improved, and the second fixed pestle 8 for improving the connection of the mountain is arranged at the middle section of the prefabricated slope body 1, the second fixed pestle 8 is arranged at the middle section of the prefabricated slope body 1 and is mainly used for improving the levelness of the middle section of the prefabricated slope body 1 and improving the connection strength of the prefabricated slope body 1 and the mountain.
[0026] The vegetation groove 11 for improving the connection with the mountain is symmetrically arranged on the prefabricated slope body 1, the vegetation groove 11 is mainly used for improving the coverage rate of the vegetation of the mountain and can plant some shrub types of plants, but the root system cannot be too developed to cause a gap between the prefabricated slope body 1 and the mountain, the water groove is arranged at the middle section of the prefabricated slope body 1, the water groove is an auxiliary structure, the degradable plastic net 13 for simply filtering rainwater is arranged in the water groove, the degradable plastic net 13 is made of a degradable material in the prior art, the particle filtration in the water groove is further improved, and meanwhile, environmental pollution is not caused, and the root hair hole 12 for extending the root hair of the vegetation is arranged on the vegetation groove 11, the root hair hole 12 mainly facilitates the extension of the root hair of the plant in the vegetation groove 11, and then the connection between the prefabricated slope body 1 and the mountain is improved.
[0027] The water diversion groove 10 for guiding rainwater into the degradable plastic net 13 is symmetrically arranged on the first permeation groove 2, the water diversion groove 10 is mainly used for guiding rainwater into the inner cavity, so that the plants in the vegetation groove 11 can be reasonably irrigated, the inner cavity is arranged at the middle section of the prefabricated slope body 1 and is communicated with the water diversion groove 10, the inner cavity is provided with the fertilizer strip 14 for providing vegetation nutrients, the fertilizer strip 14 is made of a degradable material and is filled with biological fertilizer in the inside, so as to facilitate the growth of the vegetation.
[0028] The working principle of the utility model is as follows:
[0029] The prefabricated slope body 1 is formed by the prefabricated formwork and cement pouring in the prior art, and does not need to be poured again on the same day, and is convenient for the place with complex environment and difficult construction. The prefabricated mode can effectively reduce the manual present pouring mode, and further speed up the working efficiency of the mountain slope reinforcement. The first permeable groove 2 is arranged on the upper half of the prefabricated slope body 1, is mainly used for reinforcing the connection between the prefabricated slope body 1 and the mountain, and improves the vegetation coverage rate. The second permeable groove 3 is mainly used for reducing the mountain landslide, and forms the slope through the later rainwater scouring, and further increases the adhesion of the prefabricated slope body 1 and the mountain soil. The first permeable groove 2 is provided with a plurality of transplanting holes 6 for planting grasses, the transplanting holes 6 are in a rectangular shape, can be used for sowing grass seeds or transplanting turf in the early stage, and further improves the vegetation coverage effect. The second permeable groove 3 is provided with a plurality of adhesion strips for reducing soil loss, the adhesion strips are formed at the same time with the prefabricated slope body 1, are flush with the bottom of the prefabricated slope body 1, and are convenient for adhesion to the mountain.
[0030] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, and all of them should be covered in the protection scope of the present application.
Claims
1. A slope reinforcing device, comprising a prefabricated slope body (1), a first permeation groove (2) for fitting a mountain body is formed on the prefabricated slope body (1), a second permeation groove (3) for forming a slope body is formed on the prefabricated slope body (1), characterized in that ; The first extension angle (4) is arranged on the prefabricated slope body (1) to improve the support effect of the mountain, a plurality of first fixed pestles (7) are arranged on the prefabricated slope body (1) to reduce the landslide of the mountain, and a vegetation groove (11) is symmetrically arranged on the prefabricated slope body (1) to improve the connection with the mountain.
2. A device for reinforcing a slope according to claim 1, characterized in that A plurality of transplanting holes (6) are arranged on the first permeable groove (2) to plant grass, and a plurality of fitting strips are arranged on the second permeable groove (3) to reduce soil loss.
3. A device for reinforcing a slope according to claim 1, wherein The first extension angle (4) is fixedly connected with the prefabricated slope body (1) through a prefabricated rib, and the other end of the prefabricated slope body (1) is provided with a second extension angle (5).
4. A device for reinforcing a slope according to claim 3, wherein The first fixed pestles (7) are linearly arranged on the second extension angle (5) and are fixedly connected with the second extension angle (5) through buckles, a third fixed pestle (9) is arranged on the first extension angle (4) to improve the connection with the mountain, and a plurality of second fixed pestles (8) are arranged on the middle section of the prefabricated slope body (1) to improve the connection with the mountain.
5. A device for reinforcing a slope according to claim 2, wherein A water groove is arranged in the middle section of the prefabricated slope body (1), a degradable plastic net (13) is arranged in the water groove to simply filter rainwater, and a plurality of root holes (12) are arranged on the vegetation groove (11) to extend the roots of vegetation.
6. A device for reinforcing a slope according to claim 5, wherein A water diversion groove (10) is symmetrically arranged on the first permeable groove (2) to guide rainwater into the degradable plastic net (13), an inner cavity is arranged in the middle section of the prefabricated slope body (1), the inner cavity is communicated with the water diversion groove (10), and a plurality of fertilizer strips (14) are arranged in the inner cavity to provide nutrients for vegetation.