Treatment structure used after collapse of ecological bag slope protection
The structural solution using geogrids and anchoring elements stabilizes and reinforces eco-bags, addressing the issue of collapse and erosion, enhancing stability and durability.
Patent Information
- Application Number
- CN202421735491.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-22
AI Technical Summary
The existing ecological bag slope protection is susceptible to rainwater erosion in special soil areas, and the existing treatment methods cannot effectively improve stability and safety.
The ecological bag is fixed with treatment components such as ground anchors, wedge-shaped wood plugs, gabions and rivets to enhance drainage effect and stability, including ground anchor insertion into the land, wedge-shaped wood plug filling gaps, gabion covering the outside and rivet fixing interface.
Improve the stability and safety of the ecological bag, preventing it from collapse again, and improving the overall service life and anti-shrinkage capability.
Smart Images

Figure CN223103671U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of ecological bag slope protection collapse treatment, and specifically provides a treatment structure for an ecological bag slope after collapse. Background Art
[0002] An ecological bag is a high-strength ecological synthetic material that resists ultraviolet rays, freeze-thaw, acids, and alkalis. It is a new type of special material with high strength against UV, resistance to acids and alkalis, corrosion resistance, and freeze-thaw resistance. It can remain undegraded for more than 70 years, truly achieving zero pollution. It is mainly used for building flexible ecological slopes. However, due to the special soil quality in some areas and the erosion of rainwater, partial collapse of ecological bags may occur, and it is necessary to deal with it.
[0003] The existing treatment method is generally to remove the damaged and collapsed ecological bags and then replace them so that they can be refilled in the corresponding positions. Such a method only restores the appearance before being washed and collapsed. In areas with special soil quality in this part, it is still easily affected by the impact of rainwater and soil and causes secondary collapse. For special areas, special treatment measures need to be taken. By using reinforcement structures and additional drainage structures arranged, the ecological bags arranged for flushing can be used for a longer time. Based on this, this application provides a treatment structure for an ecological bag slope after collapse for treatment. Utility Model Content
[0004] Aiming at the deficiencies of the existing technology, this application provides a treatment structure for an ecological bag slope after collapse, which has the advantages of being able to more stably fix the improved ecological bags so that they can maintain a stable working state for a long time, and can also enhance the overall drainage effect, thereby further improving the use stability of ecological bags, etc., and solving the shortcoming that the existing treatment measures for ecological bag slope collapse only restore the appearance before being washed and collapsed and cannot adjust its stability according to the actual situation.
[0005] To achieve the above object, this application provides the following technical solution: A treatment structure for an ecological bag slope after collapse, including an ecological bag main body. A number of the ecological bag main bodies are stacked layer by layer along the slope protection to form an ecological bag slope surface, and a treatment component is arranged on the outer side of the ecological bag slope surface;
[0006] The treatment component includes a number of ground anchors, wedge-shaped wooden plugs, gabions, and rivets; the ground anchors are inserted into the bottom of the lowermost ecological bag main body in the same area, the wedge-shaped wooden plugs are inserted into the gaps between adjacent ecological bag main bodies, the gabions are fixedly installed on the outer side of the ecological bag slope surface, and the rivets are inserted and distributed in a dot pattern at the connection between the ecological bag slope surface and the slope protection.
[0007] By adopting the above technical solutions, the improved ecological bags can be fixed more stably, enabling them to maintain a stable working state for a long time, and also enhancing the overall drainage effect.
[0008] Further, the other end of the ground anchor is inserted into the soil, and the distance between adjacent ground anchors is equal.
[0009] By adopting the above technical solutions, the ground anchor can play a stable positioning role for the ecological bag body at the bottom.
[0010] Further, several of the wedge-shaped wooden plugs are arranged in a triangular pattern and are attached to the outer side of the adjacent ecological bag body.
[0011] By adopting the above technical solutions, the wedge-shaped wooden plugs can support and reinforce the ecological bag body.
[0012] Further, the gabion includes a steel wire mesh and stones, and several gabions are distributed in a triangular pattern and staggered.
[0013] By adopting the above technical solutions, the triangular arrangement allows the steel wire mesh to normally cover the ecological bag body while also enhancing the drainage effect and the stability of the overall structure.
[0014] Further, the steel wire mesh is fixedly installed between the outer sides of five adjacent ecological bag bodies up and down, and the stones are filled on the side opposite to the steel wire mesh and the ecological bag body.
[0015] By adopting the above technical solutions, the steel wire mesh can cooperate with the stones to play an auxiliary drainage and reinforcement and stability role on the surface of the ecological bag body.
[0016] Further, the vertical height of the ecological bag slope surface is two meters, the length of each ecological bag body is eight hundred millimeters, and the thickness of each ecological bag body is one hundred and twenty millimeters.
[0017] By adopting the above technical solutions, the entire ecological bag slope surface can have good stability and support capacity.
[0018] Further, the rivet insertion surface is divided into a near surface close to the ecological bag slope surface and a far surface away from the ecological bag slope surface.
[0019] By adopting the above technical solutions, it can be safely arranged according to the actual situation.
[0020] Further, the distance between adjacent rivets in the near surface is between 0.3 meters and 0.5 meters, and the distance between adjacent rivets in the far surface is between 0.8 meters and 1 meter.
[0021] By adopting the above technical solution, the work of hanging net and spraying soil on the slope can be carried out stably without affecting the stability and safety of the slope surface of the ecological bag.
[0022] Compared with the prior art, the technical solution of the present application has the following beneficial effects:
[0023] A treatment structure for the collapse of the ecological bag slope protection. By the coordinated use of the ground anchor, wedge-shaped wooden plug, stone cage and rivet arranged outside the ecological bag main body, the improved ecological bag can be fixed more stably so that it can maintain a stable working state for a long time, and the overall drainage effect can also be enhanced. Thus, the use stability of the ecological bag is further improved, so that the treated ecological bag can meet the use requirements of special soil quality and is not easily washed by rainwater due to the influence of the soil quality and collapses again. This not only improves the overall stability, but also improves the safety of the ecological bag slope protection, effectively enhancing the practicability of the treatment structure for the collapse of the ecological bag slope protection. Description of the Drawings
[0024] Figure 1 It is a schematic structural diagram of the present application;
[0025] Figure 2 It is the front view schematic diagram of the structure of the present application Figure 1 ;
[0026] Figure 3 It is the connection structure schematic diagram of the ecological bag main body with the stone cage arranged in the structure of the present application Figure 2 ;
[0027] Figure 4 It is the dot distribution schematic diagram of the rivet arrangement position in the structure of the present application.
[0028] In the figure: 1. Ecological bag main body; 2. Ground anchor; 3. Wedge-shaped wooden plug; 4. Stone cage; 5. Rivet. Detailed Embodiments
[0029] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0030] Please refer to Figures 1 to 4, this application provides a technical solution: a treatment structure for the collapse of an ecological bag slope protection, including an ecological bag main body 1. A number of ecological bag main bodies 1 are stacked layer by layer along the slope protection to form an ecological bag slope surface, and a treatment component is arranged on the outer side of the ecological bag slope surface; through the coordinated use of the ground anchor 2, wedge-shaped wooden plug 3, stone cage 4 and rivet 5 arranged on the outer side of the ecological bag main body 1, the improved ecological bag can be fixed more stably so that it can maintain a stable working state for a long time, and the overall drainage effect can also be enhanced, thereby further improving the use stability of the ecological bag, enabling the treated ecological bag to meet the use requirements of special soil quality, making it not easily washed away by rainwater due to the influence of soil quality and causing secondary collapse. This not only improves the overall stability but also enhances the safety of the ecological bag slope protection, effectively improving the practicality of this treatment structure for the collapse of the ecological bag slope protection.
[0031] In this embodiment, the treatment component is a structure for remedying the collapse of the ecological bag slope protection.
[0032] As Figure 1 , Figure 2 and Figure 3 shown, the treatment component includes a number of ground anchors 2, wedge-shaped wooden plugs 3, stone cages 4 and rivets 5; the ground anchors 2 are inserted into the bottom of the lowermost ecological bag main body 1 in the same area, the wedge-shaped wooden plugs 3 are inserted into the gaps between adjacent ecological bag main bodies 1, the stone cages 4 are fixedly installed on the outer side of the ecological bag slope surface, and the rivets 5 are distributed in a dot-like insertion manner at the connection between the ecological bag slope surface and the slope protection.
[0033] It should be noted that the other end of the ground anchor 2 is inserted into the land, and the distance between adjacent ground anchors 2 is equal, so that the ground anchor 2 can play a stable positioning role for the lowermost ecological bag main body 1. A number of wedge-shaped wooden plugs 3 are arranged in a triangular pattern and are attached to the outer side of the adjacent ecological bag main body 1, so that the wedge-shaped wooden plugs 3 can play a supporting and filling and strengthening effect on the ecological bag main body 1.
[0034] At the same time, the stone cage 4 includes a steel wire mesh and stones. A number of stone cages 4 are distributed in a triangular staggered pattern. The steel wire mesh is fixedly installed between the outer sides of the upper and lower adjacent five ecological bag main bodies 1, and the stones are filled on the side opposite to the steel wire mesh and the ecological bag main body 1. Specifically, each steel wire mesh covers the outer sides of five complete ecological bag main bodies 1 and the outer sides of two ecological bag main bodies 1 with only half of the covering area, so that the actual number of ecological bag main bodies 1 covered by each steel wire mesh can be regarded as six. And through the triangular arrangement, the steel wire mesh can normally cover the ecological bag main bodies 1 while also enhancing the drainage effect and the stability of the overall structure.
[0035] In addition, the vertical height of the ecological bag slope surface is two meters. The length of each ecological bag body 1 is 800 millimeters, and the thickness of each ecological bag body 1 is 120 millimeters, enabling the entire ecological bag slope surface to have good stability and support capacity.
[0036] As Figure 4 shown, it should also be noted that the insertion surface of the rivet 5 is divided into a near surface close to the ecological bag slope surface and a far surface away from the ecological bag slope surface. The distance between adjacent rivets 5 within the near surface is between 0.3 meters and 0.5 meters, and the distance between adjacent rivets 5 within the far surface is between 0.8 meters and 1 meter. Specifically, the surface with a distance less than 3 meters from the ecological bag slope surface is the near surface, and the surface with a distance greater than 3 meters from the ecological bag slope surface is the far surface. At the same time, the distance between the rivets 5 within the far surface can also be adjusted according to the actual situation on-site, enabling the hanging net and soil spraying work to proceed stably without affecting the stability and safety of the ecological bag slope surface.
[0037] The working principle of the above embodiment is as follows:
[0038] (1) Regarding the treatment measures for the collapsed area of the slope ecological bags, the incomplete and unstable ecological bag bodies 1 are cleaned up. An ecological bag body 1 stacking structure with a vertical height of two meters is reserved at the slope toe of the road slope. Ground anchors 2 are driven into the bottom ecological bag body 1 to complete the layout and treatment work for the collapsed area.
[0039] (2) Remedial treatment measures for the remaining ecological bags. New ecological bag bodies 1 are filled into the remaining ecological bag bodies 1, and ground anchors are driven into the bottom layer of the bottom ecological bag body 1. At the same time, wedge-shaped wooden plugs 3 are driven into both sides and the interior of the ecological bag body 1, and the wedge-shaped wooden plugs 3 are arranged in a triangular pattern. A number of gabions 4 are arranged outside the adjacent five ecological bag bodies 1, and the gabions 4 are fixed to the slope surface. The gabions 4 need to be arranged in a staggered triangular pattern to stably play an auxiliary drainage role for the ecological bag body 1, thereby improving its stability while also making it less likely to shift and collapse due to water scouring.
[0040] (3) After the ecological bag slope protection of the road slope and the remaining ecological bags are treated and remedied, it is also necessary to carry out hanging net and soil spraying work on the slope surface. At the same time, to ensure the safety of the ecological bag slope protection, at the connection between the ecological bag body 1 and the slope surface, rivets 5 with a relatively dense spacing are used, with a spacing of 0.3 meters to 0.5 meters. In some areas of the slope surface far from the ecological bag body 1, rivets 5 with a normal spacing are used, with a spacing of 0.8 meters to one meter. After hanging the net on the rivets 5, the hanging net and soil spraying work can be started to improve the rain resistance, wind erosion resistance, firmness, air permeability and other characteristics of the ecological bag slope protection.
[0041] Compared with the prior art, a treatment structure for an ecological bag slope protection after collapse, through the coordinated use of the ground anchor 2, the wedge-shaped wooden plug 3, the gabion 4 and the rivet 5 arranged outside the ecological bag body 1, can fix the improved ecological bag more stably so that it can maintain a stable working state for a long time, and can also enhance the overall drainage effect, thereby further improving the use stability of the ecological bag, enabling the treated ecological bag to meet the use requirements of special soil quality, making it not easily washed away by rainwater due to the influence of the soil quality and causing secondary collapse. It not only improves the overall stability, but also improves the safety of the ecological bag slope protection, effectively enhancing the practicability of a treatment structure for an ecological bag slope protection after collapse, and solving the defect that the existing treatment measures for an ecological bag slope protection after collapse are only to restore the appearance before being washed and collapsed and cannot adjust its stability according to the actual situation.
Claims
1. A treatment structure after the collapse of an ecological bag slope protection, including an ecological bag main body (1), characterized in that: A plurality of the ecological bag bodies (1) are stacked layer by layer along the slope protection to form an ecological bag slope surface, and a treatment component is arranged on the outer side of the ecological bag slope surface; The treatment component includes a plurality of ground anchors (2), wedge-shaped stoppers (3), gabions (4) and rivets (5); the ground anchors (2) are inserted into the bottom of the lowermost ecological bag body (1) in the same area, the wedge-shaped stoppers (3) are inserted into the gaps between adjacent ecological bag bodies (1), the gabions (4) are fixedly installed on the outer side of the ecological bag slope surface, and the rivets (5) are inserted and distributed in a point-like manner at the connection between the ecological bag slope surface and the slope protection.
2. A treatment structure for the collapse of the ecological bag slope protection according to claim 1, characterized in that: The other end of the ground anchor (2) is inserted into the soil, and the distance between adjacent ground anchors (2) is equal.
3. A treatment structure for the collapse of an ecological bag slope protection according to claim 1, characterized in that: A plurality of the wedge-shaped stoppers (3) are arranged in a triangular pattern and are attached to the outer side of the adjacent ecological bag body (1).
4. The treatment structure for the collapse of the ecological bag slope protection according to claim 1, characterized in that: The gabion (4) includes a steel wire mesh and stones, and a plurality of the gabions (4) are distributed in a triangular staggered pattern.
5. A treatment structure for an ecological bag slope protection after collapse according to claim 4, characterized in that: The steel wire mesh is fixedly installed between the outer sides of the five adjacent ecological bag bodies (1) up and down, and the stones are filled on the side opposite to the steel wire mesh and the ecological bag body (1).
6. A treatment structure for the collapse of an ecological bag slope protection, according to claim 1, characterized in that: The vertical height of the ecological bag slope surface is two meters, the length of each ecological bag body (1) is eight hundred millimeters, and the thickness of each ecological bag body (1) is one hundred and twenty millimeters.
7. A treatment structure for the collapse of an ecological bag slope protection, according to claim 1, characterized in that: The insertion surface of the rivet (5) is divided into a near surface close to the ecological bag slope surface and a far surface far from the ecological bag slope surface.
8. A treatment structure for the collapse of the ecological bag slope protection according to claim 7, characterized in that: The distance between adjacent rivets (5) in the near surface is between 0.3 meters and 0.5 meters, and the distance between adjacent rivets (5) in the far surface is between 0.8 meters and 1 meter.