Ecological restoration device for slope surface
Through the combined structure of the planting frame, connecting clips, conduits and irrigation boxes, the problem of uneven planting of slope vegetation is solved, and the ecological restoration effect of uniform irrigation and cost reduction is achieved.
Patent Information
- Application Number
- CN202422115530.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-30
AI Technical Summary
During road construction, the initial stage of slope vegetation planting is likely to be washed away by rain due to continuous rainfall, resulting in uneven vegetation growth, increasing waste of manpower and material resources, and affecting the effect of water and soil protection.
The combined structure of planting frame, connecting clips, conduits and irrigation chamber is adopted, and the irrigation chamber is connected to the irrigation chamber through conduits. The permeable holes and channel systems are used to achieve uniform irrigation to ensure that the water is evenly distributed to the roots of the vegetation.
It achieves uniform growth of vegetation, reduces the cost of ecological restoration of slope surfaces, improves the water and soil protection effect, has a simple structure and convenient operation, and is suitable for widespread promotion.
Smart Images

Figure CN223080607U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of road construction, and particularly relates to a slope ecological restoration device. Background Art
[0002] During the process of road construction, the original landform structure will be changed. After the road is built, some slopes will be generated on both sides of the road. We need to replant plants on the slopes to protect the slopes and prevent landslides on the slopes, which will affect the traffic safety of vehicles. At present, the slope protection is to directly plant vegetation on the slope and let the vegetation grow naturally. In this way, if continuous rainfall occurs during the initial planting period of the vegetation, the seeds of the vegetation will be washed away by the rain, resulting in uneven growth of the vegetation and affecting the effect of the vegetation in protecting the soil and water on the slope. Therefore, in order to ensure the uniform growth of the vegetation, multiple sowing is required, which causes a waste of manpower and material resources. Therefore, in order to solve the above problems, we provide a slope ecological restoration device to reduce the planting cost of the vegetation, ensure the uniform growth of the vegetation, and improve the effect of the vegetation in protecting the soil and water on the road slope. Summary of the Invention
[0003] The purpose of the utility model is to solve the problems in the above background art and provide a slope ecological restoration device.
[0004] A slope ecological restoration device includes several planting frames, connecting clips, conduits and an irrigation tank. Several planting frames are fixed into a whole through the connecting clips. The planting frames are connected to the irrigation tank through the conduits. The irrigation tank is arranged at the top of the road slope.
[0005] A partition is arranged on the planting frame. Planting grooves are symmetrically arranged on both sides of the partition. Insertion pipes and insertion slots that match each other are arranged at the front and rear ends of the partition. A first channel is horizontally arranged inside the partition. The first channel is communicated with the insertion pipes and the insertion slots. Several second channels are longitudinally and evenly distributed inside the partition. The several second channels are communicated with the first channel. Several water permeable holes are evenly distributed on the second channels. Several fixing rods are also arranged at the bottom of the partition.
[0006] Advantages of the Utility Model
[0007] The utility model has the advantages of simple structure, convenient fixation, convenient operation, safety and reliability. When irrigation is needed, water can be irrigated to the roots of the vegetation through the second channels and the water permeable holes, which can fix and green the slope, reduce the cost of slope ecological restoration, and is suitable for wide promotion and application. Description of the Drawings
[0008] Figure 1 is a three-dimensional schematic diagram of the utility model;
[0009] Figure 2It is a first - perspective three - dimensional schematic diagram of the planting frame of the present utility model;
[0010] Figure 3 It is a second - perspective three - dimensional schematic diagram of the planting frame of the present utility model;
[0011] Figure 4 It is a top - view of the planting frame of the present utility model;
[0012] Figure 5 It is the present utility model Figure 4 The sectional view in the direction of A - A. Specific embodiments
[0013] Please refer to Figures 1 to 5 As shown, a slope ecological restoration device includes several planting frames 1, connecting clips 2, conduits 3 and an irrigation tank 4. Several planting frames 1 are fixed into a whole through the connecting clips 2. The planting frames 1 are connected to the irrigation tank 4 through the conduits 3, and the irrigation tank 4 is arranged at the top of the road slope;
[0014] Specifically, the number of the planting frames 1 can be selected according to the area of the slope to be restored. Then, the planting frames 1 are fixedly spliced with each other by the connecting clips 2 to match the area of the slope. Then, the planting frame 1 at the longitudinal top is connected to the irrigation tank 4 through the conduit 3. The interfaces where the irrigation tank 4 is connected to the conduit 3 can be made in different specifications of quantity. The connecting clips 2 and the planting frames 1 are made of degradable materials. After the planting frames 1 are spliced, the planting frames 1 are filled with soil, and then vegetation seeds are sown in the soil. When it is necessary to irrigate the sown seeds, water is injected into the irrigation tank 4, and the water in the irrigation tank 4 enters the planting frames 1 through the conduits 3, and then the vegetation seeds in the planting frames 1 are irrigated;
[0015] A partition 18 is arranged on the planting frame 1. Planting grooves 11 are symmetrically arranged on both sides of the partition 18. Insertion pipes 12 and insertion slots 13 that match each other are arranged at the front and rear ends of the partition 18. A first channel 16 is horizontally arranged inside the partition 18. The first channel 16 is communicated with the insertion pipes 12 and the insertion slots 13. Several second channels 17 are longitudinally and evenly distributed inside the partition 18. The several second channels 17 are communicated with the first channel 16. Several water - permeable holes 15 are evenly distributed on the second channels 17. Several fixing rods 14 are also arranged at the bottom of the partition 18;
[0016] Specifically, when in use, the planting frame 1 is fixed on the plane to be repaired through several fixing rods 14. The longitudinal planting frames 1 are connected into a longitudinal row by inserting the insertion pipes 12 into the insertion slots 13, and are fixed by the connecting clips 2. One end of the insertion pipe 12 of the planting frame 1 at the top of the slope is connected to one end of the conduit 3, and the other end of the conduit 3 is connected to the irrigation tank 4. The insertion slot 13 of the planting frame 1 at the bottom of the slope is blocked with a rubber plug. The transverse planting frames 1 are fixed by the connecting clips 2. Then, the planting groove 11 is filled with soil, and then vegetation seeds are sown in the soil. When the seeds need to be irrigated, water is injected into the irrigation tank 4. The water flows into the first channel 16 through the conduit 3 and the insertion pipe 12, and then flows into the second channel 17, and finally enters the soil in the planting groove 11 through the longitudinally distributed water permeable holes 15, achieving the effect of irrigating the vegetation in the planting groove 11. The longitudinally distributed water permeable holes 15 make the soil in the planting groove 11 absorb water more evenly, improving the irrigation effect. The water flows into each longitudinally arranged planting frame 1 through the first channel 16, and then irrigates the vegetation in the corresponding planting groove 11 through the second channel 17 and the water permeable holes 15 in each planting frame 1.
[0017] The working principle and process of the present utility model:
[0018] Please refer to Figures 1 to 5 As shown in the figure, when in use, the number of the planting frames 1 can be selected according to the area of the slope to be repaired, and then the planting frames 1 are fixedly spliced with each other by the connecting clips 2 to match the area of the slope. The planting frames 1 are fixed on the plane to be repaired through several fixing rods 14. The longitudinal planting frames 1 are connected into a longitudinal row by inserting the insertion pipes 12 into the insertion slots 13, and are fixed by the connecting clips 2. One end of the insertion pipe 12 of the planting frame 1 at the top of the slope is connected to one end of the conduit 3, and the other end of the conduit 3 is connected to the irrigation tank 4. The insertion slot 13 of the planting frame 1 at the bottom of the slope is blocked with a rubber plug. The transverse planting frames 1 are fixed by the connecting clips 2. Then, the planting groove 11 is filled with soil, and then vegetation seeds are sown in the soil. When the seeds need to be irrigated, water is injected into the irrigation tank 4. The water flows into the first channel 16 through the conduit 3 and the insertion pipe 12, and then flows into the second channel 17, and finally enters the soil in the planting groove 11 through the longitudinally distributed water permeable holes 15, achieving the effect of irrigating the vegetation in the planting groove 11. The longitudinally distributed water permeable holes 15 make the soil in the planting groove 11 absorb water more evenly, improving the irrigation effect. The water flows into each longitudinally arranged planting frame 1 through the first channel 16, and then irrigates the vegetation in the corresponding planting groove 11 through the second channel 17 and the water permeable holes 15 in each planting frame 1, irrigating the water to the roots of the vegetation.
Claims
1. A slope ecological restoration device, characterized in that: It includes several planting frames (1), connecting clips (2), conduits (3) and irrigation tanks (4). The several planting frames (1) are fixed into a whole through the connecting clips (2). The planting frames (1) are connected to the irrigation tanks (4) through the conduits (3). The irrigation tanks (4) are arranged at the top of the road slope surface.
2. The slope ecological restoration device according to claim 1, characterized in that: A partition board (18) is arranged on the planting frame (1). Planting grooves (11) are symmetrically arranged on both sides of the partition board (18). Insertion pipes (12) and insertion slots (13) which match each other are arranged at the front and rear ends of the partition board (18). A first channel (16) is horizontally arranged inside the partition board (18). The first channel (16) is communicated with the insertion pipes (12) and the insertion slots (13). Several second channels (17) are longitudinally and evenly distributed inside the partition board (18). The several second channels (17) are communicated with the first channel (16). Several water permeable holes (15) are evenly distributed on the second channels (17). Several fixing rods (14) are also arranged at the bottom of the partition board (18).