Ecological protection slope
By setting up water inlet and drainage holes on the ecological slope protection rod, and using the connecting structure and threaded sleeve design, the soil loss and slope damage caused by rainwater erosion are solved, effective rainwater diversion and anti-blocking of the protective rod, and the protection performance of ecological slope protection is improved.
Patent Information
- Application Number
- CN202422500826.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-15
AI Technical Summary
The existing ecological slope protection can easily lead to soil loss and slope damage under rainwater erosion, especially due to the fast rainwater flow rate and strong erosion force, the existing protective rods cannot effectively control the rainwater flow distance, resulting in increased slope damage.
The protective rod is equipped with a water inlet and a water discharge hole, combining the connecting structure and a threaded sleeve. After the rainwater enters the protective rod through the inlet groove, it is discharged from the water discharge hole below through the connecting structure, reducing the distance of rainwater flowing on the slope. At the same time, the shielding half-cylinder and arc-shaped elastic telescopic rod are used to seal the water inlet groove when there is no rain to prevent debris from entering.
Effectively reduce the damage to the slope by rainwater, prevent soil loss, and prevent debris from being blocked when there is no rain, improving the protection effect of ecological slope protection.
Smart Images

Figure CN223202356U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of slope protection, in particular to an ecological slope protection. Background Art
[0002] Ecological slope protection is a slope protection technology that integrates the basic knowledge of engineering mechanics, soil science, ecology and botany to support slopes or side slopes, forming a comprehensive slope protection system composed of plants or engineering and plants. With the improvement of people's environmental awareness and economic strength, ecological slope protection technology has gradually been applied to engineering construction.
[0003] Due to the influence of the slope, the rainwater in the ecological slope protection area flows fast and has a strong scouring force. The water and soil in the plant root area are easily lost, and the amount of water infiltration into the soil is small. The existing ecological slope protection generally suppresses the soil by setting protective poles at equal intervals to prevent soil loss. However, when it rains, the rainwater on the upper end of the protective slope will continue to wash downward. As the downward washing distance of the rainwater increases, the washing force will gradually increase, and the damage to the slope surface will gradually increase. For this reason, an ecological slope protection is proposed. Utility Model Content
[0004] In view of the deficiencies of the prior art, the utility model provides an ecological slope protection, which solves the problems raised in the background technology.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: an ecological slope protection, including an installation end frame, wherein the number of the installation end frames is set to two, and multiple protective rods are arranged between the two installation end frames. The upper surface of the protective rod is provided with a water inlet groove, and the front and rear ends of the protective rod are both installed with connecting structures, and each adjacent two connecting structures located on the same side of the protective rod are connected by a two-way threaded cylinder.
[0006] The two mounting end frames are each provided with a plurality of threaded sleeves that are rotatably plugged into the sides close to each other, and the other ends of the threaded sleeves are threadedly connected to the adjacent connecting structure. The two mounting end frames are each provided with drainage holes on the sides away from each other, and the threaded sleeves are connected to the interior of the connected mounting end frames, and the threaded sleeves are connected to the interior of the connected connecting structure.
[0007] Preferably, a shielding half-cylinder is rotatably inserted into the interior of the protective rod, and an inner ring is fixed to the front and rear ends of the shielding half-cylinder. The inner ring is slidably inserted into the interior of the protective rod, and an arc-shaped elastic telescopic rod is fixed to the interior of the protective rod, and the other end of the arc-shaped elastic telescopic rod is fixed to the shielding half-cylinder. A water baffle is provided inside the water inlet trough, and the other end of the water baffle is fixed to the outer circumferential side of the shielding half-cylinder.
[0008] Preferably, the arc axis of the arc-shaped elastic telescopic rod is coaxially arranged with the axis of the protective rod, and a water collecting plate is installed at the lower left of the protective rod.
[0009] Preferably, the connecting structure includes a connecting pipe, which has sockets on both the front and back sides. The protective rod is slidably inserted into the adjacent sockets. A sealing plate is provided on one side of the socket inside the connecting pipe. The sealing plate is elastically connected to the inner wall of the connecting pipe. The size of the sealing plate is larger than the size of the socket, and multiple long rods are fixed at both ends of the protective rod.
[0010] Preferably, one end of the threaded sleeve away from the connected mounting end frame is threadedly connected to the adjacent connecting pipe, and both ends of the bidirectional threaded sleeve are respectively connected to the adjacent connecting pipes.
[0011] Preferably, the arc angle of the shielding half-cylinder is greater than the arc angle of the water inlet trough, and the outer diameter of the shielding half-cylinder is equal to the inner diameter of the protective rod.
[0012] Preferably, a tension spring is fixed to one end of the sealing plate close to the inner wall of the connecting pipe, and the other end of the tension spring is fixed to the inner wall of the connecting pipe. The connection between the connecting pipe, the sealing plate and the tension spring is all set to be concave.
[0013] The utility model provides an ecological slope protection, which has the following beneficial effects:
[0014] 1. The ecological slope protection uses protective poles, drainage holes and water inlet grooves. The rainwater stored on the slope enters the protective pole from the water inlet groove, and then the rainwater is discharged from the inside of the protective pole through the connecting structure and the drainage hole opened on the mounting end frame below, reducing the distance that rainwater flows on the slope and effectively reducing the damage to the slope caused by rainwater.
[0015] 2. The ecological slope protection, through the shielding half-cylinder, the arc-shaped elastic telescopic rod and the water baffle, when there is no rain, the arc-shaped elastic telescopic rod pushes the shielding half-cylinder to block the water inlet trough, preventing debris from entering the protective rod through the water inlet trough when there is no rain and causing blockage inside the protective rod. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the structure of the utility model;
[0017] Figure 2 This is a schematic diagram of the top view of the structure of the utility model;
[0018] Figure 3 This is a schematic diagram of the connection between the threaded sleeve and the mounting end frame of the utility model;
[0019] Figure 4 This is a schematic diagram of the connection between the arc-shaped elastic telescopic rod and the protective rod of the utility model;
[0020] Figure 5 It is a schematic front view of part of the structure of the utility model;
[0021] Figure 6 For this utility model Figure 4 A magnified schematic diagram of the structure in the middle.
[0022] In the figure: 1. Mounting end frame; 2. Water inlet trough; 3. Protective rod; 4. Connecting structure; 41. Connecting pipe; 42. Socket; 43. Closing plate; 44. Long rod; 45. Tension spring; 5. Bidirectional threaded cylinder; 6. Threaded sleeve; 7. Drain hole; 8. Blocking half cylinder; 9. Inner ring; 10. Arc-shaped elastic telescopic rod; 11. Water retaining plate; 12. Water collecting plate. DETAILED DESCRIPTION
[0023] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0024] The present invention provides an ecological slope protection, such as Figure 1-6 As shown, it includes a mounting end frame 1, and there are two mounting end frames 1. A plurality of protective rods 3 are arranged between the two mounting end frames 1. A water inlet trough 2 is provided on the upper surface of the protective rod 3. The mounting end frame 1 is installed together with the slope surface by bolts.
[0025] The protective rod 3 is internally rotatably plugged with a shielding half-cylinder 8, and an inner ring 9 is fixed at both the front and rear ends of the shielding half-cylinder 8. The arc angle of the shielding half-cylinder 8 is greater than the arc angle of the water inlet trough 2, and the outer diameter of the shielding half-cylinder 8 is equal to the inner diameter of the protective rod 3. The inner ring 9 is slidably plugged into the inside of the protective rod 3, and an arc-shaped elastic telescopic rod 10 is fixed inside the protective rod 3. The other end of the arc-shaped elastic telescopic rod 10 is fixed to the shielding half-cylinder 8, and a water baffle 11 is provided inside the water inlet trough 2. The other end of the water baffle 11 is fixed to the outer circumferential side of the shielding half-cylinder 8. The arc-shaped elastic telescopic rod 10 has a tendency to push the shielding half-cylinder 8 to block the water inlet trough 2. When the water baffle 11 is impacted by water flow, it drives the shielding half-cylinder 8 to compress the arc-shaped elastic telescopic rod 10.
[0026] The arc axis of the arc-shaped elastic telescopic rod 10 is coaxially arranged with the axis of the protective rod 3 , and a water collecting plate 12 is installed at the lower left of the protective rod 3 , which guides rainwater from above into the water inlet trough 2 .
[0027] Communication structures 4 are installed at both the front and rear ends of the protection rod 3 , and every two adjacent communication structures 4 on the same side of the protection rod 3 are connected by a bidirectional threaded tube 5 .
[0028] A plurality of threaded sleeves 6 are rotatably plugged into the sides of the two mounting end frames 1 that are close to each other, and the other ends of the threaded sleeves 6 are threadedly connected to the adjacent connecting structure 4. A drainage hole 7 is provided on the sides of the two mounting end frames 1 that are away from each other, and the threaded sleeves 6 are connected to the interior of the connected mounting end frames 1, and the threaded sleeves 6 are connected to the interior of the connected connecting structure 4. The number of protective rods 3 and connecting structures 4 can be changed according to the length of the slope.
[0029] The connecting structure 4 includes a connecting pipe 41, and a socket 42 is provided on the front and back sides of the connecting pipe 41. The protective rod 3 is slidably inserted into the adjacent socket 42. A sealing plate 43 is provided on one side of the socket 42 located inside the connecting pipe 41. The sealing plate 43 is elastically connected to the inner wall of the connecting pipe 41. A tension spring 45 is fixed to one end of the sealing plate 43 close to the inner wall of the connecting pipe 41. The other end of the tension spring 45 is fixed to the inner wall of the connecting pipe 41. The connection between the connecting pipe 41 and the sealing plate 43 and the tension spring 45 is set to a concave shape, so that the sealing plate 43 can fit with the inner wall of the connecting pipe 41 under the pull of the tension spring 45. The large size of the sealing plate 43 The protective rod 3 is smaller than the size of the socket 42, so that the sealing plate 43 can completely block the socket 42. A plurality of long rods 44 are fixed at both ends of the protective rod 3. When the protective rod 3 is connected to the connecting pipe 41, the long rods 44 push the sealing plate 43 to separate from the connecting pipe 41, so that rainwater in the protective rod 3 can enter the connecting pipe 41. The end of the threaded sleeve 6 away from the connected mounting end frame 1 is threadedly connected to the adjacent connecting pipe 41, and the two ends of the two-way threaded cylinder 5 are respectively connected to the adjacent connecting pipes 41. The rainwater enters the mounting end frame 1 below through the connecting pipe 41 and the threaded sleeve 6, and is then discharged from the drain hole 7 below.
[0030] Working principle: install the mounting end frame 1 on the slope surface by bolts, change the number of protective rods 3 according to the length of the slope surface, connect the two adjacent connecting pipes 41 through the bidirectional threaded cylinder 5, and install the connecting pipe 41 at one end with the mounting end frame 1 through the threaded sleeve 6. When rainwater flows downward on the slope surface, the water retaining plate 11 rotates to the right due to the impact of the water flow, driving the shielding half cylinder 8 to rotate and disengage from the water inlet groove 2. The rainwater enters the protective rod 3 through the water inlet groove 2, and then enters the mounting end frame 1 below through the connecting pipe 41, and is discharged from the drain hole 7 below, thereby reducing the length of rainwater flowing on the slope surface and reducing the damage to the slope surface when water flows.
[0031] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An ecological slope protection, comprising an installation end frame (1), characterized in that: There are two mounting end frames (1), a plurality of protection rods (3) are provided between the two mounting end frames (1), a water inlet groove (2) is provided on the upper surface of the protection rod (3), and a connecting structure (4) is installed at both the front and rear ends of the protection rod (3), and each adjacent two connecting structures (4) located on the same side of the protection rod (3) are connected by a bidirectional threaded cylinder (5); A plurality of threaded sleeves (6) are rotatably inserted into the sides of the two mounting end frames (1) that are close to each other, and the other ends of the threaded sleeves (6) are threadedly connected to the adjacent communication structure (4). A drainage hole (7) is provided on the sides of the two mounting end frames (1) that are away from each other, and the threaded sleeves (6) are communicated with the interior of the connected mounting end frame (1), and the threaded sleeves (6) are communicated with the interior of the connected communication structure (4).
2. The ecological slope protection according to claim 1, characterized in that: A shielding half-cylinder (8) is rotatably inserted into the interior of the protective rod (3), and an inner ring (9) is fixed to both the front and rear ends of the shielding half-cylinder (8). The inner ring (9) is slidably inserted into the interior of the protective rod (3). An arc-shaped elastic telescopic rod (10) is fixed to the interior of the protective rod (3), and the other end of the arc-shaped elastic telescopic rod (10) is fixed to the shielding half-cylinder (8). A water baffle (11) is provided inside the water inlet trough (2), and the other end of the water baffle (11) is fixed to the outer circumferential side of the shielding half-cylinder (8).
3. The ecological slope protection according to claim 2, characterized in that: The arc axis of the arc-shaped elastic telescopic rod (10) is coaxially arranged with the axis of the protection rod (3), and a water collecting plate (12) is installed at the lower left of the protection rod (3).
4. The ecological slope protection according to claim 1, characterized in that: The connecting structure (4) comprises a connecting pipe (41), and the front and back sides of the connecting pipe (41) are both provided with insertion holes (42). The protective rod (3) is slidably inserted into the adjacent insertion holes (42). A sealing plate (43) is provided on one side of the insertion hole (42) located inside the connecting pipe (41). The sealing plate (43) is elastically connected to the inner wall of the connecting pipe (41). The size of the sealing plate (43) is larger than the size of the insertion hole (42). A plurality of long rods (44) are fixed to both ends of the protective rod (3).
5. The ecological slope protection according to claim 4, characterized in that: One end of the threaded sleeve (6) away from the connected mounting end frame (1) is threadedly connected to the adjacent connecting pipe (41), and both ends of the bidirectional threaded barrel (5) are respectively connected to the adjacent connecting pipe (41).
6. The ecological slope protection according to claim 2, characterized in that: The arc angle of the shielding half-cylinder (8) is greater than the arc angle of the water inlet trough (2), and the outer diameter of the shielding half-cylinder (8) is equal to the inner diameter of the protective rod (3).
7. The ecological slope protection according to claim 4, characterized in that: A tension spring (45) is fixed to one end of the sealing plate (43) close to the inner wall of the connecting pipe (41), and the other end of the tension spring (45) is fixed to the inner wall of the connecting pipe (41). The connection between the connecting pipe (41), the sealing plate (43) and the tension spring (45) is all arranged in a concave shape.