Slope protection device for ecological restoration

By designing reinforcement and splicing mechanisms, the problem of unstable fixing of planting bricks on slopes was solved, achieving stable installation of planting bricks and slope protection effect of mesh structure.

CN224016241UActive Publication Date: 2026-03-20SHANXI LONGTENG HUIJING LANDSCAPE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

In existing slope protection methods, planting bricks is unstable when fixed on the slope surface and is prone to shifting, which reduces the slope protection effect.

Method used

Design a slope protection device for ecological restoration, which adopts a reinforcement mechanism and a splicing mechanism. Through the combined use of insert rods, screws, extrusion blocks and clamping blocks, planting bricks are inserted into the slope and fixed with the soil to form a mesh structure to enhance stability.

Benefits of technology

It effectively prevents planting bricks from shifting, enhances slope protection, and forms a stable mesh structure to intercept and protect the slope.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a slope protection device for ecological restoration, and relates to the technical field of ecological slope protection, the slope protection device comprises a planting brick, a planting groove is arranged in the planting brick, a reinforcing mechanism is embedded in the planting brick, and splicing mechanisms are arranged on the four walls of the outer side of the planting brick. The reinforcing mechanism comprises an inserting rod fixed to the middle of the bottom of the planting brick in a penetrating mode, the middle of the top of the inserting rod is in threaded connection with a screw in a penetrating mode through threads, an extrusion block slides in an inner cavity of the inserting rod, a bearing is embedded in the middle of the top of the extrusion block, and sliding rods are symmetrically fixed to the bottoms of the two sides of the inner cavity of the inserting rod. According to the slope protection device for ecological restoration, through the arrangement of the reinforcing mechanism, after planting bricks are installed, inserting rods are inserted into a slope, rotating discs are rotated, and inserting blocks are moved out of the inserting rods and embedded in soil, so that the inserting rods are prevented from retreating, reinforcing is further conducted, the planting bricks are prevented from deviating, the planting bricks are stably installed on the slope, and the slope protection effect is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ecological revetment technical field, concretely is a kind of revetment device for ecological restoration. BACKGROUND

[0002] Ecological revetment is the basic knowledge of comprehensive engineering mechanics, soil science, ecology and botany etc. to slope or side slope for supporting, form the comprehensive revetment system of plant or engineering and plant, through planting plant, utilize the mutual action of plant and rock, soil body to protect, reinforce side slope surface layer, can restore the revetment mode of damaged natural ecological environment, it is an effective revetment, solid slope means.

[0003] Current revetment means usually place planting brick on river slope, then carry out plant planting, but planting brick is usually directly placed on slope surface, so that planting brick is not stable enough when fixed on slope surface, lead to planting brick deviation, so that revetment effect reduces, effectively for this we propose a kind of revetment device for ecological restoration. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of revetment device for ecological restoration to solve the problem that current revetment means usually place planting brick on river slope, then carry out plant planting in prior art, but planting brick is usually directly placed on slope surface, so that planting brick is not stable enough when fixed on slope surface, lead to planting brick deviation, so that revetment effect reduces.

[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of revetment device for ecological restoration, including planting brick, the inside of the planting brick is provided with planting groove, the planting brick is embedded with reinforcing mechanism, the outside four walls of the planting brick are provided with splicing mechanism;

[0006] The reinforcing mechanism includes the plug-in rod fixed in the middle part of the bottom of the planting brick, the top middle part of the plug-in rod is screwed with screw rod by thread penetration, the inner chamber of the plug-in rod is slid with extrusion block, the top middle part of the extrusion block is embedded with bearing, the inner chamber both sides bottom of the plug-in rod is fixed with slide rod, the outside wall of the slide rod is symmetrically slid with sliding block, the inside of the sliding block is fixed with plug-in block.

[0007] Preferably, the reinforcing mechanism further includes the rotating disc fixed to the top end of the screw rod, the top of the extrusion block is fixed with limit rod, the outside of the slide rod is sleeved with reset spring.

[0008] Preferably, the limit rod penetrates the top of the plug-in rod, and the limit rod and the plug-in rod are connected slidingly, the extrusion block is limited, so that the extrusion block can only move in linear direction.

[0009] Preferably, the outer bottom of the screw rod is fixed to the inner ring sidewall of the bearing, and the bottom of the extrusion block and the top of the insertion block are provided with inclined surfaces, so that the insertion block is extruded by the extrusion block and moves.

[0010] Preferably, the insertion block penetrates through the bottom of the insertion rod, and the reset spring is fixedly connected with the opposite sides of the two sliding blocks, so that the sliding plate is reset.

[0011] Preferably, the splicing mechanism comprises a mounting groove formed in the middle of the top of the planting brick around, a connecting groove is formed in the bottom of the mounting groove, a clamping groove is formed in the middle of the two sides of the mounting groove, a mounting block is connected in the mounting groove, a connecting block is fixed symmetrically in the bottom of the mounting block, a mounting cavity is formed symmetrically in the mounting block, a connecting spring is fixed in the middle of one side of the mounting cavity, a moving plate is fixed at one end of the connecting spring, a clamping block is fixed symmetrically on one side of the moving plate, a pulling block is fixed in the middle of the top of the moving plate, and a moving groove is formed in the middle of the top of the mounting cavity.

[0012] Preferably, the moving plate slides in the mounting cavity, and the outer sidewall of the moving plate is attached to the inner sidewall of the mounting cavity, so that the moving plate moves stably in the mounting cavity, and the pulling block is connected in the moving groove.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] 1. The reinforcing mechanism is arranged after the planting brick is installed, the insertion rod is inserted into the slope, the rotating disc is rotated to drive the screw rod to rotate, the screw rod is lowered, the limiting rod is limited, the extrusion block is lowered, the insertion block is extruded by the extrusion block, the insertion blocks are away from each other, the insertion blocks are moved out of the insertion rod and embedded in the soil, the insertion rod is prevented from retreating, the reinforcing effect is further improved, the planting brick is prevented from deviating, the planting brick is stably installed on the slope, and the effect of slope protection is improved.

[0015] 2. The splicing mechanism is arranged to connect two planting bricks, the pulling block is pulled, the moving plate drives the clamping block to move, the mounting block is inserted into the mounting cavity, the connecting block is located in the connecting groove, the pulling block is loosened, the moving plate drives the clamping block to reset through the reset of the connecting spring, the clamping block is embedded in the clamping groove, the planting bricks are connected, a whole is formed, a net structure is formed, the slope surface is intercepted and protected, and the effect of slope protection is improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole structure schematic view of the utility model;

[0017] Figure 2 It is a reinforcing mechanism structure schematic view of the utility model;

[0018] Figure 3 This is a schematic diagram of the insert mounting structure of this utility model;

[0019] Figure 4 This is a schematic diagram of the mounting groove structure of this utility model;

[0020] Figure 5 This is a schematic diagram of the internal structure of the mounting block of this utility model.

[0021] The diagram is labeled as follows: 100, planting brick; 200, planting trough; 300, reinforcing mechanism; 310, insert rod; 320, screw; 321, turntable; 330, extrusion block; 331, limit rod; 340, bearing; 350, sliding rod; 360, slider; 361, return spring; 370, insert block; 400, splicing mechanism; 410, mounting groove; 411, connecting groove; 420, slot; 430, mounting block; 431, connecting block; 440, mounting cavity; 450, connecting spring; 460, moving plate; 470, locking block; 480, pulling block; 490, moving groove. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Example: Figures 1-5 As shown, this utility model provides a technical solution for an ecological restoration slope protection device, including a planting brick 100, a planting groove 200 inside the planting brick 100, a reinforcement mechanism 300 embedded in the planting brick 100, and splicing mechanisms 400 on the four outer walls of the planting brick 100.

[0024] Please see Figure 2 and Figure 3The reinforcing mechanism 300 comprises an insertion rod 310 fixed through the middle of the bottom of the planting brick 100, the middle top of the insertion rod 310 is screwed with a screw rod 320 through screwing, the inner cavity of the insertion rod 310 is slid with an extrusion block 330, the middle top of the extrusion block 330 is embedded with a bearing 340, the inner cavity of the insertion rod 310 is fixed with a sliding rod 350 on the two sides of the bottom, the outer side wall of the sliding rod 350 is slid with a sliding block 360 symmetrically, the inner side of the sliding block 360 is fixed with an insertion block 370; the reinforcing mechanism 300 further comprises a rotating disc 321 fixed to the top end of the screw rod 320, the top of the extrusion block 330 is fixed with a limiting rod 331 symmetrically, the outer side of the sliding rod 350 is sleeved with a reset spring 361; the limiting rod 331 penetrates through the top of the insertion rod 310, and the limiting rod 331 and the insertion rod 310 are slidably connected; the outer side bottom of the screw rod 320 is fixed to the inner ring side wall of the bearing 340, the bottom of the extrusion block 330 and the top of the insertion block 370 are provided with inclined surfaces; the insertion block 370 penetrates through the two side bottoms of the insertion rod 310, and the reset spring 361 is fixedly connected with the opposite sides of the two sliding blocks 360; by the arrangement of the reinforcing mechanism 300, after the planting brick 100 is installed, the insertion rod 310 is inserted into the slope, the rotating disc 321 is rotated, the screw rod 320 is driven to rotate, the screw rod 320 is lowered, the limiting rod 331 is used for limiting, the extrusion block 330 is lowered, the extrusion block 330 extrudes the insertion block 370, the insertion block 370 moves away from each other, the insertion block 370 moves out of the insertion rod 310 and is embedded in the soil, so that the insertion rod 310 is prevented from retreating, further reinforcing, avoiding the planting brick 100 from deviating, the planting brick 100 is stably installed on the slope, and the effect of slope protection is strengthened.

[0025] Please refer to Figure 4 and Figure 5The splicing mechanism 400 comprises a mounting groove 410 provided at the middle of the top of the planting brick 100, a connecting groove 411 is provided at the bottom of the mounting groove 410, a clamping groove 420 is provided at the middle of the two sides of the mounting groove 410, a mounting block 430 is connected to the inside of the mounting groove 410, the bottom of the mounting block 430 is symmetrically provided with a connecting block 431, the inside of the mounting block 430 is symmetrically provided with a mounting cavity 440, a connecting spring 450 is fixed at the middle of one side of the mounting cavity 440, one end of the connecting spring 450 is fixed with a moving plate 460, the moving plate 460 is symmetrically provided with a clamping block 470 at one side, a pulling block 480 is fixed at the middle of the top of the moving plate 460, and a moving groove 490 is provided at the middle of the top of the mounting cavity 440; the moving plate 460 is slid in the inside of the mounting cavity 440, the outer side wall of the moving plate 460 is attached to the inner side wall of the mounting cavity 440, and the pulling block 480 is connected to the inside of the moving groove 490; by arranging the splicing mechanism 400, the two planting bricks 100 are attached, the pulling block 480 is pulled, the moving plate 460 drives the clamping block 470 to move, the mounting block 430 is inserted into the mounting groove 410, the connecting block 431 is located in the connecting groove 411, the pulling block 480 is loosened, the connecting spring 450 is reset, the moving plate 460 drives the clamping block 470 to reset, the clamping block 470 is inlaid in the clamping groove 420, and the planting bricks 100 are connected, so that an integral whole is formed and a mesh structure is formed, the slope is intercepted and protected, and the slope protection effect is enhanced.

[0026] In use, when the planting brick 100 is installed, the inserting rod 310 is inserted into the slope, the planting brick 100 is attached to the slope, then the rotating disc 321 is rotated, the rotating disc 321 drives the screw rod 320 to rotate, the screw rod 320 is lowered, the limiting rod 331 is used for limiting, when the screw rod 320 is lowered, the extruding block 330 is lowered, the extruding block 330 extrudes the inserting block 370, the inserting block 370 is away from each other, the inserting block 370 is moved out of the inserting rod 310 and inlaid in the soil, so that the inserting rod 310 is prevented from retreating, further reinforcement is achieved, the planting brick 100 is prevented from deviating, then other planting bricks 100 are installed, the planting bricks 100 are attached, the pulling block 480 is pulled, the moving plate 460 drives the clamping block 470 to move, the connecting spring 450 is extruded, the connecting spring 450 is deformed, the mounting block 430 is inserted into the mounting groove 410, the connecting block 431 is located in the connecting groove 411, the pulling block 480 is loosened, the connecting spring 450 is reset, the moving plate 460 drives the clamping block 470 to reset, the clamping block 470 is inlaid in the clamping groove 420, the planting bricks 100 are connected, so that an integral whole is formed and a mesh structure is formed, the slope is intercepted and protected.

[0027] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.

Claims

1. A slope protection device for ecological restoration, characterized in that: The device includes a planting brick (100), which has a planting groove (200) inside, a reinforcing mechanism (300) embedded in it, and splicing mechanisms (400) on its four outer walls. The reinforcement mechanism (300) includes a rod (310) that is fixed through the middle of the bottom of the planting brick (100). A screw (320) is threaded through the middle of the top of the rod (310). An extrusion block (330) slides in the inner cavity of the rod (310). A bearing (340) is embedded in the middle of the top of the extrusion block (330). Sliding rods (350) are symmetrically fixed on the bottom of both sides of the inner cavity of the rod (310). A slider (360) slides symmetrically on the outer wall of the sliding rod (350). A block (370) is fixed on the inner side of the slider (360).

2. The slope protection device for ecological restoration according to claim 1, characterized in that: The reinforcement mechanism (300) also includes a turntable (321) fixed to the top of the screw (320), a limit rod (331) symmetrically fixed to the top of the extrusion block (330), and a return spring (361) sleeved on the outside of the slide rod (350).

3. The slope protection device for ecological restoration according to claim 2, characterized in that: The limiting rod (331) passes through the top of the insert rod (310), and the limiting rod (331) and the insert rod (310) are slidably connected.

4. The slope protection device for ecological restoration according to claim 1, characterized in that: The outer bottom of the screw (320) is fixed to the inner ring sidewall of the bearing (340), and the bottom sides of the extrusion block (330) and the top of the insert block (370) are provided with inclined surfaces.

5. The slope protection device for ecological restoration according to claim 2, characterized in that: The insert (370) passes through the bottom of both sides of the insert (310), and the reset spring (361) is fixedly connected to the opposite sides of the two sliders (360).

6. The slope protection device for ecological restoration according to claim 1, characterized in that: The splicing mechanism (400) includes an installation groove (410) located in the middle of the top perimeter of the planting brick (100). A connecting groove (411) is provided at the bottom of the installation groove (410). A slot (420) is provided in the middle of both sides of the installation groove (410). An installation block (430) is connected inside the installation groove (410). A connecting block (431) is symmetrically fixed at the bottom of the installation block (430). An installation cavity (440) is symmetrically provided inside the installation block (430). A connecting spring (450) is fixed in the middle of one side of the installation cavity (440). A moving plate (460) is fixed at one end of the connecting spring (450). A slot (470) is symmetrically fixed on one side of the moving plate (460). A pull block (480) is fixed in the middle of the top of the moving plate (460). A moving groove (490) is provided in the middle of the top of the installation cavity (440).

7. The slope protection device for ecological restoration according to claim 6, characterized in that: The movable plate (460) slides inside the mounting cavity (440), and the outer side wall of the movable plate (460) is in contact with the inner side wall of the mounting cavity (440), and the pull block (480) is connected to the inside of the movable groove (490).