A slope reinforcing device
Patent Information
- Application Number
- CN202522550062.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-01
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-12-01
AI Technical Summary
[0004]本实用新型的目的在于提供一种边坡加固装置,以解决上述背景技术中提出卡扣在边坡环境下,存在连接稳定性不足的问题
通过增设加固组件,在传统卡扣的基础上,对上部构件与下部构件的卡合处弯折固定件、条形槽口进行抵押固定,使两者卡合面接触更紧密,既增强了卡合强度,可有效避免因边坡岩体微小位移、落石冲击导致的卡扣松脱,保障高强度钢丝格栅网连接的整体性,又大幅提升了卡扣的抗剪切性能,能够适应边坡加固中钢丝网长期受拉、受剪的复杂工况。
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Figure CN224799535U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of slope protection technology, specifically relating to a slope reinforcement device. Background Technology
[0002] Slope reinforcement falls under the categories of geotechnical engineering and disaster prevention and mitigation engineering. It utilizes the synergistic effects of components such as anchor bolts, protective nets, reinforcement plates, and grouting systems to either penetrate deep into the slope rock mass to provide anchoring force or cover the slope surface to disperse pressure and intercept falling rocks. This effectively prevents geological disasters such as landslides and collapses, ensuring the safety of buildings, roads, and the surrounding ecology. It is widely used in slope management for projects such as mines, highways, and water conservancy.
[0003] Existing slope reinforcement methods involve a slope body, a reinforcement device, and clips. Clips are used to fix the cross-shaped intersections of the reinforcement device. However, under complex conditions such as minor displacement of the slope rock mass and impact from falling rocks, traditional clips are prone to loosening, leading to failure of the mesh connection. Furthermore, local stress concentration can easily cause deformation and fracture, resulting in insufficient connection stability. Therefore, this utility model proposes a slope reinforcement device. Utility Model Content
[0004] The purpose of this utility model is to provide a slope reinforcement device to solve the problem of insufficient connection stability of the buckle in the slope environment mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a slope reinforcement device, comprising a mesh reinforcement device installed on the main body of the slope, the mesh reinforcement device consisting of a wire mesh, a high-strength steel wire mesh, and multiple cross buckles, the high-strength steel wire mesh covering the wire mesh, the high-strength steel wire mesh consisting of multiple crisscrossing steel wires, the multiple cross buckles being installed at the intersections of the multiple steel wires, the cross buckle consisting of an upper component, a lower component, and a reinforcement component, the upper component being installed at the top of the lower component, and the reinforcement component being installed at the bottom of the lower component.
[0006] Preferably, the reinforcing component consists of a rotating block, a bracket, a collateral plate, and a movable component. The collateral plate is disposed at the bottom end of the lower component, the bracket is disposed on the collateral plate, the rotating block is fitted onto the surface of the bracket, and the movable component is disposed between the collateral plate and the bracket.
[0007] Preferably, the cross-section of the mortgage plate is rectangular.
[0008] Preferably, the cross-section of the bracket is rectangular, and the cross-sectional dimensions of the mortgage plate are smaller than those of the bracket.
[0009] Preferably, the movable component consists of a movable threaded hole and a movable threaded rod. The movable threaded hole is opened on the inner side of the bracket, and the movable threaded rod passes through the inner side of the movable threaded hole. One end of the movable threaded rod is fixed to the rotating block, and the other end of the movable threaded rod is fixed to the surface of the collateral plate.
[0010] Preferably, the surface of the movable threaded rod is threadedly connected to the inner wall of the movable threaded hole.
[0011] Preferably, a silicone sleeve is fixed to one side of the inner wall of the movable threaded hole.
[0012] Preferably, the connection between the upper component and the lower component is provided with multiple engaging components. Each engaging component consists of a bending fastener and a strip groove. The strip groove is opened on the inner side of the lower component, and the bending fastener is disposed inside the strip groove. The top end of the bending fastener is connected to the bottom end of the upper component.
[0013] Compared with the prior art, the beneficial effects of this utility model are: By adding reinforcement components, the upper and lower components are fixed by bending and fixing parts and strip grooves at the engagement point, making the engagement surfaces of the two components more tightly contacted. This not only enhances the engagement strength and effectively prevents the buckles from loosening due to minor displacement of the slope rock mass or impact of falling rocks, ensuring the integrity of the high-strength steel wire mesh connection, but also significantly improves the shear resistance of the buckles, enabling them to adapt to the complex working conditions of long-term tension and shear of the steel wire mesh in slope reinforcement. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This utility model Figure 1 Enlarged schematic diagram of region A in the diagram; Figure 3 This is a schematic diagram of the cross-shaped buckle structure of this utility model; Figure 4 This is a schematic diagram of the back of the cross-shaped buckle of this utility model; Figure 5 This is a schematic diagram of the bending fastener 2311 and the strip groove 2312 of this utility model. Figure 6 This is a side sectional view of the reinforcing component of this utility model; In the diagram: 1. Main body of the slope; 2. Mesh reinforcement device; 21. Wire mesh; 22. High-strength steel wire mesh; 23. Cross buckle; 231. Upper component; 2311. Bending fastener; 2312. Strip groove; 232. Lower component; 233. Reinforcement component; 2331. Rotating block; 2332. Bracket; 2333. Mortgage plate; 2334. Movable component; 2334A. Movable threaded hole; 2334A-1. Silicone sleeve; 2334B. Movable threaded rod. Detailed Implementation
[0015] 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.
[0016] Please see Figures 1 to 6This utility model provides a technical solution: a slope reinforcement device, including a mesh reinforcement device 2 installed on the slope body 1. The mesh reinforcement device 2 is used at the intersection of high-strength steel wire mesh 22 to fix the mesh into a whole, ensuring the integrity of the mesh and the uniformity of force distribution. The mesh reinforcement device 2 consists of a steel wire mesh 21, a high-strength steel wire mesh 22, and multiple cross buckles 23. The high-strength steel wire mesh 22 covers the steel wire mesh 21 and is composed of multiple crisscrossing steel wires. Multiple cross buckles 23 are installed at the intersection of the multiple steel wires. Each cross buckle 23 consists of an upper component 231, a lower component 232, and a reinforcement component 233. The upper component 231 is installed at the intersection of the lower component 232. At the top, the reinforcing component 233 is located at the bottom of the lower component 232. By adding the reinforcing component 233, based on the traditional buckle, the bent fixing part 2311 and the strip groove 2312 at the engagement point of the upper component 231 and the lower component 232 are secured, making the engagement surfaces of the two more tightly contacted. This not only enhances the engagement strength but also effectively prevents the buckle from loosening due to minor displacement of the slope rock mass or impact of falling rocks, ensuring the integrity of the high-strength steel wire mesh 22 connection. It also significantly improves the shear resistance of the buckle, enabling it to adapt to the complex working conditions of long-term tension and shear of the steel wire mesh in slope reinforcement. The reinforcing component 233 consists of a rotating block 2331, a bracket 2332, a securing plate 2333, and a movable component 2334. This device is used to further reinforce the engagement point between the upper component 231 and the lower component 232 of the mesh reinforcement device 2, improving the connection strength and stability of the mesh reinforcement device 2 and preventing the buckle from loosening due to slope displacement or rockfall impact. A mortise plate 2333 is located at the bottom of the lower component 232, and a bracket 2332 is mounted on the mortise plate 2333. The bracket at the bottom of the bracket 2332 is fixed to the surface of the lower component 232. A rotating block 2331 is fitted onto the surface of the bracket 2332. A movable component 2334 is located between the mortise plate 2333 and the bracket 2332. During the mortise process of the reinforcement component 233 against the engagement component, the rotating block 2331 rotates, causing the movable threaded rod 2334B to move within the movable threaded hole 2334A. The inner thread rotates, causing the mortgage plate 2333 to advance forward and mortgage the engaging component. The silicone sleeve 2334A-1 locks the threaded rotation of the movable component 2334, further ensuring the mortgage effect on the engaging component. The mortgage plate 2333 has a rectangular cross-section, as does the bracket 2332. The cross-sectional dimensions of the mortgage plate 2333 are smaller than those of the bracket 2332. The movable component 2334 consists of a movable threaded hole 2334A and a movable threaded rod 2334B. The movable threaded hole 2334A is located inside the bracket 2332, and the movable threaded rod 2334B passes through the inner side of the movable threaded hole 2334A. One end of the movable threaded rod 2334B is fixed to the rotating block 2331.The other end of the movable threaded rod 2334B is fixed to the surface of the mortgage plate 2333. The surface of the movable threaded rod 2334B is threadedly connected to the inner wall of the movable threaded hole 2334A. A silicone sleeve 2334A-1 is fixed to one side of the inner wall of the movable threaded hole 2334A. Multiple engaging components are provided at the connection between the upper component 231 and the lower component 232. The engaging components consist of a bent fixing part 2311 and a strip groove 2312. A bending fastener 2311 is disposed inside the strip-shaped slot 2312, with its top end connected to the bottom end of the upper component 231. During the engagement of the upper component 231 and the lower component 232 via the engaging assembly, the bending fastener 2311 penetrates the strip-shaped slot 2312. Pressing and bending the bending fastener 2311 locks the upper component 231 and the lower component 232 together.
[0017] The working principle and usage process of this utility model are as follows: During the reinforcement of the slope body 1 by the mesh reinforcement device 2, the steel wire mesh 21 and the high-strength steel wire mesh 22 are first covered on the surface of the slope body 1 in sequence, so that the steel wire mesh 21 and the high-strength steel wire mesh 22 are in close contact with the slope body 1. At the intersection of the high-strength steel wire mesh 22, cross buckles 23 are installed. The upper component 231 and the lower component 232 are clamped at the intersection of the high-strength steel wire mesh 22 by the bending fixing part 2311 and the strip groove 2312 of the clamping component. Then, the clamping plate 2333 and other components of the reinforcement component 233 are used to clamp the bending fixing part 2311 and the strip groove 2312 at the clamping point of the upper component 231 and the lower component 232, thereby enhancing the clamping strength and ensuring the stable connection of the mesh, and finally achieving the reinforcement and protection of the slope.
[0018] Although 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 alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A slope reinforcement device, comprising a mesh reinforcement device (2) disposed on a slope body (1), characterized in that: The mesh reinforcement device (2) consists of a wire mesh (21), a high-strength wire mesh (22), and multiple cross buckles (23). The high-strength wire mesh (22) covers the wire mesh (21). The high-strength wire mesh (22) is composed of multiple crisscrossing wires. The multiple cross buckles (23) are set at the intersection of the multiple wires. The cross buckle (23) consists of an upper component (231), a lower component (232), and a reinforcement component (233). The upper component (231) is set at the top of the lower component (232), and the reinforcement component (233) is set at the bottom of the lower component (232).
2. The slope reinforcement device according to claim 1, characterized in that: The reinforcement component (233) consists of a rotating block (2331), a bracket (2332), a collateral plate (2333), and a movable component (2334). The collateral plate (2333) is located at the bottom of the lower component (232), the bracket (2332) is located on the collateral plate (2333), the rotating block (2331) is attached to the surface of the bracket (2332), and the movable component (2334) is located between the collateral plate (2333) and the bracket (2332).
3. The slope reinforcement device according to claim 2, characterized in that: The cross-section of the mortgage plate (2333) is rectangular.
4. The slope reinforcement device according to claim 2, characterized in that: The cross-section of the bracket (2332) is rectangular, and the cross-sectional dimensions of the mortgage plate (2333) are smaller than those of the bracket (2332).
5. A slope reinforcement device according to claim 2, characterized in that: The movable component (2334) consists of a movable threaded hole (2334A) and a movable threaded rod (2334B). The movable threaded hole (2334A) is located inside the bracket (2332), and the movable threaded rod (2334B) passes through the inside of the movable threaded hole (2334A). One end of the movable threaded rod (2334B) is fixed to the rotating block (2331), and the other end of the movable threaded rod (2334B) is fixed to the surface of the mortgage plate (2333).
6. The slope reinforcement device according to claim 5, characterized in that: The surface of the movable threaded rod (2334B) is threadedly connected to the inner wall of the movable threaded hole (2334A).
7. A slope reinforcement device according to claim 5, characterized in that: A silicone sleeve (2334A-1) is fixed to one side of the inner wall of the movable threaded hole (2334A).
8. The slope reinforcement device according to claim 1, characterized in that: Multiple engaging components are provided at the connection between the upper component (231) and the lower component (232). Each engaging component consists of a bending fastener (2311) and a strip groove (2312). The strip groove (2312) is located inside the lower component (232), and the bending fastener (2311) is located inside the strip groove (2312). The top end of the bending fastener (2311) is connected to the bottom end of the upper component (231).