Slope reinforcing structure

By designing a splicable reinforcement block and connecting plate structure, the problems of large size and difficult installation of existing slope reinforcement structures are solved, and convenient installation and efficient protection effects are achieved, and drainage function is also provided.

CN223458833UActive Publication Date: 2025-10-21GUANGXI TRANSPORTATION VOCATIONAL & TECH COLLEGE
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Patent Information

Application Number
CN202423016274.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-10-21
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

The existing slope reinforcement structure is bulky, time-consuming and labor-intensive to install, and inconvenient to transport and operate.

Method used

Multiple reinforcement blocks that can be spliced ​​horizontally and vertically are used, combined with left and right connecting plates and fasteners, fixed to the slope through anchor rods, and drainage grooves are set in the reinforcement blocks to achieve drainage function.

Benefits of technology

It improves the convenience and connection strength of the slope reinforcement structure, simplifies the installation process, enhances the protection effect, and prevents water flow and landslides through drainage grooves.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of slope reinforcing, in particular to a slope reinforcing structure which comprises a plurality of reinforcing blocks capable of being spliced transversely and longitudinally, and a left connecting plate and a right connecting plate are fixed to the left end and the right end of each reinforcing block respectively. When the two reinforcing blocks are transversely spliced, the left connecting plate of one reinforcing block is partially in lap joint with the right connecting plate of the other reinforcing block, and the lap joint parts are fixedly connected through first fasteners. When the two reinforcing blocks are longitudinally spliced, the left connecting plate and the right connecting plate of one reinforcing block are in partial lap joint with the left connecting plate and the right connecting plate of the other reinforcing block respectively, and the lap joint parts are fixedly connected through second fasteners. The reinforcing block is in a rectangular plate shape, stepped holes are formed in the four corners of the reinforcing block, and the anchor rods penetrate through the stepped holes and then are inserted into the slope. According to the side slope reinforcing structure, field operation is facilitated, meanwhile, personnel can conveniently transport and move the side slope reinforcing structure, and the use convenience of the side slope reinforcing structure is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of side slope reinforcement, specifically to a side slope reinforcement structure. BACKGROUND

[0002] Civil engineering refers to the science and technology of various land engineering facilities, which refers to the materials, equipment and technical activities such as survey, design, construction, maintenance and maintenance, and also refers to the object of engineering construction. Side slope treatment is a complex and difficult disaster prevention and control project.

[0003] The utility model discloses a kind of side slope reinforcement structures for civil engineering, including side slope, fixedly connected with fixed block in side slope, fixedly connected with connecting plate in the bottom of fixed block, connecting plate is movably connected with reinforcing frame inside, reinforcing frame is fixedly connected with reinforcing structure inside, reinforcing structure includes that four number of clamping slots are set in reinforcing frame inside, four clamping slots are movably connected with clamping block inside, the opposite side of four clamping blocks is fixedly connected with protective net.The side slope reinforcement structure for civil engineering, when using, four clamping rods can be clamped into the clamping hole inside another reinforcing frame inside, then four pull rods are pulled to the side close to baffle, clamping plate is moved to the side close to baffle by pull rod movement, clamping slot can be opened, then clamping block is clamped into clamping slot, pull rod can be released, spring is compressed and clamping plate is reset, clamping block can be clamped by clamping plate, then fixed cone is knocked into fixed plate and side slope inside, and fixing is completed. But the above technology is used, since the volume of side slope reinforcement structure is large, personnel installs and fixes, reinforcing structure needs to be carried and lifted, process is time-consuming and laborious, personnel is not convenient for operation and use, and needs to be improved. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a kind of side slope reinforcement structure to solve the problems raised in the above background technology.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A kind of side slope reinforcement structure, including the transverse splicing and longitudinal splicing of multiple reinforcing blocks can be carried out, the left and right ends of reinforcing block are fixed with left connecting plate and right connecting plate respectively;

[0007] When two reinforcing blocks are transversely spliced, the left connecting plate of one reinforcing block is partially overlapped with the right connecting plate of another reinforcing block, and the overlapped part is fixedly connected by a first fastener;

[0008] When two reinforcing blocks are longitudinally spliced, the left connecting plate and the right connecting plate of one reinforcing block are partially overlapped with the left connecting plate and the right connecting plate of another reinforcing block respectively, and the overlapped part is fixedly connected by a second fastener.

[0009] The reinforcing block is rectangular plate-shaped, and a stepped hole is formed at each of four corner positions of the reinforcing block.

[0010] Preferably, the left connecting plate comprises a left plate body, a first lap plate fixed at the left end of the left plate body, and a second lap plate fixed at the rear end of the left plate body.

[0011] The right connecting plate comprises a right plate body and a third lap plate fixed at the rear end of the right plate body.

[0012] When the two reinforcing blocks are transversely spliced, the right end of the right plate body is lapped on the top of the first lap plate and is fixedly connected through the first fastener.

[0013] When the two reinforcing blocks are longitudinally spliced, the front end of the left plate body of the latter reinforcing block is lapped on the top of the second lap plate of the left plate body of the former reinforcing block and is fixedly connected through the second fastener.

[0014] Preferably, the bottom of the left connecting plate is fixed with a plurality of left insertion nails, and the bottom of the right connecting plate is fixed with a plurality of right insertion nails.

[0015] Preferably, the left and right ends of the reinforcing block are fixed with transition plates, and the left and right connecting plates are fixedly connected with the two transition plates through the third fastener respectively.

[0016] Preferably, the anchor rod comprises a screw rod segment and a hexagonal head and a conical segment fixed at the two ends of the screw rod segment respectively.

[0017] The stepped hole comprises a large hole and a small hole, and the small hole is a threaded hole.

[0018] The screw rod segment and the small hole are matched.

[0019] Preferably, the reinforcing block comprises a surrounding edge and a multi-hole plate fixed inside the surrounding edge.

[0020] Preferably, the inside of the surrounding edge is provided with a drainage groove, and the front and rear ends of the surrounding edge are respectively provided with a drainage connector and a water inlet communicated with the drainage groove, the drainage connector of the latter reinforcing block can be inserted into the water inlet of the former reinforcing block, and sealing connection is realized through the sealing ring sleeved on the drainage connector.

[0021] Compared with the prior art, the reinforcing block has the advantages that:

[0022] 1. The side slope reinforcing structure can be spliced and installed through the cooperation of the plurality of reinforcing blocks, the left and right connecting plates and the related fasteners, on-site operation is facilitated, personnel can conveniently transport and move the side slope reinforcing structure, and the use convenience of the side slope reinforcing structure is improved; then the cooperation of the conical section at the bottom of the anchor rod and the left and right insertion nails can effectively enhance the connection strength between the reinforcing blocks and the side slope and improve the side slope protection effect.

[0023] 2. The sealing connection between the drainage joint and the water inlet is realized by the sealing ring, so that the water flow above the side slope can be drained to the lower side through the drainage groove, and the water flow is prevented from causing landslides on the side slope. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 is a schematic view of the overall structure of the utility model;

[0025] Figure 2 is a schematic view of the layout structure of the bottom surface of the utility model;

[0026] Figure 3 is a schematic view of the structure of the reinforcing block, the left connecting plate and the right connecting plate of the utility model;

[0027] Figure 4 is a schematic view of the structure of the left connecting plate of the utility model;

[0028] Figure 5 is a schematic view of the structure of the right connecting plate of the utility model;

[0029] Figure 6 is a schematic view of the sectional structure of the reinforcing block of the utility model;

[0030] Figure 7 is a schematic view of the structure of the anchor rod of the utility model.

[0031] In the drawing: 1, reinforcing block; 11, surrounding edge; 12, perforated plate; 13, drainage groove; 14, water inlet; 15, drainage joint; 16, sealing ring; 17, stepped hole; 171, large hole; 172, small hole; 2, left connecting plate; 21, left plate body; 22, first lap plate; 23, second lap plate; 24, left insertion nail; 3, right connecting plate; 31, right plate body; 32, third lap plate; 33, right insertion nail; 4, anchor rod; 41, screw rod section; 42, hexagonal head; 43, conical section; 5, first fastener; 6, second fastener; 7, transition plate; 8, third fastener. DETAILED DESCRIPTION

[0032] Clearly, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0033] Please refer to Figures 1-7 The present application provides a technical solution:

[0034] A slope reinforcing structure, comprising a plurality of reinforcing blocks 1 capable of being transversely spliced and longitudinally spliced, left and right ends of the reinforcing block 1 are respectively fixed with left and right connecting plates 2 and 3; in the embodiment, the left and right connecting plates 2 and 3 are fixedly connected with the reinforcing block 1 through the transition plates 7, specifically, the left and right ends of the reinforcing block 1 are both fixed with the transition plates 7, the specific fixing mode between the transition plate 7 and the reinforcing block 1 can be integrally formed, the left and right connecting plates 2 and 3 are both fixedly connected with the two transition plates 7 through the third fasteners 8, wherein the third fastener 8 can be a hexagonal bolt, as shown in the figure, after the left and right connecting plates 2 and 3 are fixed to the top surface of the transition plate 7 through the third fastener 8, the upper surfaces of the left and right connecting plates 2 and 3 and the upper surface of the reinforcing block 1 are kept at the same height.

[0035] The plurality of reinforcing blocks 1 in the embodiment can be transversely spliced and longitudinally spliced, specifically as follows:

[0036] When the two reinforced blocks 1 are transversely spliced, the left connecting plate 2 of one of the reinforced blocks 1 is partially overlapped with the right connecting plate 3 of the other reinforced block 1, and the overlapped part is fixedly connected through the first fastener 5; when the two reinforced blocks 1 are longitudinally spliced, the left connecting plate 2 and the right connecting plate 3 of one of the reinforced blocks 1 are partially overlapped with the left connecting plate 2 and the right connecting plate 3 of the other reinforced block 1 respectively, and the overlapped parts are fixedly connected through the second fastener 6; specifically, the left connecting plate 2 comprises a left plate body 21, a first overlapping plate 22 fixed at the left end of the left plate body 21, and a second overlapping plate 23 fixed at the rear end of the left plate body 21, wherein the left plate body 21, the first overlapping plate 22 and the second overlapping plate 23 are integrally formed; the right connecting plate 3 comprises a right plate body 31 and a third overlapping plate 32 fixed at the rear end of the right plate body 31, wherein the right plate body 31 and the third overlapping plate 32 are integrally formed; when the two reinforced blocks 1 are transversely spliced, the right end of the right plate body 31 is overlapped on the top of the first overlapping plate 22 and is fixedly connected through the first fastener 5; when the two reinforced blocks 1 are longitudinally spliced, the front end of the left plate body 21 of the latter is overlapped on the top of the second overlapping plate 23 of the left plate body 21 of the former, and is fixedly connected through the second fastener 6, wherein the first fastener 5 and the second fastener 6 can both be hexagonal bolts; as shown in the figure, after the two reinforced blocks 1 are transversely spliced, the upper surfaces of the left plate body 21 and the right plate body 31 spliced together can still be in the same plane, and similarly, when the two reinforced blocks 1 are longitudinally spliced, the upper surfaces of the two left plate bodies 21 spliced together and the upper surfaces of the two right plate bodies 31 spliced together can still be in the same plane.

[0037] The reinforced block 1 in the embodiment is a rectangular plate, and a stepped hole 17 is formed at each of the four corner positions of the reinforced block 1, and the anchor rod 4 is inserted into the slope after penetrating through the stepped hole 17 to fix the reinforced block 1 to the slope surface; specifically, the anchor rod 4 comprises a screw rod section 41 and a hexagonal head 42 and a tapered section 43 fixed at both ends of the screw rod section 41 respectively; the stepped hole 17 comprises a large hole 171 and a small hole 172, and the small hole 172 is a threaded hole; the screw rod section 41 is matched with the small hole 172, and the large hole 171 is used to accommodate the hexagonal head 42.

[0038] In order to improve the reinforcement effect on the slope, a plurality of left insertion nails 24 are fixed at the bottom of the left connecting plate 2, and a plurality of right insertion nails 33 are fixed at the bottom of the right connecting plate 3.

[0039] The basic working principle of the technical scheme is as follows: when reinforcing the slope, the reinforcing block 1 is placed on the slope to be reinforced, the distance between the two adjacent reinforcing blocks 1 is appropriate, and the two reinforcing blocks 1 are spliced and fixed by the left connecting plate 2 and the right connecting plate 3, the anchor rod 4 is inserted through the stepped hole 17 and the small hole 172, the screw rod section 41 is tightened, the conical section 43 is inserted into the soil of the slope, and the hexagonal head 42 is accommodated in the large hole 171; then the left connecting plate 2 and the right connecting plate 3 are fixed on the top of the two transition plates 7 by the third fastener 8, and then the left connecting plate 2 and the right connecting plate 3 are fixed together by the first fastener 5; then the two reinforcing blocks 1 are longitudinally spliced by the second fastener 6, and finally a whole slope reinforcing structure is formed.

[0040] The reinforcing block 1 in the embodiment comprises a surrounding edge 11 and a porous plate 12 fixed in the surrounding edge 11; further, a drainage groove 13 is arranged in the surrounding edge 11, and a water inlet 14 and a drainage connector 15 communicating with the drainage groove 13 are arranged at the front end and the rear end of the surrounding edge 11 respectively, the drainage connector 15 of the rear reinforcing block 1 can be inserted into the water inlet 14 of the front reinforcing block 1, and the sealing connection is realized by the sealing ring 16 sleeved on the drainage connector 15.

[0041] In the longitudinal splicing, the drainage connector 15 of the rear reinforcing block 1 is inserted into the water inlet 14 of the front reinforcing block 1, and the sealing connection between the drainage connector 15 and the water inlet 14 is realized by the sealing ring 16, so that the water flow on the slope can be drained to the lower side through the drainage groove 13, and the landslide is prevented.

[0042] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A slope reinforcing structure, characterized by, The reinforcing block is capable of transverse and longitudinal splicing, and the left and right ends of the reinforcing block are respectively fixed with a left connecting plate and a right connecting plate; When the two reinforcing blocks are transversely spliced, the left connecting plate of one reinforcing block is partially overlapped with the right connecting plate of the other reinforcing block, and the overlapped part is fixed and connected by a first fastener; When the two reinforcing blocks are longitudinally spliced, the left and right connecting plates of one reinforcing block are respectively partially overlapped with the left and right connecting plates of the other reinforcing block, and the overlapped parts are fixed and connected by a second fastener; The reinforcing block is a rectangular plate, and a stepped hole is formed at each of the four corners of the reinforcing block. An anchor rod is inserted into the stepped hole and then inserted into the slope to fix the reinforcing block to the slope surface.

2. A slope reinforcing structure according to claim 1, wherein The left connecting plate comprises a left plate body, a first overlapping plate fixed at the left end of the left plate body, and a second overlapping plate fixed at the rear end of the left plate body; The right connecting plate comprises a right plate body and a third overlapping plate fixed at the rear end of the right plate body; When the two reinforcing blocks are transversely spliced, the right end of the right plate body is overlapped on the top of the first overlapping plate and is fixed and connected by a first fastener; When the two reinforcing blocks are longitudinally spliced, the front end of the left plate body of the latter reinforcing block is overlapped on the top of the second overlapping plate of the left plate body of the former reinforcing block and is fixed and connected by a second fastener.

3. The slope reinforcing structure according to claim 1, wherein The bottom of the left connecting plate is fixed with a plurality of left insertion nails, and the bottom of the right connecting plate is fixed with a plurality of right insertion nails.

4. The slope reinforcing structure according to claim 1, wherein The left and right ends of the reinforcing block are both fixed with a transition plate, and the left and right connecting plates are both fixed with the two transition plates by a third fastener.

5. The slope reinforcing structure according to claim 1, wherein The anchor rod comprises a screw rod segment, a hexagonal head fixed at one end of the screw rod segment, and a tapered segment fixed at the other end of the screw rod segment; The stepped hole comprises a large hole and a small hole, and the small hole is a threaded hole; The screw rod segment and the small hole are matched.

6. The slope reinforcing structure according to claim 1, wherein The reinforcing block comprises a surrounding edge and a porous plate fixed inside the surrounding edge.

7. A slope reinforcing structure according to claim 6, wherein The inside of the surrounding edge is provided with a drainage groove, and the front and rear ends of the surrounding edge are respectively provided with a drainage connector and a water inlet in communication with the drainage groove. The drainage connector of the latter reinforcing block can be inserted into the water inlet of the former reinforcing block and is sealed and connected by a sealing ring sleeved on the drainage connector.

Citation Information

Patent Citations

  • Slope reinforcing structure for civil engineering

    CN217231887U