Cement product protection slope with reinforcing structure

Through the structural design of limit blocks, limit seats and transverse reinforcement strips, the problems of difficult installation and unstable connection of cement hexagonal block slope protection are solved, efficient installation and reinforcement effects are achieved, and the overall protection capability of the slope protection and the stability of vegetation planting are enhanced.

CN223386589UActive Publication Date: 2025-09-26SHIGATSE YAQU NEW BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202422872864.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-09-26
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

The existing hexagonal cement slope protection is difficult to install, has low installation efficiency, and has unstable connections, which is easy to loosen and affect the protection effect.

Method used

The design of limit blocks and limit seats is adopted, combined with horizontal reinforcement strips, diagonal rods and anti-fall nets to form a stable connection structure, which is further reinforced by cement pouring to achieve a pre-installed effect.

Benefits of technology

It improves installation efficiency and connection stability, prevents loosening, enhances the overall reinforcement effect of slope protection, and promotes the stability of vegetation planting and soil fixation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The cement product protection slope with the reinforcing structure comprises a plurality of first hexagonal blocks and second hexagonal blocks which are adjacently arranged, the four bevel edges of each first hexagonal block are all connected with limiting clamping blocks, and the four bevel edges of each second hexagonal block are all connected with limiting bases which are connected with the limiting clamping blocks in a matched and clamped mode. Transverse reinforcing strips are arranged on one sides of the first hexagonal blocks and the second hexagonal blocks, the shapes of the transverse reinforcing strips are matched with the edge trend shapes of the first hexagonal blocks and the second hexagonal blocks, a plurality of limiting clamping blocks and limiting seats are connected to the two sides of the transverse reinforcing strips, and a plurality of inclined rods and anti-falling nets are connected to the inner walls of the first hexagonal blocks and the inner walls of the second hexagonal blocks.
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Description

Technical Field

[0001] The utility model belongs to the technical field of cement slope protection, in particular to a cement slope protection with a reinforcement structure. Background Art

[0002] In the river section where the bridge is located, the concave bank of the river is subject to erosion year after year, leading to its continuous collapse. To protect the bridge and embankment, protective structures must be constructed on the concave bank. Furthermore, when the construction of the bridge causes the river flow to change, eroding the river bank and endangering farmland and villages, protective structures must also be constructed on the river bank. Slope protection is a general term for various paving and planting methods applied to the slope to prevent erosion. However, most existing slope protection systems are made of cement to save costs.

[0003] Among them, cement hexagonal block slope protection is widely used due to its advantages of being beautiful, practical, long service life and wide applicability. However, in the existing technology, there are problems with the installation difficulty and low installation efficiency during the installation process of cement hexagonal block slope protection. Since the hexagonal block slope protection needs to be assembled with high strength, the installers need to have a certain level of technical skills and experience, otherwise rework and other problems may easily occur; and the structure between each cement hexagonal block slope protection is single, and usually each cement hexagonal block slope protection is connected only by subsequent pouring of cement. If a single piece of cement hexagonal block slope protection becomes loose, it will cause one piece to become loose and affect the protection effect. Therefore, a cement product slope protection with a reinforced structure is provided here to solve the above technical problems. Utility Model Content

[0004] In view of the problems raised by the above background technology, the purpose of the present utility model is to provide a cement product slope protection with a reinforcement structure.

[0005] In order to achieve the above technical objectives, the technical solutions adopted by this utility model are as follows:

[0006] A cement slope protection with a reinforcement structure includes a plurality of adjacently arranged first and second hexagonal blocks, wherein the four oblique sides of the first hexagonal blocks are connected to limit blocks, and the four oblique sides of the second hexagonal blocks are connected to limit seats adapted to engage with the limit blocks. Transverse reinforcement strips are provided on one side of the plurality of first and second hexagonal blocks, the shape of the transverse reinforcement strips matching the edge shape of the first and second hexagonal blocks, and the two sides of the transverse reinforcement strips are connected to a plurality of limit blocks and limit seats.

[0007] The inner walls of the first hexagonal block and the second hexagonal block are connected with a plurality of inclined rods and anti-fall nets.

[0008] It is further defined that the limit block is set in a dovetail shape and the edge corners are chamfered. The shape of the inner wall of the limit seat is consistent with the shape of the limit block. Such a structural design can enhance the connection stability between the limit block and the limit seat, thereby preventing direct falling off.

[0009] It is further defined that the thickness of the transverse reinforcement strip is greater than the thickness of the first hexagonal block and the second hexagonal block, and the transverse reinforcement strip is provided with a plurality of drainage holes inclined downward at a certain angle. Such a structural design can catch some fallen mud and sand, and facilitate the drainage of seepage water on the slope from the plurality of drainage holes.

[0010] It is further defined that a plurality of positioning cones are connected to one side of each of the first hexagonal block and the second hexagonal block. Such a structural design can enhance the connection stability between each of the first hexagonal block and the second hexagonal block and the mounting surface.

[0011] It is further defined that a circular ring is connected between the ends of the plurality of inclined rods. Such a structural design can facilitate the planting of protective plants of different diameters in different areas and can also prevent the reinforcement of mud and sand.

[0012] The beneficial effects of the utility model are:

[0013] 1. The utility model mainly comprises a plurality of first hexagonal blocks and second hexagonal blocks. The first hexagonal blocks and the second hexagonal blocks are respectively connected with the limit blocks and the limit seats, which are then connected by cement pouring, so as to achieve a pre-installed effect and prevent them from falling off directly when the cement is loose.

[0014] 2. The transverse reinforcement strips are connected to the adjacent first and second hexagonal blocks through the limiting blocks and the limiting seats, thereby achieving the effect of segmented reinforcement of the first and second hexagonal blocks, thereby segmentedly reinforcing and protecting the entire slope protection from different transverse positions;

[0015] 3. In addition, the multiple inclined rods and anti-fall nets on the inner walls of the first hexagonal block and the second hexagonal block can prevent the slope soil from falling directly from the gap between the first hexagonal block and the second hexagonal block, thereby reinforcing the stability of vegetation planting and reinforcing the slope soil. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The present invention can be further described by way of non-limiting examples given in the accompanying drawings;

[0017] Figure 1 This is a schematic top view of a portion of the structure of an embodiment of a cement product slope protection with a reinforcement structure of the utility model;

[0018] Figure 2This is a bottom view schematic diagram of the structure of a single first hexagonal block, a second hexagonal block and a transverse reinforcement strip in an embodiment of a cement product slope protection with a reinforcement structure of the present invention.

[0019] The main component symbols are described as follows:

[0020] The first six blocks 1, the limit block 101;

[0021] The second six-block 2, the limit seat 201;

[0022] Transverse reinforcement strip 3, drain hole 301;

[0023] Slanted rod 4, anti-fall net 401, ring 402;

[0024] Positioning cone 5. DETAILED DESCRIPTION

[0025] In order to enable those skilled in the art to better understand the present invention, the technical solution of the present invention is further described below with reference to the accompanying drawings and embodiments.

[0026] like Figure 1-2 As shown, the utility model is a cement product slope protection with a reinforcement structure, comprising a plurality of adjacently arranged first hexagonal blocks 1 and second hexagonal blocks 2, wherein the four oblique sides of the first hexagonal blocks 1 are connected to a limiting block 101, and the four oblique sides of the second hexagonal blocks 2 are connected to a limiting seat 201 adapted to engage with the limiting block 101, and a transverse reinforcement strip 3 is provided on one side of the plurality of first hexagonal blocks 1 and the second hexagonal blocks 2, the shape of the transverse reinforcement strip 3 matches the edge trend shape of the first hexagonal blocks 1 and the second hexagonal blocks 2, and a plurality of limiting blocks 101 and limiting seats 201 are connected on both sides of the transverse reinforcement strip 3;

[0027] The inner walls of the first hexagonal block 1 and the second hexagonal block 2 are connected with a plurality of inclined rods 4 and an anti-falling net 401 .

[0028] In the embodiment of this case, when the staff arrange and install the first hexagonal blocks 1 and the second hexagonal blocks 2 in sequence, they engage the limiting blocks 101 on the four sides of the first hexagonal blocks 1 with the limiting seats 201 of the adjacent second hexagonal blocks 2, so as to achieve the effect of pre-installing and reinforcing the connectivity between the adjacent first hexagonal blocks 1 and the second hexagonal blocks 2. Cement is then poured between the gaps at a later stage, and when the cement between some of the first hexagonal blocks 1 and the second hexagonal blocks 2 becomes loose, it prevents the gap from falling off directly. The transverse reinforcement strips 3 are spliced ​​with the adjacent first hexagonal blocks 1 and the second hexagonal blocks 2 through the limiting blocks 101 and the limiting seats 201, so as to achieve the effect of segmented reinforcement of the first hexagonal blocks 1 and the second hexagonal blocks 2, and segmented reinforcement and protection of the slope protection as a whole from different transverse positions.

[0029] Among them, the inner walls of the first hexagonal block 1 and the second hexagonal block 2 are connected with multiple inclined rods 4 and anti-fall nets 401, which can strengthen the stability of vegetation planting and prevent slope soil from falling directly from the gap between the first hexagonal block 1 and the second hexagonal block 2.

[0030] Preferably, the limiting block 101 is dovetail-shaped with rounded corners, and the inner wall of the limiting seat 201 is consistent with the shape of the limiting block 101. This structural design can enhance the connection stability between the limiting block 101 and the limiting seat 201, thereby preventing the device from falling off. In fact, other structural shapes that can prevent the device from falling off can also be considered according to specific circumstances.

[0031] Preferably, the thickness of the transverse reinforcement strip 3 is greater than that of the first hexagonal block 1 and the second hexagonal block 2. The transverse reinforcement strip 3 is provided with multiple drainage holes 301 inclined downward at a certain angle. This structural design can catch some fallen mud and sand, facilitating the drainage of seepage water from the slope through the multiple drainage holes 301. In practice, other structural shapes that facilitate drainage and catch fallen rocks and sand can also be considered depending on specific circumstances.

[0032] Preferably, a plurality of positioning cones 5 are connected to one side of each of the first hexagonal block 1 and the second hexagonal block 2. This structural design can strengthen the connection stability between each of the first hexagonal block 1 and the second hexagonal block 2 and the mounting surface. In fact, other structural shapes that can strengthen the connection stability can also be considered according to specific circumstances.

[0033] Preferably, a ring 402 is connected between the ends of the plurality of inclined rods 4. Such a structural design can facilitate the planting of protective plants of different diameters in different zones and can also prevent the reinforcement of sediment. In fact, other structural shapes that are convenient for planting different plants and can reinforce sediment can also be considered according to specific circumstances.

[0034] The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the present invention. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or alterations made by persons skilled in the art without departing from the spirit and technical principles disclosed herein shall be covered by the claims of the present invention.

Claims

1. A cement product slope protection with a reinforcement structure, comprising a plurality of first hexagonal blocks (1) and second hexagonal blocks (2) arranged adjacent to each other, characterized in that: The four oblique sides of the first hexagonal block (1) are all connected to the limiting block (101), and the four oblique sides of the second hexagonal block (2) are all connected to the limiting seat (201) adapted to engage the limiting block (101). A transverse reinforcement strip (3) is provided on one side of the plurality of the first hexagonal blocks (1) and the second hexagonal blocks (2). The shape of the transverse reinforcement strip (3) matches the edge shape of the first hexagonal block (1) and the second hexagonal block (2). The two sides of the transverse reinforcement strip (3) are connected to a plurality of limiting blocks (101) and the limiting seat (201); The inner walls of the first hexagonal block (1) and the second hexagonal block (2) are connected with a plurality of inclined rods (4) and an anti-fall net (401).

2. The cement product slope protection with a reinforcement structure according to claim 1, characterized in that: The limiting block (101) is arranged in a dovetail shape, and the edge corners are rounded, and the shape of the inner wall of the limiting seat (201) is consistent with the shape of the limiting block (101).

3. The cement product slope protection with a reinforcement structure according to claim 2, characterized in that: The thickness of the transverse reinforcement strip (3) is greater than the thickness of the first hexagonal block (1) and the second hexagonal block (2), and the transverse reinforcement strip (3) is provided with a plurality of drainage holes (301) inclined downward at a certain angle.

4. The cement product slope protection with a reinforcement structure according to claim 3, characterized in that: One side of each of the first hexagonal block (1) and the second hexagonal block (2) is connected to a plurality of positioning cones (5).

5. The cement product slope protection with a reinforcement structure according to claim 4, characterized in that: A circular ring (402) is connected between the ends of the plurality of inclined rods (4).