Device for accelerating installation of five-twisted steel wire gabion under limited space condition

By using rectangular molds to confine steel rope woven mesh under limited space conditions, combined with hoisting cables and lifting equipment, the problem of steel rope woven mesh being tilted and suspended on the edge of the embankment was solved, realizing the regular shape construction and efficient filling of gabion bodies.

CN224259256UActive Publication Date: 2026-05-19HUADIAN JINSHAJIANG UPSTREAM HYDROPOWER DEV CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUADIAN JINSHAJIANG UPSTREAM HYDROPOWER DEV CO LTD
Filing Date
2025-04-22
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Under limited space conditions, when steel rope woven mesh is laid on the edge of the embankment, the filling of the steel rope woven mesh with stones can easily cause the steel rope woven mesh to deform and expand outward, affecting the efficiency of filling the steel rope woven mesh with stones to form a regular-shaped gabion.

Method used

A rectangular mold is used to restrict the outer side of the steel rope woven mesh. The rectangular mold is lifted by a hoisting cable and lifting equipment to ensure that the steel rope woven mesh does not tilt or suspend during the stone filling process. The rectangular mold restricts the stones to compress the steel rope woven mesh to form a regular shape, and then it is tied and fixed to form a gabion.

Benefits of technology

It improves the efficiency of filling stones into the steel cable mesh, ensures that the gabion body forms a regular shape, solves the problem of the steel cable mesh tilting and hanging on the edge of the embankment, and improves the construction efficiency of the gabion body.

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Abstract

The utility model discloses a device for accelerating installation of a five-twisted steel wire gabion under the limited space condition. The device comprises a device body capable of limiting the periphery of the outer side of a steel rope woven mesh to be located on the inclined edge face of an embankment body. When the steel rope woven mesh located in the rectangular mold is smashed to fill and compact stones, the rectangular mold limits the stones to extrude the steel rope woven mesh to incline and suspend towards the inclined edge face, the efficiency of filling the stones into the steel rope woven mesh can be improved, and it is guaranteed that a gabion body formed by stacking the stones wrapped by the steel rope woven mesh is in a regular shape; the problem that the efficiency that the steel rope woven mesh is filled with stones to form a regular-shaped gabion body is affected due to the fact that the steel rope woven mesh is obliquely suspended when laid on the edge of an embankment is solved.
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Description

Technical Field

[0001] This utility model relates to a device for accelerating the installation of five-strand steel wire gabions under confined space conditions, and belongs to the field of gabion installation and construction technology. Background Technology

[0002] In water conservancy construction, when it is necessary to pile up a large number of small stones to form a gabion for protection, the existing technology (see Chinese Patent Publication No. CN221919218U) is to fill the stones into a steel rope woven mesh and then bind the steel rope woven mesh.

[0003] In the case of limited space without protection at the edge of the embankment, when steel cable mesh is laid on the edge of the embankment and stones are filled into the steel cable mesh, the steel cable mesh will deform and expand outward because it has no closed end. When the stones are forcefully smashed and compacted, the stones will squeeze the steel cable mesh and cause it to tilt and hang in the air towards the edge of the slope, thus affecting the efficiency of filling the steel cable mesh with stones to form a regular-shaped gabion. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides a device for accelerating the installation of five-strand steel wire gabions under limited space conditions.

[0005] This utility model is achieved through the following technical solution.

[0006] This utility model provides a device for accelerating the installation of five-strand steel wire gabions under confined space conditions, comprising:

[0007] A device that can restrict the steel rope braided mesh from being placed on the inclined edge of the embankment.

[0008] The device includes a rectangular mold at the rigid body, with a rectangular through hole in the middle of the rectangular mold. A flexible and deformable steel rope woven mesh is laid inside the rectangular mold. The top of the steel rope woven mesh is open and closed upwards. The steel rope woven mesh is filled with stones, and multiple stones can be wrapped by the steel rope woven mesh.

[0009] It also includes the embankment that provides the foundation for the construction environment. The embankment has an inclined edge, and the steel rope woven mesh is restricted to the inclined edge of the embankment by a rectangular mold around its outer perimeter.

[0010] The rectangular mold is fixed with a lifting cable that can suspend it.

[0011] The suspension cables are multiple cables distributed around the outer perimeter of the rectangular mold.

[0012] It also includes lifting equipment for lifting rectangular molds, with the lifting equipment hooked with a lifting cable.

[0013] The gabion body is a regular rectangle; multiple rectangular gabions are stacked and piled up on the inclined side to form a protective stone cofferdam.

[0014] The steel rope woven mesh is tied and fixed at the end to form a gabion body, and the steel rope woven mesh securely wraps around multiple different stones.

[0015] The beneficial effects of this utility model are as follows: when stones are hammered into the steel rope woven mesh inside the rectangular mold to fill and compact the mesh, the rectangular mold restricts the stones from squeezing the steel rope woven mesh and causing it to tilt and suspend on the inclined edge. This can improve the efficiency of filling the steel rope woven mesh with stones, and ensure that the gabion body formed by the steel rope woven mesh and the piled stones is of a regular shape. This solves the problem that the steel rope woven mesh is tilted and suspended on the edge of the embankment, which affects the efficiency of filling the steel rope woven mesh with stones to form a regular-shaped gabion body. Attached Figure Description

[0016] Figure 1 This is a structural diagram of the construction and distribution of this utility model;

[0017] Figure 2 This is a structural schematic diagram of the gabion body of this utility model;

[0018] Figure 3 This is a schematic diagram of the steel rope braided mesh structure of this utility model in a rectangular mold;

[0019] Figure 4 This is a structural schematic diagram of the steel rectangular mold of this utility model;

[0020] In the diagram: 1-embankment; 11-sloping edge; 2-gabion; 21-steel rope mesh; 22-stones; 23-binding wire; 3-rectangular mold; 31-suspension cable. Detailed Implementation

[0021] The technical solution of this utility model is further described below, but the scope of protection is not limited to what is described.

[0022] like Figures 1 to 4 As shown.

[0023] This application discloses a device for accelerating the installation of five-strand steel wire gabions under confined space conditions, comprising:

[0024] The embankment 1 provides the basic construction environment for construction, and the embankment 1 has an inclined side surface 11.

[0025] A rectangular mold 3 is a rigid body located on an inclined edge surface 11. The rectangular mold 3 has a rectangular through hole in the middle. A lifting cable 31 is fixed on the rectangular mold 3 to lift it. There are multiple lifting cables 31 distributed around the outer periphery of the rectangular mold 3, for example, four lifting cables 31 are distributed at the four corners of the rectangular mold 3.

[0026] The rectangular mold 3 is covered with a flexible, deformable steel cable woven mesh 21. The top of the steel cable woven mesh 21 is open and closed upwards. The steel cable woven mesh 21 is filled with stones 22, and multiple stones 22 can be wrapped by the steel cable woven mesh 21. The outer perimeter of the steel cable woven mesh 21 is restricted by the rectangular mold 3 and rests on the inclined edge surface 11 of the embankment 1. The bottom of the steel cable woven mesh 21 is laid on the inclined edge surface 11 and is restricted. At this time, only the top of the steel cable woven mesh 21 is open and closed upwards to allow the stones 22 to be placed inside.

[0027] When the steel wire mesh 21 within the rectangular mold 3 is filled with stones 22, the rectangular mold 3 restricts the stones 22 from squeezing the steel wire mesh 21 and causing it to tilt and become suspended on the inclined edge 11. This improves the efficiency of filling the steel wire mesh 21 with stones and ensures that the gabion 2 formed by the steel wire mesh 21 and the stones 22 is of a regular shape. This solves the problem of the steel wire mesh being tilted and suspended on the edge of the embankment, which affects the efficiency of filling the steel wire mesh with stones to form a regular-shaped gabion.

[0028] After the gabion body 2 is filled and formed in the rectangular mold 3, the lifting equipment hook hooks the lifting cable 31 to lift the rectangular mold 3, so that the rectangular mold 3 is separated from the gabion body 2. The gabion body 2 is a regular rectangle. Multiple rectangular gabion bodies 2 are stacked and piled up on the inclined edge 11 to form a protective stone cofferdam, which is not shown in the figure.

[0029] The steel rope woven mesh 21 is secured at the end with binding wire 23 to form a gabion body 2, allowing the steel rope woven mesh 21 to stably wrap multiple different stones 22. Figure 2 As shown.

Claims

1. A device for accelerating the installation of five-strand steel wire gabions under confined space conditions, characterized in that, include: A device that can restrict the steel rope braided mesh (21) from being located on the inclined edge (11) of the embankment (1) around the outer perimeter; The device includes a rectangular mold (3) at a rigid body, with a rectangular through hole in the middle of the rectangular mold (3). A flexible steel rope woven mesh (21) is laid inside the rectangular mold (3). The top of the steel rope woven mesh (21) is open with the top closed. Stones (22) are filled inside the steel rope woven mesh (21), and multiple stones (22) can be wrapped by the steel rope woven mesh (21).

2. The device for accelerating the installation of five-strand steel wire gabions under confined space conditions as described in claim 1, characterized in that: It also includes a embankment (1) that provides the foundation for the construction environment. The embankment (1) has an inclined side surface (11). The steel rope woven mesh (21) is surrounded by a rectangular mold (3) on the inclined side surface (11) of the embankment (1).

3. The device for accelerating the installation of five-strand steel wire gabions under confined space conditions as described in claim 1, characterized in that: The rectangular mold (3) is fixed with a lifting cable (31) that can suspend it.

4. The device for accelerating the installation of five-strand steel wire gabions under confined space conditions as described in claim 3, characterized in that: The suspension cables (31) are multiple cables distributed around the outer periphery of the rectangular mold (3).

5. The device for accelerating the installation of five-strand steel wire gabions under confined space conditions as described in claim 3, characterized in that: It also includes lifting equipment for lifting the rectangular mold (3), and the hook of the lifting equipment is hooked with a lifting cable (31).

6. The device for accelerating the installation of five-strand steel wire gabions under confined space conditions as described in claim 1, characterized in that: The steel rope woven mesh (21) is tied and fixed at the end by binding wire (23) to form a gabion body (2), and the steel rope woven mesh (21) securely wraps multiple different stones (22).

7. The device for accelerating the installation of five-strand steel wire gabions under confined space conditions as described in claim 6, characterized in that: The gabion body (2) is a regular rectangular body; multiple rectangular gabion bodies (2) are stacked and piled up on the inclined side surface (11) to form a protective stone cofferdam.