An anti-seismic steel mesh inner formwork wall facilitating water and electricity pre-burying

CN224741812UActive Publication Date: 2026-09-11ANHUI LIANGU TECH RES NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202522189370.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-16
Publication Date
2026-09-11
Estimated Expiration
2035-10-16

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种便于水电预埋的抗震钢网内模墙体,解决了传统的便于水电预埋的抗震钢网内模墙体,通过扎带或者铁丝将管线捆绑在钢网上的,管线预埋期间,需要花费大量的时间将扎带一一穿过管线和钢网并绑定,水电管线预埋方式总体来说并不方便,效率低下的问题

Benefits of technology

利用尼龙扎带将一字条绑在压型钢网上,根据水电管线的排布走向将管线通过弹性弧形包裹条开口的方向扣进弹性弧形包裹条中,利用弹性弧形包裹条将水电管线给排布预埋,根据水电管线的排布走向可以将弹性弧形包裹条的朝向通过转向脚调节,在预埋水电管线时,只需要将管线顺着走向按压进弹性弧形包裹条中即可,不需要使用大量的扎带将管线绑在压型钢网上,节省大量水电管线预埋时间,方便水电预埋,预埋效率高。

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Abstract

This utility model discloses an earthquake-resistant steel mesh inner formwork wall that facilitates the pre-embedding of water and electricity pipelines, relating to the field of water and electricity pre-embedding technology. It includes: two profiled steel meshes; and a pre-embedding positioning component, which is set on the profiled steel meshes and includes a strip fixed to the meshes by nylon cable ties. This utility model utilizes nylon cable ties to bind the strips to the profiled steel meshes. Based on the layout of the water and electricity pipelines, the pipelines are inserted into the elastic arc-shaped wrapping strips through the openings. The elastic arc-shaped wrapping strips are used to pre-embed the water and electricity pipelines. The orientation of the elastic arc-shaped wrapping strips can be adjusted using a steering foot according to the layout of the water and electricity pipelines. When pre-embedding the water and electricity pipelines, it is only necessary to press the pipelines into the elastic arc-shaped wrapping strips along the layout, eliminating the need for numerous cable ties to bind the pipelines to the profiled steel meshes. This saves significant time in pre-embedding water and electricity pipelines, facilitating pre-embedding and increasing efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of hydropower pre-embedded technology, specifically to an earthquake-resistant steel mesh inner formwork wall that facilitates hydropower pre-embedding. Background Technology

[0002] Lightweight internal and external wall panels with seismic-resistant steel mesh inner formwork have been widely used in the earthquake-prone southwest region for many years. They have won full market recognition for their excellent seismic and impact resistance, good sound insulation and fireproofing effects, outstanding energy saving and environmental protection, and efficient construction. The lightweight internal and external wall panels with seismic-resistant steel mesh inner formwork are assembled into a steel mesh frame by profiled steel mesh, light steel keel, and metal components. The inner and outer sides are sprayed with cement mortar and crack-resistant mortar to form a vertical cavity system wall product.

[0003] Before spraying cement mortar and crack-resistant mortar on both the inner and outer sides of the seismic steel mesh inner formwork wall, water pipes need to be pre-embedded on the seismic steel mesh inner formwork wall. The existing water pipe pre-embedding is done by binding the pipes to the steel mesh with cable ties or wires. During the pipe pre-embedding, a lot of time is required to pass the cable ties through the pipes and steel mesh one by one and bind them. Overall, the water and electricity pipe pre-embedding method is inconvenient and inefficient. Utility Model Content

[0004] The purpose of this utility model is to provide an earthquake-resistant steel mesh inner formwork wall that facilitates the pre-embedding of water and electricity pipelines. This solves the problem that traditional earthquake-resistant steel mesh inner formwork walls that facilitate the pre-embedding of water and electricity pipelines use cable ties or wires to bind pipelines to the steel mesh. During the pipeline pre-embedding process, a lot of time is required to thread the cable ties through the pipelines and steel mesh one by one and bind them. Overall, the pre-embedding method of water and electricity pipelines is inconvenient and inefficient.

[0005] This utility model solves the above-mentioned technical problems through the following technical solution: A seismic-resistant steel mesh inner formwork wall that facilitates pre-embedding of water and electricity, characterized in that it includes: Two profiled steel meshes; An embedded positioning component is provided on a profiled steel mesh. The embedded positioning component includes a strip fixed to the profiled steel mesh by nylon cable ties. A pipeline positioning element is provided on the strip. The pipeline positioning element is used to restrict the position of water and electricity pipelines.

[0006] Preferably, the pipeline positioning component includes an elastic arc-shaped wrapping strip and a steering foot disposed at one end of the elastic arc-shaped wrapping strip.

[0007] Preferably, the strip has a square inner groove, the inner side of the square inner groove has a circular groove, and the steering foot is located on the inner side of the square inner groove.

[0008] Preferably, the steering foot includes a square plate disposed inside the square inner groove, a connecting rod fixed on the square plate, one end of the connecting rod extending to the outside of the strip and fixed to one end of the elastic arc-shaped wrapping strip.

[0009] Preferably, a silicone strip is fixed on the square plate, a slot is provided on the inner side wall of the square inner groove, and a limit plate is fixed on the strip.

[0010] Preferably, a fireproof and heat-insulating layer is provided between the two profiled steel meshes, and vertical reinforcing ribs are provided on both profiled steel meshes.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: Using nylon cable ties, the strips are tied to the profiled steel mesh. Following the layout of the water and electricity pipelines, the pipelines are inserted into the elastic curved wrapping strips through the openings. The pipelines are then pre-buried using these elastic curved wrapping strips. The orientation of the elastic curved wrapping strips can be adjusted using the steering feet according to the pipeline layout. When pre-burying the water and electricity pipelines, simply press the pipelines into the elastic curved wrapping strips along their direction; there is no need to use a large number of cable ties to bind the pipelines to the profiled steel mesh, saving significant time and making pre-burying more convenient and efficient. Attached Figure Description

[0012] Figure 1 This is the front view of the present invention; Figure 2 for Figure 1 Enlarged diagram of section A in the middle; Figure 3 This is a partial schematic diagram of the pre-embedded positioning component in this utility model; Figure 4 This is a partially exploded sectional view of the pre-embedded positioning component in this utility model; Figure 5 for Figure 4 Enlarged schematic diagram of section B.

[0013] The numbers in the diagram represent: 1. Corrugated steel mesh; 2. Embedded positioning components; 21. Straight strip; 22. Square inner groove; 23. Circular groove; 24. Elastic arc-shaped wrapping strip; 25. Steering foot; 251. Square plate; 252. Connecting rod; 253. Silicone strip; 26. Card slot; 27. Limiting plate; 3. Fireproof and heat-insulating layer; 4. Vertical reinforcing ribs. Detailed Implementation

[0014] The above-mentioned and other technical features and advantages of this utility model will be described in more detail below with reference to the accompanying drawings.

[0015] This embodiment provides a technical solution: a seismic-resistant steel mesh inner formwork wall that facilitates pre-embedding of water and electricity, such as... Figures 1-5 As shown, it includes two profiled steel meshes 1 and a pre-embedded positioning component 2 set on the profiled steel meshes 1. A fireproof and heat-insulating layer 3 is set between the two profiled steel meshes 1. Vertical reinforcing ribs 4 are set on both profiled steel meshes 1. The vertical reinforcing ribs 4 are used to enhance the overall strength and rigidity of the profiled steel meshes 1.

[0016] The pre-embedded positioning component 2 is installed on the profiled steel mesh 1 according to the layout of the water and electricity pipelines. The pre-embedded positioning component 2 includes a straight strip 21 fixed to the profiled steel mesh 1 by nylon cable ties. The two ends of the straight strip 21 are fixed to the profiled steel mesh 1 by nylon cable ties. The straight strip 21 is provided with pipeline positioning parts, which are used to restrict the direction and position of the water and electricity pipelines. The straight strip 21 has a square inner groove 22, and a circular groove is formed on the inner side of the square inner groove 22. 23. A vertical row is set on the strip 21 of the square inner groove 22, and the adjacent square inner grooves 22 are equidistantly distributed. The number of circular grooves 23, limiting plates 27, elastic arc-shaped wrapping strips 24 and steering feet 25 are the same as those of the square inner grooves 22, and their positions correspond one-to-one. The diameter of the circular groove 23 is adapted to the two diagonal dimensions of the square inner groove 22. The three inner side walls of the square inner groove 22 (i.e. the top wall and the two side walls) are provided with slots 26. The strip 21 is fixed with limiting plates 27.

[0017] The pipeline positioning component includes an elastic arc-shaped wrapping strip 24 and a steering foot 25 disposed at one end of the elastic arc-shaped wrapping strip 24. The steering foot 25 is used to adjust the direction of the elastic arc-shaped wrapping strip 24. The position of the limiting plate 27 is correspondingly disposed below the elastic arc-shaped wrapping strip 24. The steering foot 25 is disposed on the inner side of the square inner groove 22. The steering foot 25 includes a square plate 251 disposed on the inner side of the square inner groove 22. A connecting rod 252 is fixed on the square plate 251. One end of the connecting rod 252 extends to the outside of the strip 21 and is fixed to one end of the elastic arc-shaped wrapping strip 24. The connecting rod is rotatably connected at the through-hole. A silicone strip 253 with a size adapted to the slot 26 is fixed on the square plate 251.

[0018] In use: According to the location of the water and electricity pipeline, tie both ends of the straight strip 21 in the pre-embedded positioning component 2 to the profiled steel mesh 1 using nylon cable ties. Then, according to the direction of the water and electricity pipeline, insert the pipeline into the elastic arc-shaped wrapping strip 24 on the straight strip 21 through the opening direction of the elastic arc-shaped wrapping strip 24. Use the elastic arc-shaped wrapping strip 24 to fix the water and electricity pipeline to the profiled steel mesh 1. The orientation of the elastic arc-shaped wrapping strip 24 can be adjusted according to the direction of the water and electricity pipeline. If the water and electricity pipeline is horizontal, the opening of the elastic arc-shaped wrapping strip 24 should face upward. When pre-embedding the water and electricity pipeline, press the pipeline into the elastic arc-shaped wrapping strip 24 from above. If the water and electricity pipeline is vertical, the opening direction of the elastic arc-shaped wrapping strip 24 can be adjusted to the left or right according to the direction of the vertical pipeline. When adjusting, first adjust the elastic arc-shaped wrapping strip 24. Pressing the elastic arc-shaped wrapping strip 24 onto the strip 21 causes the silicone strip 253 on the square plate 251 to move out of the slot 26 via the connecting rod 252. The square plate 251 then moves into the circular slot 23. The elastic arc-shaped wrapping strip 24 is rotated so that its opening faces the specified direction. Due to the limitation of the limiting plate 27, the elastic arc-shaped wrapping strip 24 can only deflect 90 degrees to the left or right. After deflection, the elastic arc-shaped wrapping strip 24 is pulled so that it drives the square plate 251 into the square inner slot 22 via the connecting rod 252. The position of the elastic arc-shaped wrapping strip 24 is fixed by the engagement of the silicone strip 253 and the slot 26. When pre-burying water and electricity pipelines, it is only necessary to press the pipeline into the elastic arc-shaped wrapping strip 24 along the direction. It is not necessary to use a lot of cable ties to tie the pipeline to the profiled steel mesh 1, which can save a lot of water and electricity pipeline pre-burying time and improve the efficiency of water and electricity pipeline pre-burying.

[0019] The above description is merely a preferred embodiment of the present utility model and is illustrative rather than restrictive. Those skilled in the art will understand that many changes, modifications, and even equivalents can be made within the spirit and scope defined by the claims of the present utility model, all of which will fall within the protection scope of the present utility model.

Claims

1. A steel mesh anti-seismic inner formwork wall facilitating water and electricity pre-burying, characterized in that, include: Two profiled steel meshes (1); The pre-embedded positioning component (2) is set on the profiled steel mesh (1). The pre-embedded positioning component (2) includes a strip (21) fixed on the profiled steel mesh (1) by nylon cable ties. The strip (21) is provided with a pipeline positioning component, which is used to restrict the position of water and electricity pipelines.

2. The anti-seismic steel mesh internal formwork wall with water and electricity pre-buried convenience according to claim 1, characterized in that, The pipeline positioning component includes an elastic arc-shaped wrapping strip (24) and a steering foot (25) disposed at one end of the elastic arc-shaped wrapping strip (24).

3. The anti-seismic steel mesh internal formwork wall with water and electricity pre-buried convenience according to claim 2, characterized in that, The strip (21) has a square inner groove (22), and a circular groove (23) is provided on the inner side of the square inner groove (22). The steering foot (25) is located on the inner side of the square inner groove (22).

4. The earthquake-resistant steel mesh inner formwork wall as described in claim 3, characterized in that, The steering foot (25) includes a square plate (251) disposed inside the square inner groove (22), and a connecting rod (252) is fixed on the square plate (251). One end of the connecting rod (252) extends to the outside of the strip (21) and is fixed to one end of the elastic arc-shaped wrapping strip (24).

5. The earthquake-resistant steel mesh inner formwork wall as described in claim 4, characterized in that, A silicone strip (253) is fixed on the square plate (251), a slot (26) is provided on the inner side wall of the square inner groove (22), and a limit plate (27) is fixed on the strip (21).

6. The earthquake-resistant steel mesh inner formwork wall as described in claim 1, characterized in that, A fireproof and heat-insulating layer (3) is provided between the two profiled steel meshes (1), and vertical reinforcing ribs (4) are provided on both profiled steel meshes (1).