Wall heat preservation and pouring integrated structure

By setting inner and outer formwork meshes on both sides of the main reinforcement mesh structure of the wall and fixing them with a connecting mechanism, the problems of unstable installation of wall insulation boards and poor insulation effect are solved, achieving double-sided insulation and efficient pouring.

CN223893593UActive Publication Date: 2026-02-10LINYI BAJIAYI BUILDING ENERGY SAVING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520483920.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-02-10
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

In existing technologies, wall insulation boards are not installed securely, resulting in poor insulation performance. Furthermore, the installation process is cumbersome and reduces pouring efficiency.

Method used

The wall adopts a main reinforcement mesh structure, with first and second insulation and reinforcement structures set on both sides. Inner and outer formwork meshes are installed on the inner and outer sides and connected to steel wire ties through a connecting mechanism. Concrete is poured in between. The inner and outer formwork meshes enhance the structural strength, replace traditional formwork, and achieve double-sided insulation.

Benefits of technology

It improves insulation performance and structural stability, simplifies the installation process, saves costs, achieves double-sided insulation, and enhances pouring efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223893593U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of building thermal insulation walls, in particular to a wall thermal insulation and pouring integrated structure which comprises a wall main reinforcement net structure. A first heat preservation reinforcing structure and a second heat preservation reinforcing structure are arranged on the two sides of the wall body main rib net structure respectively, concrete is poured into the space between the first heat preservation reinforcing structure and the second heat preservation reinforcing structure, and the first heat preservation reinforcing structure and the second heat preservation reinforcing structure are consistent in structure. According to the utility model, the steel meshes are embedded in the heat-insulating plate, and the inner die net and the outer die net are arranged on the two sides of the heat-insulating plate, so that the self-strength of the first heat-insulating reinforcing structure or the second heat-insulating reinforcing structure is improved, and the first heat-insulating reinforcing structure and the second heat-insulating reinforcing structure have the heat-insulating effect; and a traditional formwork can be replaced for use, the pouring process is simplified, double-face heat preservation can be conducted on the wall through the first heat preservation reinforcing structure and the second heat preservation reinforcing structure, more energy is saved, the environment is better protected, and the heat preservation effect is further improved.
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Description

Technical Field

[0001] This utility model relates to the field of building insulation wall technology, specifically to an integrated structure for wall insulation casting. Background Technology

[0002] Integrated building insulation and structural technology combines building insulation and wall enclosure functions into one. It meets current building energy efficiency standards without the need for additional insulation measures, achieving the same lifespan for insulation and walls while meeting fire protection requirements. This new building energy efficiency technology can effectively improve building energy efficiency.

[0003] Chinese patent CN219011607U discloses an integrated wall insulation casting structure, including a base and an insulation board body. The base has a first steel reinforcement body vertically installed inside, and a fifth steel reinforcement body horizontally arranged on the outer wall of the first steel reinforcement body. A first template is installed at the top of the base, and a second template is installed at the end of the base top furthest from the first template. This invention uses a rotating threaded sleeve to drive a fixing component to press against the insulation board body for secure installation, preventing the insulation board body from being loosely fixed. Simultaneously, a third and fourth steel reinforcement body pass through an arc-shaped groove and are fixed to the fixing component, thus making the insulation board body more securely fixed.

[0004] However, the above-mentioned publicly available solutions have the following shortcomings: the insulation board is installed between the first template and the second template, which does not allow for double-sided insulation of the insulation wall, resulting in poor insulation effect. Furthermore, the installation process of the first template, the second template, and the main body of the insulation board is cumbersome, reducing the efficiency of pouring. Utility Model Content

[0005] The purpose of this utility model is to address the problems existing in the background technology by proposing an integrated structure for wall insulation casting.

[0006] The technical solution of this utility model is as follows: an integrated wall insulation and casting structure, including a main wall reinforcement mesh structure installed on a base, a first insulation reinforcement structure and a second insulation reinforcement structure respectively provided on both sides of the main wall reinforcement mesh structure, the first insulation reinforcement structure and the second insulation reinforcement structure being connected by multiple sets of connecting mechanisms, the connecting mechanisms being connected to the main wall reinforcement mesh structure by steel wire ties, the space between the first insulation reinforcement structure and the second insulation reinforcement structure being filled with concrete, the first insulation reinforcement structure and the second insulation reinforcement structure having the same structure, the first insulation reinforcement structure including an insulation board, an inner formwork mesh installed on one side wall and an outer formwork mesh installed on the other side wall; and a steel mesh sheet embedded inside the insulation board.

[0007] Preferably, multiple sets of irregular strips are provided on the first thermal insulation and reinforcement structure and on the side close to the main reinforcement mesh structure of the wall.

[0008] Preferably, both the inner and outer mold meshes are made of steel wire mesh.

[0009] Preferably, the connecting mechanism includes a connecting rod that passes through the first thermal insulation reinforcement structure, the main wall reinforcement mesh structure, and the second thermal insulation reinforcement structure. The connecting rod is connected to the main wall reinforcement mesh structure by a steel wire tie. Both the first and second thermal insulation reinforcement structures have corresponding insertion holes for the connecting rod. One end of the connecting rod is fitted with a fixing seat that abuts against the first thermal insulation reinforcement structure. The other end of the connecting rod passes through the second thermal insulation reinforcement structure and is threadedly connected to a bolt. A limiting seat is bolted to the end of the connecting rod away from the fixing seat. The limiting seat abuts against the side wall of the second thermal insulation reinforcement structure away from the main wall reinforcement mesh structure. The bolt is threadedly connected to the limiting seat. Two sets of adjusting components are provided. The two sets of adjusting components are adjustablely mounted on the connecting rod. One set of adjusting components abuts against the side wall of the first thermal insulation reinforcement structure away from the fixing seat, and the other set of adjusting components abuts against the side wall of the second thermal insulation reinforcement structure near the main wall reinforcement mesh structure.

[0010] Preferably, the adjusting assembly consists of a sliding seat that is slidably sleeved on the connecting rod and an adjusting seat that is threadedly connected to the connecting rod.

[0011] Preferably, the fixed seat, the sliding seat, and the limiting seat are each provided with multiple sets of tapered rods, which are respectively inserted into the corresponding inner mold mesh or outer mold mesh.

[0012] Compared with the prior art, the above-mentioned technical solution of this utility model has the following beneficial technical effects: By embedding steel mesh inside the insulation board and installing inner and outer formwork meshes on both sides of the insulation board, this utility model enhances the strength of the first or second insulation reinforcement structure. This allows the first and second insulation reinforcement structures to not only have insulation effects but also replace traditional templates, simplifying the pouring process. The first and second insulation reinforcement structures enable double-sided insulation of the wall, making it more energy-efficient and environmentally friendly, further improving the insulation effect. Furthermore, the outer formwork mesh can replace the external wall plastering mesh, making it a multi-purpose and energy-efficient solution. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the first thermal insulation and reinforcement structure of this utility model;

[0015] Figure 3 This is a schematic diagram of the connection mechanism of this utility model.

[0016] Reference numerals in the attached drawings: 1. Main reinforcement mesh structure of the wall; 2. First thermal insulation and reinforcement structure; 201. Insulation board; 202. Steel mesh sheet; 203. Special-shaped strip; 204. Inner formwork mesh; 205. Outer formwork mesh; 3. Second thermal insulation and reinforcement structure; 4. Connecting rod; 401. Fixed seat; 402. Sliding seat; 403. Adjusting seat; 404. Threaded groove; 405. Limiting seat; 406. Abutment groove; 407. Bolt; 408. Conical rod. Detailed Implementation

[0017] Example 1

[0018] like Figures 1 to 2 As shown, this utility model proposes an integrated wall insulation casting structure, including a wall main reinforcement mesh structure 1. The wall main reinforcement mesh structure 1 is installed on a base and is assembled from several groups of steel bars by steel wire ties, which is the prior art. The size can be adjusted according to the needs of the insulation wall casting. A first insulation reinforcement structure 2 and a second insulation reinforcement structure 3 are respectively set on both sides of the wall main reinforcement mesh structure 1. The first insulation reinforcement structure 2 and the second insulation reinforcement structure 3 are connected by multiple sets of connecting mechanisms. The connecting mechanisms are connected to the wall main reinforcement mesh structure 1 by steel wire ties. Concrete is poured into the space between the first insulation reinforcement structure 2 and the second insulation reinforcement structure 3. The first insulation reinforcement structure 2 and the second insulation reinforcement structure 3 have the same structure.

[0019] The first thermal insulation and reinforcement structure 2 includes an insulation board 201 and a steel mesh 202; the insulation board 201 is made of high-density insulation material; an inner mold mesh 204 is installed on one side wall of the insulation board 201, and an outer mold mesh 205 is installed on the other side wall, and the inner mold mesh 204 and the outer mold mesh 205 are connected by wire drawing and welding; the steel mesh 202 is embedded inside the insulation board 201.

[0020] Furthermore, multiple sets of irregular strips 203 are provided on the first thermal insulation and reinforcement structure 2 and on the side close to the main reinforcement mesh structure 1 of the wall. By setting the irregular strips 203, the contact area with concrete is increased and the stability of the connection is improved.

[0021] Furthermore, both the inner formwork mesh 204 and the outer formwork mesh 205 are made of steel wire mesh, which enhances the overall strength of the first thermal insulation reinforcement structure 2 or the second thermal insulation reinforcement structure 3, thereby improving the stability of the thermal insulation wall and extending its service life. In addition, the outer formwork mesh 205 replaces the external wall plaster mesh, making one mesh serve multiple purposes and saving costs.

[0022] In this embodiment, according to the required dimensions of the insulation wall, a suitable number of sets of reinforcing bars are assembled into a main reinforcement mesh structure 1 using wire ties. The main reinforcement mesh structure 1 is then connected to the base. Next, the first insulation reinforcement structure 2 and the second insulation reinforcement structure 3 are placed on either side of the main reinforcement mesh structure 1, and connected via a connecting mechanism. The main reinforcement mesh structure 1 is then connected to the corresponding connecting mechanism using wire ties, thereby improving the connection stability between the first insulation reinforcement structure 2 and the main reinforcement mesh structure 1, and between the main reinforcement mesh structure 1 and the second insulation reinforcement structure 3. Finally, concrete is poured into the space between the first insulation reinforcement structure 2 and the second insulation reinforcement structure 3, through the main reinforcement mesh... The installation of structure 1 enhances the overall stability of the insulated wall. By installing steel mesh 202 inside the first insulation reinforcement structure 2 or the second insulation reinforcement structure 3, the overall strength of the first insulation reinforcement structure 2 or the second insulation reinforcement structure 3 can be improved, thereby enhancing the stability of the insulated wall and extending its service life. Furthermore, the installation of the first insulation reinforcement structure 2 and the second insulation reinforcement structure 3 greatly improves the insulation effect of the wall and can also replace traditional templates, saving costs. The outer formwork mesh 205 on the outside of the first insulation reinforcement structure 2 and the second insulation reinforcement structure 3 replaces the external wall plastering mesh, while the inner formwork mesh 204 on the inside of the first insulation reinforcement structure 2 and the second insulation reinforcement structure 3 can protect the insulation board 201. This multi-purpose mesh saves costs.

[0023] Example 2

[0024] like Figure 1 and Figure 3As shown, the present invention proposes an integrated wall insulation casting structure. Compared with Embodiment 1, the connecting mechanism includes a connecting rod 4, a limiting seat 405, and an adjusting component. The connecting rod 4 passes through the first insulation reinforcement structure 2, the main wall reinforcement mesh structure 1, and the second insulation reinforcement structure 3. The connecting rod 4 is connected to the main wall reinforcement mesh structure 1 by a steel wire tie. Both the first insulation reinforcement structure 2 and the second insulation reinforcement structure 3 are provided with insertion holes corresponding to the connecting rod 4. One end of the connecting rod 4 is equipped with a fixing seat 401, which abuts against the first insulation reinforcement structure 2. The other end of the connecting rod 4 passes through the second insulation reinforcement structure 3 and is threadedly connected with a bolt 407. The limiting seat 405 is attached to the connecting rod 4 and is located away from the fixing seat. One end of 401 is connected by bolt 407. The limiting seat 405 abuts against the side wall of the second thermal insulation and reinforcement structure 3 away from the main reinforcement mesh structure 1 of the wall. Bolt 407 is threadedly connected to the limiting seat 405. The limiting seat 405 has an abutment groove 406. The nut on bolt 407 abuts against the abutment groove 406. The connecting rod 4 has a threaded groove 404. Bolt 407 is threadedly connected to the threaded groove 404. Two sets of adjustment components are provided. The two sets of adjustment components are adjustablely set on the connecting rod 4. One set of adjustment components abuts against the side wall of the first thermal insulation and reinforcement structure 2 away from the fixed seat 401. The other set of adjustment components abuts against the side wall of the second thermal insulation and reinforcement structure 3 close to the main reinforcement mesh structure 1 of the wall.

[0025] Furthermore, the adjustment assembly consists of a sliding seat 402 that is slidably sleeved on the connecting rod 4 and an adjustment seat 403 that is threadedly connected to the connecting rod 4.

[0026] Furthermore, multiple sets of cone rods 408 are provided on the fixed seat 401, sliding seat 402 and limiting seat 405 respectively. The multiple sets of cone rods 408 are respectively inserted into the corresponding inner mold mesh 204 or outer mold mesh 205, which further improves the installation stability of the connection mechanism and the first thermal insulation and reinforcement structure 2 or the second thermal insulation and reinforcement structure 3, and improves the pouring efficiency.

[0027] In this embodiment, the connecting rod 4 is inserted along the insertion hole on the first thermal insulation reinforcement structure 2 and passes through the main reinforcement mesh structure 1 of the wall, and then connected to the corresponding insertion hole on the second thermal insulation reinforcement structure 3. At the same time, two sets of sliding seats 402 and two sets of adjusting seats 403 are installed on the connecting rod 4 at appropriate positions. The connecting rod 4 is rotated to adjust so that the multiple sets of tapered rods 408 on the fixing seat 401 are inserted into the outer mold mesh 205 on the first thermal insulation reinforcement structure 2 and the fixing seat 401 abuts against the outer mold mesh 205. Then, the sliding seat 402 slides along the connecting rod 4 toward the inner mold mesh 204 in the first thermal insulation reinforcement structure 2. The adjusting seat 403 is rotated until the adjusting seat 403 connects the sliding seat 402 with the first... The inner formwork mesh 204 in the thermal insulation and reinforcement structure 2 is tightened, and at the same time, multiple sets of tapered rods 408 on the sliding seat 402 are inserted into the corresponding inner formwork mesh 204. At this time, the connecting rod 4 is fixedly installed on the first thermal insulation and reinforcement structure 2. In this way, another set of sliding seats 402 is tightened to the second thermal insulation and reinforcement structure 3. Then, the abutment groove 406 is installed on the other end of the connecting rod 4 by bolts 407, so that the abutment groove 406 is tightened to the outer formwork mesh 205 in the second thermal insulation and reinforcement structure 3. Then, the first thermal insulation and reinforcement structure 2 and the second thermal insulation and reinforcement structure 3 are fixedly connected by the connecting mechanism. Finally, the connecting rod 4 is connected to the nearby main reinforcement mesh structure 1 of the wall by steel wire tie, and the pouring work can be carried out.

[0028] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. An integrated wall insulation casting structure, characterized in that, include A wall main reinforcement mesh structure (1) is installed on a base. A first thermal insulation reinforcement structure (2) and a second thermal insulation reinforcement structure (3) are respectively provided on both sides of the wall main reinforcement mesh structure (1). The first thermal insulation reinforcement structure (2) and the second thermal insulation reinforcement structure (3) are connected by multiple sets of connecting mechanisms. The connecting mechanisms are connected to the wall main reinforcement mesh structure (1) by steel wire ties. Concrete is poured into the space between the first thermal insulation reinforcement structure (2) and the second thermal insulation reinforcement structure (3). The first thermal insulation reinforcement structure (2) and the second thermal insulation reinforcement structure (3) have the same structure. The first thermal insulation reinforcement structure (2) includes... The insulation board (201) has an inner mold mesh (204) installed on one side wall and an outer mold mesh (205) installed on the other side wall; And a steel mesh (202) which is embedded inside the insulation board (201).

2. The integrated wall insulation casting structure according to claim 1, characterized in that, Multiple sets of irregular strips (203) are provided on the first thermal insulation and reinforcement structure (2) and on the side close to the main reinforcement mesh structure (1) of the wall.

3. The integrated wall insulation casting structure according to claim 1, characterized in that, Both the inner mold mesh (204) and the outer mold mesh (205) are made of steel wire mesh.

4. The integrated wall insulation casting structure according to claim 1, characterized in that, The connecting mechanism includes A connecting rod (4) is installed between the first thermal insulation reinforcement structure (2), the main wall reinforcement mesh structure (1) and the second thermal insulation reinforcement structure (3). The connecting rod (4) is connected to the main wall reinforcement mesh structure (1) by a steel wire tie. The first thermal insulation reinforcement structure (2) and the second thermal insulation reinforcement structure (3) are provided with corresponding insertion holes for the connecting rod (4). One end of the connecting rod (4) is equipped with a fixing seat (401), which abuts against the first thermal insulation reinforcement structure (2). The other end of the connecting rod (4) is threaded through the second thermal insulation reinforcement structure (3) and connected with a bolt (407). The limiting seat (405) is connected to the end of the connecting rod (4) away from the fixed seat (401) by bolt (407). The limiting seat (405) abuts against the side wall of the second thermal insulation reinforcement structure (3) away from the main reinforcement mesh structure (1). The bolt (407) is threadedly connected to the limiting seat (405). And the adjustment components are provided in two sets. The two sets of adjustment components are adjustable and set on the connecting rod (4). One set of adjustment components abuts against the side wall of the first thermal insulation and reinforcement structure (2) away from the fixed seat (401), and the other set of adjustment components abuts against the side wall of the second thermal insulation and reinforcement structure (3) near the main reinforcement mesh structure (1) of the wall.

5. The integrated wall insulation casting structure according to claim 4, characterized in that, The adjustment assembly consists of a sliding seat (402) that is slidably sleeved on the connecting rod (4) and an adjustment seat (403) that is threadedly connected to the connecting rod (4).

6. The integrated wall insulation casting structure according to claim 5, characterized in that, Multiple sets of tapered rods (408) are provided on the fixed seat (401), sliding seat (402) and limiting seat (405), and the multiple sets of tapered rods (408) are respectively connected to the corresponding inner mold mesh (204) or outer mold mesh (205).

Citation Information

Patent Citations

  • Wall heat preservation and pouring integrated structure

    CN219011607U