Steel wire net rack insulation board

By introducing measuring and supporting components into the wire mesh insulation board, the spacing between the wire mesh components and the concrete slab is ensured to be consistent, thus solving the installation deviation problem and improving the insulation performance and service life.

CN223867446UActive Publication Date: 2026-02-03LINYI BAJIAYI BUILDING ENERGY SAVING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520454009.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-02-03
Estimated Expiration
2035-03-17

AI Technical Summary

Technical Problem

Existing wire mesh insulation boards are prone to deviations during installation, resulting in inconsistent spacing between the wire mesh and the insulation board, which affects insulation performance and reduces service life.

Method used

Measuring and support components are used to determine the spacing of the wire mesh frame components by using scale marks on the horizontal and vertical patches. The support components are used to ensure that the spacing between the wire mesh frame components and the concrete slab is consistent. Combined with the threaded connection of the horizontal and vertical partitions, the stable installation of the wire mesh is achieved.

Benefits of technology

It improves the installation accuracy of steel wire mesh insulation boards, avoids the formation of thermal bridges, enhances insulation performance, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of insulation boards, in particular to a steel wire net frame insulation board which comprises an insulation board body, a concrete board, a main steel wire, a steel wire net frame piece, a measuring assembly and a supporting assembly. The concrete slab is connected to the outer side of the insulation board body; the measuring assembly is connected to the periphery of the concrete slab; the measuring assembly comprises a transverse patch and an auxiliary piece; the transverse patch is connected with the scale mark a, the two ends of the transverse patch are connected with the vertical patches respectively, and the vertical patches are connected with the scale mark b; the two transverse patches are connected to the upper side and the lower side of the concrete slab correspondingly, and the two vertical patches are connected to the left side and the right side of the concrete slab. The supporting assembly is connected to the outer side of the steel wire net frame piece. The supporting assembly comprises a connecting plate connected with a fixed rod, the fixed rod is connected with a movable rod, and the movable rod is connected with a supporting block. The installation and treatment effect of the steel wire net can be improved conveniently, the heat preservation performance of the heat preservation plate is prevented from being reduced, the use effect of the steel wire net frame heat preservation plate is improved, and the service life is prolonged.
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Description

Technical Field

[0001] This utility model relates to the field of insulation board technology, and in particular to a steel wire mesh insulation board. Background Technology

[0002] Insulation boards, simply put, are boards used to insulate buildings. The insulation board and the concrete layer are connected by a steel wire mesh support frame. During the construction of the exterior wall, the support legs on the side of the insulation layer will form an adhesion connection with the concrete, attaching the exterior wall insulation board to the concrete poured on site, thus playing a role in insulation and protection.

[0003] Chinese Patent No. CN216276252 discloses a wire mesh insulation board, including an insulation board body, a first mesh frame, and a second mesh frame. A first fixing plate is fixedly installed on the top and bottom of one side surface of the first mesh frame. A first fixing bolt is installed on the other side of the first fixing plate, penetrating the first fixing plate, the first mesh frame, and the insulation board body. A second fixing plate is fixedly installed on the top and bottom of the other side surface of the second mesh frame. A second fixing bolt is installed on one side of the second fixing plate, penetrating the second fixing plate, the second mesh frame, and the insulation board body. With this invention, workers insert welded steel bars into the insulation board body and then weld the steel bars to the protective mesh frame. The protective mesh frame provides a limiting and protective effect for the insulation board body, increasing its service life and optimizing the usage process.

[0004] The existing wire mesh insulation board installation process lacks auxiliary guiding structures, making it prone to deviations during installation. It also makes it difficult to ensure proper spacing between wire mesh sections and between insulation boards. Furthermore, since the wire mesh itself is metal and conducts heat quickly, improper installation can create thermal bridges, reducing the insulation performance of the insulation board and consequently decreasing its lifespan. Utility Model Content

[0005] To address the problems existing in the background technology, a steel wire mesh insulation board is proposed.

[0006] This utility model proposes a steel wire mesh insulation board, comprising: an insulation board body, a concrete slab, main steel wires, steel wire mesh components, a measuring component, and a supporting component;

[0007] The concrete slab is connected to the outside of the insulation board body;

[0008] The main steel wire passes through the insulation board body and the concrete slab;

[0009] The steel wire mesh frame is connected to the outside of the concrete slab;

[0010] The measuring component is connected to the periphery of the concrete slab; the measuring component includes a horizontal patch and an auxiliary component; the horizontal patch is connected to scale a, and the two ends of the horizontal patch are respectively connected to vertical patches, and the vertical patches are connected to scale b; two horizontal patches are provided and are respectively connected to the upper and lower sides of the concrete slab, and two vertical patches are connected to the left and right sides of the concrete slab.

[0011] The support assembly is connected to the outside of the wire mesh frame; the support assembly includes a connecting plate, which is connected to a fixed rod, the fixed rod is connected to a movable rod, and the movable rod is connected to a support block.

[0012] Preferably, two concrete slabs, two wire mesh frames, two measuring components, and two supporting components are provided, so that the concrete slabs, two wire mesh frames, two measuring components, and two supporting components are divided into two groups and connected to both sides of the insulation board body respectively.

[0013] Preferably, the two ends of the main steel wire are connected to the wire mesh frame by passing through the insulation board body and the concrete slab, which is used to reinforce the installation of the wire mesh frame.

[0014] Preferably, the wire mesh frame includes horizontal wires and vertical wires;

[0015] The horizontal and vertical steel wires are connected to the outside of the concrete slab, and the two ends of the vertical steel wire pass through the inside of the concrete slab and the insulation board respectively. The horizontal steel wire is connected to the inner wall of the vertical steel wire and to the support component.

[0016] Preferably, the auxiliary components include a horizontal partition connected to the periphery of the concrete slab, and vertical partitions connected to both ends of the horizontal partition. A screw is used to pass through the horizontal partition and be threadedly connected to the vertical partition.

[0017] Preferably, there are two horizontal partitions, which are connected to the upper and lower sides of the concrete slab respectively, and two vertical partitions are connected to the left and right sides of the concrete slab.

[0018] Preferably, the fixed rod is hollow inside, with an open end on one side for connecting to the movable rod. The fixed rod has a mounting hole, and a tightening bolt passes through the mounting hole and is threadedly connected to the movable rod.

[0019] Preferably, the horizontal patch, vertical patch, horizontal partition, vertical partition and connecting plate are all attached to the concrete slab with double-sided adhesive and can be detachably connected.

[0020] Compared with the prior art, the present invention has the following beneficial technical effects:

[0021] This invention uses a measuring component connected to the periphery of a concrete slab. The outer side of the concrete slab features a wire mesh frame, which includes horizontal and vertical wires. When the horizontal and vertical wires are laid out on the outer side of the concrete slab, the spacing between them is ensured by scale markings on the horizontal and vertical patches. This, combined with the supporting components, ensures consistent spacing between the wire mesh frame and the concrete slab, improving the installation and treatment effect of the wire mesh itself, preventing a reduction in the insulation performance of the insulation board, enhancing the effectiveness of the wire mesh insulation board, and extending its service life. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0023] Figure 2 This is a schematic diagram of the measuring component structure in this utility model;

[0024] Figure 3 This is a schematic diagram of the support component structure in this utility model.

[0025] Reference numerals in the attached drawings: 1. Main body of insulation board; 2. Concrete board; 3. Main steel wire; 4. Steel wire mesh frame component; 5. Horizontal patch; 501. Scale mark a; 502. Vertical patch; 6. Horizontal partition; 602. Vertical partition; 603. Screw; 7. Support assembly; 701. Connecting plate; 702. Fixing rod; 703. Movable rod; 704. Support block. Detailed Implementation

[0026] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.

[0027] Example 1

[0028] like Figure 1 - Figure 3As shown, the present invention proposes a wire mesh insulation board, comprising: an insulation board body 1, a concrete slab 2, a main steel wire 3, a wire mesh frame 4, a measuring component, and a supporting component 7; the concrete slab 2 is connected to the outside of the insulation board body 1; the main steel wire 3 passes through the insulation board body 1 and the concrete slab 2; the wire mesh frame 4 is connected to the outside of the concrete slab 2; the measuring component is connected to the periphery of the concrete slab 2; the measuring component includes a horizontal patch 5 and an auxiliary component; the horizontal patch 5 is connected to a scale a 501, and both ends of the horizontal patch 5 are connected to vertical patches 502, and the vertical patches 502 are connected to a scale b; two horizontal patches 5 are provided and are respectively connected to the upper and lower sides of the concrete slab 2, and two vertical patches 502 are connected to the left and right sides of the concrete slab 2; the supporting component 7 is connected to the outside of the wire mesh frame 4; the supporting component 7 includes a connecting plate 701, the connecting plate 701 is connected to a fixed rod 702, the fixed rod 702 is connected to a movable rod 703, and the movable rod 703 is connected to a supporting block 704. By using the measuring component and the support component 7 together, the spacing between the multiple steel wires of the steel wire mesh frame 4 and the spacing between the steel wire mesh frame 4 and the concrete slab 2 are ensured to be consistent. This facilitates the improvement of the installation and treatment effect of the steel wire mesh itself, avoids reducing the insulation performance of the insulation board, improves the use effect of the steel wire mesh frame insulation board, and extends its service life.

[0029] To further explain, two concrete slabs 2, wire mesh frame components 4, measuring components, and support components 7 are each provided, forming two groups that are respectively connected to both sides of the insulation board body 1. The two concrete slabs 2, wire mesh frame components 4, measuring components, and support components 7 are placed side-by-side on both sides of the insulation board body 1, making operation simple and convenient.

[0030] Further explanation: The auxiliary components include a horizontal partition 6 connected to the periphery of the concrete slab 2, and vertical partitions 602 connected to both ends of the horizontal partition 6. A screw 603 is used, with one end passing through the horizontal partition 6 and threadedly connected to the vertical partition 602. Two horizontal partitions 6 are provided, connected to the upper and lower sides of the concrete slab 2 respectively, and two vertical partitions 602 are connected to the left and right sides of the concrete slab 2. The horizontal partitions 6 and vertical partitions 602 facilitate the auxiliary use of the horizontal patch 5 and the vertical patch 502, preventing uneven or bent adhesion of the horizontal patch 5 and the vertical patch 502, thus improving the practicality of the measuring component.

[0031] Further explanation: The fixed rod 702 is hollow inside, with an open connection on one side to the movable rod 703. The fixed rod 702 has mounting holes, and tightening bolts pass through the mounting holes to connect with the movable rod 703 via threads. The horizontal patch 5, vertical patch 502, horizontal partition 6, vertical partition 602, and connecting plate 701 are all detachably connected to the concrete slab 2 using double-sided adhesive. The connection between the fixed rod 702 and the movable rod 703 forms a telescopic mechanism, and the length can be adjusted using tightening bolts. This facilitates increased support for the horizontal steel wires, improves the spacing between the wire mesh frame component 4 and the concrete slab 2, and enhances the coordination of the components of the wire mesh insulation board.

[0032] Example 2

[0033] like Figure 1 As shown, the present invention proposes a wire mesh insulation board. Based on the above embodiments, this embodiment also details the specific components of the main steel wire 3 and the wire mesh frame component 4, as well as their matching method.

[0034] To further explain, the two ends of the main steel wire 3 are connected to the wire mesh frame component 4 by passing through the insulation board body 1 and the concrete slab 2, which is used to reinforce the installation of the wire mesh frame component 4. The main steel wire 3 also serves to support the transverse steel wires, further increasing the stability of the connection of the wire mesh frame component 4.

[0035] To further explain, the wire mesh frame component 4 includes horizontal and vertical wires; the horizontal and vertical wires are connected to the outside of the concrete slab 2, and the two ends of the vertical wires pass through the concrete slab 2 and the insulation board body 1 respectively. The horizontal wires are connected to the inner wall of the vertical wires and to the support component 7. The connection nodes of multiple horizontal and vertical wires are connected by welding, which is convenient for operation.

[0036] The working principle of this utility model is as follows: When the workers place the steel wire mesh insulation board components in sequence, two concrete slabs 2 are placed on both sides of the insulation board body 1. Using a drilling device, holes are drilled in the insulation board body 1 and the concrete slabs 2 placed side by side, allowing the main steel wire 3 to pass through. Two steel wire mesh components 4 are placed on the periphery of the concrete slabs 2. The ends of the vertical steel wires are fixedly connected to the concrete slabs 2, and the horizontal steel wires pass through the inside of the vertical steel wires and are supported on the main steel wire 3. When multiple steel wires of the steel wire mesh component 4 are laid out, the horizontal partition 6 and the vertical partition 602 are pasted onto the concrete slabs 2 using double-sided adhesive tape, leaving a gap between the horizontal patch 5 and the vertical patch 502 on one side of the concrete slab 2. Then, the horizontal patch 5 and the vertical patch 502 are pasted onto the concrete slab 2 using double-sided adhesive tape. The horizontal patch 5 and the vertical patch 502 are respectively equipped with scale marks a501 and b for use together. When multiple steel wires of the steel wire mesh frame 4 are laid out, the scale marks a501 and b ensure the consistency of the spacing between the multiple steel wires, improving the processing effect of the multiple steel wires of the steel wire mesh frame 4. At the same time, according to the usage requirements, double-sided patches are used to stick the connecting plate 701 and the concrete slab 2. The connecting plate 701 drives the fixing rod 702. The fixing rod 702 is connected to the movable rod 703 with tightening bolts. The movable rod 703 drives the support block 704. The support block 704 is connected to the periphery of the horizontal steel wire, which supports the horizontal steel wire and ensures the consistency of the spacing between the concrete slab 2 and the horizontal steel wire, further improving the processing effect of the multiple steel wires of the steel wire mesh frame 4, and improving the thermal insulation performance and service life of the insulation board.

[0037] 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. A steel wire mesh insulation board, characterized in that, include: Insulation board body (1); Concrete slab (2) is connected to the outside of the insulation board body (1); The main steel wire (3) passes through the insulation board body (1) and the concrete slab (2); Wire mesh frame component (4) is connected to the outside of concrete slab (2); The measuring component is connected to the periphery of the concrete slab (2); the measuring component includes a horizontal patch (5) and an auxiliary component; the horizontal patch (5) is connected to the scale a (501), and the two ends of the horizontal patch (5) are respectively connected to the vertical patch (502), and the vertical patch (502) is connected to the scale b; two horizontal patches (5) are provided and are respectively connected to the upper and lower sides of the concrete slab (2), and the two vertical patches (502) are connected to the left and right sides of the concrete slab (2); And a support assembly (7) is connected to the outside of the wire mesh frame (4); the support assembly (7) includes a connecting plate (701), the connecting plate (701) is connected to a fixed rod (702), the fixed rod (702) is connected to a movable rod (703), and the movable rod (703) is connected to a support block (704).

2. The steel wire mesh insulation board according to claim 1, characterized in that, Two concrete slabs (2), two wire mesh frames (4), two measuring components and two supporting components (7) are set up respectively, so that the concrete slabs (2), two wire mesh frames (4), two measuring components and two supporting components (7) are divided into two groups and connected to the two sides of the insulation board body (1) respectively.

3. The steel wire mesh insulation board according to claim 2, characterized in that, The two ends of the main steel wire (3) are connected to the wire mesh frame (4) by passing through the insulation board body (1) and the concrete slab (2) to reinforce the installation of the wire mesh frame (4).

4. The steel wire mesh insulation board according to claim 3, characterized in that, The steel wire mesh frame component (4) includes horizontal steel wires and vertical steel wires; The horizontal and vertical steel wires are connected to the outside of the concrete slab (2), and the two ends of the vertical steel wire pass through the inside of the concrete slab (2) and the insulation board body (1) respectively. The horizontal steel wire is connected to the inner wall of the vertical steel wire and connected to the support component (7).

5. A wire mesh insulation board according to claim 4, characterized in that, The auxiliary components include a horizontal partition (6) connected to the periphery of the concrete slab (2), and vertical partitions (602) connected to both ends of the horizontal partition (6). A screw (603) is used to pass through the horizontal partition (6) and be threaded to the vertical partition (602).

6. A steel wire mesh insulation board according to claim 5, characterized in that, There are two horizontal partitions (6), which are connected to the upper and lower sides of the concrete slab (2) respectively, and two vertical partitions (602) are connected to the left and right sides of the concrete slab (2).

7. The steel wire mesh insulation board according to claim 1, characterized in that, The fixed rod (702) is hollow inside, and an open connection to the movable rod (703) is provided on one side. The fixed rod (702) is provided with a mounting hole, and the tightened bolt passes through the mounting hole and is threadedly connected to the movable rod (703).

8. A steel wire mesh insulation board according to claim 7, characterized in that, The horizontal patch (5), vertical patch (502), horizontal partition (6), vertical partition (602) and connecting plate (701) are all attached to the concrete slab (2) with double-sided adhesive and can be detachably connected.