Bonding structure of heat preservation and decoration integrated plate

By employing a design of bonding points and frame bonding layers in the integrated insulation and decoration panel, the problems of excessive weight and unstable installation caused by uneven bonding mortar during construction are solved, achieving a highly efficient and stable bonding effect.

CN223937522UActive Publication Date: 2026-02-24ZHUHAI HUAFA JINGLONG CONSTR CO LTD
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Patent Information

Application Number
CN202520553742.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-02-24
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

The existing integrated insulation and decoration panels are too heavy during construction due to uneven application of bonding mortar, which affects construction efficiency and makes the edges prone to chipping. The bonding mortar on the frame also affects the installation effect.

Method used

The structure adopts a bonding point and frame bonding layer design. The frame adhesive is injected through the grouting hole to form a bonding layer, which reduces the amount of bonding mortar and ensures a firm connection.

Benefits of technology

It improves construction efficiency, avoids excessive weight of the panels, ensures installation quality, simplifies construction operations, and enhances bonding strength.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a bonding structure of a heat preservation and decoration integrated plate. The bonding structure comprises a plate body, the bonding layer is arranged on the back of the plate body; the bonding layer comprises a plurality of bonding points which are distributed at intervals; a frame bonding layer; the two plate bodies are arranged side by side or in parallel, a plate seam is formed between the two plate bodies, a grouting hole is formed in the plate seam, and a frame bonding agent is injected into the grouting hole to form the frame bonding layer. According to the bonding structure of the heat preservation and decoration integrated plate, the back and the edge of the plate body are bonded through the bonding points and the frame bonding layers, and the situation that the back of the plate body is coated with too much bonding mortar, and consequently the weight is too large is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of insulation board technology, and in particular to an adhesive structure for an integrated insulation and decorative panel. Background Technology

[0002] Insulation and decoration integrated panels are a type of material that can meet both the requirements for external wall insulation and the requirements for external wall decoration. As people’s requirements for the quality of external walls increase, insulation and decoration integrated panels are increasingly used in the construction of external walls of various buildings.

[0003] The construction of integrated thermal insulation and decorative panels generally adopts a combination of adhesive and anchoring methods. In actual construction, if the adhesive mortar is applied to the back of the integrated panel at one time, it will result in the panel being too heavy, making it inconvenient for construction workers to operate on the suspended platform, greatly reducing the construction efficiency. Moreover, it is easy to cause the edge of the integrated panel to chip during the anchoring process, and the adhesive mortar on the frame will also affect the panel from being stuck into the anchor, thus failing to achieve the expected installation effect. Utility Model Content

[0004] To solve the above problems, this technical solution provides an adhesive structure for an integrated thermal insulation and decorative panel.

[0005] To achieve the above objectives, the technical solution is as follows:

[0006] An adhesive structure for an integrated thermal insulation and decorative panel, comprising:

[0007] plate body;

[0008] An adhesive layer is provided on the back of the plate;

[0009] The adhesive layer includes a plurality of spaced adhesive points;

[0010] Border adhesive layer;

[0011] The two plates are arranged side by side or parallel to each other, forming a gap between them. A grouting hole is provided in the gap for injecting frame adhesive to form the frame adhesive layer.

[0012] The bonding structure of the integrated thermal insulation and decorative panel described above includes a fiber-reinforced cement board, a thick rock wool strip, and a fiber-reinforced perforated cement board.

[0013] In the bonding structure of the integrated thermal insulation and decorative panel described above, the thickness of the fiber-reinforced cement board is 8mm, the thickness of the thick rock wool strip is 30mm, and the thickness of the fiber-reinforced perforated cement board is 4mm.

[0014] In the bonding structure of the integrated thermal insulation and decorative panel described above, the diameter of the grouting hole is 20mm and the depth is 42mm.

[0015] The bonding structure of the integrated thermal insulation and decorative panel described above has a width of 800mm and a length of 1000mm. There are a total of 12 bonding points, which are distributed in a 3×4 array.

[0016] In the above-described adhesive structure of an integrated thermal insulation and decorative panel, the diameter of the adhesive point is 150mm and the thickness is 10mm.

[0017] As described above, in the bonding structure of an integrated thermal insulation and decorative panel, two anchoring points are provided on each of the four sides of the panel, and the bonding points and the anchoring points are spaced apart.

[0018] In the bonding structure of the integrated thermal insulation and decorative panel described above, the area of ​​the adhesive layer and the frame adhesive layer covering the panel body accounts for more than 50% of the panel body area.

[0019] In the bonding structure of the integrated thermal insulation and decorative panel described above, the area of ​​the adhesive layer and the frame adhesive layer covering the panel body accounts for 51%-60% of the panel body area.

[0020] The bonding structure of the integrated thermal insulation and decorative panel as described above further includes a foam rod for filling the grouting holes after grouting, and a silicone sealant layer for covering the joints of the panels.

[0021] The beneficial effects of this application are:

[0022] This utility model provides an adhesive structure for an integrated thermal insulation and decorative panel. By using adhesive points and a frame adhesive layer, the back and edges of the panel are bonded together, avoiding the need to apply too much adhesive mortar to the back of the panel, which would result in excessive weight. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0024] Figure 1 This is a schematic diagram of the structure of this application;

[0025] Figure 2 This is a schematic diagram of the adhesive layer on the board and the adhesive layer on the frame. Detailed Implementation

[0026] To make the technical problems solved, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0027] An adhesive structure for an integrated thermal insulation and decorative panel, comprising:

[0028] Plate 1;

[0029] Adhesive layer 2 is disposed on the back of the plate 1;

[0030] The adhesive layer 2 includes a plurality of spaced adhesive points 21;

[0031] Frame adhesive layer 3;

[0032] The two plates 1 are arranged side by side or in parallel, forming a gap 4 between the two plates 1. A grouting hole 5 is provided on the gap 4, and the grouting hole 5 is used to inject the frame adhesive to form the frame adhesive layer 3.

[0033] This utility model provides an adhesive structure for an integrated thermal insulation and decorative panel. By employing adhesive points and a frame adhesive layer, the back and edges of the panel are bonded together, avoiding excessive weight caused by applying too much adhesive mortar to the back of the panel. In this embodiment, both the adhesive layer and the frame adhesive are adhesive mortar.

[0034] Furthermore, as a preferred embodiment of this solution and not a limitation thereof, the plate 1 includes a fiber-reinforced cement board, a thick rock wool strip, and a fiber-reinforced perforated cement board.

[0035] Furthermore, as a preferred embodiment of this solution and not a limitation thereof, the thickness of the fiber-reinforced cement board is 8 mm, the thickness of the thick rock wool strip is 30 mm, and the thickness of the fiber-reinforced perforated cement board is 4 mm.

[0036] Furthermore, as a preferred embodiment of this solution and not a limitation, the grouting hole 5 has a diameter of 20 mm and a depth of 42 mm.

[0037] Furthermore, as a preferred embodiment of this solution and not a limitation, the plate 1 has a width of 800mm and a length of 1000mm, and there are 12 bonding points 21 arranged in a 3×4 array. This improves the bonding strength while reducing the amount of bonding mortar used.

[0038] Furthermore, as a preferred embodiment of this solution and not a limitation thereof, the diameter of the bonding point 21 is 150 mm and the thickness is 10 mm.

[0039] Furthermore, as a preferred embodiment of this solution, and not a limitation thereof, two anchoring points 11 are provided on each of the four sides of the plate 1, and the bonding points 21 are spaced apart from the anchoring points 11. This avoids the bonding mortar contaminating the anchors and makes the anchors easier to insert. This facilitates worker operation, improves installation efficiency, and ensures construction quality.

[0040] Furthermore, as a preferred embodiment of this solution and not a limitation, the area covered by the adhesive layer 2 and the frame adhesive layer 3 on the plate 1 accounts for more than 50% of the area of ​​the plate 1. The grouting volume is adjusted according to the actual site conditions to effectively ensure that the bonding area meets the requirements and effectively reduce the weight of the integrated plate during installation.

[0041] Furthermore, as a preferred embodiment of this solution and not a limitation, the area covered by the adhesive layer 2 and the frame adhesive layer 3 on the board 1 accounts for 51%-60% of the area of ​​the board 1. Assuming a mortar thickness of 10mm, 4kg of mortar can form approximately 0.2 square meters of adhesive area. Adding the spot bonding area of ​​0.075×0.075×3.14×12=0.21 square meters, the adhesive area ratio of (0.2+0.21) / 0.8=51% meets the specification requirements.

[0042] Furthermore, as a preferred embodiment of this solution and not a limitation, it also includes a foam rod 6 for filling the grouting hole 5 after grouting, and a silicone sealant layer 7 for covering the filling of the board joint 4. After grouting is completed, the foam rod is used to fill the hole, and then the sealant is applied to cover the grouting hole.

[0043] The above description is only a preferred embodiment of this application and is not intended to limit the scope of implementation of this application. Any other embodiments whose principles and basic structures are the same as or similar to those of this application are within the protection scope of this application.

Claims

1. An adhesive structure for an integrated thermal insulation and decorative panel, characterized in that: include plate(1); An adhesive layer (2) is disposed on the back of the plate (1); The adhesive layer (2) includes a plurality of spaced adhesive points (21); Border adhesive layer (3); The two plates (1) are arranged side by side or in parallel, and a plate joint (4) is formed between the two plates (1). A grouting hole (5) is provided on the plate joint (4) for injecting frame adhesive to form the frame adhesive layer (3).

2. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: The plate (1) includes a fiber-reinforced cement board, a thick rock wool strip, and a fiber-reinforced perforated cement board.

3. The bonding structure of the integrated thermal insulation and decorative panel according to claim 2, characterized in that: The fiber-reinforced cement board has a thickness of 8mm, the thick rock wool strip has a thickness of 30mm, and the fiber-reinforced perforated cement board has a thickness of 4mm.

4. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: The grouting hole (5) has a diameter of 20 mm and a depth of 42 mm.

5. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: The plate (1) has a width of 800mm and a length of 1000mm. There are 12 bonding points (21) in total, which are distributed in a 3×4 array.

6. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: The bonding point (21) has a diameter of 150 mm and a thickness of 10 mm.

7. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: The plate (1) has two anchor points (11) on each of its four sides, and the bonding point (21) is spaced apart from the anchor point (11).

8. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: The area covered by the adhesive layer (2) and the frame adhesive layer (3) on the plate (1) accounts for more than 50% of the area of ​​the plate (1).

9. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: The area covered by the adhesive layer (2) and the frame adhesive layer (3) on the plate (1) accounts for 51%-60% of the area of ​​the plate (1).

10. The bonding structure of the integrated thermal insulation and decorative panel according to claim 1, characterized in that: It also includes a foam rod (6) for filling the grouting hole (5) after grouting, and a silicone sealant layer (7) for covering the filling of the board joint (4).