High-strength composite insulation structure integrated board
Through the design of multi-layer composite structure and material selection, the problem of aluminum sheet insulation boards is easily deformed and cracked during processing and installation, and high strength and excellent insulation performance are achieved, meeting the needs of building energy conservation and structural integration.
Patent Information
- Application Number
- CN202422258690.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-14
AI Technical Summary
Existing thermal insulation boards made of aluminum sheets are prone to deform and cracking during processing and installation, affecting flatness and durability, and are difficult to meet the needs of building energy conservation and structural integration.
The multi-layer composite structure design is adopted, including bonding reinforcement layer, insulation layer, bonding layer, insulation transition layer, crack-resistant reinforcement layer, leveling layer and finishing layer. The strength and stability of the structure are improved by using alkali-resistant grid cloth and crack-resistant mortar to enhance the insulation performance.
It improves the crack resistance, corrosion resistance and durability of the composite insulation board, ensures that it is not easy to bend or break during transportation and construction, extends the service life and improves the insulation effect.
Smart Images

Figure CN223240991U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building exterior walls, in particular to a high-strength composite thermal insulation structure integrated board. Background Art
[0002] Insulation boards have the dual functions of enclosure and insulation, and are widely used in the fields of interior and exterior wall decoration. The insulation materials on the market generally have the hidden dangers of cracking and falling off, poor durability, low strength, and easy damage, making it difficult to achieve the effect of wall insulation. With the rapid development of building energy conservation and green building in my country, building energy conservation and structural integration have become a new energy-saving technology industry. Due to the excellent corrosion resistance and easy processing of aluminum plates, metal surface decorative insulation integrated panels mostly use aluminum plates as the surface material.
[0003] However, aluminum plates are usually made of alloy materials, and commonly used aluminum plate materials are 3003, 3004, 5052, etc. If the hardness of the aluminum plate is too hard, it is not conducive to processing. If the hardness of the aluminum plate is too low, although it is easy to process, it is easy to deform and the flatness cannot be guaranteed. If the aluminum plate width is too long or too wide, it will cause different degrees of concave, wavy or deformation in the middle of the aluminum plate surface decorative insulation composite panel, affecting the flatness and even more affecting the decorative visual effect; and due to the characteristics of the aluminum plate material itself, it is easy to bend under force during installation. Utility Model Content
[0004] The purpose of the utility model is to solve the problems existing in the above-mentioned background technology and to propose a high-strength composite thermal insulation structure integrated board.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0006] A high-strength composite thermal insulation structure integrated panel, wherein an insulation layer is pasted on the right side of the bonding reinforcement layer, an adhesive layer is fixed to the right side of the insulation layer, an insulation transition layer is fixed to the right side of the bonding layer, an anti-cracking reinforcement layer is fixed to the right side of the insulation transition layer, a leveling layer is fixed to the right side of the anti-cracking reinforcement layer, a plaster layer is fixed to the right side of the leveling layer, and a finishing layer is fixed to the right side of the plaster layer.
[0007] Preferably, the thicknesses of the bonding reinforcement layer and the bonding layer are 5 mm and 2 mm respectively, and both the bonding reinforcement layer and the bonding layer are composed of bonding mortar and a layer of alkali-resistant mesh cloth.
[0008] Preferably, the thermal insulation layer is made of XPS thermal insulation core material, and the thickness of the thermal insulation layer is 60 mm.
[0009] Preferably, the thickness of the thermal insulation transition layer is 25 mm, and the thermal insulation transition layer is made of Class A thermal insulation mortar.
[0010] Preferably, the thickness of the anti-cracking reinforcement layer is 3 mm, and the anti-cracking reinforcement layer is composed of anti-cracking mortar and a layer of alkali-resistant mesh cloth.
[0011] Preferably, the thickness of the leveling layer is 15 mm, the leveling layer is composed of lightweight mortar, the rear end of the plastering layer is 5 mm, and the plastering layer is composed of anti-cracking mortar and glass fiber mesh cloth plastering layer.
[0012] When the device is assembled, alkali-resistant mesh cloth is added to the bonding reinforcement layer, the bonding layer and the anti-cracking reinforcement layer. At the same time, anti-cracking mortar and glass fiber mesh cloth with good crack resistance are added to the anti-cracking reinforcement layer, which further increases the strength of the device, significantly improves the stability, alkali resistance and thermal insulation performance of the device, and has the characteristics of corrosion resistance and crack resistance. It is not easy to bend or break during transportation or construction, which improves the integrity and service life of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0014] Figure 2 This is a schematic diagram of the local structure of the anti-cracking reinforcement layer in the utility model.
[0015] Legend:
[0016] Bonding reinforcement layer 1, thermal insulation layer 2, bonding layer 3, thermal insulation transition layer 4, anti-cracking reinforcement layer 5, leveling layer 6, plastering layer 7, finishing layer 8. DETAILED DESCRIPTION
[0017] Example 1, with reference to Figure 1-2 A high-strength composite thermal insulation structure integrated board, the right side of the bonding reinforcement layer 1 is pasted with an insulation layer 2, the right side of the insulation layer 2 is fixed with a bonding layer 3, the right side of the bonding layer 3 is fixed with an insulation transition layer 4, the right side of the insulation transition layer 4 is fixed with an anti-cracking reinforcement layer 5, the right side of the anti-cracking reinforcement layer 5 is fixed with a leveling layer 6, the right side of the leveling layer 6 is fixed with a plastering layer 7, and the right side of the plastering layer 7 is fixed with a finishing layer 8.
[0018] The thickness of the bonding reinforcement layer 1 and the bonding layer 3 are 5 mm and 2 mm respectively. The bonding reinforcement layer 1 and the bonding layer 3 are both composed of bonding mortar and a layer of alkali-resistant mesh cloth;
[0019] The thickness of the anti-crack reinforcement layer 5 is 3 mm, and the anti-crack reinforcement layer 5 is composed of anti-crack mortar and a layer of alkali-resistant mesh cloth;
[0020] The thickness of the leveling layer 6 is 15 mm, the leveling layer 6 is composed of lightweight mortar, the rear end of the plastering layer 7 is 5 mm, and the plastering layer 7 is composed of anti-cracking mortar and glass fiber mesh cloth plastering layer 7;
[0021] Since alkali-resistant mesh cloth is added to the bonding reinforcement layer 1, the bonding layer 3 and the anti-cracking reinforcement layer 7, and anti-cracking mortar and glass fiber mesh cloth with good crack resistance are added to the anti-cracking reinforcement layer 7, the strength of the device is further increased, and the structural stability, alkali resistance and thermal insulation performance are significantly improved. At the same time, it has the characteristics of corrosion resistance and crack resistance. It is not easy to bend or break during transportation or construction, which improves the integrity and service life of the device.
[0022] Example 2: Example 2 differs from Example 1 in that, in this example, the thermal insulation layer 2 is made of XPS thermal insulation core material, and the thickness of the thermal insulation layer 2 is 60 mm.
[0023] The thickness of the thermal insulation transition layer 4 is 25 mm, and the thermal insulation transition layer 4 is made of Class A thermal insulation mortar;
[0024] During use, one end of the bonding reinforcement layer 1 is tightly fixed on the concrete wall, and the finishing layer 8 is at the outermost part of the device. Since there are two layers of thermal transition layer 4 and insulation layer 2, a double insulation effect can be achieved on the concrete wall, making it difficult for temperature to dissipate along the concrete wall, further improving the insulation performance of the device.
[0025] The above is only a preferred embodiment of the present invention. It should be pointed out that for those skilled in the art, several modifications and improvements can be made without departing from the concept of the present invention. These should also be regarded as the scope of protection of the present invention. These will not affect the effect of the implementation of the present invention and the practicality of the patent.
Claims
1. A high-strength composite thermal insulation structure integrated board, characterized in that: The right side of the bonding reinforcement layer (1) is adhered with a thermal insulation layer (2), the right side of the thermal insulation layer (2) is fixed with a bonding layer (3), the right side of the bonding layer (3) is fixed with a thermal insulation transition layer (4), the right side of the thermal insulation transition layer (4) is fixed with an anti-cracking reinforcement layer (5), the right side of the anti-cracking reinforcement layer (5) is fixed with a leveling layer (6), the right side of the leveling layer (6) is fixed with a plastering layer (7), and the right side of the plastering layer (7) is fixed with a finishing layer (8).
2. The high-strength composite thermal insulation structure integrated board according to claim 1, characterized in that: The thicknesses of the bonding reinforcement layer (1) and the bonding layer (3) are 5 mm and 2 mm respectively, and both the bonding reinforcement layer (1) and the bonding layer (3) are composed of bonding mortar and a layer of alkali-resistant mesh cloth.
3. The high-strength composite thermal insulation structure integrated board according to claim 1, characterized in that: The thermal insulation layer (2) is made of XPS thermal insulation core material, and the thickness of the thermal insulation layer (2) is 60 mm.
4. The high-strength composite thermal insulation structure integrated board according to claim 1, characterized in that: The thickness of the thermal insulation transition layer (4) is 25 mm, and the thermal insulation transition layer (4) is made of Class A thermal insulation mortar.
5. The high-strength composite thermal insulation structure integrated board according to claim 1, characterized in that: The thickness of the anti-cracking reinforcement layer (5) is 3 mm, and the anti-cracking reinforcement layer (5) is composed of anti-cracking mortar and a layer of alkali-resistant mesh cloth.
6. The high-strength composite thermal insulation structure integrated board according to claim 1, characterized in that: The thickness of the leveling layer (6) is 15 mm, and the leveling layer (6) is composed of lightweight mortar. The rear end of the plastering layer (7) is 5 mm, and the plastering layer (7) is composed of anti-cracking mortar and a glass fiber mesh cloth plastering layer (7).