The silicon graphene integrated insulation and decoration panel wall insulation system consists of silicon graphene insulation and decoration composite panels, adhesives, specialized anchor bolts and fixing components, joint filling materials, sealants, etc. This system can be fixed to the outer side of the building's exterior wall through a combination of bonding and anchoring methods. The base wall is bonded with adhesives, and specialized anchor bolts and fixing components are employed for fixation. After the panel joints are sealed, an insulation structure system is established. Unlike traditional methods, there is no requirement for separate construction of the thermal insulation layer, moisture barrier layer, protective layer, anti-corrosion layer, and decorative layer. A single construction operation can fulfill multiple functions for buildings, including thermal insulation, energy conservation, protection, and decoration.
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01
Consistency between internal and external properties, enhanced performance stability.
Organic and inorganic materials achieve a balanced coordination of major indicators and possess functions including thermal insulation, energy efficiency, protection, and decoration
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02Lightweight and easy to install on the wall, more convenient installation process
The panel-free system reduces the load-bearing, omits the materials and labor, and benefits the environment and investment. It can be used for both new buildings and the renovation and transformation of existing buildings.
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03
Interlocking links make the system more secure.
The integrated reinforcement design offers an interior-to-exterior connection approach for the mechanical anchoring of the system. Owing to the intrinsic strength of the material, the measured value of the single-point anchoring force is several times higher than the industry standard, thereby ensuring the safety and stability of the system.
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04
Both internal and external improvements, richer applications.
The mission of a high-quality material extends beyond merely enabling the successful realization of a building. More significantly, it lies in enhancing the visual texture and optimizing the performance, thereby endowing the building structure with a completely rejuvenated transformation.
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Parameter table |
Items |
|---|---|
| Dry density, kg/m3 | 180-220 |
| Compressive strength, MPa | ≥0.30 |
|
Tensile strength perpendicular to the plate surface, MPa |
≥0.20 |
| Compressive modulus of elasticity, kPa | ≥20000 |
| Flexural load, N | ≥3000 |
|
Flexural deformation, mm |
≥6 |
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Water absorption rate by volume, % |
≤10 |
| Thermal conductivity (25 ℃), W/(m·K) | ≤0.055 |
| Softening coefficient | ≥0.8 |
| Drying shrinkage rate, % | ≤0.3 |
|
Combustion performance grade |
Grade A (A2) |


