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2025
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Glass Fiber Composite Tile
The glass fiber composite aluminum ceiling panel is an innovative decorative ceiling material that perfectly combines high strength with lightweight characteristics. Featuring a unique sandwich structure design with aluminum alloy panels as the surface la
Product Structure:
Surface Layer: High-quality aluminum alloy panel (0.3-1.0mm thickness) with various surface treatment options
Core Layer: High-density glass fiber reinforced composite material
Bottom Layer: Protective coating or aluminum foil layer to enhance product performance
Key Advantages:
Ultra-lightweight: 40-50% lighter than solid aluminum panels
Exceptional Strength: Glass fiber core provides superior rigidity and impact resistance
Fire Resistance: Meets Class A fire rating standards (non-combustible material)
Moisture Proof: Excellent resistance to humidity and water vapor
Thermal Insulation: Low thermal conductivity for energy efficiency
Easy Installation: Modular design with concealed suspension system
Technical Specifications:
Standard Sizes: 600×600mm, 600×1200mm (custom sizes available)
Thickness Options: 8mm, 10mm, 12mm, 15mm
Surface Finishes: Powder coating, PVDF coating, anodized, wood grain, etc.
Applications:
High-end commercial spaces (airport aluminum composite ceiling panels, shopping mall fiberglass aluminum ceilings, hotels)
Healthcare facilities (hospital-grade aluminum composite ceilings, clinics)
Educational institutions
Transportation hubs
Clean rooms and laboratory antibacterial ceilings
Product Features:
Excellent flatness and dimensional stability
Superior sound absorption and noise reduction performance
100% recyclable and environmentally friendly
Long service life with low maintenance costs
Custom colors and patterns available
Quality Standards:
Complies with international standards including ASTM, EN, and GB for building materials, fire safety, and environmental protection.
Customization Services:
Available in various colors, sizes and special shapes to meet different design requirements. Custom perforation patterns can be provided to enhance acoustic performance.