As buildings rise to define city skylines, they serve not merely as spatial containers but as enduring responses to time and weather. The challenge lies in balancing visual appeal with long-term resilience against harsh outdoor conditions. The Geely-805 series PVDF aluminum composite panels were engineered precisely to address this dual demand.
Engineered for Resilience
Designed specifically for exterior cladding, the Geely-805 series incorporates high-quality PVDF (fluorocarbon) coating technology, granting the panels exceptional weather resistance and anti-corrosion properties. Even under intense UV exposure or acidic precipitation, the coating maintains uniform color integrity over time. With a standard thickness of 4mm and an aluminum layer measuring 0.4mm, the material’s scientifically calibrated composition delivers remarkable torsional strength—combining structural lightness with optimized wind-load resistance.
Safety as a Foundation
Structural safety remains paramount in architectural design. The series offers two core material options: shatter-resistant or fire-retardant plastic, both rigorously compliant with GB/T17748-1999 national standards. These features create an effective barrier against fire propagation while ensuring building integrity. The panels also exhibit superior self-cleaning capabilities and ease of maintenance, significantly reducing long-term operational costs.
Adaptable Design Solutions
Flexibility defines the Geely-805’s practical advantages. While standard panels measure 1220×2440mm, customization extends to widths of 2000mm and lengths up to 6000mm—accommodating diverse facade geometries. Whether for commercial complexes or high-end residential projects, the material’s flawless surface finish and precision engineering faithfully translate architectural visions into built form. Backed by an annual production capacity of 1.5 million square meters and a comprehensive warranty system, the series has emerged as a benchmark for harmonizing aesthetic ambition with engineering reliability in contemporary construction.
As buildings rise to define city skylines, they serve not merely as spatial containers but as enduring responses to time and weather. The challenge lies in balancing visual appeal with long-term resilience against harsh outdoor conditions. The Geely-805 series PVDF aluminum composite panels were engineered precisely to address this dual demand.
Engineered for Resilience
Designed specifically for exterior cladding, the Geely-805 series incorporates high-quality PVDF (fluorocarbon) coating technology, granting the panels exceptional weather resistance and anti-corrosion properties. Even under intense UV exposure or acidic precipitation, the coating maintains uniform color integrity over time. With a standard thickness of 4mm and an aluminum layer measuring 0.4mm, the material’s scientifically calibrated composition delivers remarkable torsional strength—combining structural lightness with optimized wind-load resistance.
Safety as a Foundation
Structural safety remains paramount in architectural design. The series offers two core material options: shatter-resistant or fire-retardant plastic, both rigorously compliant with GB/T17748-1999 national standards. These features create an effective barrier against fire propagation while ensuring building integrity. The panels also exhibit superior self-cleaning capabilities and ease of maintenance, significantly reducing long-term operational costs.
Adaptable Design Solutions
Flexibility defines the Geely-805’s practical advantages. While standard panels measure 1220×2440mm, customization extends to widths of 2000mm and lengths up to 6000mm—accommodating diverse facade geometries. Whether for commercial complexes or high-end residential projects, the material’s flawless surface finish and precision engineering faithfully translate architectural visions into built form. Backed by an annual production capacity of 1.5 million square meters and a comprehensive warranty system, the series has emerged as a benchmark for harmonizing aesthetic ambition with engineering reliability in contemporary construction.