HI-QuadCore 2.0 AWP
Description and applications
Facade panel with concealed fastenings and QuadCore® rigid insulating core, providing one of the highest levels of thermal insulation on the market, high fire protection and excellent durability.
The fire performance of the entire range of HI-QuadCore
2.0 AWP panels is certified by FM Approvals in accordance with standards FM 4880, FM 4881 and FM 4882.
High-quality architectural finish with three options for the exterior surface: smooth, semi-smooth and micro-profiled.
Panel available in various thicknesses and different steel sheet coatings and colours.
Ideal for high-performance architectural façades in industrial, residential, commercial and sports facilities.

Downloads
Data sheet- HI-QuadCore 2.0 AWP
Assembly guide – horizontal 1 – HI-QuadCore 2.0 AWP
Assembly guide – horizontal 2 – HI-QuadCore 2.0 AWP
Assembly Guide – Vertical – HI-QuadCore 2.0 AWP
DWG Drawing – HI-QuadCore 2.0 AWP
Panel Handling Guide
Ficha mantenimiento de paneles
Ficha descarga de paneles
Panel safety data sheet
Carta de colores
Technical specifications

Useful width: 1,000 mm
Manufacturing length: 2.0 a 13.5 m | 13.5 a 18 m (special transport)
Declared thermal conductivity: 0,019 W/mK (considering ageing core)
Total thickness (A): 60 | 80 | 100 | 120 | 140 | 160 (mm)
BS 8414 test
The HI-QuadCore® 2.0 AWP panel has successfully passed the large-scale test in accordance with BS 8414-2: 2020 (Fire performance of external cladding systems. Test method for non-load-bearing external cladding systems fixed to, and supported by, a structural steel frame), in accordance with the performance criteria set out in BR 135 3rd edition (2013) (Fire performance of external thermal insulation for multi-storey building walls. Test passed with 100 mm thick panel and horizontal installation).
* Please refer to the specific installation conditions for this certification.

Advantages
High thermal efficiency
The QuadCore® insulating core has excellent thermal performance, with an aged thermal conductivity of just 0.019W/mK.
