
Living Concrete Trapez Concrete Tiles
TRAPEZ CONCRETE TILES
TRAPEZ CONCRETE TILES
Trapez Concrete Tiles are a versatile tile choice which can be used indoors and outside, in both commercial and domestic settings. These incredible 3D tiles introduce a striking visual effect which will transform any space. We’ve seen them used in bars, hotels, offices, and the homes of our interior design clients. These types of tiles are perfect for people who want to incorporate new and exciting concrete options into their spaces – like designers.
When we make our tiles, we use a special combination of cement, specific sand, carefully chosen additives and UV stable pigmentation.
The result is a concrete surface with a high level of hardness making it suitable for indoor and outdoor use. Our tiles always stand out for being tough and long-lasting.
INFORMATION
APPLICATIONS
Internal/external Walls
USE
Internal and external
STORAGE
- Keep in a dry, clean space in the original packaging
- Tiles should be kept in a horizontal way
- Allow 24-48 hours to acclimatise before installation
PROTECTION
- Water based sealer
- Acrylic wax
- POLIFAN PU K14
SUPPORT/BASE
-Secure, flat and free from moisture -Panels do not solve existing damp problems -There can be no rising or negative humidity
USE
Indoor And Outdoor
DOWNLOAD
↓ Product Sheet
↓ Installation
TEXTURES & FINISHES
INSTALLATION
MAINTENANCE
- Clean with neutral detergent
- Use wax maintainers or self-polishing cleaners
INSTALLATION GUIDE
- Living Concrete GRC 3D Decorative Tiles can be used on inner walls cladding. The tiles must be fixed to a stable, sturdy, and rigid surface.
- During the mounting, tiles may be machined with the use of tools suitable for concrete cutting.
- Invisible mounting system – gluing – with the use of back-expanding sleeve (ensures high strength of connections immediately after mounting).
GRC Concrete technical data
PARAMETER | UNIT | SPRAY METHOD | CASTED MIX METHOD | CONVENTIONAL CONCRETE |
---|---|---|---|---|
Glass fiber content in concrete mix | % | 5 | 3 | 0 |
Dry density | g/cm3 | 1.8-2.2 | 1.8-2.0 | 2.2-2.5 |
Thermal conductivity | W/m*K | 0.9-1.5 | 0.9-1.5 | 1.0-1.6 |
Thermal expansion | X10 -6/°C | 7-12 | 7-12 | 10-14 |
Frost resistance | Cycle | 150 | 150 | <100 |
Attenuation (flat 9,3 mm panel) | dB | 31.2 | 31.2 | 31.2 |
Tension | - | - | - | - |
Breaking stress (UTS) | MPa | 8-11 | 4-7 | 1-5 |
Limit of proportionality (LOP) | MPa | 5-7 | 4-6 | 1-4 |
Breaking stress | MPa | 20-30 | 10-14 | 3-6 |
Limit of proportionality (LOP | MPa | 7-13 | 5-8 | 2-3 |
Young’s modulus | GPa | 15-25 | 13-21 | 27-35 |
Shear | Mpa | 8-11 | 4-7 | 3-5 |
Compressive strength | Mpa | 50-80 | 40-60 | 15-60 |
Impact strength | kJ/m2 | 10-25 | 10-15 | 0.05 |
Modulus of elasticity | GPa | 10-20 | 10-20 | 20-40 |
Drying shrinkage | % | 0.6-1.2 | 0.1-0.2 | 0.8-1.8 |
