
2CM (0.8″) TOTAL STONE GRAFITE
2 May 2001
2CM (0.8″) MADLIN ANTRACITE
1 June 2001

2CM (0.8") TOTAL Stone Avorio
Pearl grey, branching veining and natural movement
2CM TOTAL Stone Avorio reinterprets the elegance of ivory marble through Sintered Stone, creating a bright, refined surface with gentle visual movement.
The background combines ivory, cream, very light beige and subtle grey-beige nuances. This palette creates brightness without reaching pure white or developing pronounced yellow undertones.
Soft pearlescent clouding adds depth to the surface. Brighter areas alternate with sandy and taupe transitions, creating a warm yet balanced chromatic base.
The milky-white veins are its most distinctive feature. They run mainly diagonally across the slab, gradually changing in width, intensity and direction.
Small ochre traces and subtle beige variations accompany the main veins. These details add warmth and reinforce the surface’s natural mineral character.
The 60x90x2 cm (24"x36"x0.8") format, provides balanced proportions for the graphic pattern. Alternating more expressive slabs with quieter areas gives the paving a more natural appearance.

Advantages of 2CM (0.8") 2CM TOTAL Stone Avorio:
- Warm, balanced brightness: ivory, cream, light beige and pearlescent tones create a luminous surface without appearing cold or excessively uniform.
- Soft, varied veining: milky-white lines, branching veins and fine filaments cross the slab at different intensities, creating natural movement.
- Delicate mineral depth: clouded areas, fine speckling and small ochre traces enrich the pattern without introducing excessive contrasts.
Size
60x90x2 cm (24"x36"x0.8")
Solar Reflectance
Index (SRI)
The Solar Reflectance Index (SRI) measures a material's ability to reflect solar energy and release absorbed heat, essentially indicating how "cool" a surface will stay in sunlight. It combines solar reflectance (how much sunlight bounces off) and thermal emittance (how well it radiates absorbed heat). Higher SRI values mean a material will stay cooler when exposed to sunlight, making it beneficial for reducing heat buildup in buildings and mitigating the Urban Heat Island effect.









