China Factory Supplier of Eco-friendly Calcium Silicon Roof Sheets - 30 Years Warranty for Durable Building Solutions
| Name | Calcium silicon ancient building tile -Basic Series |
| Material | Sodium silicate+Nano modified calcium+PMMA/ASA |
| Application | 22°- 80° slope roofing, such as Villas, Houses, Public buildings... |
| Service life | 30 years to 50 years |
| Dimension | Width-1050mm, Effective width-960mm; Wave height-30mm; Length-customed Pitch-220mm |
| Thickness | 2.0mm-3.0mm |
| Weight | 3.8kg/sqm - 5.8kg/sqm |
| Color | Usual color-Grey, Red, Blue, Orange; Accept custom |
| Surface | Marking Anti-fake logo |
| Warranty | 5 years |
| Advantage | Lower thermal expansion and contraction; long lasting color; Easy install, etc. |
CALCIUM SILICON ANCIENT BUILDING TILE use the three-layer co-extrusion structure and HERE technology. Major raw material include SODIUM SILICATE, NANO MODIFIED CALCIUM, PMMA/ASA.
The surface layer PMMA film has excellent features, such as good weather resistance, strongly physical and mechanical properties. It is covered on the surface of the tile to resist various invasions such as ultraviolet rays, wind and acid, alkali and salt substances in the natural environment, and enhance the structural stability of the tile under the environment of frequent alternation of high and low temperatures from -40° to 80°. And the fading rate is very low.
The middle core skeleton layer is made of sodium silicate and nano-modified calcium. Sodium silicate has good adhesion, which makes the tiles have good tensile strength and toughness. Nano-modified calcium has better plasticizing effect, and less impurities, which effectively improves the rigidity, toughness, finish and bending strength of the tiles, and improves tiles processing performance and dimensional stability.
The bottom layer adds toughness-enhancing materials on the basis of the skeleton layer material to further stabilize the product's impact resistance, tensile force and stability. Greatly reduce the thermal expansion and contraction rate of the product.
The thermal expansion and contraction rate of calcium silicate ancient building tiles is much lower than that of synthetic resin tiles, very close to the expansion and contraction rate of steel. Between -40°Celsius and 80°Celsius, the structure is relatively stable, not easily deformed.
The surface is coated with PMMA, which has super weather-resistant. It provides good protection against UV rays and various erosion in nature when exposed to nature for an extended period of time. Long-lasting color, 5% of rate fade in 15 years.
The tile uses high-strength materials and HERE composite technology, which makes the product have super impact resistance and load resistance, 3 times that of similar products. Not afraid of heavy rain, hail and constructor trampling.
Calcium Silicon ancient building tiles are made of B1 grade fireproof raw materials, it makes the tiles have good fireproof performance and ensure that they extinguish instantly when they are removed from the source of fire.
Silicon calcium ancient building tiles have excellent stability. Proven by corrosion test, it can resist corrosion from various chemicals such as acid, alkali, and salt. So definitely it is resistant to acid rain, corrosive gases, and the high salinity coastal environment.
Because calcium silicon ancient construction tiles have a relatively high density, sound can be somewhat prevented from spreading. Additionally, it has good sound insulation due to the unique curved surface structure and material qualities.
Silicon calcium ancient building tiles do not require maintenance under normal use conditions, because they are durable, not easy to deform, not easy to fade, and very clean after raining. They will not grow green moss and grass like clay and cement tiles. Even if they are harmed in bad weather, repairs and replacements would be quickly and simply.
The thermal conductivity of the tile body is less than 0.325 w/h, which makes it very easy to decrease temperature transmission between indoor and outdoor spaces, store heat, insulate, preserve energy, and lower carbon emissions.


