Glass & Ceramic Chemicals
Zirconium silicate is a crucial material in ceramic manufacturing, enhancing the quality and performance of ceramics. Its high-temperature stability and corrosion resistance make it an indispensable component in ceramic glazes and colorants. Zirconium silicate aids in adjusting and enhancing glaze colors, ensuring the brightness and consistency of ceramic surfaces.
Our zirconium replacement has similar chemical charateristic with zirconium silicate, but much smaller particle size with advanced processes(D50 0.65 microns). Compared to tranditional material, the price is more compatitive.
CAS No. | 10101-52-7 |
Molecular Formula | ZrSiO₄ |
HS code | 2839900001 |
Main content | Content |
ZrO₂ %Min | 42.0-43.0 |
SiO₂ %Max | 37.0-38.0 |
A1₂O₃ %Max | 18.0 |
TiO₂ %Max | 1.0 |
Fe₂O₃ | 0.25 |
Particle size | μm |
D50 μm | 1.0 |
Main content | Content |
ZrO₂ %Min | 52.0-53.0 |
SiO₂ %Max | 27.0-28.0 |
A1₂O₃ %Max | 16.0 |
TiO₂ %Max | 0.75 |
Fe₂O₃ | 0.3 |
Particle size | μm |
D50 μm | 0.65 |
Main content | Content |
ZrO₂+HfO₂ %Min | 64 |
Fe₂O₃ %Max | 0.12 |
TiO₂ %max | 0.2 |
Particle size | μm |
Particle distribution D50 | 1 μm |
Main content | Content |
ZrO₂+HfO₂ %Min | 62.5 |
Fe₂O₃ %Max | 0.12 |
TiO₂ %max | 0.2 |
Particle size | μm |
Particle distribution D50 | 1 μm |
Main content | Content |
ZrO₂+HfO₂ %Min | 60 |
Fe₂O₃ %Max | 0.2 |
TiO₂ %max | - |
Particle size | μm |
Particle distribution D50 | 1 μm |
Zirconium silicate has excellent high temperature stability and is able to withstand extremely high temperatures without losing its color during the ceramics making process.
It has excellent resistance to chemical attack, protecting ceramic products from chemical attack and ensuring their quality.
Zirconium silicate has high hardness and excellent abrasion resistance, which prolongs the service life of ceramic products.
The color stability of zirconium silicate at high temperatures makes it an important material in ceramics, ensuring that ceramic products maintain a consistent color during the firing process.