01
Fused Cast Zirconia Block (RTK-Z910)
Berif Introduction
Fused cast zirconia blocks are high zirconia refractories made by melting high purity raw materials through special casting process. The series of molten high zirconium bricks mainly includes RTK-Z9540 (zirconium content >89%) and RTK-Z9510 (zirconium content >93%) RTK-Z9510 Mineral composition: ZrO₂(93.6%), SiO₂(5.3%), Na₂O (0.05%)
The crystalline structure of fused cast zirconia blocks is mainly composed of baddeleyite, so it has extremely high corrosion resistance, low foaming rate characteristics, these advantages can prevent the contamination of the molten glass.
Zirconia refractory products are produced with PLC programmed special electric furnace and special material incubator. During casting, the shrinkage cavity block is obtained after molding. This casting method is generally used for cast zirconia block products.
We Reftech have passed ISO9001, ISO14001, and ISO45001 management system certification. At the same time, our company has established an intelligent management platform to conduct digital collection and analysis of the production process from raw materials to finished products, and have steadily improved the quality stability and traceability of products.
We establish a standardized, independent and efficient quality assurance system according to the requirements of modern enterprises. We rely on advanced analytical instruments and testing equipment to monitor the whole process of products, provide scientific and effective theoretical data for production, and provide users with high-level quality supervision services.
Chemical composition
CHEMICAL COMPOSITION AND MINERAL COMPOSITION |
||
Chemical Composition (%) |
ZrO₂ |
93.5 |
SiO₂ |
4.8 |
|
Al₂O₃ |
0.8 |
|
Na₂O |
0.4 |
|
Others |
0.5 |
|
Mineral Composition (%) |
Baddeleyite |
94 |
Vitreous Phase |
6 |
Physical property
PHYSICAL PROPERITY |
|
Normal temperature compressive strength(Mpa) |
600 |
Bulk density(g/cm3) |
5.2 |
Apparent porosity(%) |
≤1.0 |
Corrosion resistance of molten glass at three-phase interface mm/24h |
≤0.8 |
Exudation amount of vitreous phase |
≤0.4 |
Thermal conductivity W/(mk)
600°C, At 600°C 1000°C, At 1000°C |
3.0 2.8 |
Resistivity (Ω·m)
1500°C, At 1500°C 1600°C, At 1600°C |
0.6 0.4 |
Coefficient of thermal expansion
1000°C, At 1000°C 1500°C, At 1500°C |
0.7 0.20 |