Product Details
Brand Name: HUAO
Payment & Shipping Terms
Packaging Details: Wooden Case
Payment Terms: 100% In Advance/ 30% TT In Advance,Balance Payment Befor Delivery.
Color: |
White |
Thermal Shock Resistance: |
High |
Temperature Resistance: |
Up To 1800°C |
Hardness: |
9 On Mohs Scale |
Impact Resistance: |
High |
Material: |
95% Alumina Ceramic |
Surface Finish: |
Glossy |
Compressive Strength: |
2000 MPa |
Color: |
White |
Thermal Shock Resistance: |
High |
Temperature Resistance: |
Up To 1800°C |
Hardness: |
9 On Mohs Scale |
Impact Resistance: |
High |
Material: |
95% Alumina Ceramic |
Surface Finish: |
Glossy |
Compressive Strength: |
2000 MPa |
The high-temperature industrial field has extremely high requirements for the heat resistance and thermal stability of materials. 95% alumina ceramic tiles have become the core lining material for high-temperature kilns and heat treatment equipment due to their excellent high-temperature performance. The maximum operating temperature of this ceramic tile can reach 1700 ℃, with a thermal expansion coefficient of only 7.5 × 10 ⁻⁶/℃ in high temperature environments, effectively avoiding cracking and deformation caused by drastic temperature changes. In ceramic firing kilns, 95% alumina ceramic bricks are used as the bottom plate of the kiln passage, which can directly contact the kiln fire above 1600 ℃. After long-term use, there is no obvious wear or peeling on the surface, ensuring temperature uniformity inside the kiln and improving the firing quality of ceramic products. In addition, its high-temperature compressive strength reaches over 350MPa, which can withstand the heavy pressure of materials in the kiln, and has good oxidation resistance, without material degradation in high-temperature oxidation atmosphere. Compared to traditional refractory bricks, the service life of 95% alumina ceramic bricks is extended by more than 5 times, significantly reducing the maintenance cost of high-temperature industrial equipment.
Hardness | 9 On Mohs Scale |
Thermal Shock Resistance | High |
Surface Finish | Glossy |
Temperature Resistance | Up To 1800°C |
Size | 130*50*15mm |
Color | White |
Impact Resistance | High |
Item | Alumina Ceramic Tile |
Wear Resistance | High |
Compressive Strength | 2000 MPa |
95% alumina ceramic tiles have become the preferred choice in the high-temperature industry due to their excellent high temperature resistance. During production, high temperature sintering above 1600 ℃ is used to form a dense crystal structure of 95% high-purity alumina, with a fire resistance of over 1700 ℃ and strong thermal shock resistance. It is not easy to crack during sudden cooling and heating. In the crystallizer of metallurgical continuous casting machine, it can withstand the erosion of molten steel at 1500 ℃; The lining of the heat absorber for new energy solar thermal power generation is resistant to 565 ℃ molten salt corrosion; Ceramic kiln shelf, capable of supporting high-temperature bodies without deformation. Its high temperature stability and durability greatly extend equipment life and reduce operation and maintenance costs in high temperature scenarios.
Our Product Technical Support and Services for Alumina Ceramic Tiles include:
- Expert guidance on installation procedures and best practices.
- Troubleshooting assistance to address any issues with the product.
- Recommendations on maintenance and cleaning to prolong the lifespan of the tiles.
- Information on the product specifications and compatibility for different applications.
- Assistance with product warranties and returns if necessary.
Q: Where are these ceramic tiles produced?
A: They are manufactured in China.
Q: How are the ceramic tiles packaged?
A: The packaging details include wooden cases.
Q: What are the payment terms for purchasing these ceramic tiles?
A: The payment terms are either 100% in advance or 30% TT in advance with the balance payment before delivery.
Q: Are these ceramic tiles suitable for outdoor use?
A: Yes, these alumina ceramic tiles are suitable for both indoor and outdoor applications.