Fineceratech's Mullite Cordierite Ceramic Ash Crucibles are expertly engineered to deliver superior performance and durability in high-temperature environments. By combining the advantageous properties of mullite and cordierite, these crucibles offer exceptional thermal shock resistance, low thermal expansion, and high mechanical strength. They are particularly well-suited for ash analysis and other demanding industrial applications, ensuring reliable and long-lasting performance.
- The unique blend of mullite and cordierite provides excellent thermal shock resistance, enabling the crucibles to withstand rapid temperature changes without cracking or deteriorating.
- The low coefficient of thermal expansion ensures dimensional stability, minimizing the risk of thermal stress and ensuring consistent performance in high-temperature applications.
- These crucibles exhibit high mechanical strength, ensuring durability and reliability even in the most demanding conditions.
- Excellent resistance to a wide range of chemicals, including acids and alkalis, ensures long-lasting performance in chemically aggressive environments.
- Manufactured from high-purity mullite and cordierite, these crucibles offer minimal contamination, which is crucial for sensitive high-temperature applications such as ash analysis.
- Produced with high precision to ensure optimal fit and performance, enhancing the efficiency and reliability of your high-temperature processes.
- Ideal for ash content determination in various materials, offering precise and reliable performance.
- Suitable for melting and refining metals due to their excellent thermal shock resistance and high mechanical strength.
- Perfect for high-temperature applications in ceramic and glass manufacturing, where consistent performance and durability are essential.
- Ideal for use in chemical processing equipment, providing excellent resistance to corrosive chemicals and high temperatures.
- Used in research laboratories for high-temperature experiments, offering reliable performance and precision.
- Suitable for various heat treatment processes, ensuring stability and durability under extreme temperatures.
- Employed in the electronics industry for high-temperature processes, providing excellent thermal stability and chemical resistance.
- Density: 2.5 - 2.8 g/cm³
- Young’s Modulus: 120 - 150 GPa
- Flexural Strength: 100 - 150 MPa
- Thermal Conductivity: 2 - 4 W/mK
- Coefficient of Thermal Expansion: 2.5 - 3.5 x 10⁻⁶/K
- Operating Temperature Range: Up to 1400°C
- Chemical Resistance: Excellent against acids, alkalis, and solvents
- Dimensions: Customizable to meet specific application requirements
- Extended Service Life: High resistance to thermal shock, chemical attack, and wear extends the lifespan of the crucibles, reducing maintenance and replacement costs.
- Cost Efficiency: Reduced maintenance and downtime lead to lower overall operational costs.
- Reliable Performance: Consistent performance in variable conditions ensures stable and efficient operation in diverse applications.
- Precision Engineering: Manufactured with high precision to ensure optimal fit and performance, enhancing the efficiency of your processes.