
Widely used in industries such as aerospace high-temperature alloys, superconducting alloys, titanium alloys, and stainless steel, ensuring an efficient and stable production process, safeguarding high-quality production for customers. The performance of this crucible is comparable to imported materials and can be used stably at high temperatures of 1600 degrees Celsius for a long time, featuring resistance to cracking, minimal slagging, high strength, and excellent thermal shock stability. It adopts a net size in-situ forming process, ensuring dimensional accuracy and structural integrity.
Features & Advantages
۞ Adopts net size in-situ forming, with uniform composition and high density;
۞ High purity, excellent resistance to high-temperature alloy corrosion;
۞ Excellent thermal shock stability, can be reused multiple times without defects;
۞ Good temperature resistance, long-term use at 1600℃.
Index Parameters
Material | Volume Density (g/cm³) | Porosity (%) | Common Compressive Strength (Mpa) | On-site Condition Simulation Thermal Shock |
Al2O3、SiO2 | 2.0-2.5 | 20-27 | >10Mpa | High-frequency induction furnace melting at 1550℃, tested repeatedly more than 8 times. |
Ceramic crucible liners

Key words:
Ceramic crucible liners
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Based on the innovation in the technical field of high temperature industry, we continue to explore and solve the needs of high-end high-temperature resistant materials and their applications.
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