Zinc Melting Crucible
Silicon Carbide Graphite Crucible for Zinc Melting - 1600°C Max Temperature, 5-1000kg Capacity
Industrial-grade silicon carbide graphite crucible designed for efficient zinc melting with 1600°C maximum temperature rating and 5-1000kg capacity range. Features exceptional thermal stability, oxidation resistance, and chemical inertness for non-ferrous metal applications. Manufactured using isostatic pressing technology for superior performance in foundries and metal casting operations.
Silicon Carbide-Graphite Zinc Melting Crucible 5kg-200kg Capacity 1200°C Temperature Rating
Professional SiC-C crucibles engineered for zinc melting and die-casting applications. Features non-wetting surface, enhanced oxidation resistance, and thermal shock stability. Delivers 40% longer lifespan than standard graphite crucibles with 25% better oxidation resistance. Available in custom designs for various furnace types.
5L Silicon Carbide Graphite Crucible for Zinc Melting - 400-800°C Operating Range with 50% Longer Lifespan
Professional silicon carbide graphite crucible designed for zinc melting and alloying applications. Features 400-800°C operating range, 20% energy savings, 50% reduced zinc adhesion, and ≤10% porosity for high-purity processing. Ideal for galvanizing, battery manufacturing, and zinc recycling with RoHS & REACH compliance.
300L Silicon Carbide Graphite Crucible for Zinc Melting - 400°C-800°C Range with 50% Adhesion Reduction
Precision-engineered silicon carbide graphite crucible optimized for zinc melting applications. Features 400°C-800°C operating range, 20% energy savings, 50% zinc adhesion reduction, and 30% extended service life. Ideal for galvanizing, zinc alloy production, and battery manufacturing with sizes from 5L to 300L capacity.
Silicon Carbide Graphite Crucible 40-50 W/mK Thermal Conductivity for Copper Melting in Induction Furnaces
High-temperature silicon carbide graphite crucible with 40-50 W/mK thermal conductivity at 800°C. Features exceptional corrosion resistance, rapid heat transfer, and superior thermal stability for melting copper, zinc, and aluminum. Designed for induction furnaces with long service life and reliable performance in industrial applications.