High-Performance Crucibles for Extreme Temperature Applications
Product Overview
Specifically engineered for aluminum melting and casting, our Silicon Carbide (SiC) Crucibles deliver exceptional thermal performance and longevity. Designed to operate seamlessly at temperatures up to 1600°C (2912°F), these crucibles are the go-to choice for aluminum foundries, recycling plants, and die-casting operations seeking to enhance productivity and reduce costs.
Product Advantages
1. Superior Material Performance
- Anti-oxidation: Enhanced resistance to oxidation for prolonged durability.
- Excellent Thermal Conductivity: Efficient heat transfer to optimize smelting processes.
- Extended Service Life: Long-lasting performance, reducing replacement frequency.
2. Energy Efficiency
- Significant energy-saving properties, lowering operational costs for clients.
3. Cost-Effectiveness
- Reduces production costs for non-ferrous metal smelting enterprises while improving productivity.
4. Advanced Manufacturing Process
- Produced via static pressing technology, ensuring consistency and structural integrity.
Rapid Heat Transfer: Ensures quick and even heat distribution, cutting melting time by up to 25%.
High-Temperature Stability: Maintains structural integrity even under extreme thermal conditions.
Crack Resistance: Withstands thermal shock and mechanical stress, significantly reducing downtime.
Oxidation Protection: Advanced coating technology minimizes oxidation, extending crucible life by 2-3 times compared to traditional options.
Corrosion Resistance: Specially formulated to resist the corrosive effects of molten aluminum and fluxes.
Smooth Inner Surface: Prevents aluminum adherence, making cleaning and maintenance effortless.
Available in a range of sizes and shapes to fit your specific furnace setup.
Optional reinforced edges and ergonomic handles for enhanced safety and ease of use.
Parameter | Value |
---|---|
Material | Silicon Carbide (SiC) |
Maximum Temperature | 1600°C (2912°F) |
Density | 2.8-3.0 g/cm³ |
Porosity | ≤15% |
Thermal Conductivity | 120-150 W/m·K |
Service Life | 2-3 times longer than graphite crucibles |