F46
$165.00
제품 요약
High-quality silicon carbide material designed for industrial applications with superior performance characteristics.
ISO Certified
ISO 9001 / 14001 / 45001
Premium Quality
Rigorous testing standards
Fast Delivery
Reliable logistics network
Expert Support
24/7 technical assistance
제품 상세
Product Details
The high-quality Black Crystal Silicon Carbide of our company is manufactured with high precision using premium quartz sand and petroleum coke under conditions of high temperatures exceeding 2,500°C in electric furnaces.
Technological Characteristics
- Due to optimized furnace conditions, crystallization occurs better, which leads to the development of large crystals, high purity of the product, and low contamination
- Hardness and wear resistance make the components more durable and decrease their frequency of change
- Complete purification from impurities using water and chemical cleaning ensures surface cleanliness and batch homogeneity
- Specialized surface treatment helps to increase purity, enhance impact resistance, and improve grinding efficiency
- High resistance to thermal shock, irradiation, and extremely high temperature
- Balanced conductivity allows various technological uses
Fields of Application
- Metallurgical deoxidizer and heat-resistant refractory used in smelting and casting technologies
- Base raw material used for making various abrasive tools such as grinding wheels, oil stones, and grinding heads
- Modern steelmaking material that acts as deoxidizer and thermal insulator
Advantages of Use
By adding this silicon carbide grade at 14 kg per metric ton, significant positive changes can be made. The consumption of electricity decreases by 15–20 kWh per cycle, and the processing time decreases by 15–20 minutes per batch. Also, there is an increase in productivity by 8–10%. An effective and highly profitable tool for businesses aiming at efficient production.
Micronized Particle Size Composition Comparison Table
Comparison of particle size standards across China GB-2476-83, GB/T 2481.2-1998, and Japan JISR6001-1987