REG Metals supplies High Purity Silicon Carbide Powder (SiC Powder) for semiconductor manufacturing, advanced ceramics, abrasives, power electronics, thermal management, metallurgy, aerospace, defense, and research applications. Silicon carbide is a high-performance ceramic material known for its exceptional hardness, high thermal conductivity, excellent wear resistance, chemical inertness, and outstanding performance in high-temperature environments.
High Purity Silicon Carbide Powder is widely used in semiconductor wafer production, ceramic components, sintered parts, thermal interface materials, composite materials, refractory products, lapping and polishing compounds, and additive manufacturing. With controlled particle size distribution and extremely low impurity levels, it is ideal for applications requiring consistent material performance and high reliability.
REG Metals supplies high-purity Silicon Carbide Powder in a wide range of particle sizes, including nano, submicron, micron, and coarse grades for research, prototype development, and industrial production. Every shipment can be supplied with a Certificate of Analysis (COA) and complete material traceability.
High Purity Silicon Carbide Powder
High Purity
- Extremely low impurity content.
- Consistent chemical composition.
- Suitable for semiconductor and advanced ceramic applications.
Exceptional Hardness
- Excellent wear resistance.
- Ideal for abrasive and cutting applications.
- Long service life.
Excellent Thermal Conductivity
- Efficient heat dissipation.
- Suitable for thermal management applications.
- High-temperature stability.
Superior Chemical Resistance
- Resistant to acids, alkalis, and oxidation.
- Excellent corrosion resistance.
- Reliable performance in harsh environments.
Controlled Particle Size
- Uniform particle size distribution.
- Excellent flowability.
- Optimized for ceramic processing and powder metallurgy.
High Temperature Performance
- Outstanding thermal stability.
- Suitable for demanding industrial environments.
- Excellent resistance to thermal shock.

