SILICON CARBIDE
| Spec. | Chemical Composition(%) | |||
| SiC | F.C | FeO | ||
| ≥ | ≤ | |||
| SiC98.5 | 98.5 | 1 | 0.6 | |
| SiC98 | 98 | 1 | 0.8 | |
| SiC97 | 97 | 1 | 1.0 | |
| SiC95 | 95 | 3 | 1.0 | |
| SiC90 | 90 | 5 | 1.2 | |
| SiC88 | 88 | 5 | 2.0 | |
| SIC85 | 85 | 10 | 2.5 | |
| Size | 0-10mm,1-10mm | |||
| Packing | 25kgs/50kgs/1MT/1.2MT jump bags | |||
Products Description
Silicon carbide or SiC is a compound made from silicon and carbon. It is also known as carborundum. Silicon carbide has a unique property of being able to withstand extreme temperatures and provide unique electrical properties.
SiC is composed of a tetrahedral structure of carbon and silicon atoms, which results in a highly durable and hard material. This unique property of SiC makes it ideal for use in a wide range of high-temperature and high-pressure applications such as cutting tools, abrasive materials, and wear-resistant parts.
Silicon carbide is a highly resistant material that can resist corrosion and erosion from harsh chemicals and abrasive materials. Its electrical properties also make it highly suitable for electronic applications. It is used in the making of power electronics like inverters, switches, and rectifiers.
One significant application of SiC is in the development of silicon carbide semiconductors. These semiconductors are capable of operating at a higher temperature than regular silicon-based semiconductors. This property makes them highly suitable for use in high-power electronic devices, such as those used in electric vehicles, aerospace, and defense applications.
Additionally, SiC is a highly efficient material and can be used to manufacture high-efficiency solar cells. Silicon carbide has a higher absorption coefficient than regular silicon, making it an excellent material for solar cells.
In summary, Silicon carbide is a versatile material with unique electrical and mechanical properties. Its high-temperature resistance and durability make it an ideal material for a wide range of applications, from cutting tools to semiconductors and solar cells. Its ability to withstand harsh conditions and resist corrosion also makes it ideal for use in the chemical and petrochemical industries. Its future is exciting and promising.
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