Boron Silicide Powder / SiB6 Powder
Boron Silicide Nanoparticles | |
Product No | NRE-5034 |
CAS No. | 12008-29-6 |
Formula | SiB6 |
APS | <100nm (Can be Customized) |
Purity | 99.9% |
Color | White |
Molecular Weight | 92.9515 g/mol |
Density | 2.4 g/mL |
Melting Point | 1950 °C |
Boiling Point | NA |
Boron Silicide Powder
Applications
Abrasives and Cutting Tools
Due to its hardness and abrasive nature, boron silicide powder is widely used in the manufacture of abrasives and cutting tools. It is particularly useful for grinding, polishing, and cutting tough materials such as metals, ceramics, and composites. Boron silicide-based abrasives help extend the life of tools and provide excellent performance in harsh industrial processes.
High-Temperature Materials
Boron silicide powder is commonly used in high-temperature applications due to its excellent thermal stability. It is used in the production of refractory materials such as coatings, heat shields, and thermal insulation materials for industries like aerospace, defense, and manufacturing. These materials can withstand extreme temperatures and provide effective protection for sensitive components.
Ceramics and Composite Materials
Boron silicide is often used as a reinforcing phase in the development of ceramic composites. The combination of boron silicide with other materials, such as silicon carbide (SiC) or alumina (Al₂O₃), results in composites with enhanced strength, wear resistance, and thermal conductivity. These materials are used in applications like armor plating, cutting tools, and structural components for high-performance machinery.
Nuclear Applications
Boron silicide powder has applications in nuclear reactor technology, particularly in the development of neutron absorbers. Boron has an excellent capacity to absorb neutrons, making boron silicide useful in nuclear fuel assemblies and control rods. In reactors, boron silicide serves to regulate neutron flux, ensuring the safety and efficiency of the reactor.
Heat-Resistant Coatings
Boron silicide powder is used in the creation of heat-resistant coatings for components that are exposed to extreme temperatures. These coatings are often applied to turbine blades, exhaust systems, and other high-temperature components in industries such as aerospace, automotive, and power generation. The coatings help protect the materials from thermal degradation and improve their longevity.
Electronics and Conductive Materials
Although boron silicide is an electrical conductor, it is not as conductive as metals or graphite. However, its moderate electrical conductivity makes it useful in electronic applications where controlled conductivity is required. It is used in certain high-temperature electronic devices and semiconductor components, particularly those that must operate in harsh environments.