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Zirconium Silicide Powder

Zirconium Silicide Powder

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                                              Zirconium Silicide Powder
Product No NRE-5272-2
CAS No. 12039-90-6
Formula ZrSi2
APS < 40 um (Can be customized)
Purity 99.9%
Color Steel-gray powder
Molecular Weight 147.39 g/mol
Density 4.88 g/cm³
Melting Point 1520°C to 1620°C

Zirconium Silicide Powder

Zirconium Silicide (ZrSi₂) powder is a high-performance ceramic material known for its excellent oxidation resistance, high melting point, superior thermal stability, good electrical conductivity, and exceptional hardness. These unique properties make it valuable across several advanced industrial and scientific applications.

One of the primary applications of zirconium silicide powder is in high-temperature structural ceramics. It is used to manufacture components that operate under extreme thermal conditions, such as furnace parts, heat shields, and thermal protection systems for aerospace and defense industries. Its ability to maintain strength and resist oxidation at elevated temperatures significantly improves component durability.

In the electronics and semiconductor industry, zirconium silicide serves as a conductive material for thin films, electrical contacts, diffusion barriers, and microelectronic devices. Its low electrical resistivity and compatibility with silicon-based technologies make it suitable for integrated circuits and advanced semiconductor fabrication.

Zirconium silicide powder is also widely used in the production of wear-resistant coatings. When applied through thermal spray or powder metallurgy techniques, it forms hard, durable coatings that protect machinery, cutting tools, and industrial equipment from abrasion, corrosion, and high-temperature degradation. These coatings help extend equipment service life while reducing maintenance costs.

Another important application is in composite materials. Zirconium silicide is incorporated into ceramic matrix composites (CMCs) and ultra-high-temperature ceramics (UHTCs) to enhance mechanical strength, fracture toughness, thermal shock resistance, and oxidation resistance. These composites are utilized in hypersonic vehicles, rocket nozzles, and gas turbine components.

The material is also employed in powder metallurgy to produce dense, high-strength parts with excellent dimensional stability. These components are used in automotive, aerospace, and energy industries where reliable performance under harsh operating conditions is essential.

Additionally, zirconium silicide powder is finding increasing use in research and advanced materials development, including nanotechnology, energy systems, and next-generation protective coatings. Its combination of thermal, mechanical, and electrical properties makes it an attractive material for innovative engineering solutions.

Overall, zirconium silicide powder is an essential advanced material that supports high-temperature, high-performance applications across aerospace, electronics, energy, defense, and industrial manufacturing, where reliability, durability, and superior material performance are critical.

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