Hafnium diboride HfB2 powder physicochemical properties
Excellent! High-temperature ceramic material HfB2 is very hot (3380). It is highly pure and has small particles. Hafnium Diboride reacts nearly completely at room temperature with all chemical agents except HF.
Hafnium Diboride HfB2 Powder Properties | |
Other names | hafnium boride, HfB2 powder |
CAS No. | 12007-23-7 |
Formula compound | HfB2 |
Molecular Weight | 200.112 |
Appearance | black powder |
Melting Point | 3250 degC |
Boiling Point | N/A |
Density | 10.5g/cm3 |
Solubility of H2O | N/A |
Exact Mass | 201.965161 |
Applications of Hafnium Diboride HafB2 powder
Hafnium Diboride is known for its high hardness and modulus, high thermal conductivity, high electrical conductivity, as well as high electrical conductivity. High-temperature ceramics, high velocity aircraft nose cones, aviation, aerospace, among other fields are the main uses of hafnium diboride. It could be used as a candidate material for high temperature ceramics.
What is Ultra-High-Temperature Ceramics (UHTCs)?
Ultra-high temperature ceramics Refractory is a class that has excellent stability at temperatures exceeding 2000°C. They are being investigated as materials for thermal protection (TPS), for coatings for materials that resist high temperatures and for bulk materials heating elements.
In the 1960s, the aerospace industry was looking for high-temperature materials. The AIR Force Materials Laboratory began funding the development of a material capable of surviving the environment of hypersonic aircraft like the Boeing X-. The fire resistance of binary ceramics was studied in detail. They found that the early transitional metals, such as carbides, borides, and Nitrides, had remarkable thermal conductivity, resistance to oxidation, and good mechanical strength. ZrB2 (about 20% volume SiC) and HfB2 are the most effective.
UHTC, broadly speaking, is a boride and carbide, an oxide, nitride or nitride of early-transition metals. Hafnium diboride, (HfB2), and zirconium triboride (ZrB2) are the current focus of research. Other UHTC that are being considered for TPS applications include titanium carbide, titanium nitride and zirconium oxide (ZrN), hafnium triboride (HfN), hafnium dioxide (ThO2) as well as titanium nitride and titanium nitride.
Diborides have a higher thermal conductivity and lower melting points than carbides or nitrides. This gives them excellent thermal shock resistance, making them suitable for many high-temperature applications.
Hafnium Diboride HfB2 Powder Price
The price of Hafnium diboride (HfB2) powder is affected by many factors, including market trends, the supply and the demand, and unexpected events.
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