Hafnium boride

99% (metals basis excluding Zr), Zr 2%

  • Product Code: 56476
  CAS:    12007-23-7
Molecular Weight: 200.11 g./mol Molecular Formula: HfB₂
EC Number: 234-500-7 MDL Number: MFCD00016125
Melting Point: 3250°C Boiling Point:
Density: 10.5 Storage Condition: room temperature
Product Description: Hafnium boride is primarily used in high-temperature environments due to its exceptional thermal stability and resistance to oxidation. It is commonly applied as a coating material for components in aerospace and defense industries, such as rocket nozzles and thermal protection systems, where it can withstand extreme heat and mechanical stress. Additionally, its high hardness and wear resistance make it suitable for use in cutting tools and wear-resistant coatings. In the field of nuclear energy, hafnium boride is utilized as a neutron absorber in control rods, helping to regulate nuclear reactions. Its electrical conductivity also enables its use in electronic applications, particularly in high-temperature electrodes and sensors.
Product Specification:
Test Specification
AVERAGE PARTICLE SIZE 200mesh 300mesh
BORON 10.2-11.4
ANALYSISEXCLUDING ZR2 99.5-100
ZR2 0-5000
ZR 0 2%
APPEARANCE Grey powder
X-RAY DIFFRACTION Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
2.000 10-20 days ฿1,060.00
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-
10.000 10-20 days ฿3,220.00
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-
50.000 10-20 days ฿10,680.00
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Hafnium boride
Hafnium boride is primarily used in high-temperature environments due to its exceptional thermal stability and resistance to oxidation. It is commonly applied as a coating material for components in aerospace and defense industries, such as rocket nozzles and thermal protection systems, where it can withstand extreme heat and mechanical stress. Additionally, its high hardness and wear resistance make it suitable for use in cutting tools and wear-resistant coatings. In the field of nuclear energy, hafnium boride is utilized as a neutron absorber in control rods, helping to regulate nuclear reactions. Its electrical conductivity also enables its use in electronic applications, particularly in high-temperature electrodes and sensors.
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