Densification behavior and microstructure evolution of hot-pressed HfB2 were studied. when unmilled HfB2 was hot pressed at 2200°C, the resulting ceramics contained open porosity (85.8%ρth.). in contrast, attrition-milled HfB2 containing ∼0.7 wt% WC-Co milling contamination could be hot pressed to \u3e98% density at temperatures as low as 1900°C. the addition of either boron carbide (4 wt%) or carbon (2 wt%) improved densification and reduced the temperature necessary to reach full density to 1750° and 1850°C, respectively. Full density (\u3e99%) was achieved for additive free, attrition-milled HfB2 at temperatures of 1950°C or higher. Fully dense HfB2 was also produced with the addition of 1 wt% carbon, although 2.1 vol% residual carbon re...
Zirconium diboride-silicon carbide ceramics with relative densities in excess of 95% were produced b...
M.Tech.A mixture of HfC and TiC powders and a (Hf,Ti)C powder have been hot pressed with 4wt% Ni. In...
Boron powder was synthetized by reducing a boron halide in a microwave plasma : BCl3 + 3/2 H2[MATH]B...
Hafnium diboride was densified below 2000°C using B4C and carbon additions. Attrition milled HfB2 co...
Densification behavior and thermal properties of hot-pressed HfB2-BxC particulate composites were st...
Hafnium diboride based ceramics are promising candidate materials for advanced aerospace and nuclear...
Monolithic HfB2 samples were produced by SPS at 1800 °C and 2050 °C with two heating rates of 77 °C/...
This paper discusses the use of Plasma Pressure Compaction to consolidate hafnium diboride powders. ...
In this study, a novel composite was fabricated by adding the Hafnium diboride (HfB2) to conventiona...
The reaction of zirconium and boron was investigated as a potential route to form dense monolithic z...
The present work describes a simple process to synthesise HfB2 powder with sub-micron sized particle...
The densification behavior of transition metal diboride compounds was reviewed with emphasis on ZrB2...
A simple method to obtain a highly refractory HfB2-based ceramic nano-composite is presented. The bo...
A simple method to obtain a highly refractory HfB2-based ceramic nano-composite is presented. The bo...
Spark Plasma Sintering is used for the fabrication of highly dense HfB2 monolithic and HfB2-26vol.% ...
Zirconium diboride-silicon carbide ceramics with relative densities in excess of 95% were produced b...
M.Tech.A mixture of HfC and TiC powders and a (Hf,Ti)C powder have been hot pressed with 4wt% Ni. In...
Boron powder was synthetized by reducing a boron halide in a microwave plasma : BCl3 + 3/2 H2[MATH]B...
Hafnium diboride was densified below 2000°C using B4C and carbon additions. Attrition milled HfB2 co...
Densification behavior and thermal properties of hot-pressed HfB2-BxC particulate composites were st...
Hafnium diboride based ceramics are promising candidate materials for advanced aerospace and nuclear...
Monolithic HfB2 samples were produced by SPS at 1800 °C and 2050 °C with two heating rates of 77 °C/...
This paper discusses the use of Plasma Pressure Compaction to consolidate hafnium diboride powders. ...
In this study, a novel composite was fabricated by adding the Hafnium diboride (HfB2) to conventiona...
The reaction of zirconium and boron was investigated as a potential route to form dense monolithic z...
The present work describes a simple process to synthesise HfB2 powder with sub-micron sized particle...
The densification behavior of transition metal diboride compounds was reviewed with emphasis on ZrB2...
A simple method to obtain a highly refractory HfB2-based ceramic nano-composite is presented. The bo...
A simple method to obtain a highly refractory HfB2-based ceramic nano-composite is presented. The bo...
Spark Plasma Sintering is used for the fabrication of highly dense HfB2 monolithic and HfB2-26vol.% ...
Zirconium diboride-silicon carbide ceramics with relative densities in excess of 95% were produced b...
M.Tech.A mixture of HfC and TiC powders and a (Hf,Ti)C powder have been hot pressed with 4wt% Ni. In...
Boron powder was synthetized by reducing a boron halide in a microwave plasma : BCl3 + 3/2 H2[MATH]B...