A simple method to obtain a highly refractory HfB2-based ceramic nano-composite is presented. The boride was hot pressed with additions of SiC and WC particles and subsequently annealed at 2100°C for 2 hours. The annealing procedure was beneficial for high temperature strength, which increased by about 300 MPa in the 1500°C to 1800°C temperature range compared to the as-sintered material. Peak strengths of 850 MPa at 1500°C and 650 MPa at 1800°C were achieved due to two main microstructural changes. First, rounded SiC particles that were surrounded by a silica-based glass in the as-sintered ceramics evolved into platelets with mostly clean grain boundaries after heat treatment. In addition, the (Hf,W)B2 solid solution that formed as shells ...
High performance Ultra-High-Temperature Composites (based on zirconium and hafnium borides) are char...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Hafnium diboride based ceramics are promising candidate materials for advanced aerospace and nuclear...
A simple method to obtain a highly refractory HfB2-based ceramic nano-composite is presented. The bo...
A boron-containing SiHfC(N,O) amorphous ceramic was synthesized upon pyrolysis of a single-source-pr...
The evolution of the multi-scale microstructure of a (Zr,Ta)B2 solid solution was studied as a funct...
Please click Additional Files below to see the full abstract. Please click Download on the upper rig...
Ceramic materials having melting points higher than 3000 °C and suitable for structural application...
In this study, a novel composite was fabricated by adding the Hafnium diboride (HfB2) to conventiona...
High performance Ultra-High-Temperature Composites (based on zirconium-, hafnium-, tantalum- borides...
Borides and carbides of tantalum and hafnium are of great interest due to their ultrahigh temperatur...
The object of research is HfB2, ZrB2 and ceramics composition HfB2-30 % SiC and ZrB2-20 % SiC, ZrB2-...
The object of research is HfB2, ZrB2 and ceramics composition HfB2-30 % SiC and ZrB2-20 % SiC, ZrB2-...
Boron carbide is light-weight, is thermally stable, has high hardness/stiffness, and is multi-functi...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
High performance Ultra-High-Temperature Composites (based on zirconium and hafnium borides) are char...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Hafnium diboride based ceramics are promising candidate materials for advanced aerospace and nuclear...
A simple method to obtain a highly refractory HfB2-based ceramic nano-composite is presented. The bo...
A boron-containing SiHfC(N,O) amorphous ceramic was synthesized upon pyrolysis of a single-source-pr...
The evolution of the multi-scale microstructure of a (Zr,Ta)B2 solid solution was studied as a funct...
Please click Additional Files below to see the full abstract. Please click Download on the upper rig...
Ceramic materials having melting points higher than 3000 °C and suitable for structural application...
In this study, a novel composite was fabricated by adding the Hafnium diboride (HfB2) to conventiona...
High performance Ultra-High-Temperature Composites (based on zirconium-, hafnium-, tantalum- borides...
Borides and carbides of tantalum and hafnium are of great interest due to their ultrahigh temperatur...
The object of research is HfB2, ZrB2 and ceramics composition HfB2-30 % SiC and ZrB2-20 % SiC, ZrB2-...
The object of research is HfB2, ZrB2 and ceramics composition HfB2-30 % SiC and ZrB2-20 % SiC, ZrB2-...
Boron carbide is light-weight, is thermally stable, has high hardness/stiffness, and is multi-functi...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
High performance Ultra-High-Temperature Composites (based on zirconium and hafnium borides) are char...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Hafnium diboride based ceramics are promising candidate materials for advanced aerospace and nuclear...