The search for suitable additives for boron suboxide (B 6O) materials which could improve densification, reduce sintering temperature and tailor the microstructure has been productive. B 6O materials doped with 0-5vol% cobalt addition were sintered at temperatures up to 1850°C and pressure of 50MPa for 20min. Relationships between the formed phases, microstructures and mechanical properties of the sintered materials were investigated as a function of sintering conditions and added cobalt content. The hardness of the sintered B 6O materials increases with sintering temperature, while the fracture toughness increases with increasing cobalt content and reduces with increasing sintering temperature
Boron suboxide (B6O) powder was synthesized at temperatures of about 1400 degrees C from the reactio...
B6O is a potential superhard material with a hardness of 45 GPa measured on single crystals. Recentl...
B6O is a potential superhard material with a hardness of 45 GPa measured on single crystals. Recentl...
The search for suitable sintering additives for boron suboxide (B6O) materials which could improve d...
B6O is a possible candidate as a superhard material with a hardness of 45 GPa measured on single cry...
The basis of this study is that the mechanical properties of Boron suboxide (B6O) materials, especia...
B6O-based materials are known as some of the hardest materials after diamond and cubic boron nitride...
With a hardness of up to 45 GPa and a fracture toughness of 4.5 MPa*m1/2 measured on single crystals...
With a hardness up to 45 GPa measured on single crystals and a fracture toughness even exceeding tha...
Fully densified B6O materials with Al2O3/Y2O3 sintering additives amounts systematically varied betw...
B6O materials were prepared by a reactive and a non-reactive sintering routine using FAST/SPS and si...
B6O composites were prepared by hot pressing of B6O powder with alumina, aluminium and carbon additi...
The problem of low fracture toughness and the difficulties to densify has delayed the application o...
Boron suboxide (B6O) based materials containing TiB2 additions were produced in this study via two r...
This study investigated and compared the mechanical properties of boron suboxide (B6O) with and with...
Boron suboxide (B6O) powder was synthesized at temperatures of about 1400 degrees C from the reactio...
B6O is a potential superhard material with a hardness of 45 GPa measured on single crystals. Recentl...
B6O is a potential superhard material with a hardness of 45 GPa measured on single crystals. Recentl...
The search for suitable sintering additives for boron suboxide (B6O) materials which could improve d...
B6O is a possible candidate as a superhard material with a hardness of 45 GPa measured on single cry...
The basis of this study is that the mechanical properties of Boron suboxide (B6O) materials, especia...
B6O-based materials are known as some of the hardest materials after diamond and cubic boron nitride...
With a hardness of up to 45 GPa and a fracture toughness of 4.5 MPa*m1/2 measured on single crystals...
With a hardness up to 45 GPa measured on single crystals and a fracture toughness even exceeding tha...
Fully densified B6O materials with Al2O3/Y2O3 sintering additives amounts systematically varied betw...
B6O materials were prepared by a reactive and a non-reactive sintering routine using FAST/SPS and si...
B6O composites were prepared by hot pressing of B6O powder with alumina, aluminium and carbon additi...
The problem of low fracture toughness and the difficulties to densify has delayed the application o...
Boron suboxide (B6O) based materials containing TiB2 additions were produced in this study via two r...
This study investigated and compared the mechanical properties of boron suboxide (B6O) with and with...
Boron suboxide (B6O) powder was synthesized at temperatures of about 1400 degrees C from the reactio...
B6O is a potential superhard material with a hardness of 45 GPa measured on single crystals. Recentl...
B6O is a potential superhard material with a hardness of 45 GPa measured on single crystals. Recentl...