A carbide boronizing method was first developed to produce dense boron carbide- zirconium diboride (“B₄C”–ZrB₂) composites from zirconium carbide (ZrC) and amorphous boron powders (B) by Spark Plasma Sintering at 1800°C–2000°C. The stoichiometry of “B₄C” could be tailored by changing initial boron content, which also has an influence on the processing. The self-propagating high-temperature synthesis could be ignited by 1 mol ZrC and 6 mol B at around 1240°C, whereas it was suppressed at a level of 10 mol B. B₈C–ZrB₂ ceramics sintered at 1800°C with 1 mole ZrC and 10 mole B exhibited super high hardness (40.36 GPa at 2.94 N and 33.4 GPa at 9.8 N). The primary reason for the unusual high hardness of B₈C–ZrB₂ ceramics was considered to be the ...
Fully dense ZrB2-SiC and HfB2-SiC ultra-high-temperature ceramics (UHTCs) composites are fabricated ...
Fully densified ZrB 2-based ceramic composites were produced by reactive pulsed electric current sin...
A novel method for the fabrication of fully dense ZrB2-ZrC-SiC Ultra High Temperature Ceramic (UHTC)...
Boron carbide is characterized by a unique combination of low density (2.52 g/cm3), high hardness (u...
Next generation aerospace vehicles require thermal protection system (TPS) materials that are capabl...
Submicrometer sized B₄C-30 vol% ZrB₂ ceramic composites were made both by one-step in situ pulsed el...
Boron carbide is characterized by a unique combination of low density (2.52 g/cm3), high hardness (u...
Silicon carbide has a high melting point, high mechanical and elastic properties and excellent chemi...
Submicrometer sized B4C-30 vol% ZrB2 ceramic composites were made both by one-step in situ pulsed el...
The Self-propagating High-temperature Synthesis (SHS) technique and the Spark Plasma Sintering (SPS)...
The Self-propagating High-temperature Synthesis (SHS) technique and the Spark Plasma Sintering (SPS)...
Boron carbide is a material of choice for many industrial and specialty applications due to the exce...
The present study was concerned with the high temperature sintering behaviour of zirconium diboride ...
International audienceBoron carbide samples exhibiting different microstructures were sintered by Sp...
Boron carbide B4C powders were subject to reactive spark plasma sintering (also known as field assis...
Fully dense ZrB2-SiC and HfB2-SiC ultra-high-temperature ceramics (UHTCs) composites are fabricated ...
Fully densified ZrB 2-based ceramic composites were produced by reactive pulsed electric current sin...
A novel method for the fabrication of fully dense ZrB2-ZrC-SiC Ultra High Temperature Ceramic (UHTC)...
Boron carbide is characterized by a unique combination of low density (2.52 g/cm3), high hardness (u...
Next generation aerospace vehicles require thermal protection system (TPS) materials that are capabl...
Submicrometer sized B₄C-30 vol% ZrB₂ ceramic composites were made both by one-step in situ pulsed el...
Boron carbide is characterized by a unique combination of low density (2.52 g/cm3), high hardness (u...
Silicon carbide has a high melting point, high mechanical and elastic properties and excellent chemi...
Submicrometer sized B4C-30 vol% ZrB2 ceramic composites were made both by one-step in situ pulsed el...
The Self-propagating High-temperature Synthesis (SHS) technique and the Spark Plasma Sintering (SPS)...
The Self-propagating High-temperature Synthesis (SHS) technique and the Spark Plasma Sintering (SPS)...
Boron carbide is a material of choice for many industrial and specialty applications due to the exce...
The present study was concerned with the high temperature sintering behaviour of zirconium diboride ...
International audienceBoron carbide samples exhibiting different microstructures were sintered by Sp...
Boron carbide B4C powders were subject to reactive spark plasma sintering (also known as field assis...
Fully dense ZrB2-SiC and HfB2-SiC ultra-high-temperature ceramics (UHTCs) composites are fabricated ...
Fully densified ZrB 2-based ceramic composites were produced by reactive pulsed electric current sin...
A novel method for the fabrication of fully dense ZrB2-ZrC-SiC Ultra High Temperature Ceramic (UHTC)...