International audienceZrB2 is one of the most promising materials for extreme environment applications, especially in the aerospace field, due to the combination of superior thermophysical properties and low density. Nevertheless, pure ZrB2 is intrinsically hard to sinter, requiring either the application of intense external pressure or the use of sintering aids. In the present work, the feasibility of ultrafast high-temperature sintering (UHS) for the densification of commercial ZrB2 was explored. Thanks to the addition of B4C as a sintering aid, Densities up to 92-98% could be obtained in just 2 min. Hardness of 16.3-17.8 GPa was obtained for the UHS ZrB2-based ceramics, similar to what is reported in the literature using slower, more sop...
Fully densified ZrB 2-based ceramic composites were produced by reactive pulsed electric current sin...
Zirconium diboride, ZrB2, based materials have been proposed for structural applications at ultra-hi...
The Self-propagating High-temperature Synthesis (SHS) technique and the Spark Plasma Sintering (SPS)...
International audienceZrB2 is one of the most promising materials for extreme environment applicatio...
Among ultra high temperature ceramics (UHTCs), ZrB2-based ceramics have received the most attention ...
A detailed study on the sintering behavior of zirconium diboride powder produced by the self-propaga...
A detailed study on the sintering behavior of zirconium diboride powder produced by the self-propaga...
Pressureless sintering of ultrafine zirconium diboride ZrB2 powder produced by a self-propagating hi...
Sintering mechanisms and kinetics were investigated for ZrB2 ceramics produced using reaction hot pr...
The high melting temperature of ultra-high temperature ceramics (UHTCs) makes ZrB2-based composites ...
Zirconium diboride (ZrB2) ceramics were sintered to a relative density of ∼98% without applied exter...
Ultra-high temperature ceramics (UHTCs) exhibit a number of properties (thermal and chemical stabili...
Spark plasma sintering (SPS) is one of the most advanced techniques for consideration of highly refr...
The low-temperature sintering of zirconium diboride (ZrB2) using aluminum borocarbide (Al3BC3) as an...
Dense (>98%) submicron sized monolithic zirconium diboride (ZrB2) was fabricated by Reactive Spa...
Fully densified ZrB 2-based ceramic composites were produced by reactive pulsed electric current sin...
Zirconium diboride, ZrB2, based materials have been proposed for structural applications at ultra-hi...
The Self-propagating High-temperature Synthesis (SHS) technique and the Spark Plasma Sintering (SPS)...
International audienceZrB2 is one of the most promising materials for extreme environment applicatio...
Among ultra high temperature ceramics (UHTCs), ZrB2-based ceramics have received the most attention ...
A detailed study on the sintering behavior of zirconium diboride powder produced by the self-propaga...
A detailed study on the sintering behavior of zirconium diboride powder produced by the self-propaga...
Pressureless sintering of ultrafine zirconium diboride ZrB2 powder produced by a self-propagating hi...
Sintering mechanisms and kinetics were investigated for ZrB2 ceramics produced using reaction hot pr...
The high melting temperature of ultra-high temperature ceramics (UHTCs) makes ZrB2-based composites ...
Zirconium diboride (ZrB2) ceramics were sintered to a relative density of ∼98% without applied exter...
Ultra-high temperature ceramics (UHTCs) exhibit a number of properties (thermal and chemical stabili...
Spark plasma sintering (SPS) is one of the most advanced techniques for consideration of highly refr...
The low-temperature sintering of zirconium diboride (ZrB2) using aluminum borocarbide (Al3BC3) as an...
Dense (>98%) submicron sized monolithic zirconium diboride (ZrB2) was fabricated by Reactive Spa...
Fully densified ZrB 2-based ceramic composites were produced by reactive pulsed electric current sin...
Zirconium diboride, ZrB2, based materials have been proposed for structural applications at ultra-hi...
The Self-propagating High-temperature Synthesis (SHS) technique and the Spark Plasma Sintering (SPS)...