Sintering behavior of nano-sized titanium diboride (TiB2) powder prepared by a self-propagating high-temperature synthesis (SHS) technique was compared with that of the commercially available powder. The SHS-made powder showed excellent sinterability at low temperatures and a maximum of 97% densification was achieved at 2223 K, whereas the identically sintered commercial powder could only be densified to ∼86% at 2223 K. The estimated activation energies for sintering of 35±0.07 kJ/mole and 46±0.7 kJ/mole for the SHS and commercial powder, respectively, indicated the possibility of a different mechanism during sintering
TiB2 and TiB2x2013;TiC composite compacts with 98x2013;99% density are prepared by high-pressure sin...
Titanium, its alloys, and refractory compounds are often used in the compositions of surfacing mater...
AbstractTaB2 is a material from the Ultra High Temperature Ceramics group and is rather unexplored b...
A systematic study on the sintering behaviour of titanium diboride (TiB2) powder of different partic...
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...
Fe-40wt% TiB2 nanocomposites were fabricated by mechanical activation and spark-plasma sintering of ...
In this study, Fe-40wt% TiB2 nanocomposite powders were fabricated by two different methods: (1) co...
Pressureless sintering of ultrafine zirconium diboride ZrB2 powder produced by a self-propagating hi...
The effect of hot-pressing temperature on the densification behavior and mechanical properties of ti...
<p>In this study, dense fine-grained ZrB<sub>2</sub> and TiB<sub>2</sub> were fabricated using react...
This study determined the optimal concentration of titanium diboride (TiB2) particles for the develo...
In this work, the fabrication of bulk TiC0.7/TiB2 nanostructured composites through metastable trans...
The present overview focuses on self-propagating high-temperature synthesis (SHS) of powders for the...
The cold compaction and vacuum sintering behaviour of a Ti powder and a Ti hydride powder were compa...
TiB2 and TiB2x2013;TiC composite compacts with 98x2013;99% density are prepared by high-pressure sin...
Titanium, its alloys, and refractory compounds are often used in the compositions of surfacing mater...
AbstractTaB2 is a material from the Ultra High Temperature Ceramics group and is rather unexplored b...
A systematic study on the sintering behaviour of titanium diboride (TiB2) powder of different partic...
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...
Fe-40wt% TiB2 nanocomposites were fabricated by mechanical activation and spark-plasma sintering of ...
In this study, Fe-40wt% TiB2 nanocomposite powders were fabricated by two different methods: (1) co...
Pressureless sintering of ultrafine zirconium diboride ZrB2 powder produced by a self-propagating hi...
The effect of hot-pressing temperature on the densification behavior and mechanical properties of ti...
<p>In this study, dense fine-grained ZrB<sub>2</sub> and TiB<sub>2</sub> were fabricated using react...
This study determined the optimal concentration of titanium diboride (TiB2) particles for the develo...
In this work, the fabrication of bulk TiC0.7/TiB2 nanostructured composites through metastable trans...
The present overview focuses on self-propagating high-temperature synthesis (SHS) of powders for the...
The cold compaction and vacuum sintering behaviour of a Ti powder and a Ti hydride powder were compa...
TiB2 and TiB2x2013;TiC composite compacts with 98x2013;99% density are prepared by high-pressure sin...
Titanium, its alloys, and refractory compounds are often used in the compositions of surfacing mater...
AbstractTaB2 is a material from the Ultra High Temperature Ceramics group and is rather unexplored b...