Consolidation of commercially available nanostructured titanium carbonitride (TiCN) powder has been performed by Spark Plasma Sintering (SPS) in the temperature range from 1300 to 1600 °C. The effect of non-linear heating and loading regimes on consolidation of high melting point nanocomposites has been investigated. SPS consolidated TiCN material has demonstrated near fully dense and fine homogeneous microstructure with average grains size about 150 nm. Nanohardness and fracture toughness of the TiCN nanocomposite have been measured as 33 ± 0.9 GPa and 3.2 MPa m1/2 respectively
Abstract: The densification behaviour, microstructural changes and hardness characteristics during s...
The sintering behavior of titanium-titanium nitride nanocomposite powders has been investigated by d...
Titanium - titanium nitride nano-composite powders were prepared by attrition milling of elemental t...
Consolidation of commercially available titanium nitride nanostructured powder as well as nanocompos...
Spark-plasma-sintering (SPS) compaction experiments of nanostructured titanium carbonitride powders ...
Spark-plasma-sintering (SPS) compaction experiments of nanostructured titanium carbonitride powders ...
Consolidation of commercially available titanium nitride nanostructured powder as well as nanocompos...
The influence of various dispersion methods on the evolution of multi-walled carbon nanotubes (MWCNT...
TiCxN1−x–15 wt.%Co cermets were obtained by a mechanically induced self-sustaining reaction (MSR) an...
Nanometric powdered TixTa1-xC0.5N0.5-based cermets were fabricated using a mechanically induced self...
TiCxN1−x–15 wt.%Co cermets were obtained by a mechanically induced self-sustaining reaction (MSR) an...
TiCxN1−x–15 wt.%Co cermets were obtained by a mechanically induced self-sustaining reaction (MSR) an...
The sintering behaviour of titanium-titanium nitride nano/nanocomposite powders has been investigate...
Consolidation of nanostructured powders and multilayer composition have been performed by spark-plas...
Abstract: Binderless ultra–tough titanium carbonitride (TiCN) was successfully consolidated by spark...
Abstract: The densification behaviour, microstructural changes and hardness characteristics during s...
The sintering behavior of titanium-titanium nitride nanocomposite powders has been investigated by d...
Titanium - titanium nitride nano-composite powders were prepared by attrition milling of elemental t...
Consolidation of commercially available titanium nitride nanostructured powder as well as nanocompos...
Spark-plasma-sintering (SPS) compaction experiments of nanostructured titanium carbonitride powders ...
Spark-plasma-sintering (SPS) compaction experiments of nanostructured titanium carbonitride powders ...
Consolidation of commercially available titanium nitride nanostructured powder as well as nanocompos...
The influence of various dispersion methods on the evolution of multi-walled carbon nanotubes (MWCNT...
TiCxN1−x–15 wt.%Co cermets were obtained by a mechanically induced self-sustaining reaction (MSR) an...
Nanometric powdered TixTa1-xC0.5N0.5-based cermets were fabricated using a mechanically induced self...
TiCxN1−x–15 wt.%Co cermets were obtained by a mechanically induced self-sustaining reaction (MSR) an...
TiCxN1−x–15 wt.%Co cermets were obtained by a mechanically induced self-sustaining reaction (MSR) an...
The sintering behaviour of titanium-titanium nitride nano/nanocomposite powders has been investigate...
Consolidation of nanostructured powders and multilayer composition have been performed by spark-plas...
Abstract: Binderless ultra–tough titanium carbonitride (TiCN) was successfully consolidated by spark...
Abstract: The densification behaviour, microstructural changes and hardness characteristics during s...
The sintering behavior of titanium-titanium nitride nanocomposite powders has been investigated by d...
Titanium - titanium nitride nano-composite powders were prepared by attrition milling of elemental t...