This work presents a novel processing method for the fabrication of particle reinforced Titanium Matrix Composites (TMCs). TMCs are a promising alternative to improve the mechanical properties of titanium alloys. In the processing method, the reinforcement (TiC–Ti) was obtained by Self-propagating High-temperature Synthesis (SHS). The composition of the reinforcement was Ti1.3C. An excess of titanium compared to the equiatomic TiC was introduced in the reaction in order to control the size of the reinforcement and to improve the compatibility between reinforcement and matrix. This reinforcement was mixed with Ti–6Al–4V powder and the final consolidation of the TMC was performed by Spark Plasma Sintering (SPS). The microstructure and mechani...
This paper deals with a novel fabrication method (a vacuum rapid solidification technique) to prepar...
Titanium-based metal-matrix composites, reinforced with ceramic particulates, have considerable pote...
Metal matrix composites can produce mechanical and physical properties better than those of the mono...
The reinforcement of titanium with a hard phase is an efficient way to increase the stiffness and st...
In this research, a novel high-temperature titanium alloy, Ti750, was used as matrix and SiCp, SiCw,...
TiC reinforcement particles were incorporated into a Ti-6 %Al-4%V matrix and processed by two powder...
In-situ TiB/TiC particle-reinforced titanium matrix composites (TMCs) based on a near-β Ti-5Al-...
Titanium has found extensive use in various engineering applications due to its attractive physical,...
Titanium, its alloys, and refractory compounds are often used in the compositions of surfacing mater...
Discontinuously reinforced titanium alloys containing in-situ formed TiB needles are emerging as can...
The influence of various dispersion methods on the evolution of multi-walled carbon nanotubes (MWCNT...
Self-propagating high-temperature synthesis (SHS) is a flexible process to produce novel materials w...
Powder metallurgy (P/M) titanium matrix composite (TMC) reinforced with carbon black particles was p...
In the last decade, titanium metal matrix composites (TMCs) have received considerable attention tha...
Titanium silicides are promising candidates for use as a reinforcement in advanced light-weight comp...
This paper deals with a novel fabrication method (a vacuum rapid solidification technique) to prepar...
Titanium-based metal-matrix composites, reinforced with ceramic particulates, have considerable pote...
Metal matrix composites can produce mechanical and physical properties better than those of the mono...
The reinforcement of titanium with a hard phase is an efficient way to increase the stiffness and st...
In this research, a novel high-temperature titanium alloy, Ti750, was used as matrix and SiCp, SiCw,...
TiC reinforcement particles were incorporated into a Ti-6 %Al-4%V matrix and processed by two powder...
In-situ TiB/TiC particle-reinforced titanium matrix composites (TMCs) based on a near-β Ti-5Al-...
Titanium has found extensive use in various engineering applications due to its attractive physical,...
Titanium, its alloys, and refractory compounds are often used in the compositions of surfacing mater...
Discontinuously reinforced titanium alloys containing in-situ formed TiB needles are emerging as can...
The influence of various dispersion methods on the evolution of multi-walled carbon nanotubes (MWCNT...
Self-propagating high-temperature synthesis (SHS) is a flexible process to produce novel materials w...
Powder metallurgy (P/M) titanium matrix composite (TMC) reinforced with carbon black particles was p...
In the last decade, titanium metal matrix composites (TMCs) have received considerable attention tha...
Titanium silicides are promising candidates for use as a reinforcement in advanced light-weight comp...
This paper deals with a novel fabrication method (a vacuum rapid solidification technique) to prepar...
Titanium-based metal-matrix composites, reinforced with ceramic particulates, have considerable pote...
Metal matrix composites can produce mechanical and physical properties better than those of the mono...