The β titanium alloy matrix composite was made from a mixture of elemental metal powders, including boron carbide. During the high-temperature sintering process, in situ synthesis took place as a result of the TiB and TiC reinforcing phases formed. The identification of these phases was confirmed by X-ray diffraction and microstructural analyses. The presence of unreacted B4C particles and the surrounding reaction layers allowed for the evaluation of diffusion kinetics of alloying elements using SEM and EDS analyses. The direction of diffusion of the alloying elements in the multicomponent titanium alloy and their influence on the in situ synthesis reaction taking place were determined. In addition, the relationship between the microstructu...
In the present study, two powders near-β Ti alloys having a nominal composition of Ti-5Al-5Mo-5V-XCr...
A near-β Ti–5Al–5Mo–5V–2Cr–1Fe alloy was produced using the blended elemental powder metallurgy appr...
Toward designing a cost-effective advanced powder metallurgy approach, we present a new insight into...
Metal matrix composites (MMCs) are the new generation materials that combine both the metallic prope...
TiC reinforcement particles were incorporated into a Ti-6 %Al-4%V matrix and processed by two powder...
This study determined the optimal concentration of titanium diboride (TiB2) particles for the develo...
In the last decade, titanium metal matrix composites (TMCs) have received considerable attention tha...
Metal matrix composites can produce mechanical and physical properties better than those of the mono...
Titanium has found extensive use in various engineering applications due to its attractive physical,...
This dissertation discusses the synthesis, processing, and characterization of titanium carbide (TiC...
This work presents a novel processing method for the fabrication of particle reinforced Titanium Mat...
The reinforcement of titanium with a hard phase is an efficient way to increase the stiffness and st...
Les travaux réalisés dans cette thèse visent d’une part, à comprendre les évolutions structurales et...
In this work, mechanical alloying and electrical current-assisted sintering was adopted for in situ ...
This paper represents the fabrication and characterization (microstructural, mechanical, and electri...
In the present study, two powders near-β Ti alloys having a nominal composition of Ti-5Al-5Mo-5V-XCr...
A near-β Ti–5Al–5Mo–5V–2Cr–1Fe alloy was produced using the blended elemental powder metallurgy appr...
Toward designing a cost-effective advanced powder metallurgy approach, we present a new insight into...
Metal matrix composites (MMCs) are the new generation materials that combine both the metallic prope...
TiC reinforcement particles were incorporated into a Ti-6 %Al-4%V matrix and processed by two powder...
This study determined the optimal concentration of titanium diboride (TiB2) particles for the develo...
In the last decade, titanium metal matrix composites (TMCs) have received considerable attention tha...
Metal matrix composites can produce mechanical and physical properties better than those of the mono...
Titanium has found extensive use in various engineering applications due to its attractive physical,...
This dissertation discusses the synthesis, processing, and characterization of titanium carbide (TiC...
This work presents a novel processing method for the fabrication of particle reinforced Titanium Mat...
The reinforcement of titanium with a hard phase is an efficient way to increase the stiffness and st...
Les travaux réalisés dans cette thèse visent d’une part, à comprendre les évolutions structurales et...
In this work, mechanical alloying and electrical current-assisted sintering was adopted for in situ ...
This paper represents the fabrication and characterization (microstructural, mechanical, and electri...
In the present study, two powders near-β Ti alloys having a nominal composition of Ti-5Al-5Mo-5V-XCr...
A near-β Ti–5Al–5Mo–5V–2Cr–1Fe alloy was produced using the blended elemental powder metallurgy appr...
Toward designing a cost-effective advanced powder metallurgy approach, we present a new insight into...