In this study, Ti-5Al-2.5Fe alloy was prepared by powder metallurgy. The elemental titanium, aluminum, and iron powders were mechanically alloyed for 10 h in a vacuum atmosphere. A stainless steel jar and stainless steel balls were used for mechanical alloying. The alloyed powders were then sintered by vacuum hot pressing at 950 °C for a soaking time of 30 minutes. Pure titanium was also sintered at the same conditions for comparison of mechanical properties and microstructural behavior. The samples were investigated by scanning electron microscopy, XRD analysis, and optical microscopy. Results showed that, after mechanical alloying, a homogeneous distribution of the elements was obtained, and desired a-b structure was determined. Ti-5Al-2....
An investigation of the properties of titanium-tin and titanium-tin-aluminium alloys, produced by po...
This study addresses the processing of near-net-shape, chemically homogeneous and fine-grained Ti–3A...
Titanium and its alloys are common biomedical materials owing to their combination of mechanical pro...
Blended elemental powder metallurgy is a cost effective approach to produce near net shape titanium ...
This work focuses on gaining a better understanding of the feasibility of using reactive induction s...
A comprehensive study has been made of the sintering and microstructural evolution of Ti-10V-2Fe-3Al...
The processing of near net shape Ti-3Al-2.5V components using the conventional pressing and sinterin...
The fabrication of the workhorse Ti-6Al-4V alloy and of the Ti-3Al-2.5V alloy was studied considerin...
Titanium has been identified as one of the key materials with a high strength to weight ratio that c...
The mechanical properties of titanium alloys produced by powder metallurgy (PM) are dependent on the...
To narrow down the candidates of the alloying element powders for Ti-5Al-1Fe products manufactured w...
One of the method in powder metallurgy namely as mechanical alloying is not only a simple and inexpe...
Titanium alloys parts are ideally suited for advanced aerospace systems because of their unique comb...
Bulk commercially pure titanium was prepared by powder metallurgy, namely by cryogenic milling and s...
In the present study, the production of Fe-Ti-B based alloys was realized and their structure and pr...
An investigation of the properties of titanium-tin and titanium-tin-aluminium alloys, produced by po...
This study addresses the processing of near-net-shape, chemically homogeneous and fine-grained Ti–3A...
Titanium and its alloys are common biomedical materials owing to their combination of mechanical pro...
Blended elemental powder metallurgy is a cost effective approach to produce near net shape titanium ...
This work focuses on gaining a better understanding of the feasibility of using reactive induction s...
A comprehensive study has been made of the sintering and microstructural evolution of Ti-10V-2Fe-3Al...
The processing of near net shape Ti-3Al-2.5V components using the conventional pressing and sinterin...
The fabrication of the workhorse Ti-6Al-4V alloy and of the Ti-3Al-2.5V alloy was studied considerin...
Titanium has been identified as one of the key materials with a high strength to weight ratio that c...
The mechanical properties of titanium alloys produced by powder metallurgy (PM) are dependent on the...
To narrow down the candidates of the alloying element powders for Ti-5Al-1Fe products manufactured w...
One of the method in powder metallurgy namely as mechanical alloying is not only a simple and inexpe...
Titanium alloys parts are ideally suited for advanced aerospace systems because of their unique comb...
Bulk commercially pure titanium was prepared by powder metallurgy, namely by cryogenic milling and s...
In the present study, the production of Fe-Ti-B based alloys was realized and their structure and pr...
An investigation of the properties of titanium-tin and titanium-tin-aluminium alloys, produced by po...
This study addresses the processing of near-net-shape, chemically homogeneous and fine-grained Ti–3A...
Titanium and its alloys are common biomedical materials owing to their combination of mechanical pro...