Strong and ductile powder metallurgy (PM) Ti-10V-2Fe-3Al alloy has been fabricated by spark plasma sintering (SPS) of titanium and V-Fe-Al master alloy powder blends at 1100A degrees C for 30 min under 30 MPa. The homogenization of vanadium, which dictates the realization of a uniform microstructure of the Ti-10V-2Fe-3Al alloy, was markedly accelerated by SPS. The mechanism is attributed to the intensive Joule heating effect produced by the direct current passing through the electric conducting powder blends, rather than through spark plasma discharge, because homogenization occurred mainly after near full identification had been achieved. The chemical and microstructural homogeneity ensured the achievement of excellent tensile properties o...
Fe-based composites are an interesting and promising group of MMCs, which could compete in some appl...
Titanium has been identified as one of the key materials with a high strength to weight ratio that c...
In this study, Ti-5Al-2.5Fe alloy was prepared by powder metallurgy. The elemental titanium, aluminu...
Strong and ductile powder metallurgy (PM) Ti-10V-2Fe-3Al alloy has been fabricated by spark plasma s...
Spark plasma sintering (SPS) has been used to fabricate Ti-6Al-4V * from elemental titanium and 60Al...
A comprehensive study has been made of the sintering and microstructural evolution of Ti-10V-2Fe-3Al...
Emerging lower cost titanium metal powder produced via an electrolytic method has been fully consoli...
The effect of spark plasma sintering (SPS) temperature on the microstructure and mechanical properti...
This study addresses the processing of near-net-shape, chemically homogeneous and fine-grained Ti–3A...
Improvement of strength and ductility of titanium alloys is a significant and eternal topic in devel...
The processing of near net shape Ti-3Al-2.5V components using the conventional pressing and sinterin...
Titanium (Ti) alloys can be applied to various products in aircraft, automotive and motor cycles ind...
International audienceIn this study the effect of sintering pressure on the densification, microstru...
Ti, Fe and Si powders using a planetary ball milling for 720 ks. The amount of collectable powder mi...
The β-phase Titanium (β-Ti) alloys have been under the spotlight in the recent past for their use as...
Fe-based composites are an interesting and promising group of MMCs, which could compete in some appl...
Titanium has been identified as one of the key materials with a high strength to weight ratio that c...
In this study, Ti-5Al-2.5Fe alloy was prepared by powder metallurgy. The elemental titanium, aluminu...
Strong and ductile powder metallurgy (PM) Ti-10V-2Fe-3Al alloy has been fabricated by spark plasma s...
Spark plasma sintering (SPS) has been used to fabricate Ti-6Al-4V * from elemental titanium and 60Al...
A comprehensive study has been made of the sintering and microstructural evolution of Ti-10V-2Fe-3Al...
Emerging lower cost titanium metal powder produced via an electrolytic method has been fully consoli...
The effect of spark plasma sintering (SPS) temperature on the microstructure and mechanical properti...
This study addresses the processing of near-net-shape, chemically homogeneous and fine-grained Ti–3A...
Improvement of strength and ductility of titanium alloys is a significant and eternal topic in devel...
The processing of near net shape Ti-3Al-2.5V components using the conventional pressing and sinterin...
Titanium (Ti) alloys can be applied to various products in aircraft, automotive and motor cycles ind...
International audienceIn this study the effect of sintering pressure on the densification, microstru...
Ti, Fe and Si powders using a planetary ball milling for 720 ks. The amount of collectable powder mi...
The β-phase Titanium (β-Ti) alloys have been under the spotlight in the recent past for their use as...
Fe-based composites are an interesting and promising group of MMCs, which could compete in some appl...
Titanium has been identified as one of the key materials with a high strength to weight ratio that c...
In this study, Ti-5Al-2.5Fe alloy was prepared by powder metallurgy. The elemental titanium, aluminu...