Bulk commercially pure titanium was prepared by powder metallurgy, namely by cryogenic milling and spark plasma sintering, with aim to produce ultra-fine grained material with enhanced strength. The microstructure of milled powders was investigated in detail by a novel method called transmission EBSD, which allowed the first direct observation of texture within the powder particles. This texture is similar to rolling texture, because of the similar nature of the defor- mation during milling. Microstructure observations revealed grains with the size under 100 nm. The influence of sintering parameters on material properties were studied by scan- ning electron microscopy including EBSD, X-ray diffraction and by microhardness measurements. The ...
International audienceIn this study the effect of sintering pressure on the densification, microstru...
Additive manufacturing (AM) for metals is a manufacturing process that has increased a lot in popula...
Titanium alloys parts are ideally suited for advanced aerospace systems because of their unique comb...
Titanium (Grade 2) was processed by cryogenic milling and subsequently sintered by spark plasma sint...
Commercially pure titanium was prepared by advanced powder metallurgy methods with the aim to produc...
Due to the relatively high strength, excellent corrosion resistance of titanium against many medium,...
Ultra-fine grained materials are presently thoroughly investigated due to their enhanced mechanical ...
In this study, Ti-5Al-2.5Fe alloy was prepared by powder metallurgy. The elemental titanium, aluminu...
This study investigates the influence of materials' microstructural characteristics, including grain...
Titanium based alloys are increasingly used in biomedicine due to their favourable properties. Howev...
Blended elemental powder metallurgy is a cost effective approach to produce near net shape titanium ...
Titanium alloys parts are ideally suited for advanced aerospace systems because of their unique comb...
In this study, Ti-15Mo alloy powder was prepared by gas atomization and subsequent cryogenic milling...
Titanium has been identified as one of the key materials with a high strength to weight ratio that c...
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...
Additive manufacturing (AM) for metals is a manufacturing process that has increased a lot in popula...
Titanium alloys parts are ideally suited for advanced aerospace systems because of their unique comb...
Titanium (Grade 2) was processed by cryogenic milling and subsequently sintered by spark plasma sint...
Commercially pure titanium was prepared by advanced powder metallurgy methods with the aim to produc...
Due to the relatively high strength, excellent corrosion resistance of titanium against many medium,...
Ultra-fine grained materials are presently thoroughly investigated due to their enhanced mechanical ...
In this study, Ti-5Al-2.5Fe alloy was prepared by powder metallurgy. The elemental titanium, aluminu...
This study investigates the influence of materials' microstructural characteristics, including grain...
Titanium based alloys are increasingly used in biomedicine due to their favourable properties. Howev...
Blended elemental powder metallurgy is a cost effective approach to produce near net shape titanium ...
Titanium alloys parts are ideally suited for advanced aerospace systems because of their unique comb...
In this study, Ti-15Mo alloy powder was prepared by gas atomization and subsequent cryogenic milling...
Titanium has been identified as one of the key materials with a high strength to weight ratio that c...
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...
Additive manufacturing (AM) for metals is a manufacturing process that has increased a lot in popula...
Titanium alloys parts are ideally suited for advanced aerospace systems because of their unique comb...