The physical bases of hydrogenated titanium powders application in blended elemental powder metallurgy (BEPM) of titanium alloys were earlier developed. Hydrogen as temporary alloying addition for titanium strongly affects diffusion processes upon transformation of powder blends into alloys ensuring production of α+β and metastable β titanium alloys which mechanical properties meet standard requirements. At the same time, synthesis of metastable β alloys is complicated by a big amount of alloying elements which diffusion redistribution upon sintering has a strong impact on microstructure evolution. In present study BEPM hydride approach was expanded for production of biocompatible low modulus Ti-Zr-Nb and Ti-Zr-Nb-Ta alloys having BCC struc...
In the present study, two powders near-β Ti alloys having a nominal composition of Ti-5Al-5Mo-5V-XCr...
[EN] Commercial pure titanium offers excellent biocompatibility, but its properties are poor for som...
Titanium alloys, due to their biocompatibility and low stiffness, are among the most studied of meta...
Toward designing a cost-effective advanced powder metallurgy approach, we present a new insight into...
Titanium alloys have several advantages over ferrous and non-ferrous metallic materials, such as hig...
[Poster] 6th International Light Metals Technology Conference (LMT2013), 24-26 July, Windsord (UK)Ti...
The use of titanium hydride as a raw material has been an attractive alternative for the production ...
In this project, the effects of adding TiH2 into Ti powders on the microstructure and mechanicalprop...
TiH2 powder has been trialled as an alternative to Ti-powder to fabricate titanium-based products. T...
Titanium alloys can be hydrogenated with large amounts of hydrogen and dehydrogenated in vacuum at e...
Titanium powder production by the hydride-dehydride method has been developed as a non-expensive pro...
Structural components must be lightweight and produced resource-saving while still fulfil the increa...
The extensive industrial employment of titanium is hindered by its high production costs where reduc...
An investigation is described in which the aim was to produce through the hydride-dehydride process ...
In this work we have studied the effect of phase composition and microstructure of a rapidly solidif...
In the present study, two powders near-β Ti alloys having a nominal composition of Ti-5Al-5Mo-5V-XCr...
[EN] Commercial pure titanium offers excellent biocompatibility, but its properties are poor for som...
Titanium alloys, due to their biocompatibility and low stiffness, are among the most studied of meta...
Toward designing a cost-effective advanced powder metallurgy approach, we present a new insight into...
Titanium alloys have several advantages over ferrous and non-ferrous metallic materials, such as hig...
[Poster] 6th International Light Metals Technology Conference (LMT2013), 24-26 July, Windsord (UK)Ti...
The use of titanium hydride as a raw material has been an attractive alternative for the production ...
In this project, the effects of adding TiH2 into Ti powders on the microstructure and mechanicalprop...
TiH2 powder has been trialled as an alternative to Ti-powder to fabricate titanium-based products. T...
Titanium alloys can be hydrogenated with large amounts of hydrogen and dehydrogenated in vacuum at e...
Titanium powder production by the hydride-dehydride method has been developed as a non-expensive pro...
Structural components must be lightweight and produced resource-saving while still fulfil the increa...
The extensive industrial employment of titanium is hindered by its high production costs where reduc...
An investigation is described in which the aim was to produce through the hydride-dehydride process ...
In this work we have studied the effect of phase composition and microstructure of a rapidly solidif...
In the present study, two powders near-β Ti alloys having a nominal composition of Ti-5Al-5Mo-5V-XCr...
[EN] Commercial pure titanium offers excellent biocompatibility, but its properties are poor for som...
Titanium alloys, due to their biocompatibility and low stiffness, are among the most studied of meta...