New Ti based alloys with non-cytotoxic and biocompatible elements, such as Nb, Zr, Ta, Sn and Mo, have recently attracted much attention for orthopedic applications. The aim of this study was to investigate the effects of Sn content (2 and 4 wt%) on microstructure and mechanical properties of Ti16NbXSn sintered alloys. The results indicated that Ti16Nb(0-4) Sn alloys were composed of alpha + beta phases. Hardness and Young's modulus E of the alloys measured using nanoindentation technique. These results show that there is a relationship between the mechanical properties and Nb-Sn content. It is concluded that addition of Nb to the cp-Ti resulted to a decrease in Young's modulus
The complete production process of a sintered part involves several steps, starting with the creatio...
The complete production process of a sintered part involves several steps, starting with the creatio...
Titanium alloys with lower Young s modulus and free from toxic elements such as Al and V are being d...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
Ti and some of its alloys are widely used as orthopedic implants. In the present study, Ti-26Nb-5Ag ...
Ti and some of its alloys are widely used as orthopedic implants. In the present study, Ti-26Nb-5Ag ...
Titanium-niobium (Ti–Nb) alloys have great potential for biomedical applications due to their superi...
A group of new Ti-7Mn-xNb alloys with Nb contents varying from 0 to 10 wt% were fabricated by conven...
A group of new Ti-7Mn-xNb alloys with Nb contents varying from 0 to 10 wt% were fabricated by conven...
The effects of alloy chemistry and heat treatment on the microstructure and mechanical properties of...
In this study, a series of Ti-xNb-yMo (x = 5-40 wt.% in 5 wt.% increments; and y = 3, 5, 10 wt%) all...
Metastable beta Ti alloys are the new emerging class of biomaterial for load bearing orthopedic appl...
© 2016 IEEE. The present study involved fabrication of titanium niobium based alloys having elastic ...
Metastable beta Ti alloys are the new emerging class of biomaterial for load bearing orthopedic appl...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
The complete production process of a sintered part involves several steps, starting with the creatio...
The complete production process of a sintered part involves several steps, starting with the creatio...
Titanium alloys with lower Young s modulus and free from toxic elements such as Al and V are being d...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
Ti and some of its alloys are widely used as orthopedic implants. In the present study, Ti-26Nb-5Ag ...
Ti and some of its alloys are widely used as orthopedic implants. In the present study, Ti-26Nb-5Ag ...
Titanium-niobium (Ti–Nb) alloys have great potential for biomedical applications due to their superi...
A group of new Ti-7Mn-xNb alloys with Nb contents varying from 0 to 10 wt% were fabricated by conven...
A group of new Ti-7Mn-xNb alloys with Nb contents varying from 0 to 10 wt% were fabricated by conven...
The effects of alloy chemistry and heat treatment on the microstructure and mechanical properties of...
In this study, a series of Ti-xNb-yMo (x = 5-40 wt.% in 5 wt.% increments; and y = 3, 5, 10 wt%) all...
Metastable beta Ti alloys are the new emerging class of biomaterial for load bearing orthopedic appl...
© 2016 IEEE. The present study involved fabrication of titanium niobium based alloys having elastic ...
Metastable beta Ti alloys are the new emerging class of biomaterial for load bearing orthopedic appl...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
The complete production process of a sintered part involves several steps, starting with the creatio...
The complete production process of a sintered part involves several steps, starting with the creatio...
Titanium alloys with lower Young s modulus and free from toxic elements such as Al and V are being d...