[EN] The functionalization of ß-Ti alloys by the addition of small amounts of bactericidal elements is interesting for biomedical applications. Thus, alloying pure titanium with highly biocompatible elements such as Nb or Ta, stabilizes the ß phase of the resulting alloy although they can also include difficulties during the fabrication process due to their refractory nature. This work studies the effect of small additions of Ag and Cu (1.5 to 3 wt.%) on the microstructure and mechanical properties of the Ti34Nb (wt.%) alloy processed by powder metallurgy. The blend elemental powders were mixed (30 rpm during 30 min). The samples were compacted at 600 MPa and sintered at 1250 ºC during 3 hours. The microstructure was analyzed by X-Ray Diff...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
This study aims to develop Ti–Cu–Mn alloys with antibacterial capability for reducing the possibilit...
This study aims to develop Ti–Cu–Mn alloys with antibacterial capability for reducing the possibilit...
[EN] The functionalization of ß-Ti alloys by the addition of small amounts of bactericidal elements ...
Currently, the development of biomaterials has focused on having a low Young’s modulus, biocompatibi...
Titanium alloys are common biomedical materials due to their biocompatibility and mechanical perform...
Titanium alloys are common biomedical materials due to their biocompatibility and mechanical perform...
Titanium alloys are common biomedical materials due to their biocompatibility and mechanical perform...
Alloying copper into pure titanium has recently allowed the development of antibacterial alloys. The...
Alloying copper into pure titanium has recently allowed the development of antibacterial alloys. The...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
Titanium alloys with high refractory metals content are required to obtain advanced biomaterials wit...
Titanium and its alloys are common biomedical materials owing to their combination ofmechanical prop...
Titanium and its alloys are common biomedical materials owing to their combination of mechanical pro...
Titanium and its alloys are common biomedical materials owing to their combination of mechanical pro...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
This study aims to develop Ti–Cu–Mn alloys with antibacterial capability for reducing the possibilit...
This study aims to develop Ti–Cu–Mn alloys with antibacterial capability for reducing the possibilit...
[EN] The functionalization of ß-Ti alloys by the addition of small amounts of bactericidal elements ...
Currently, the development of biomaterials has focused on having a low Young’s modulus, biocompatibi...
Titanium alloys are common biomedical materials due to their biocompatibility and mechanical perform...
Titanium alloys are common biomedical materials due to their biocompatibility and mechanical perform...
Titanium alloys are common biomedical materials due to their biocompatibility and mechanical perform...
Alloying copper into pure titanium has recently allowed the development of antibacterial alloys. The...
Alloying copper into pure titanium has recently allowed the development of antibacterial alloys. The...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
Titanium alloys with high refractory metals content are required to obtain advanced biomaterials wit...
Titanium and its alloys are common biomedical materials owing to their combination ofmechanical prop...
Titanium and its alloys are common biomedical materials owing to their combination of mechanical pro...
Titanium and its alloys are common biomedical materials owing to their combination of mechanical pro...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
This study aims to develop Ti–Cu–Mn alloys with antibacterial capability for reducing the possibilit...
This study aims to develop Ti–Cu–Mn alloys with antibacterial capability for reducing the possibilit...