Ti-Nb alloys are potential candidates owing to their excellent mechanical properties and high corrosion resistance for bioactive implant applications compared to other metallic materials. The purpose of this work is to investigate the effect of the Nb amount on the microstructure, mechanical properties, corrosion behavior and hydroxyapatite (HA) formation ability of Ti-Nb alloys produced via powder injection molding. According to the phase/microstructure studies, including XRD analyses, optical microscope, and SEM imaging, all of the alloys are composed of alpha+beta phases, and with the increment of Nb content, beta phase stability increases. Also, it is observed that Nb content has significant effects on the mechanical properties of the c...
The purpose of this study is to produce Ti-10Nb-10Zr orthopaedic implant material by adding non-toxi...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
The purpose of research in the biomaterials field is to produce new materials with physical and chem...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
The application of titanium (Ti) based biomedical materials which are widely used at present, such a...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
This study attempts to develop Ti-Nb alloys with elastic moduli that approach that of human bone. Th...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
Titanium-niobium (Ti–Nb) alloys have great potential for biomedical applications due to their superi...
Metastable β-Ti alloys have become one of the most attractive implant materials due to their high bi...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to enhance bone remode...
Recently, people devote to the development of Ni-free shape memory alloys in order to avoid the Ni-h...
© 2016 IEEE. The present study involved fabrication of titanium niobium based alloys having elastic ...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
The purpose of this study is to produce Ti-10Nb-10Zr orthopaedic implant material by adding non-toxi...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
The purpose of research in the biomaterials field is to produce new materials with physical and chem...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
The application of titanium (Ti) based biomedical materials which are widely used at present, such a...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
This study attempts to develop Ti-Nb alloys with elastic moduli that approach that of human bone. Th...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
Titanium-niobium (Ti–Nb) alloys have great potential for biomedical applications due to their superi...
Metastable β-Ti alloys have become one of the most attractive implant materials due to their high bi...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to enhance bone remode...
Recently, people devote to the development of Ni-free shape memory alloys in order to avoid the Ni-h...
© 2016 IEEE. The present study involved fabrication of titanium niobium based alloys having elastic ...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
The purpose of this study is to produce Ti-10Nb-10Zr orthopaedic implant material by adding non-toxi...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
The purpose of research in the biomaterials field is to produce new materials with physical and chem...