The present study explores the microstructural characteristics and electrochemical responses of four metastable beta Ti-Nb-Mo alloys for biomedical implantation. They were synthesized by the cold crucible levitation melting technique, and compositions were selected to keep the molybdenum equivalency close to 12 wt% Moeq. For the sake of comparison, Ti12Mo was also investigated. Microstructural characterization reveals that all the alloys are β (body-centred cubic structure), and the surface is composed by β equiaxial grains with dimensions in the range of tens to hundreds μm. The corrosion resistance (potentiodynamic polarization and electrochemical impedance spectroscopy) of the alloys was determined in 0.9 wt% NaCl saline solution at 25 º...
Electrochemical investigation on the as-cast Ti-Mo alloys (4-20 Mo wt.%) applied as biomaterials in ...
[EN] The tribo-electrochemical behavior of different β titanium alloys for biomedical applicati...
Over the last decade, new titanium alloys are developed in different areas of implantology. The aim...
The electrochemical behavior of three different near-β titanium alloys (composed by Ti, Nb and ...
The requirement of good mechanical properties, lower Young's modulus, superior corrosion resistance,...
Non-toxic and allergic free beta-type Ti alloys are attractive metallic implant materials due to the...
Corrosion behaviour of the studied Ti20Mo alloy together with the currently used metallic biomateria...
The anti-corrosion properties of Ti44Ni47Nb9 shape memory alloy in simulated body fluids including 0...
The requirement of good mechanical properties, lower Young's modulus, superior corrosion resistance,...
The anti-corrosion properties of Ti44Ni47Nb9 shape memory alloy in simulated body fluids including 0...
In recent years, different beta titanium alloys have been developed for biomedical applications with...
The electrochemical properties of Ti20Mo alloys prepared using different fabrication procedures, nam...
Titanium alloys are widely used for biomaterial applications since they have special characteristics...
This paper addresses on the electrochemical behaviour of three TiMo alloys exposed to simulated phys...
The high specific strength, good corrosion resistance, and great biocompatibility make titanium and ...
Electrochemical investigation on the as-cast Ti-Mo alloys (4-20 Mo wt.%) applied as biomaterials in ...
[EN] The tribo-electrochemical behavior of different β titanium alloys for biomedical applicati...
Over the last decade, new titanium alloys are developed in different areas of implantology. The aim...
The electrochemical behavior of three different near-β titanium alloys (composed by Ti, Nb and ...
The requirement of good mechanical properties, lower Young's modulus, superior corrosion resistance,...
Non-toxic and allergic free beta-type Ti alloys are attractive metallic implant materials due to the...
Corrosion behaviour of the studied Ti20Mo alloy together with the currently used metallic biomateria...
The anti-corrosion properties of Ti44Ni47Nb9 shape memory alloy in simulated body fluids including 0...
The requirement of good mechanical properties, lower Young's modulus, superior corrosion resistance,...
The anti-corrosion properties of Ti44Ni47Nb9 shape memory alloy in simulated body fluids including 0...
In recent years, different beta titanium alloys have been developed for biomedical applications with...
The electrochemical properties of Ti20Mo alloys prepared using different fabrication procedures, nam...
Titanium alloys are widely used for biomaterial applications since they have special characteristics...
This paper addresses on the electrochemical behaviour of three TiMo alloys exposed to simulated phys...
The high specific strength, good corrosion resistance, and great biocompatibility make titanium and ...
Electrochemical investigation on the as-cast Ti-Mo alloys (4-20 Mo wt.%) applied as biomaterials in ...
[EN] The tribo-electrochemical behavior of different β titanium alloys for biomedical applicati...
Over the last decade, new titanium alloys are developed in different areas of implantology. The aim...