Title of article :
Nanostructured β-phase Ti–31.0Fe–9.0Sn and sub-μm structured Ti–39.3Nb–13.3Zr–10.7Ta alloys for biomedical applications: Microstructure benefits on the mechanical and corrosion performances
Author/Authors :
Hynowska، نويسنده , , Anna and Pellicer، نويسنده , , Eva and Fornell، نويسنده , , Jordina and Gonzلlez، نويسنده , , Sergio and van Steenberge، نويسنده , , Nele and Suriٌach، نويسنده , , Santiago and Gebert، نويسنده , , Annett and Calin، نويسنده , , Mariana and Eckert، نويسنده , , Jürgen and Barَ، نويسنده , , Maria Dolors and Sort، نويسنده , , Jordi، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
8
From page :
2418
To page :
2425
Abstract :
Nanostructured Ti–31.0Fe–9.0Sn and sub-micrometer structured Ti–39.3Nb–13.3Zr–10.7Ta (wt.%) β-type alloys, exhibiting different microstructures and dissimilar mechanical properties, have been prepared by copper mold casting. The microstructure, mechanical behavior and corrosion resistance, in simulated body fluid, of both alloys have been investigated and compared to those of commercial Ti–6Al–4V. Nanoindentation experiments reveal that the Ti–31.0Fe–9.0Sn rods exhibit very large hardness (H ≈ 9 GPa) and high Youngʹs modulus. Conversely, the Ti–39.3Nb–13.3Zr–10.7Ta alloy is mechanically softer but it is interesting for biomedical application because of its rather low Youngʹs modulus (E ≈ 71 GPa). Concerning the corrosion performance, Ti–35Nb–7Zr–5Ta shows a corrosion behavior comparable to Ti–Al6–V4, with no potential breakdown up to 0.4 V vs. Ag|AgCl. On the contrary, the Ti–31.0Fe–9.0Sn alloy exhibits a more anodic corrosion potential, but the value is still less negative than for pure elemental Fe and Ti. From all these properties and because of the absence of toxic elements in the compositions, the Ti–39.3Nb–13.3Zr–10.7Ta and Ti–31.0Fe–9.0Sn alloys are attractive for use as metallic biomaterials.
Keywords :
microstructure , Corrosion Behavior , mechanical properties , Ti-based alloys
Journal title :
Materials Science and Engineering C
Serial Year :
2012
Journal title :
Materials Science and Engineering C
Record number :
2102298
Link To Document :
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