The effect of Sn addition on phase stability and phase evolution during aging heat treatment in Ti–Mo alloys employed as biomaterials

Increases in life expectancy and improvements in necessary healthcare attach great importance to the development of biomaterials. Ti alloys containing β stabilizing elements are often used as biomaterials due to their high specific strength, high corrosion resistance, unusual biocompatibility and lo...

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Veröffentlicht in:Materials characterization 2015-12, Vol.110, p.5-13
Hauptverfasser: de Mello, Mariana G., Salvador, Camilo F., Cremasco, Alessandra, Caram, Rubens
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Sprache:eng
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Zusammenfassung:Increases in life expectancy and improvements in necessary healthcare attach great importance to the development of biomaterials. Ti alloys containing β stabilizing elements are often used as biomaterials due to their high specific strength, high corrosion resistance, unusual biocompatibility and low elastic moduli, which benefit bone tissues close to an implant. This study deals with phase stability in β Ti–Mo–Sn alloys processed under different conditions and was performed according to the following steps: a study of the effect of Sn content (a) on phase stability in Ti–Mo alloys, (b) on the suppression of α″ and ω phase precipitation; (c) on α-phase precipitation during aging heat treatments and (d) on mechanical properties, including the elastic modulus, as measured using tensile tests and acoustic techniques. The alloys were prepared by arc melting under a controlled atmosphere followed by homogenization heat treatment and hot rolling. Optical microscopy, scanning and transmission electron microscopy, X-ray diffraction and differential scanning calorimetry were employed for characterization purposes. Samples were also submitted to solution treatment above the β transus temperature and aging heat treatments under a controlled atmosphere. The results suggest that Sn suppresses the formation of the ω and α″ phases in Ti–Mo system. •Sn addition to Ti alloys decreases elastic modulus by suppressing ω phase precipitation.•Sn addition decreases the temperature of martensite decomposition.•Sn addition decreases the temperature of α phase precipitation and β transus.•Mechanical strength decreases with increasing Sn content.
ISSN:1044-5803
1873-4189
DOI:10.1016/j.matchar.2015.10.005