2019
DOI: 10.1016/j.calphad.2019.101686
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CALPHAD assessment of bio-oriented Ti–Zr–Sn system and experimental validation in Ti/Zr-rich alloys

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Cited by 13 publications
(2 citation statements)
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“…Thus, various new alloys with expected properties have been developed assisted by the CALPHAD methodology. [170][171][172][173][174][175] This approach has also been used in the design of new Ti alloys with low elastic modulus as implant materials. Wang et al [176] used CALPHAD modeling to predict the elastic properties of Ti-Nb-Zr alloys and found that the polycrystalline Young's modulus limit is found to be 30-40 GPa.…”
Section: Calphad Methodologymentioning
confidence: 99%
“…Thus, various new alloys with expected properties have been developed assisted by the CALPHAD methodology. [170][171][172][173][174][175] This approach has also been used in the design of new Ti alloys with low elastic modulus as implant materials. Wang et al [176] used CALPHAD modeling to predict the elastic properties of Ti-Nb-Zr alloys and found that the polycrystalline Young's modulus limit is found to be 30-40 GPa.…”
Section: Calphad Methodologymentioning
confidence: 99%
“…CALPHAD (Calculation of PHAse Diagrams) approach that is a computational method to design new materials has been successfully used to design Ti-Zr-Ta alloys with high yield strength and low elastic modulus [112]. Other systems have been investigated by CALPHAD approach, among which include the two alloys Ti-Ni-Sn [113] and Ti-Zr-Sn [114]. In another work, the CALPHAD approach was combined with artificial intelligence algorithms to explore novel composition of the Ti-Nb-Zr-Sn system.…”
Section: Conclusion and Future Perspectivesmentioning
confidence: 99%