Formation of alpha phase via pseudospinodal decomposition in Ti-Nb-Fe based alloys

Herein, the fine-scaled α phase precipitation during step-quench heat treatments in Ti‐15Nb‐3.0Fe and Ti‐11Nb‐3.5Fe(wt%) alloys was evaluated. Thermodynamic analyses suggest that Ti‐11Nb‐3.5Fe alloy should present homogenous α phase formation via the pseudospinodal mechanism when solution-treated an...

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Veröffentlicht in:Materials letters 2017-02, Vol.189, p.201-205
Hauptverfasser: Salvador, Camilo A.F., Lopes, Eder S.N., Bettini, Jefferson, Caram, Rubens
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Sprache:eng
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Zusammenfassung:Herein, the fine-scaled α phase precipitation during step-quench heat treatments in Ti‐15Nb‐3.0Fe and Ti‐11Nb‐3.5Fe(wt%) alloys was evaluated. Thermodynamic analyses suggest that Ti‐11Nb‐3.5Fe alloy should present homogenous α phase formation via the pseudospinodal mechanism when solution-treated and step-quenched at 450°C, which is confirmed in this work. STEM-EDX measurements confirm the non-equilibrium state of the α phase precipitates, whose Nb content is significantly higher than that of the α phase laths obtained after solution heat treatment followed by furnace cooling. Fe seems to play an important role in the precipitation mechanism, and is depleted from α phase laths in a short aging time. •A fine-scaled α phase precipitation in Ti‐11Nb‐3.5Fe (wt.%) was evaluated.•A pseudo-spinodal transformation that occurs at 450°C is related to the precipitation.
ISSN:0167-577X
1873-4979
DOI:10.1016/j.matlet.2016.11.097