In-situ investigation of phase transformations in Ti-Nb-Zr alloys by simultaneous synchrotron diffraction and dilatometry

IF 5.8 2区 材料科学 Q2 CHEMISTRY, PHYSICAL
Kleanny Gama Sales de Souza , Karen Pantleon , Flemming Bjerg Grumsen , Rubens Caram , Matteo Villa
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引用次数: 0

Abstract

Ti-Nb-Zr alloys are promising materials for structural applications in the biomedical sector. Unfortunately, detailed understanding of the solid-state transformations occurring in these alloys is lacking, in particular concerning the diffusionless processes linked to the formation of ω phase. In this work we applied simultaneous in-situ synchrotron diffraction and dilatometry to study phase transformations in three Ti-Nb-Zr alloys containing 20, 27 and 35 wt% Nb, respectively, and fixed 13 wt% Zr. The applied thermal cycle consisted in heating to 850 °C followed by cooling to room temperature, applying a high heating and cooling rate of 30 °C/s to suppress diffusional phenomena. The investigation showed no transformation in the alloy richer in Nb, which is classified as β alloy, and the occurrence of three phenomena in the other two alloys: i) the reversion of α'' martensite to β phase on heating, followed by the β→α'' martensitic transformation on cooling; ii) the ω to β transformation on heating, followed by ω formation on cooling; iii) an anomalous expansion of the β lattice on heating, followed by an anomalous contraction on cooling that is also interpreted in terms of ω↔β transformation. Finally, it is shown that all these transformations can be followed by dilatometry, paving the way to systematic investigation of transformations in similar alloys in the future.
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来源期刊
Journal of Alloys and Compounds
Journal of Alloys and Compounds 工程技术-材料科学:综合
CiteScore
11.10
自引率
14.50%
发文量
5146
审稿时长
67 days
期刊介绍: The Journal of Alloys and Compounds is intended to serve as an international medium for the publication of work on solid materials comprising compounds as well as alloys. Its great strength lies in the diversity of discipline which it encompasses, drawing together results from materials science, solid-state chemistry and physics.
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