Author:
Xu Tiewei,Zhang Shanshan,Liang Sen,Cui Ning,Cao Lei,Wan Yong
Abstract
AbstractThe activation energy of the β → α/ω phase transformation increased monotonously with the application of a continuous heating process to a Ti-15Mo-2.7Nb-3Al-0.2Si alloy. Precipitation behaviour of the alloy aged at different temperatures were analysed with scanning electron microscopy, electron backscattered diffraction and transmission electron microscopy. Selected-area diffraction patterns of the ω, ω/α and α phases in the alloy aged at different temperatures indicated that the type of phase transformation was influenced by the precipitation process. Precipitate-free zones in the alloy aged at 450 °C for 8 h were harmful to the mechanical performance. Fine α precipitates with an obvious texture were obtained in the alloy aged at 500 °C. A good combination of tensile properties with an ultimate tensile strength of 1310 MPa and an elongation of 13.5% were obtained due to the expected microstructure and texture of the precipitates that transformed in the specimen when it was aged at 500 °C for 8 h. The size of the precipitates increased with increasing aging temperature. Furthermore, the amount of precipitates and their degree of texture decreased substantially in the alloy aged at 600 °C. The investigation of the tensile properties and fractures also revealed a correlation between the mechanical properties and precipitation behaviour in the Ti-15Mo-2.7Nb-3Al-0.2Si alloy aged at different temperatures.
Publisher
Springer Science and Business Media LLC
Reference33 articles.
1. Ivasishin, O. M., Markovsky, P. E., Matviychuk, Y. V. & Semiatin, S. L. Aging response of coarse and fine grained β titanium alloys. Metall. Mater. Trans. A 34, 147–158 (2003).
2. Grosdidier, T., Combres, Y., Gautier, E. & Philippe, M. J. Effect of Microstructure Variation on the Formation of Deformation-induced Martensite and Associated Tensile Properties in a+β Metastable Ti Alloy. Metall. Mater. Trans. A 31A, 1095–1099 (2000).
3. Lutjering, G., Albrecht, J., Sauer, C. & Krull, T. The influence of soft, precipitate-free zones at grain boundaries in Ti and Al alloys on their fatigue and fracture behavior. Mater. Sci. Eng. A 468–470, 201–209 (2007).
4. Lai, M. J., Li, T. & Raabe, D. ω phase acts as a switch between dislocation channeling and joint twinning- and transformation- induced plasticity in a metastable β titanium alloy. Acta Mater. 151, 67–77 (2018).
5. Peterson, L. F., Flavia, F. C., Sandra, A. S., Conrado, R. A. & Rubens, C. Aging response of the Ti–35Nb-7Zr-5Ta and Ti-35Nb-7Ta alloys. J. Alloys Compd. 443, 207–210 (2007).
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