TY - JOUR
T1 - Nanometer-size polycrystallization in bcc → hcp + C15 structural change of a Ti-30 mol%Cr alloy
AU - Hirata, Akihiko
AU - Tanimura, Makoto
AU - Koyama, Yasumasa
N1 - Copyright:
Copyright 2017 Elsevier B.V., All rights reserved.
PY - 2001/12
Y1 - 2001/12
N2 - The crystallographic features of a bcc → hcp + C15 structural change in a Ti-30 mol%Cr alloy have been examined by transmission electron microscopy. When the alloy was annealed at 873 K below the eutectoid temperature, the structural change occurred in the following five steps: bcc → bcc + Zone I → bcc + Zone II → bcc + Zone II + hcp → bcc + hcp + C15 → hcp + C15. The interesting features of the change are that the diffuse ω state is present in the metastable bcc matrix, and that in the fourth step the C15 grains with a size of about 2 nm appear in the bcc matrix around the hcp region. As a result of these extremely small C15 grains, the final microstructure, which was obtained from the 5-h-and 100-h-annealed samples, consists of the hcp and C15 grains with an average size of about 100 nm. On the basis of these results, the physical origin of the nm-size polycrystallization in the appearance of the C15 phase is discussed in relation to both the presence of diffuse ω state in the metastable bcc matrix and the formation of the complex coordinated polyhedra in the C15 structure.
AB - The crystallographic features of a bcc → hcp + C15 structural change in a Ti-30 mol%Cr alloy have been examined by transmission electron microscopy. When the alloy was annealed at 873 K below the eutectoid temperature, the structural change occurred in the following five steps: bcc → bcc + Zone I → bcc + Zone II → bcc + Zone II + hcp → bcc + hcp + C15 → hcp + C15. The interesting features of the change are that the diffuse ω state is present in the metastable bcc matrix, and that in the fourth step the C15 grains with a size of about 2 nm appear in the bcc matrix around the hcp region. As a result of these extremely small C15 grains, the final microstructure, which was obtained from the 5-h-and 100-h-annealed samples, consists of the hcp and C15 grains with an average size of about 100 nm. On the basis of these results, the physical origin of the nm-size polycrystallization in the appearance of the C15 phase is discussed in relation to both the presence of diffuse ω state in the metastable bcc matrix and the formation of the complex coordinated polyhedra in the C15 structure.
KW - Complex coordinated polyhedra
KW - Polycrystallization
KW - Structural change
KW - Titanium chromium alloy
KW - Transmission electron microscopy
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U2 - 10.2320/matertrans.42.2553
DO - 10.2320/matertrans.42.2553
M3 - Article
AN - SCOPUS:0035715556
SN - 1345-9678
VL - 42
SP - 2553
EP - 2558
JO - Materials Transactions
JF - Materials Transactions
IS - 12
ER -