In-Situ Scanning Electron Microscopy/Electron Backscattered Diffraction Observation of Microstructural Evolution during α → γ Phase Transformation in Deformed Fe-Ni Alloy
This article presents in-situ observation of ferrite ( α )/austenite ( γ ) phase transformation in an Fe-8.5 at. pct Ni alloy deformed by rolling using an automated scanning electron microscopy/energy backscattered diffraction (SEM/EBSD) system. During heating, recrystallization in α phase and α → ...
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Veröffentlicht in: | Metallurgical and materials transactions. A, Physical metallurgy and materials science Physical metallurgy and materials science, 2011-03, Vol.42 (3), p.587-593 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | This article presents
in-situ
observation of ferrite (
α
)/austenite (
γ
) phase transformation in an Fe-8.5 at. pct Ni alloy deformed by rolling using an automated scanning electron microscopy/energy backscattered diffraction (SEM/EBSD) system. During heating, recrystallization in
α
phase and
α
→
γ
phase transformation independently occurred. The
γ
grains nucleated in unrecrystallized
α
grains were most probably incorporated into the grain interior of recrystallized
α
grains. They did not have any specific orientation relation (OR) with recrystallized
α
grains and grew in an isotropic manner. On the other hand, the intragranular
γ
grains nucleated in recrystallized
α
grains had a Kurdjumov–Sachs (K-S) OR with the
α
grains and grew in a considerably anisotropic manner. They preferentially grew along the common direction of surface traces of {110}
α
/{111}
γ
. Approximately half of grain boundary (GB) allotriomorphs had either the K-S OR or the Nishiyama–Wasserman (N-W) OR with the parent
α
grains. The
γ
allotriomorphs predominantly grew into the
α
grain having the special OR with themselves. The GB character distribution of
γ
phase at high temperatures was measured. The fraction of CSL boundaries was as high as 63 pct, particularly that of Σ3 grain boundaries (GBs) was 54 pct. |
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ISSN: | 1073-5623 1543-1940 |
DOI: | 10.1007/s11661-010-0285-4 |