Phase and microstructure selection in peritectic alloys close to the limit of constitutional undercooling

Phase and microstructure selection during directional solidification of peritectic alloys has remained unclear for years despite their great technical importance. Taking into account nucleation and growth of the phases, a criterion is proposed in order to determine the phase as a function of alloy c...

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Veröffentlicht in:Acta Materialia 1998-11, Vol.46 (18), p.6325-6336
Hauptverfasser: Hunziker, O., Vandyoussefi, M., Kurz, W.
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container_title Acta Materialia
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creator Hunziker, O.
Vandyoussefi, M.
Kurz, W.
description Phase and microstructure selection during directional solidification of peritectic alloys has remained unclear for years despite their great technical importance. Taking into account nucleation and growth of the phases, a criterion is proposed in order to determine the phase as a function of alloy composition and growth conditions. A microstructure selection diagram for peritectic alloys close to the limit of constitutional undercooling is developed. This theoretical approach is compared with results from Bridgman experiments using Fe–Ni alloys, and good agreement is obtained. The validity and the limits of this model are also discussed.
doi_str_mv 10.1016/S1359-6454(98)00336-X
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source Elsevier ScienceDirect Journals
subjects Applied sciences
COMPARATIVE EVALUATIONS
Cross-disciplinary physics: materials science
rheology
Exact sciences and technology
IRON ALLOYS
MATERIALS SCIENCE
Metals. Metallurgy
MICROSTRUCTURE
NICKEL ALLOYS
Phase diagrams and microstructures developed by solidification and solid-solid phase transformations
PHASE STUDIES
Physics
SOLIDIFICATION
title Phase and microstructure selection in peritectic alloys close to the limit of constitutional undercooling
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