Microstructure evolution of eutectic Al–Cu strips by high-speed twin-roll strip casting process

In the present investigation, microstructural evolutions of functionally graded eutectic Al–Cu strips prepared by high-speed twin-roll strip caster at different casting speeds and liquid melt superheats were studied. The as-cast sample was subjected to scanning electron microscope to study the evolu...

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Veröffentlicht in:Applied physics. A, Materials science & processing Materials science & processing, 2015-10, Vol.121 (1), p.45-50
Hauptverfasser: Sahoo, Seshadev, Ghosh, Sudipto
Format: Artikel
Sprache:eng
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Zusammenfassung:In the present investigation, microstructural evolutions of functionally graded eutectic Al–Cu strips prepared by high-speed twin-roll strip caster at different casting speeds and liquid melt superheats were studied. The as-cast sample was subjected to scanning electron microscope to study the evolution of microstructure of the strip at different casting speeds and liquid melt superheats. At different casting speeds, non-equilibrium eutectic structure observed on the Al–Cu eutectic strip consists of lamellar as well as wavy structure with a distinct boundary. The lamellar microstructure consists of alternating layers of well-bonded α-Al phase and θ-Al 2 Cu phase. The globular flowery structure within the eutectic matrix was observed on the strip at different liquid melt superheats. The microhardness of the as-cast strip was studied by Vickers hardness tester, and it was found that hardness value increases with increasing casting speed and decreases with increasing liquid melt superheat.
ISSN:0947-8396
1432-0630
DOI:10.1007/s00339-015-9319-5