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Precipitation in the equiatomic high-entropy alloy CrMnFeCoNi

Scripta Materialia · 2015 · Vol. 113 · pp. 106–109
E.J. PickeringR. Muñoz‐MorenoH.J. StoneN.G. Jones

Abstract

CrMnFeCoNi is widely considered to be an exemplar high-entropy alloy, which is stable as a single solid-solution phase at all temperatures below its melting point. Here, for the first time, the formation of two distinct types of Cr-rich precipitate in coarse-grained CrMnFeCoNi is reported following prolonged exposures at 700 °C. The precipitates were identified as M23C6 and the σ phase, and their formation in unworked material during heat treatments without an applied stress indicated that they are equilibrium phases. Therefore, CrMnFeCoNi can no longer be regarded as thermodynamically stable as a single phase at all temperatures below its solidus.

High Entropy Alloys StudiesHigh-Temperature Coating BehaviorsAdditive Manufacturing Materials and ProcessesAlloyMaterials scienceSolidusThermodynamicsMelting pointPrecipitationMetallurgyPhase (matter)Solid solutionHigh entropy alloys

Funding

  • University of Cambridge
  • Engineering and Physical Sciences Research Council
Citations
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Precipitation in the equiatomic high-entropy alloy CrMnFeCoNi · Scinovex