Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5455543 | Materials Science and Engineering: A | 2017 | 22 Pages |
Abstract
The present study is focused on synthesis and mechanical properties characterization of equiatomic CoCrNi medium entropy alloy (MEA). Powder metallurgy processes of mechanical alloying (MA) with subsequent spark plasma sintering (SPS) for bulk alloy densification have been utilized. As opposed to the single-phase alloys of identical composition fabricated via casting routes, the alloy after SPS compaction consisted of a major FCC solid solution phase (94.4%), minor fraction of secondary BCC phase (5.6%, precipitated at the FCC grains boundaries), and negligible amount of oxide inclusions. The alloy exhibited high ultimate tensile strength of 1024Â MPa and a elongation to fracture of 26%. Elastic modulus of the alloy reached 222Â GPa and the thermal expansion coefficient (CTE) was measured as 17.4 Ã 10â6Â Kâ1 The plastic deformation in the alloy is carried out by a combination of dislocation glide and mechanical nano-twinning at room temperature.
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Authors
Igor Moravcik, Jan Cizek, Zuzana Kovacova, Jitka Nejezchlebova, Michael Kitzmantel, Erich Neubauer, Ivo Kubena, Vit Hornik, Ivo Dlouhy,