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Autor(en) / Beteiligte
Titel
Novel Si-added CrCoNi medium entropy alloys achieving the breakthrough of strength-ductility trade-off
Ist Teil von
  • Materials & design, 2021-01, Vol.197, p.109202, Article 109202
Ort / Verlag
Elsevier Ltd
Erscheinungsjahr
2021
Quelle
Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals
Beschreibungen/Notizen
  • A novel CrCoNiSix (x = 0.1, 0.2, 0.3) medium entropy alloys (MEAs) system was designed to achieve enhanced strength and ductility. The CrCoNiSix MEAs are all single-phase face-centered cubic (FCC) structure. The recrystallization rate and average grain size obviously increase with the increase of Si. Compared to CrCoNi MEA, the ultimate tensile strength (UTS) and uniform elongation (UE) of CrCoNiSi0.3 MEA were increased from 790 MPa to 960 MPa and 58% to 92%, respectively, and the product of UTS and total elongation (TE) increased up to 88 GPa% (46 GPa% for CoCrNi MEA), superior to most high strength-ductility alloys. The stacking-fault energy (SFE) in the Si-added MEAs decreases with Si addition, as proved by thermodynamic model. Therefore, the underlying strengthening mechanism is the reduction of SFE and increase in the lattice distortion via Si addition. More concentrated and thinner deformation twins and multiple twinning structures were observed in Si-added MEAs. Furthermore, a nanoscale diffusionless transformation from the FCC to the hexagonal close-packed (HCP) phase occurred at room-temperature tension in Si-added MEAs, which further increased the work hardening and uniform elongation. This work provides a new and significant approach to break through the strength-ductility trade-off in FCC MEAs/HEAs, especially serving as energy-absorbing materials. [Display omitted] •The strength and ductility of CrCoNi MEA are both significantly improved by adding Si element.•CrCoNiSi0.3 MEA exhibits outstanding product of ultimate tensile strength and total elongation, exceeding most of existing alloys tensioned at room temperature.•The recrystallization rate and the average grain size are obviously increased with the increase of Si content.•Nanoscale transformation from FCC to HCP phase occurs at ambient temperature deformation for Si-added CrCoNiSix MEA.
Sprache
Englisch
Identifikatoren
ISSN: 0264-1275
eISSN: 1873-4197
DOI: 10.1016/j.matdes.2020.109202
Titel-ID: cdi_doaj_primary_oai_doaj_org_article_d007d7c956a3400db9466a1b31f9c346

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