Effect of Al, Ti and C additions on Widmanstätten microstructures and mechanical properties of cast Al0.6CoCrFeNi compositionally complex alloys

The cast microstructure of the Al0.6CoCrFeNi compositionally complex alloy was successfully refined with small additions of Al, Ti and C and its mechanical properties were optimized. In the as-cast state, this alloy has a Widmanstätten microstructure with coarse grains (∼110 μm) of a strong BCC/B2 m...

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Veröffentlicht in:Materials & design 2019-12, Vol.184, p.108201, Article 108201
Hauptverfasser: Asabre, A., Kostka, A., Stryzhyboroda, O., Pfetzing-Micklich, J., Hecht, U., Laplanche, G.
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Sprache:eng
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Zusammenfassung:The cast microstructure of the Al0.6CoCrFeNi compositionally complex alloy was successfully refined with small additions of Al, Ti and C and its mechanical properties were optimized. In the as-cast state, this alloy has a Widmanstätten microstructure with coarse grains (∼110 μm) of a strong BCC/B2 matrix and soft FCC plates (∼65 vol.%) with large widths (∼1.3 μm). The addition of 0.25 at.% C to Al0.6CoCrFeNi stabilizes the FCC phase and favors the formation of a coarse dendritic microstructure making this alloy unsuitable for structural applications. In contrast, alloying of either 3 at.% Al, Ti, or 3% Ti and 0.25% C to Al0.6CoCrFeNi refined its Widmanstätten microstructure, i.e. the thickness of the FCC plates and/or the size of the prior BCC/B2 grains were significantly reduced. As a result of these microstructural changes, Al and Ti containing alloys show an outstanding strength (twice higher than that of Al0.6CoCrFeNi) and ductilities ≤5% at 20 °C. These properties are retained at 400 °C but at 700 °C, the strength and ductility of almost all alloys decrease. However, Ti containing alloys exhibit much larger ductilities (∼50%) at 700 °C due to their high density of grain boundaries which accommodate plastic deformation through grain boundary sliding. [Display omitted] •Effect of Ti, Al and C additions on microstructure and properties of Al0.6CoCrFeNi alloy.•  The additions of Ti or Ti+C allow to refine the cast microstructure of Al0.6CoCrFeNi.• This microstructural refinement results in superior mechanical properties.•At 700°C, the alloys strongly soften and become more brittle except for those with Ti.•These alloys exhibit an excellent ductility due to grain boundary sliding.
ISSN:0264-1275
1873-4197
DOI:10.1016/j.matdes.2019.108201