2009
DOI: 10.1016/j.jallcom.2008.12.014
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Age hardening of the Al0.3CoCrFeNiC0.1 high entropy alloy

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Cited by 117 publications
(30 citation statements)
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“…In our previous work regarding the age hardening of adding secondary element C in Al 0.3 CoCrFeNi alloy, the Al 0.3 CoCrFeNiC 0.1 alloy appeared the strongest age hardening at 700 • C due to the precipitation of fine k 2 carbides [16]. In this paper, the effects of secondary elemental Mo or Ti addition in Al 0.3 CoCrFeNi alloy on the microstructure and age hardening at 700 • C were studied.…”
Section: Introductionmentioning
confidence: 92%
“…In our previous work regarding the age hardening of adding secondary element C in Al 0.3 CoCrFeNi alloy, the Al 0.3 CoCrFeNiC 0.1 alloy appeared the strongest age hardening at 700 • C due to the precipitation of fine k 2 carbides [16]. In this paper, the effects of secondary elemental Mo or Ti addition in Al 0.3 CoCrFeNi alloy on the microstructure and age hardening at 700 • C were studied.…”
Section: Introductionmentioning
confidence: 92%
“…Studies on, for example, carbon content effect on phase composition and microstructure of the alloys, have never been performed, although it is essential for alloy development. Another important issue is the potential effect of annealing treatment on structure and properties of the alloys, as there is a chance to develop hardenable by heat treatment alloys when carbon is added [15]. Therefore, in the current study, we have explored structure and hardness of the CoCrFeNiMn-based alloys with different C content, both in as-solidified condition and after annealing treatment.…”
Section: A N U S C R I P Tmentioning
confidence: 99%
“…[158,159] The hardness of Al 0.3 CrFeCoNi HEA increases by %65% after aging at 700 C for 144 h, and the addition of Mo and Ti in minor amount has Table 1. The phase formation in AlxCoCrFeNi at different conditions.…”
Section: Age Hardening Behaviormentioning
confidence: 99%