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Air-oxidation of FeCoNiCr-based quinary high-entropy alloys at 700–900 °C
期刊文章

Air-oxidation of FeCoNiCr-based quinary high-entropy alloys at 700–900 °C

Wu Kai, C.C. Li, F.P. Cheng, K.P. Chu, R.T. Huang, L.W. TsayJ.J. Kai
Corrosion Science, 卷.121, 頁碼.116-125
06/2017

摘要

A: High-entropy alloys B: Oxidation C: Scales Chemistry (all) Chemical Engineering (all) Materials Science (all)
The oxidation of three quinary equimolar high-entropy alloys, containing FeCoNiCrAl, FeCoNiCrMn, and FeCoNiCrSi was studied in dry air at 700–900 °C. The Mn-containing alloy was single-phase, while both Al- and Si-containing alloys were dual-phase. The oxidation kinetics of all the alloys followed the parabolic rate law, regardless of temperature and alloy composition. The oxidation rates of both Al- and Si-containing alloys were lower than those of the quaternary FeCoNiCr alloy, while those of the Mn-containing alloy went to an opposite direction. Multiple scales formed on the alloys were strongly composition-dependent.

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