Mechanistic Understanding of Speciated Oxide Growth in High Entropy Alloys

Author:

Gwalani Bharat1,Martin Andrew1,Kautz Elizabeth2,LAMBEETS Sten3ORCID,Olszta Matthew3,Battu Anil3,Malakar Aniruddha1,Yang Feipeng4ORCID,Guo Jinghua4ORCID,Thevuthasan Suntharampillai5,Thuo Martin1ORCID,Devaraj Arun3ORCID

Affiliation:

1. North Carolina State University

2. North Carlina State University

3. Pacific Northwest National Laboratory

4. Lawrence Berkeley National Laboratory

5. PNNL

Abstract

Abstract Complex multi-element alloys are gaining prominence for structural applications, supplementing steels, and superalloys. Understanding the impact of each element on alloy surfaces due to oxidation is vital in maintaining material integrity. This study investigates oxidation mechanisms in these alloys using a model five-element equiatomic CoCrFeNiMn alloy, in a controlled oxygen environment. The oxidation-induced surface changes correlate with each element's interactive tendencies with the environment, guided by thermodynamics. Initial oxidation stages follow atomic size and redox potential, with the latter becoming dominant over time, causing composition inversion. The study employs in-situ atom probe tomography, transmission electron microscopy, and X-ray absorption near-edge structure techniques to elucidate the oxidation process and surface oxide structure evolution. Our findings deconvolute the mechanism for compositional and structural changes in the oxide film and will pave the way for a predictive design of complex alloys with improved resistance to oxidation under extreme conditions.

Publisher

Research Square Platform LLC

Reference34 articles.

1. Oxidation behaviour of CoCr2-xFeNi2. 1Nbx high entropy alloys;Das S;Journal of Alloys and Compounds,2023

2. Recent progress in oxidation behavior of high-entropy alloys: A review;Kumar P;APL Materials,2022

3. High-temperature oxidation behaviour of CoCrNi medium-entropy alloy;Agustianingrum MP;Corrosion Science,2020

4. Effect of Al and Ti on high-temperature oxidation behavior of CoCrFeNi-based high-entropy alloys;Erdogan A;Jom,2019

5. High temperature oxidation behavior of Cr-Mn-Fe-Co-Ni high entropy alloy;Kim Y-K;Intermetallics,2018

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