Abstract
Lattice distortions constitute one of the main features characterizing high entropy alloys. Local lattice distortions have, however, only rarely been investigated in these multi-component alloys. We, therefore, employ a combined theoretical electronic structure and experimental approach to study the atomistic distortions in the FeCoNiCrMn high entropy (Cantor) alloy by means of density-functional theory and extended X-ray absorption fine structure spectroscopy. Particular attention is paid to element-resolved distortions for each constituent. The individual mean distortions are small on average, <1%, but their fluctuations (i.e., standard deviations) are an order of magnitude larger, in particular for Cr andMn. Good agreement between theory and experiment is found.
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Oh, H. S., Ma, D., Leyson, G. P., Grabowski, B., Park, E. S., Kormann, F., & Raabe, D. (2016). Lattice distortions in the FeCoNiCrMn high entropy alloy studied by theory and experiment. Entropy, 18(9). https://doi.org/10.3390/e18090321
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