2015
DOI: 10.17516/1999-494x-2015-8-1-48-56
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The Clusters Self-Assembled Crystal and Magnetic Structure During the Martensite Transition in Fe86mn13c Alloy

Abstract: In bulk and thin film state Fe86Mn13C alloy observed experimentally self-assembly of the crystal and magnetic structures on multiscale levels. Offered self-assembly cluster model of atomic structure based on the concept of a liquid-like state of the material in localized areas, formed in the waves of plastic deformation.

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Cited by 1 publication
(2 citation statements)
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“…4 presents the results of calculations of the spin density of electron states N(E) of the clusters with the Frank-Kasper structure in the case of "up" and "down" spin projections of the electrons. The spectra calculated in this work are in a qualitative agreement with the spectra obtained in [14]. Unfortunately, the authors of [14] did not give any information about magnetization of the alloy.…”
supporting
confidence: 83%
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“…4 presents the results of calculations of the spin density of electron states N(E) of the clusters with the Frank-Kasper structure in the case of "up" and "down" spin projections of the electrons. The spectra calculated in this work are in a qualitative agreement with the spectra obtained in [14]. Unfortunately, the authors of [14] did not give any information about magnetization of the alloy.…”
supporting
confidence: 83%
“…The spectra calculated in this work are in a qualitative agreement with the spectra obtained in [14]. Unfortunately, the authors of [14] did not give any information about magnetization of the alloy.…”
supporting
confidence: 83%