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- W2789873932 abstract "Abstract Fe-Cr system attracts lot of attention in condensed matter physics due to its technological importance and extraordinary physics related to a non-trivial interplay between magnetic and chemical interactions. However, the effect of multicomponent alloying on the properties of Fe-Cr alloys are less studied. We have calculated the mixing enthalpy, magnetic moments, effective chemical, strain-induced and magnetic exchange interactions to investigate the alloying effect of Ni, Mn, Mo on the phase stability of the ferromagnetic bcc Fe−Cr system at zero K. We demonstrate that the alloying reduces the stability of Fe-Cr alloys and expands the region of spinodal decomposition. At the same time, the mixing enthalpy in ternary Fe100-≿-05Cr≿Ni05 alloys indicates a stability of solid solution phase up to 6 at. % Cr. In Fe100-≿-07Cr≿Ni05Mn01Mo01 alloys, we did not find any alloy composition that has negative enthalpy of formation. Analyzing magnetic and electronic properties of the alloys and investigating magnetic, chemical and strain-induced interactions in the studied systems, we provide physically transparent picture of the main factors leading to the destabilization of the Fe-Cr solid solutions by the multicomponent alloying with Ni, Mn, Mo." @default.
- W2789873932 created "2018-03-29" @default.
- W2789873932 creator A5014557655 @default.
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- W2789873932 date "2018-05-01" @default.
- W2789873932 modified "2023-09-30" @default.
- W2789873932 title "Effect of multicomponent alloying with Ni, Mn and Mo on phase stability of bcc Fe-Cr alloys" @default.
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- W2789873932 doi "https://doi.org/10.1016/j.actamat.2018.02.007" @default.
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