4.6 Article

Ab initio explanation of disorder and off-stoichiometry in Fe-Mn-Al-C κ carbides

Journal

PHYSICAL REVIEW B
Volume 95, Issue 10, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.95.104108

Keywords

-

Funding

  1. Deutsche Forschungsgemeinschaft (DFG) [SPP-1713, HI 1300/8-1]
  2. European Research Council
  3. Academy of Sciences of the Czech Republic [RVO:68081723]
  4. Ministry of Education, Youth and Sports of the Czech Republic [CEITEC 2020 (LQ1601), LM2015042, LM2015085]
  5. Czech Science Foundation [GA 16-24711S]
  6. IT4 Innovations National Supercomputer Center [LM2015070]

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Carbides play a central role for the strength and ductility in many materials. Simulating the impact of these precipitates on the mechanical performance requires knowledge about their atomic configuration. In particular, the C content is often observed to substantially deviate from the ideal stoichiometric composition. In thiswork, we focus on Fe-Mn-Al-C steels, for which we determined the composition of the nanosized. carbides (Fe, Mn)(3)AlC by atom probe tomography in comparison to larger precipitates located in grain boundaries. Combining density functional theory with thermodynamic concepts, we first determine the critical temperatures for the presence of chemical and magnetic disorder in these carbides. Second, the experimentally observed reduction of the C content is explained as a compromise between the gain in chemical energy during partitioning and the elastic strains emerging in coherent microstructures.

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