English

Role of interface morphology on the martensitic transformation in pure Fe

Materials Science 2022-09-07 v1

Abstract

Using classical molecular dynamics simulations, we study austenite to ferrite phase transformation in iron, focusing on the role of interface morphology. We compare two different morphologies; a \textit{flat} interface in which the two phases are joined according to Nishiyama-Wasserman orientation relationship vs. a \textit{ledged} one, having steps similar to the vicinal surface. We identify the atomic displacements along a misfit dislocation network at the interface leading to the phase transformation. In case of \textit{ledged} interface, stacking faults are nucleated at the steps, which hinder the interface motion, leading to a lower mobility of the inter-phase boundary, than that of flat interface. Interestingly, we also find the temperature dependence of the interface mobility to show opposite trends in case of \textit{flat} vs. \textit{ledged} boundary. We believe that our study is going to present a unified and comprehensive view of martensitic transformation in iron with different interface morphology, which is lacking at present, as \textit{flat} and \textit{ledged} interfaces are treated separately in the existing literature.

Keywords

Cite

@article{arxiv.2101.07468,
  title  = {Role of interface morphology on the martensitic transformation in pure Fe},
  author = {Pawan Kumar Tripathi and Shivraj Karewar and Yu-Chieh Lo and Somnath Bhowmick},
  journal= {arXiv preprint arXiv:2101.07468},
  year   = {2022}
}

Comments

10 pages, 9 figures