MATEC Web of Conferences (Jan 2022)

Martensite transformation kinetics and microstructural evolution during quench and partitioning process of high aluminium medium carbon steel

  • Kurup Vinod,
  • Siyasiya Charles,
  • Mostert Roelf

DOI
https://doi.org/10.1051/matecconf/202237003009
Journal volume & issue
Vol. 370
p. 03009

Abstract

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The quench and partition process was studied in a high aluminium (Al) medium carbon (C) steel by varying the quench temperature which is one of the process parameters The first part of the paper deals with modelling athermal martensite transformation using an empirical approach. This model is an improvement on Koiestein and Marburger's model, and it better represents the martensitic transformation. The second part of the paper deals with microstructure evolution in high Al steel when subjected to the quench and partition process. The maximum retained austenite (RA) obtained was 13% at a quenching temperature of 260°C. The addition of Al promoted the formation of bainite during the partition stage.