Unravelling the mechanical behaviour of advanced multiphase steels isothermally obtained below Ms

Journal Article (2020)
Author(s)

A. Navarro-López (TU Delft - (OLD) MSE-3)

Javier Hidalgo Garcia (TU Delft - (OLD) MSE-3)

Jilt Sietsma (TU Delft - (OLD) MSE-3, TU Delft - Materials Science and Engineering)

Maria Jesus Santofimia (TU Delft - (OLD) MSE-3)

Research Group
(OLD) MSE-3
Copyright
© 2020 A. Navarro Lopez, J. Hidalgo Garcia, J. Sietsma, Maria Jesus Santofimia
DOI related publication
https://doi.org/10.1016/j.matdes.2020.108484
More Info
expand_more
Publication Year
2020
Language
English
Copyright
© 2020 A. Navarro Lopez, J. Hidalgo Garcia, J. Sietsma, Maria Jesus Santofimia
Research Group
(OLD) MSE-3
Volume number
188
Reuse Rights

Other than for strictly personal use, it is not permitted to download, forward or distribute the text or part of it, without the consent of the author(s) and/or copyright holder(s), unless the work is under an open content license such as Creative Commons.

Abstract

The initial formation of athermal martensite was proven to accelerate the subsequent bainite formation kinetics during isothermal holdings below the martensite-start temperature (Ms). The presence of prior athermal martensite (PAM) within the phase mixture is expected to modify the overall mechanical response of these newly-designed multiphase steels. Differences stem not only from the balance of product phases, but also from the effect of tempering of the PAM with variations in the applied holding time. This work investigates the effect of tempering time on the mechanical behaviour of the PAM and, as consequence, on the overall mechanical response of these microstructures. Results show that, for short holding times (several minutes), PAM yields similar to as-quenched martensite while, for longer holding times, its yielding behaviour becomes comparable to the one exhibited by typical tempered martensite. Furthermore, the use of Kocks-Mecking curves for the analysis of the mechanical performance confirms the bainitic character of the product phase isothermally formed below Ms. Tailoring the bainitic-martensitic microstructure with variations of the holding time below Ms enables to obtain advanced multiphase steels with comparable mechanical properties to those exhibited by conventional bainitic steels, but in shorter processing times due to the acceleration of bainite formation.