Effect of Intercritical Annealing on Martensite Start Temperature and Low-Temperature Bainitic Transformation in Al-Alloyed 3Mn Multiphase Steel
DOI:
https://doi.org/10.24425/amm.2026.1972Abstract
The primary objective of this study was to determine how intercritical annealing affects the martensite start temperature and subsequent low-temperature bainitic transformation in a 0.17C-3.1Mn-1.6Al-0.2Si-0.2Mo-0.04Nb medium-manganese multiphase steel. A two-step heat treatment was designed, consisting of intercritical annealing in the range of 780-870°C, followed by isothermal holding at 200-300°C. The transformation behaviour was analysed using dilatometric measurements, thermodynamic calculations and scanning electron microscopy. Increasing the intercritical annealing temperature from 780°C to 870°C increased the martensite start temperature from approximately 170°C to 305°C. Lower annealing temperatures promoted stronger carbon and manganese enrichment of austenite, but reduced the amount of austenite available for bainitic transformation. The dilatometric response during isothermal holding increased with higher annealing and holding temperatures. Martensitic transformation during final cooling was detected after intercritical annealing at 780°C followed by isothermal holding at 200°C, and after intercritical annealing at 800°C followed by isothermal holding at 220°C. The most favourable response in terms of forming refined bainitic products was obtained after intercritical annealing at 860 or 870°C followed by isothermal holding at 300°C, where measurable bainitic transformation was combined with no clear martensitic signal during final cooling. The proposed route is therefore promising for further optimisation, although high-resolution characterisation is still required to confirm nanobainitic morphology and quantify phase fractions.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Archives of Metallurgy and Materials

This work is licensed under a Creative Commons Attribution 4.0 International License.