4.7 Article

Deformation response of ferrite and martensite in a dual-phase steel

Journal

ACTA MATERIALIA
Volume 62, Issue -, Pages 197-211

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.actamat.2013.10.001

Keywords

Dual-phase steel; Mechanical behavior; Nanoindentation; Micropillar compression; Electron microscopy

Funding

  1. Arcelor-Mittal Global RD East Chicago
  2. NSF-MRSEC on Micro- and Nano-Mechanics of Structural and Electronic Materials (NSF) [DMR-0520651]
  3. Alexander von Humboldt Foundation
  4. ONR [N000140910883]

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Deformation response of ferrite and martensite in a commercially produced dual-phase sheet steel with a nominal composition of 0.15% C-1.45% Mn-0.30% Si (wt.%) was characterized by nanoindentation and uniaxial compression of focused ion beam-milled cylindrical micropillars (1-2 mu m diameter). These experiments were conducted on as-received and pre-strained specimens. The average nanoindentation hardness of ferrite was found to increase from similar to 2 GPa in the as-received condition to similar to 3.5 GPa in the specimen that had been pre-strained to 7% plastic tensile strain. Hardness of ferrite in the as-received condition was inhomogeneous: ferrite adjacent to ferrite/martensite interface was similar to 20% harder than that in the interior, a feature also captured by micropillar compression experiments. Hardness variation in ferrite was reversed in samples pre-strained to 7% strain. Martensite in the as-received condition and after 5% pre-strain exhibited large scatter in nanoindentation hardness; however, micropillar compression results on the as-received and previously deformed steel specimens demonstrated that the martensite phase in this steel was amenable to plastic deformation and rapid work hardening in the early stages of deformation. The observed microscopic deformation characteristics of the constituent phases are used to explain the macroscopic tensile deformation response of the dual-phase steel. (C) 2013 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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