Published December 15, 2009 | Version v1
Journal article

Three scale modeling of the behavior of a 16MND5-A508 bainitic steel: Stress distribution at low temperatures

  • 1. LPMM UMR CNRS 7554, Ecole Nationale Superieure d'Arts et Metiers, 4, avenue Augustin Fresnel, Technopole Metz 2000, 57078 Metz cedex 3 (France)
  • 2. ENSMSE CMP-PS2, Quartier Saint Pierre, Avenue des Anemones, 13120 Gardanne (France)
  • 3. Electricite De France Recherche et Developpement, Departement Materiaux et Mecanique des Composants, Site des Renardieres, Avenue des Renardieres, Ecuelles, 77818 Moret sur Loing (France)

Description

An original approach is proposed to predict the behavior of the 16MND5 bainitic steel (similar to U.S. A508 cl.3) in the lower range of the ductile-to-brittle transition region and at lower temperatures [-196 deg. C; 20 deg. C], by developing a new polycrystalline modeling concurrently with X-ray diffraction (XRD) analysis. A two-level homogenization is used to take into account each kind of heterogeneity as well as the phase and grain interactions. A Mori-Tanaka formulation first enables to describe the elastoplastic behavior of a bainitic single crystal (modeled as a single crystal ferritic matrix reinforced by cementite inclusions), while the transition to polycrystal is achieved by a self-consistent approach. This model can simulate in particular the effects of temperature. It reproduces qualitatively the stress distribution in the material (stress states are lower in ferrite than in the bulk material due to cementite particles, the difference never exceeding 150 MPa), the intergranular strain heterogeneity (ripples observed on the εφψ = f(sin2 ψ) curve) and the pole figures determined by XRD on different scales. The proposed approach is validated here on the macroscopic, phase and intraphase scale.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.msea.2009.08.020

Additional details

Identifiers

DOI
10.1016/j.msea.2009.08.020;
PII
S0921-5093(09)00911-3;

Publishing Information

Journal Title
Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing
Journal Volume
527
Journal Issue
1-2
Journal Page Range
p. 376-386
ISSN
0921-5093
CODEN
MSAPE3

Optional Information

Copyright
Copyright (c) 2009 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.