Understanding martensite and twin formation in austenitic steels: a model describing TRIP and TWIP effects
Understanding martensite and twin formation in austenitic steels: a model describing TRIP and TWIP effects
A unified description for the evolution of ε– and α′– martensite, and twinning in austenitic steels is presented. The formation of micron—scale ε and twin bands is obtained by considering the evolution of hierarchically arranged nano–sized ε and twins (embryos). The critical size and applied stress when these structures form is obtained by minimising their free energy of formation. The difference between forming an ε plate or a twin lies in the number of overlapping stacking faults in their structure. A nucleation rate criterion is proposed in terms of the critical embryo size, resolved shear stress and embryo number density. Based on Olson and Cohen's classical α′–martensite transformation model, the nucleation rate of α′ is considered proportional to that for ε. These results, combined with dislocation–based approximations, are employed to prescribe the microstructure and flow stress response in steels where transformation–induced–plasticity (TRIP) and/or twinning–induced–plasticity (TWIP) effects operate; these include austenitic stainless and high–Mn steels. Maps showing the operation range of ε, α′ and twinning in terms of the stacking fault energy at different strain levels are defined. Effects of chemical composition in the microstructure and mechanical response in stainless steels are also explored. These results allow identifying potential compositional scenarios when the TRIP and/or TWIP effects are promoted in austenitic steels.
Austenite, Deformation twinning, Martensite, Modelling, TRIP-Assisted steel
120-134
Galindo-Nava, E.I.
55a2bf00-0903-414e-8ab6-e26d143a9af3
Rivera-Díaz-del-Castillo, P.E.J.
6e0abc1c-2aee-4a18-badc-bac28e7831e2
20 February 2017
Galindo-Nava, E.I.
55a2bf00-0903-414e-8ab6-e26d143a9af3
Rivera-Díaz-del-Castillo, P.E.J.
6e0abc1c-2aee-4a18-badc-bac28e7831e2
Galindo-Nava, E.I. and Rivera-Díaz-del-Castillo, P.E.J.
(2017)
Understanding martensite and twin formation in austenitic steels: a model describing TRIP and TWIP effects.
Acta Materialia, 128, .
(doi:10.1016/j.actamat.2017.02.004).
Abstract
A unified description for the evolution of ε– and α′– martensite, and twinning in austenitic steels is presented. The formation of micron—scale ε and twin bands is obtained by considering the evolution of hierarchically arranged nano–sized ε and twins (embryos). The critical size and applied stress when these structures form is obtained by minimising their free energy of formation. The difference between forming an ε plate or a twin lies in the number of overlapping stacking faults in their structure. A nucleation rate criterion is proposed in terms of the critical embryo size, resolved shear stress and embryo number density. Based on Olson and Cohen's classical α′–martensite transformation model, the nucleation rate of α′ is considered proportional to that for ε. These results, combined with dislocation–based approximations, are employed to prescribe the microstructure and flow stress response in steels where transformation–induced–plasticity (TRIP) and/or twinning–induced–plasticity (TWIP) effects operate; these include austenitic stainless and high–Mn steels. Maps showing the operation range of ε, α′ and twinning in terms of the stacking fault energy at different strain levels are defined. Effects of chemical composition in the microstructure and mechanical response in stainless steels are also explored. These results allow identifying potential compositional scenarios when the TRIP and/or TWIP effects are promoted in austenitic steels.
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Accepted/In Press date: 2 February 2017
e-pub ahead of print date: 4 February 2017
Published date: 20 February 2017
Keywords:
Austenite, Deformation twinning, Martensite, Modelling, TRIP-Assisted steel
Identifiers
Local EPrints ID: 492416
URI: http://eprints.soton.ac.uk/id/eprint/492416
ISSN: 1359-6454
PURE UUID: c299b8e3-f71c-4604-9eba-30991317a87a
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Date deposited: 26 Jul 2024 16:33
Last modified: 27 Jul 2024 02:08
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Author:
E.I. Galindo-Nava
Author:
P.E.J. Rivera-Díaz-del-Castillo
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