On the multiphase-field modeling of martensitic phase transformation in dual-phase steel using J2-viscoplasticity

被引:9
|
作者
Schoof, Ephraim [1 ,2 ]
Herrmann, Christoph [1 ,2 ]
Streichhan, Nick [2 ]
Selzer, Michael [1 ,2 ]
Schneider, Daniel [1 ,2 ]
Nestler, Britta [1 ,2 ]
机构
[1] Karlsruhe Inst Technol, Inst Appl Mat IAM CMS, Str Forum 7, D-76131 Karlsruhe, Germany
[2] Karlsruhe Univ Appl Sci, Inst Digital Mat Sci IDM, Moltkestr 30, D-76133 Karlsruhe, Germany
关键词
martensitic phase transformation; multiphase-field modeling; dual-phase steel; plasticity; TO-FERRITE TRANSFORMATION; LATH MARTENSITE; MICROSTRUCTURE EVOLUTION; PLASTIC-ACCOMMODATION; MECHANICAL-PROPERTIES; DISLOCATION DENSITY; CRYSTAL PLASTICITY; HARDENING BEHAVIOR; SIMULATION; STRAIN;
D O I
10.1088/1361-651X/aaf980
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
On the mesoscopic length scale, dual-phase steel (DP) consists of hard and brittle martensitic inclusions, which are embedded in a soft and ductile ferritic matrix. On the macroscopic scale, this composite-like structure is responsible for the attractive combination of good formability and high tensile strength. In order to improve the properties of DP, computer models can be used to investigate the effects of various influencing factors during the production chain. As an extension to our previous work (Schoof et al 2018 Int. J. Solids Struct. 134 181-94), we include a J(2)-viscoplasticity formulation into a multiphase-field framework to study plastic effects in an EBSD-based DP microstructure during the martensitic phase transformation. The hardening behavior of each phase is modeled using a nonlinear function. The effect of the plastic relaxation rate on the microstructure formation and the residual strains is investigated. Two different models for introducing a yield criterion into a diffuse interface framework are discussed, and the results are compared. In this context, a plastic driving force is formulated, and its influence on the microstructure evolution is evaluated. The model not only predicts high values of accumulated plastic strain in ferritic regions, close to ferrite-martensite grain boundaries, but also within martensitic islands.
引用
收藏
页数:24
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