A novel genetic algorithm-based calibration framework for crystal plasticity parameters in DP780 steels using multiscale mechanical testing

被引:0
作者
Kong, Linghao [1 ]
Pan, Boyu [1 ]
Henrich, Manuel [1 ]
Stebner, Sophie [1 ]
Muenstermann, Sebastian [1 ]
机构
[1] Rhein Westfal TH Aachen, Inst Met Forming IBF, Intzestr 10, D-52072 Aachen, Germany
关键词
Crystal plasticity; Mutiscale test; Dual-phase steel; Genetic algorithm; Machine learning; STRAIN; DEFORMATION; STRESS;
D O I
10.1016/j.commatsci.2025.114088
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study presents a robust genetic algorithm (GA)-based framework for calibrating crystal plasticity (CP) model parameters in dual-phase (DP) steels using multiscale mechanical testing. To overcome challenges associated with phase-specific parameter identification and temperature dependence, a two-stage calibration strategy is developed. In the first stage, nanoindentation tests at multiple temperatures are employed to determine the CP parameters of ferrite by matching simulated and experimental force-displacement curves. In the second stage, uniaxial tensile data are used to calibrate martensite parameters via representative volume elements (RVEs). The GA efficiently explores the high-dimensional parameter space and ensures fast convergence while maintaining physical consistency. Comparative results show that the GA-calibrated parameters outperform those obtained by conventional trial-and-error methods, with better alignment to experimental data. The proposed framework enables accurate and scalable CP calibration across different temperatures and offers broad applicability to multiscale modeling and alloy design.
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页数:17
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