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Cited 32 time in webofscience Cited 34 time in scopus
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An enhanced distortional-hardening-based constitutive model for hexagonal close-packed metals: Application to AZ31B magnesium alloy sheets at elevated temperatures

Authors
Lee, JinwooBong, Hyuk JongKim, Se-JongLee, Myoug-GyuKim, Daeyong
Issue Date
Mar-2020
Publisher
Pergamon Press Ltd.
Keywords
Twinning; Yield condition; Constitutive behavior; Finite elements; Numerical algorithms
Citation
International Journal of Plasticity, v.126
Indexed
SCIE
SCOPUS
Journal Title
International Journal of Plasticity
Volume
126
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/77523
DOI
10.1016/j.ijplas.2019.10.006
ISSN
0749-6419
1879-2154
Abstract
In this study, a new material model for hexagonal close-packed (HCP) metals for predicting their flow responses under monotonic/cyclic loadings at various temperatures is proposed. The temperature-dependent constitutive model is re-formulated using a continuum-based distortional hardening law, which affects the shape of the yield surface depending on the loading direction, and also uses the concept of the dominant deformation modes in magnesium alloys: twin, untwin, and slip-dominate modes, considering the role of the twins in plastic deformation. In terms of the material asymmetry in yield strength, the Cazacu-Barlat-Plunkett (CPB) '06 yield criterion is extended to include thermal effects. A numerical formulation of the material model has also been developed to allow its implementation into finite element analysis software via a user-defined material subroutine (UMAT). The predicted results of stress-strain response for monotonic and cyclic loadings are excellent agreement with the experimental data. Moreover, the simulated results show the strength differential (SD) effect and unusual flow responses of AZ31B magnesium alloy sheets at room temperature, as well as the variation in the SD effect and anisotropic hardening behavior at elevated temperatures.
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대학원 (나노신소재융합공학과)
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