Disclination-Based Crystal Plasticity FE Analysis for Influence of Kink Formation and Grain Size on Material Strength in Dual-Phase Mg Alloy with LPSO Phase
Author:
Affiliation:
1. Graduate School of Science and Technology, Keio University
2. Department of Mechanical Engineering, Keio University
Publisher
Society of Materials Science, Japan
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.jstage.jst.go.jp/article/jsms/72/11/72_790/_pdf
Reference20 articles.
1. 1) Y. Kawamura, K. Hayashi, A. Inoue and T. Masumoto, “Rapidly solidified powder metallurgy Mg alloys with excellent tensile yield strength above 600 MPa”, Materials Transactions, Vol.42, pp.1172-1176 (2001).
2. 2) T. Mayama, T. Ohashi, Y. Tadano and K. Hagihara, “Crystal plasticity analysis of development of intragranular misorientations due to kinking in hcp single crystals subjected to uniaxial compressive loading”, Materials Transactions, Vol.56, pp.963-972 (2015).
3. 3) S. Kobayashi and R. Tarumi, “Geometrical modeling and numerical analysis of screw dislocation”, Transactions of the JSME, Vol. 87, No. 894, DOI: 10.1299/ transjsme.20-00409 (2021).
4. 4) Y. Kimura, R. Ueta and K. Shizawa, “Crystal plasticity FE simulation for kink band formation in Mg-based LPSO phase using dislocation-based higher-order stress model”, Mechanical Engineering Journal, Vol.7, No.4, pp.19-00612 (2020).
5. 5) R. Ueta and K. Shizawa, “Investigation on Position of Kink Band Formation in Single Crystal ofMg-Based LPSO Phase Using Dislocation-Based Crystal Plasticity Simulation”, Journal of the Society of Materials Science, Japan, Vol.65, No.3, pp.220-227 (2016).
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