Crystal Plasticity FE Simulation for Size Effect of Mg-Based LPSO Phase Using Dislocation-Based Higher-Order Stress Model
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/68/11/68_825/_pdf
Reference18 articles.
1. 1) Y. Kawamura, K. Hayashi, A. Inoue and T. Masumoto, "Rapidly solidified powder metallurgy Mg97Zn1Y2 alloys with excellent tensile yield strength above 600 MPa", Materials Transactions, Vol.42, No.7, pp.1172-1176, (2001).
2. 2) K. Hagihara, A. Kinoshita, Y. Sugino, M. Yamasaki, Y. Kawamura, H.Y. Yasuda and Y. Umakoshi, "Effect of long-period stacking ordered phase on mechanical properties of Mg97Zn1Y2 extruded alloy", Acta Materialia, Vol.58, Issue 19, pp.6282-6293, (2010).
3. 3) J. B. Hess and C. S. Barrett, "Structure and nature of kink bands in zinc", Transactions of the American Institute of Mining and Metallurgical Engineers, Vol.185, pp.599-606, (1949).
4. 4) R. Ueta and K. Shizawa, "A dislocation-based crystal plasticity simulation on kink band formation in single crystal of Mg-based LPSO phase", Journal of the Society of Materials Science, Japan, Vol.64, Issue 4, pp.295-302, (2015).
5. 5) R. Ueta and K. Shizawa, "Investigation on position of kink band formation in single crystal of Mg-based LPSO phase using dislocation-based crystal plasticity simulation", Journal of the Society of Materials Science, Japan, Vol.65, Issue 3, pp.220-227, (2016).
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1. Modeling and simulation of dynamic recrystallization for Mg/LPSO alloys based on multi-phase-field and dislocation-based crystal plasticity models;Transactions of the JSME (in Japanese);2020
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