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Original Articles

Strain hardening due to {10 12} twinning in pure magnesium

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Pages 991-1003 | Received 15 Nov 2007, Published online: 17 Aug 2009

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Z. Pu, Z. C. Xie, R. Sarmah, Y. Chen, C. Lu, G. Ananthakrishna & L. H. Dai. (2021) Spatio-temporal dynamics of jerky flow in high-entropy alloy at extremely low temperature. Philosophical Magazine 101:2, pages 154-178.
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Bidyapati Mishra, D. Vijay Kumar, Chetan Pakhare, K. N. Jonnalagadda & M. J. N. V. Prasad. (2017) Effect of thermomechanical processing on microstructural evolution and deformation behaviour of polycrystalline magnesium under quasi-static and high strain rate conditions. Philosophical Magazine 97:14, pages 1071-1087.
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F. Naghdi, R. Mahmudi, J.Y. Kang & H.S. Kim. (2015) Contributions of different strengthening mechanisms to the shear strength of an extruded Mg–4Zn–0.5Ca alloy. Philosophical Magazine 95:31, pages 3452-3466.
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Motohiro Yuasa, Kohei Masunaga, Mamoru Mabuchi & Yasumasa Chino. (2014) Interaction mechanisms of screw dislocations with and twin boundaries in Mg. Philosophical Magazine 94:3, pages 285-305.
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A.L. Oppedal, Haitham El Kadiri, C.N. Tomé, Sven C. Vogel & M.F. Horstemeyer. (2013) Anisotropy in hexagonal close-packed structures: improvements to crystal plasticity approaches applied to magnesium alloy. Philosophical Magazine 93:35, pages 4311-4330.
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B. Bhattacharya & M. Niewczas. (2011) Work-hardening behaviour of Mg single crystals oriented for basal slip. Philosophical Magazine 91:17, pages 2227-2247.
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