{332}<113> detwinning in a multilayered bcc-Ti–10Mo–Fe alloy
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s10853-017-1032-7.pdf
Reference43 articles.
1. Lu L, Shen Y, Chen X, Qian L, Lu K (2004) Ultrahigh strength and high electrical conductivity in copper. Science 304:422–426
2. Raabe D, Roters F, Neugebauer J, Gutierrez-Urrutia I, Hickel T, Bleck W, Schneider JM, Wittig JE, Mayer J (2016) Ab initio guided design of twinning induced plasticity steels. MRS Bull 41:320–325
3. Gutierrez-Urrutia I, Raabe D (2011) Dislocation and twin substructure evolution during strain hardening of an Fe–22 wt% Mn–0.6 wt% C TWIP steel observed by electron channeling contrast imaging. Acta Mater 59:6449–6462
4. Grässel O, Krüger L, Frommeyer G, Meyer LW (2000) High strength Fe–Mn–(Al, Si) TRIP/TWIP steels development-properties-application. Int J Plast 16:1391–1409
5. Gutierrez-Urrutia I, del Valle J, Zaefferer S, Raabe D (2010) Study of internal stresses in a TWIP steel analyzing transient and permanent softening during reverse shear tests. J Mater Sci 45:6604–6610
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