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Articles

Modelling strength and ductility of ultrafine grained BCC and FCC alloys using irreversible thermodynamics

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Pages 833-839 | Published online: 19 Jul 2013

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Hang Z. Yu & Rajiv S. Mishra. (2021) Additive friction stir deposition: a deformation processing route to metal additive manufacturing. Materials Research Letters 9:2, pages 71-83.
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S. Li, P. Honarmandi, R. Arróyave & P. E. J. Rivera-Diaz-del-Castillo. (2015) Describing the deformation behaviour of TRIP and dual phase steels employing an irreversible thermodynamics formulation. Materials Science and Technology 31:13, pages 1658-1663.
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S. K. Shaha, F. Czerwinski, D. L. Chen & W. Kasprzak. (2015) Dislocation slip distance during compression of Al–Si–Cu–Mg alloy with additions of Ti–Zr–V. Materials Science and Technology 31:1, pages 63-72.
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P. E. J. Rivera-Díaz-del-Castillo, K. Hayashi & E. I. Galindo-Nava. (2013) Computational design of nanostructured steels employing irreversible thermodynamics. Materials Science and Technology 29:10, pages 1206-1211.
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Mingxin Huang, Astrid Perlade & Pedro E.J. Rivera-Díaz-del-Castillo. (2011) Predicting the evolution of dislocation density following hot deformation. Philosophical Magazine Letters 91:6, pages 387-393.
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