Low-temperature creep behavior of ultrafine-grained 5083 Al alloy processed by equal-channel angular pressing
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials
Link
http://link.springer.com/content/pdf/10.1007/s12206-010-0703-z.pdf
Reference24 articles.
1. R. Z. Valiev, E. V. Kozlov, Y. F. Ivanov, J. Lian, A. A. Nazarov and B. Baudelet, Deformation behaviour of ultrafine-grained copper, Acta Metall. Mater., 42 (1994) 2467–2475.
2. Y. Iwahashi, M. Furukawa, Z. Horita, M. Nemoto and T. G. Langdon, Microstructural characteristics of ultrafine-grained aluminum produced using equal-channel angular pressing., Metal Mater., Trans. 29A (1998) 2245–2252.
3. D. H. Shin, W. J. Kim and W. Y. Choo, Grain refinement of a commercial 0.15%C steel by equal-channel angular pressing, Scripta Mater., 41 (1999) 259–262.
4. V. V. Stolyarov, Y. T. Zhu, I. V. Alexandrov, T. C. Lowe and R. Z. Valiev, Influence of ECAP routes on the microstructure and properties of pure Ti, Mat. Sci. Eng., A299 (2001) 59–67.
5. I. Charit and R. S. Mishira, Low temperature superplasticity in a friction-stir-processed ultrafine grained Al-Zn-Mg-Sc alloy, Acta Mater., 53 (2005) 4211–4223.
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