Phase transformations and structural changes in the course of the high-temperature superplastic deformation of aluminum alloys
Author:
Publisher
Pleiades Publishing Ltd
Subject
Materials Chemistry,Condensed Matter Physics
Link
http://link.springer.com/content/pdf/10.1134/S0031918X10120100.pdf
Reference28 articles.
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2. K. Higashi, T. G. Nieh, M. Mabuchi, and J. Wadsworth, “Effect of Liquid Phases on the Tensile Elongation of Superplastic Aluminum Alloys and Composites,” Scr. Metall. Mater. 32(7), 1079–1084 (1995).
3. W. D. Cao, X. P. Lu, and H. Conrad, “Whisker Formation and the Mechanism of Superplastic Deformation,” Acta Mater. 44(2), 697–706 (1996).
4. T. G. Nieh, and J. Wadsworth, “The Role of Liquid Phase on Superplasticity in Metals and Ceramics,” Mater. Sci. Forum 233–234 383–398 (1997).
5. J. Koike, K. Miki, K. Maruyama, and H. Oikawa, “Effect of the Liquid Phase on the High-Temperature Tensile Ductility: From Embrittlement to Superplasticity,” Philos. Mag. A 78(3), 599–614 (1998).
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