[1]
N. Ridley and Z. C. Wang: Superplasticity 60 years after Pearson, edited by N. Ridley (1995), p.63.
Google Scholar
[2]
D. Pulino-Sagradi, A. M. M. Nazar, J-J. Ammann and R. E. Medrano: Acta Mater. Vol. 45 (1997), p.4663.
DOI: 10.1016/s1359-6454(97)00134-1
Google Scholar
[3]
Y. Ma and T. G. Langdon: Acta Metall. Vol. 42 (1994), p.2753.
Google Scholar
[4]
Z. C. Wang, N. Ridley and T. J. Davies: J. Mater. Sci. Vol. 34 (1999), p.2695.
Google Scholar
[5]
S. Tekeli and T. J. Davies: Mater. Sci. Eng. Vol. A297 (2001), p.168.
Google Scholar
[6]
P. Strunz, J. Saroun, P. Mikula, P. Lukas and F. J. Eichhorn: J. Appl. Crystallogr. Vol. 30 (1997), p.844.
Google Scholar
[7]
S. Harjo, Y. Motohashi, N. Kojima, J. Saroun, V. Ryukhtin, P. Strunz and P. Lukas: PRICM4, Dec 11- 15, 2001 Vols. 1-2 (2001), p. (2057).
Google Scholar
[8]
S. Harjo, N. Kojima, Y. Motohashi, J. Saroun, V. Ryukhtin, P. Strunz, R. Loidl and M. Baron: Mater. Trans., JIM Vol. 43 (2002), p.2480.
DOI: 10.2320/matertrans.43.2480
Google Scholar
[9]
R. F. Reidy, A. J. Allen and S. Krueger: J. Non-Cryst. Solids Vol. 285 (2001), p.181.
Google Scholar
[10]
S. Harjo, N. Kojima and Y. Motohashi: in preparation.
Google Scholar
[11]
V. Ryukhtin, J. aroun, S. Harjo, Y. Motohashi, A. Wiedenmann and P. Strunz: submitted to ECNS 2003, Montpellier, 3-6 September 2003. (a) 500 µm500 µm fractured part (b) (c) 20 µm20 µm fractured part 500 µm500 µm (c) (a) 500 µm500 µm fractured part (b) (c) 20 µm20 µm fractured part 500 µm500 µm (c) Fig. 8 Appearances of cavities: (a) in specimen deformed to failure (490%) under PSC; and (b)-(c) in specimen deformed to failure (170%) under HSC.
DOI: 10.7554/elife.13571.009
Google Scholar