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Measurements were taken on several grains in the gage section and the reported values are for grains that showed the largest deformation. 3. The deformation patterns evolved during the laboratory air tests were characterised by an initial large SBS (20-30 mm at yielding) that gradually decreased with testing 26 Corrosion-Deformation Interactions time in order to accommodate strain. On the contrary, during the SCC experiments, finely-spaced slip bands evolved at the surface from the very early stages of testing.

Lian and W. Huang, Vacancy-dislocation interactions and transgranular stress corrosion cracking, in Corrosion Deformation Interactions, CDI '92, T. Magnin and J. M. Gras eds. Les editions de physique, Les Ulis, 69-82. 7. K. Lian and E. I. Meletis, Environment-induced deformation localization during T-SCC, Corrosion, 1996, 52,5,347-355. Corrosion Enhanced Plasticity Model: Experiments and Simulations 23 8. B. D. Lichter, W. E Flanagan, J. S. Kim, J. C. Elkenbracht and M. van Hunen, Mechanistic studies of SCC application of the CAC model to results using oriented single crystals, Corrosion, 1996,52,5,453463.

TMS, Warrendale, Pennsylvania, 1989. 16. T. Saario and V. A. Marichev, A new contact electric resistance technique for in-situ measurements of the electric resistance of surface films on metals in electrolytes at high temperatures and pressures, in Proc. 12th Inf. Corrosion Congress: Corrosion ConfrolforLow-Cost Reliability, Vol. 6, NACE International, Houston, TX, USA, 1993, pp. 4325-4336. 17. J. P. Hirth and W. D. , 1985,33 (3), 59-368. 18. Q. P. Kong, K. Liicke and G. Sokolowski, A study of the internal friction in concentrated copper alloys, Journal de Physique, 1981, colloque C5, Supplement no.

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