New PDF release: B0684 Corrosion-deformation interactions (EFC 21) (matsci)

By Thierry Magnin

ISBN-10: 1861250487

ISBN-13: 9781861250483

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4. A. N. Stroh, The formation of cracks as a result of plastic flow, Proc. Roy. ,1954,223,404414. 5. Li Shiquiong, J. I. Dickson, J. P. Bailon and D. Tromans, The influence of the stress intensity factor on the fractography of stress corrosion cracking of 316 stainless steels, Mater. Sci. Engng, 1989, A119,59-72. 6. E. I. Meletis, K. Lian and W. Huang, Vacancy-dislocation interactions and transgranular stress corrosion cracking, in Corrosion Deformation Interactions, CDI '92, T. Magnin and J. M.

1CuSO, ~ aqueous solutions. Polarisation measurements were conducted to assess the corrosion rate in the three different environments under strain and strainfree conditions. The development of deformation patterns was characterised by slipband density and slip band height measurements on specimen surfaces. The results showed that enhanced and localised plastic deformation developed at the surface region prior to crack nucleation in all three environments, while the bulk material was at considerably lower strains.

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. 9. D. A. Jones, Localized surface plasticity during stress corrosion cracking, Corrosion, 1996,5, 356-362. 10. J. H. Lin and R. , 1986,34,2,187-206. 11. I? Sofronis, The influence of mobility of dissolved hydrogen on the elastic response of a metal, 1. Mech. Phys. Solids, 1995,43,1385-1407. 3 Environment-Induced Deformation Localisation during the Early Stages of Transgranular Stress Corrosion Cracking in a-Brass E.

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B0684 Corrosion-deformation interactions (EFC 21) (matsci) by Thierry Magnin

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