References
- Musil, F. Šupinová koroze karabin.
- Mattson, E., et al., Mechanism of exfoliation (Layer Corrosion) of Al-5% Zn-1% Mg., 73-83.
- Reboul, M. C.; Bouvaist, J., Exfoliation corrosion mechanisms in the 7020 aluminium alloy., 700-712.
- Wloka, J., et al., Influence of temper and surface condition on the exfoliation behaviour of high strength Al-Zn-Mg-Cu alloys.(3), 1437-1449.
- Habashi, M., et al., Quantitative measurements of the degree of exfoliation on aluminium alloys., 169-183.
- Eckermann, F., et al., Investigation of the exfoliation-like attack mechanism in relation to Al-Mg-Si alloy microstructure.(7), 2085-2093.
- Andreatta, F., et al., Electrochemical characterisation of aluminium AA7075-T6 and solution heat treated AA7075 using a micro-capillary cell.(20-22), 3239-3247.
- Sun, S., et al., Exfoliation corrosion of extruded 2024-T4 in the coastal environments in China.(8), 2527-2538.
- Zhu, Z., et al., Intergranular Corrosion and Exfoliation Corrosion Behaviours of Al-Li Alloys., 1671-1676.
- Zahavi, J.; Yahalom, J., Exfoliation Corrosion of AIMgSi Alloys in Water.(6), 1181-1185.
- Kelly, D. J.; Robinson, M. J., Influence of Heat Treatment and Grain Shape on Exfoliation Corrosion of Al-Li Alloy 8090.(10), 787-795.
- Liu, T. Y., et al., The influence of hot deformation on the exfoliation corrosion behaviour of aluminium alloy 2025., 185-192.
- Marlaud, T., et al., Understanding the Compromise between Strength and Exfoliation Corrosion in High Strength 7000 Alloys., 455-460.
- Marlaud, T., et al., Electrochemical aspects of exfoliation corrosion of aluminium alloys: The effects of heat treatment.(4), 1394-1400.
- Robinson, M. J.; Jackson, N. C., The influence of grain structure and intergranular corrosion rate on exfoliation and stress corrosion cracking of high strength Al-Cu-Mg alloys., 1013-1028.
- Cao, F. H., et al., Exfoliation corrosion of aluminum alloy AA7075 examined by electrochemical impedance spectroscopy.(1), 18-23.
- Su, J., et al., The effect of applied tensile stress on the exfoliation corrosion of 7075-T6 alloy.(9), 729-733.
- Su, J. X., et al., Exfoliation corrosion of Al-Li alloy 2090-T6 in EXCO solution: A study of electrochemical noise and electrochemical impedance spectroscopy.(6), 484-490.
- McNaughtan, D., Corrosion product force measurements in the study of exfoliation and stress corrosion cracking in high strength aluminium alloys.(10), 2377-2389.
- Robinson, M. J., The role of wedging stresses in the exfoliation corrosion of high strength aluminium alloys.(8), 887-899.
- Zhao, X.; Frankel, G., Quantitative study of exfoliation corrosion: Exfoliation of slices in humidity technique.(2), 920-938.
- Zhao, X.; Frankel, G. S., Effects of Relative Humidity, Temper, and Stress on Exfoliation Corrosion Kinetics of AA7178.(11), 956-966.
- Charitidou, E., et al., Characterization of trapped hydrogen in exfoliation corroded aluminium alloy 2024.(12), 1327-1332.
- Lifka, B. W.; Sprowls, D. O., An improved exfoliation test for aluminium alloys., 7-15.
- Budd, M. K.; Booth, F. F., An accelerated test for indicating susceptibility of aluminium alloys to layer corrosion.(5), 197-203.
- Conde, A.; de Damborenea, J., Electrochemical modelling of exfoliation corrosion behaviour of 8090 alloy.(8), 849-860.
- Conde, A.; de Damborenea, J., Evaluation of exfoliation susceptibility by means of the electrochemical impedance spectroscopy., 1363-1377.
- Keddam, M., et al., Exfoliation corrosion of aluminium alloys examined by electrode impedance.(1), 87-97.
- Li, J. F., et al., Exfoliation corrosion of 7150 Al alloy with various tempers and its electrochemical impedance spectroscopy in EXCO solution.(6), 407-414.
- Li, J. F., et al., Exfoliation corrosion and electrochemical impedance spectroscopy of an Al-Li alloy in EXCO solution.(4), 273-279.
- Zhao, X., et al., In Situ X-Ray Radiographic Study of Intergranular Corrosion in Aluminum Alloys.(11), 1012-1018.
- Bellenger, F., et al., Use of acoustic emission technique for the early detection of aluminium alloys exfoliation corrosion., 385-392.
- Tanaka, M., et al., Chemical Composition Profiles across Grain Boundaries in T6, T79 and T76 Tempered AA7449 Alloy., 1449-1454.
- Huang, T.-S., et al., A Statistical Model for Localized Corrosion in 7xxx Aluminum Alloys.(9), 819-827.
- Robinson, M. J., Mathematical modelling of exfoliation corrosion in high strength aluminium alloys.(8), 775-790.
- Ruan, S., Statistical modeling and computer simulation of intergranular corrosion growth in AA2024-T3 aluminum alloy.(2), 553-568.
- Alexopoulos, N.; Papanikos, P., Experimental and theoretical studies of corrosion-induced mechanical properties degradation of aircraft 2024 aluminum alloy.(1-2), 248-257.
- Emani, S. V., et al., Double aging and thermomechanical heat treatment of AA7075 aluminum alloy extrusions.(23), 6384-6391.
- Haidemenopoulos, G. N., et al., Hydrogen Absorption into Aluminum Alloy 2024-T3 During Exfoliation and Alternate Immersion Testing., 73-78.
- Hénon, C., et al., Exfoliation Corrosion Mechanism: Interplay between Intergranular Corrosion and Stress Corrosion Cracking during Exfoliation Corrosion of AA7449., 693-698.
- Kalemba, I., et al., Exfoliation corrosion behaviour of friction stir welded AA7136-T76 extrusions., 101-107.
- Li, J. F., et al., Influence of retrogression temperature and time on the mechanical properties and exfoliation corrosion behavior of aluminium alloy AA7150.(11), 1334-1341.
- Očenášek, V.; et al. Vliv tepelného zpracování na strukturu slitiny hliníku AA 7075 po intenzivní plastické deformaci metodou ECAP. In Sborník konference Metal 2008; pp 1-8.
Language: English
Page range: 25 - 30
Published on: Apr 3, 2012
Published by: Association of Czech and Slovak Corrosion Engineers
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Related subjects:
© 2012 J Stoulil, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons License.
