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Articles

Influence of Anodic Layers on Fatigue-Crack Initiation in Aluminium

Pages 85-91 | Published online: 18 Jul 2013

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GeorgeC. Tu & Ren‐yow Hwang. (1990) An study on corrosion fatigue of 2024‐T3 aluminum alloy by electrochemical method. Journal of the Chinese Institute of Engineers 13:2, pages 167-176.
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Articles from other publishers (7)

H. Moustabchir, J. Arbaoui, M. El Moussaid, Z. Azari & C.I. Pruncu. (2018) Characterization of Fracture Toughness Properties of Aluminium Alloy for Pipelines. Experimental Techniques 42:6, pages 593-604.
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A.J Eifert, J.P Thomas & R.G RateickJr.Jr.. (1999) Influence of anodization on the fatigue life of WE43A-T6 magnesium. Scripta Materialia 40:8, pages 929-935.
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Y. W. Chung & W. J. Lee. (2004) Effects of surface oxide layers on crack initiation and growth of HSLA steel under cyclic loading in air and in ultrahigh vacuum. Journal of Materials Science 30:24, pages 6370-6376.
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G. C. Tu, R. Y. Hwang & I. T. Chen. (1991) A study of corrosion fatigue behaviour of anodized and unanodized 2024-T3 aluminium alloy. Journal of Materials Science 26:5, pages 1375-1382.
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R. B. Waterhouse. 1990. Surface Engineering. Surface Engineering 325 334 .
J. H. Wilson, H. H. Mabie & T. H. Gogoll. (1982) The effect of relative humidity and coatings on the torsional fatigue of aluminum. Experimental Mechanics 22:10, pages 392-397.
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J. G. Grosskreutz. (2006) The mechanisms of metal fatigue (II). physica status solidi (b) 47:2, pages 359-396.
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