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- W2079741790 abstract "Corrosion damage due to pitting is commonly observed in a wide range of aluminum alloys and structural steels that are being used for aerospace and naval structural applications. In order to better understand the particle-induced pitting corrosion in aluminum alloys, experimental measurements were conducted on aluminum 5059 specimens with UTS of 360–370 MPa to observe the corrosion degradation and pits. Both optical microscopy and SEM of various corroded and sensitized specimens were carried out to see how the pits grow and progress with time. An analysis procedure is developed using CAD and finite element software to predict stresses due to corrosion pits. The results obtained indicate that as the duration of the specimen sensitization increased from 29 days to 50 days, the highest stress levels have increased by about 56%. However, further increase in the sensitization time from 50 to 100 days has very little effect on the stress level. It is possible that the deformation due to the exfoliation of the s..." @default.
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- W2079741790 date "2009-03-10" @default.
- W2079741790 modified "2023-09-27" @default.
- W2079741790 title "Corrosion Pit Induced Stresses Prediction from SEM and Finite Element Analysis" @default.
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- W2079741790 doi "https://doi.org/10.1080/15502280802654920" @default.
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