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- W2949652662 abstract "Abstract The mechanical property of age‐hardenable Al‐alloys is governed by the state of ageing, which determines the microstructure and consequently, their corrosion behavior which is a vital aspect for a number of applications. This article presents a comparative assessment of corrosion behavior of under‐, peak‐ and over‐aged Al‐Mg‐Si alloy. Corrosion characteristics have been determined via immersion tests in 0.1 M ortho‐phosphoric acid solution and intergranular corrosion (IGC) tests. Corroded surfaces are examined by field emission scanning electron micrographs‐energy dispersive spectroscopy and 3D optical profilometer. The obtained results reveal that the corrosion rate at a specific immersion time as well as the depth of IGC increases in the order for under‐, peak‐, and over‐aged states. Irrespective of the state of ageing, corrosion loss increases linearly but the rate of corrosion decreases rapidly with increasing immersion time. The dominant mode of corrosion in under‐aged alloy is identified as localized pitting, while peak‐aged is highly susceptible to IGC in contrast extensive pitting corrosion is observed for over‐aged alloy. The observed differences in corrosion behavior are explained considering characteristics of precipitates. Formation of β (Mg 2 Si) in case of over‐aged alloy and presence of inclusions like AlFeMnSi particles are found to accelerate pitting corrosion." @default.
- W2949652662 created "2019-06-27" @default.
- W2949652662 creator A5056825375 @default.
- W2949652662 creator A5078818002 @default.
- W2949652662 date "2019-06-12" @default.
- W2949652662 modified "2023-09-28" @default.
- W2949652662 title "Corrosion behavior of under‐, peak‐, and over‐aged 6063 alloy: A comparative study" @default.
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- W2949652662 doi "https://doi.org/10.1002/maco.201910961" @default.
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