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- W4306803860 abstract "The influence of Cu content (3.7 wt%, 4.1 wt% and 4.3 wt%) on the hardenability of Al-xCu-1.1Li alloys was evaluated through a novel end quenching method by using cold-rolled thin sheets combined with strength measurement after subsequent T8 aging. The yield strength of all three aged alloys decreases with the increase of the distance away from the quenching end. The quenching depth decreases with the increase of the Cu content, which was described by the distance of 95% strength retention value of the samples at the quenching end. The intragranular coarse Cu-enriched phase particles formed during the end quenching process impede the precipitation of T1 precipitates and then lead to the strength reduction. The higher Cu content alloy with more and larger Cu-enriched particles inside the grain causes the more decrease in T1 precipitation, which consequently leads to more reduction in strength. The alloy with higher Cu content therefore has lower quenching depth. The coarse Cu-enriched grain boundary phase particles cause the solute depletion around the grain boundary and create PFZ. Based on the time-temperature-properties (TTP) curves, the quench sensitivity increases and the stability of the supersaturated solid solution of the alloy decreases with the rise of the Cu content. Additionally, the coarse Cu-enriched particles within the grain might be coarse Al2Cu particles, which tend to nucleate at the Al3Zr particles." @default.
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- W4306803860 date "2022-12-01" @default.
- W4306803860 modified "2023-10-14" @default.
- W4306803860 title "Influence of Cu content on the hardenability of Al-xCu-1.1Li alloys" @default.
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- W4306803860 doi "https://doi.org/10.1016/j.matchar.2022.112407" @default.
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