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- W2187882390 abstract "Stress corrosion cracking of pure Al5%Mg is studied. It was shown by slow strain rate tests, constant force, and cyclic traction-traction tests in a simulated confined medium that α ligaments (precipitate-free) can be embrittled by hydrogen. Surface crack initiation in aged, annealed AA5083, after reversible H pre-charging, was modeled by a combination of digital image correlation and polycrystalline aggregate finite element simulation. It was shown, at the scale of the grain, that cracking occurs by a “decohesion” in between hard grains embedded in a deformation band. Cohesive zone modeling was used to quantify the possible impact of H weakened β precipitates on the global cohesion of a grain facet. It was shown that α embrittlement dominates. Finally, some basic aspects of hydrogen interactions with defects in Al are discussed from atomic scale simulations: the stability of vacancy-hydrogen clusters; their mobility, hydrogen trapping, intergranular H, and vacancy segregation; and their impact on cohesion." @default.
- W2187882390 created "2016-06-24" @default.
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- W2187882390 date "2015-11-30" @default.
- W2187882390 modified "2023-09-23" @default.
- W2187882390 title "H effects in Al-Mg, Al-Zn-Mg alloys and in Al: experiments, continuum and atomistic modeling." @default.
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- W2187882390 doi "https://doi.org/10.5006/1854" @default.
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