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Precipitation strengthening in an ultralight magnesium alloy.


ABSTRACT: Body-centred cubic magnesium-lithium-aluminium-base alloys are the lightest of all the structural alloys, with recently developed alloy compositions showing a unique multi-dimensional property profile. By hitherto unrecognised mechanisms, such alloys also exhibit exceptional immediate strengthening after solution treatment and water quenching, but strength eventually decreases during prolonged low temperature ageing. We show that such phenomena are due to the precipitation of semi-coherent D03-Mg3Al nanoparticles during rapid cooling followed by gradual coarsening and subsequent loss of coherency. Physical explanation of these phenomena allowed the creation of an exceptionally low-density alloy that is also structurally stable by controlling the lattice mismatch and volume fraction of the Mg3Al nanoparticles. The outcome is one of highest specific-strength engineering alloys ever developed.

SUBMITTER: Tang S 

PROVIDER: S-EPMC6397269 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Precipitation strengthening in an ultralight magnesium alloy.

Tang Song S   Xin Tongzheng T   Xu Wanqiang W   Miskovic David D   Sha Gang G   Quadir Zakaria Z   Ringer Simon S   Nomoto Keita K   Birbilis Nick N   Ferry Michael M  

Nature communications 20190301 1


Body-centred cubic magnesium-lithium-aluminium-base alloys are the lightest of all the structural alloys, with recently developed alloy compositions showing a unique multi-dimensional property profile. By hitherto unrecognised mechanisms, such alloys also exhibit exceptional immediate strengthening after solution treatment and water quenching, but strength eventually decreases during prolonged low temperature ageing. We show that such phenomena are due to the precipitation of semi-coherent D0<su  ...[more]

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