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- W3111741567 abstract "The microstructure and mechanical properties of AEZ641 magnesium alloy were studied and analyzed using OM, SEM, XRD and tensile test. The results show that β-Mg17Al12 phase, a few Mg3Al18Mn2 phase and needle and/or block phases (Al3Nd, Al4Ce) in the as-cast alloy are transformed into broken needle and/or block (Al2Nd, Al4Ce) phases after extrusion preforming, while β-Mg17Al12 phase and Mg3Al18Mn2 phase are dissolved in α-Mg matrix; after die-forging, in addition to the broken (Al2Nd, Al4Ce) phases distributed along the die-forging pressure, β-Mg17Al12 phase and a few Mg3Al18Mn2 phases reprecipitated with a few Al10Mn7Ce2 phase. During the aging heat treatment of as-forged AEZ641 Mg alloy, the morphology and distribution of (Al2Nd, Al4Ce) phases in the alloy basically remained unchanged. When the heat treatment technology was 200°C×4h, the grain boundary of the alloy was refined, and β-Mg17Al12 phase was reprecipitated, and Mg3Al18Mn2 was dissolved in the matrix, which significantly improved the mechanical properties of the alloy. During the deformation process, the fracture mechanism of the alloy changes from as-cast brittle fracture to ductile-based ductile and brittle mixed fracture mechanism." @default.
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- W3111741567 date "2020-11-01" @default.
- W3111741567 modified "2023-10-16" @default.
- W3111741567 title "ANALYSIS AND RESEARCH ON MICROSTRUCTURE AND MECHANICAL PROPERTIES OF AEZ641 MG ALLOY" @default.
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- W3111741567 doi "https://doi.org/10.1088/1742-6596/1635/1/012077" @default.
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