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- W4385769968 abstract "Microstructure, mechanical properties and phase transformation of a heat-resistant rare-earth (RE) Mg-16.1Gd-3.5Nd-0.38Zn-0.26Zr-0.15Y (wt.%) alloy were investigated. The as-cast alloy is composed of equiaxed α-Mg matrix, net-shaped Mg5RE and Zr-rich phases. According to aging hardening curves and tensile properties variation, the optimized condition of solution treatment at 520 °C for 8 h and subsequent aging at 204 °C for 12 h was selected. The continuous secondary Mg5RE phase predominantly formed at grain boundaries during solidification transforms to residual discontinuous β-Mg5RE phase and fine cuboid REH2 particles after heat treatment. The annealed alloy exhibits good comprehensive tensile property at 350 °C, with ultimate tensile strength of 153 MPa and elongation to fracture of 6.9%. Segregation of RE elements and eventually RE-rich precipitation at grain boundaries are responsible for the high strength at elevated temperature." @default.
- W4385769968 created "2023-08-12" @default.
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- W4385769968 date "2023-07-01" @default.
- W4385769968 modified "2023-10-09" @default.
- W4385769968 title "Microstructure and mechanical properties of a cast heat-resistant rare-earth magnesium alloy" @default.
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- W4385769968 doi "https://doi.org/10.1007/s41230-023-2015-8" @default.
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