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首页> 外文期刊>Materials Research Letters >Ultrastrong Mg Alloy via Nano-spaced Stacking Faults
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Ultrastrong Mg Alloy via Nano-spaced Stacking Faults

机译:纳米间距堆垛层错导致的超强镁合金

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Mg alloys are among the lightest alloys but they are usually weak. Here we report a new mechanism to make them ultrastrong while maintaining good ductility. Stacking faults with nanoscale spacing were introduced into a Mg–8.5Gd–2.3Y–1.8Ag–0.4Zr (wt%) alloy by conventional hot rolling, which produced a yield strength of ~575?MPa, an ultimate strength of ~600?MPa, and a uniform elongation of ~5.2 %. Low stacking fault (SF) energy enabled the introduction of a high density of SFs, which impeded dislocation slip and promoted dislocation accumulation. These findings provide guidance for developing Mg alloys with superior mechanical properties.
机译:镁合金是最轻的合金之一,但通常较弱。在这里,我们报告了一种新的机制,可使其在保持良好延展性的同时变得超强。通过常规热轧将具有纳米级间距的堆垛层错引入Mg–8.5Gd–2.3Y–1.8Ag–0.4Zr(wt%)合金中,产生的屈服强度约为575?MPa,极限强度约为600?MPa。 MPa,均匀伸长率为5.2%。低堆垛层错(SF)能量使得能够引入高密度的SF,从而阻止了位错滑移并促进了位错积聚。这些发现为开发具有优异机械性能的镁合金提供了指导。

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