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Characterization of planar features in Mg-Y-Zn alloys

机译:Mg-Y-Zn合金平面特征的表征

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摘要

The planar features in a Mg-8Y-2Zn-0.6Zr (wt.) alloy solution-treated at 500 °C for 1 h have been examined using conventic transmission electron microscopy and atomic-resolution high-angle annular dark-field scanning transmission electron microscopy.' types of planar features are detected in the microstructure. The first type, which was previously reported to be an intrinsic stacking fault I_1 bounded by a Frank partial dislocation, is shown to be the 14H precipitate phase that is associated with Shockley partial dislocatio The second type is also a precipitate phase that has a single unit cell height and is associated with Shockley partial dislocations. The third type of planar feature comprises small ribbon-like stacking faults. These stacking faults are determined as intrinsic I_2 type bounded by two Shockley partial dislocations, which is further confirmed by computer simulation. The stacking fault energy associated with the faults is much smaller than that of pure magnesium.
机译:采用500 °C处理1 h的Mg-8Y-2Zn-0.6Zr(wt.%)合金溶液中的平面特征,采用透射电子显微镜和原子分辨率高角度环形暗场扫描透射电子显微镜进行了检查。第一种类型,先前报道为以弗兰克部分位错为界的固有堆积断层I_1,被证明是与肖克利部分位错相关的 14H 沉淀相第二种类型也是具有单个晶胞高度的沉淀相,并与肖克利部分位错有关。第三类平面特征包括小的带状堆积断层。这些堆积断层被确定为由两个肖克利部分位错边界的固有I_2类型,这通过计算机模拟进一步证实。与断层相关的堆叠断层能量远小于纯镁。

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