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首页> 外文期刊>Journal of Materials Science >Grain refinement in nanostructured Al-Mg alloys subjected to high pressure torsion
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Grain refinement in nanostructured Al-Mg alloys subjected to high pressure torsion

机译:纳米结构的铝镁合金在高压下的晶粒细化

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Nanostructures of three binary Al-Mg alloys and a commercial AA5182 alloy subjected to high pressure torsion at room temperature were comparatively investigated using transmission electron microscopy, high-resolution transmission electron microscopy, and X-ray line profile analysis. Grain size distributions, dislocation densities, and densities of planar defects including stacking faults and microtwins were quantified. The average subgrain size decreased considerably from 120 to 55 nm as the Mg content increased from 0.5 to 4.1 wt%. The average dislocation density in the alloys first increased to a maximum and then decreased as the Mg content increased and the average subgrain size decreased. The role of Mg solute on these features and the refinement mechanisms associated with the typical nanostructures and faults were interpreted.
机译:使用透射电子显微镜,高分辨率透射电子显微镜和X射线线轮廓分析,比较研究了三种二元Al-Mg合金和市售AA5182合金在室温下承受高压扭转的纳米结构。对晶粒尺寸分布,位错密度和包括堆垛层错和微孪晶的平面缺陷的密度进行了定量。随着Mg含量从0.5 wt%增加到4.1 wt%,平均亚晶粒尺寸从120 nm减小到55 nm。合金中的平均位错密度首先增加到最大值,然后随着Mg含量的增加和平均亚晶粒尺寸的减小而降低。解释了镁溶质在这些特征上的作用以及与典型纳米结构和断层有关的细化机理。

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