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具有多种合金元素的镁中共偏析原子的直接观察及其影响。

Direct observation and impact of co-segregated atoms in magnesium having multiple alloying elements.

作者信息

Zhao Xiaojun, Chen Houwen, Wilson Nick, Liu Qing, Nie Jian-Feng

机构信息

Joint International Laboratory for Light Alloys (MOE), College of Materials Science and Engineering, Chongqing University, Chongqing, 400044, P.R. China.

Electron Microscopy Center, Chongqing University, Chongqing, 400044, P.R. China.

出版信息

Nat Commun. 2019 Jul 19;10(1):3243. doi: 10.1038/s41467-019-10921-7.

Abstract

Modern engineering alloys contain multiple alloying elements, but their direct observation when segregated at the atomic scale is challenging because segregation is susceptible to electron beam damage. This is very severe for magnesium alloys, especially when solute atoms segregate to form single atomic columns. Here we show that we can image segregation in magnesium alloys with atomic-resolution X-ray dispersive spectroscopy at a much lower electron voltage. We report a co-segregation pattern at twin boundaries in a magnesium alloy with both larger and smaller solutes forming alternating columns that fully occupy the twin boundary, in contrast to previous observations of half occupancy where mixed-solute columns alternate with magnesium. We further show that the solute co-segregation affects the twin migration mechanism and increases the twin boundary pinning. Our work demonstrates that the atomic-scale analysis of the structure and chemistry of solute segregation in metallic alloys with complex compositions is now possible.

摘要

现代工程合金包含多种合金元素,但当它们在原子尺度上偏析时,直接观察具有挑战性,因为偏析易受电子束损伤影响。这对镁合金来说非常严重,尤其是当溶质原子偏析形成单原子柱时。在此我们表明,在低得多的电子电压下,我们可以用原子分辨率X射线色散光谱对镁合金中的偏析进行成像。我们报告了一种镁合金孪晶界处的共偏析模式,其中较大和较小的溶质形成交替排列的柱,完全占据孪晶界,这与之前观察到的混合溶质柱与镁交替排列、占据一半位置的情况不同。我们进一步表明,溶质共偏析会影响孪晶迁移机制,并增加孪晶界钉扎。我们的工作表明,现在可以对具有复杂成分的金属合金中溶质偏析的结构和化学进行原子尺度分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8138/6642188/bc788c36c519/41467_2019_10921_Fig1_HTML.jpg

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