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钴铁合金微晶中腐蚀的布拉格相干X射线衍射成像

Bragg coherent X-ray diffraction imaging of corrosion in a Co-Fe alloy microcrystal.

作者信息

Yang David, Phillips Nicholas W, Song Kay, Barker Clara, Harder Ross J, Cha Wonsuk, Liu Wenjun, Hofmann Felix

机构信息

Department of Engineering Science, University of Oxford Oxford OX1 3PJ UK

Department of Materials, University of Oxford Oxford OX1 3PH UK.

出版信息

CrystEngComm. 2022 Jan 21;24(7):1334-1343. doi: 10.1039/d1ce01586a. eCollection 2022 Feb 14.

Abstract

Corrosion is a major concern for many industries, as corrosive environments can induce structural and morphological changes that lead to material dissolution and accelerate material failure. The progression of corrosion depends on nanoscale morphology, stress, and defects present. Experimentally monitoring this complex interplay is challenging. Here we implement Bragg coherent X-ray diffraction imaging (BCDI) to probe the dissolution of a Co-Fe alloy microcrystal exposed to hydrochloric acid (HCl). By measuring five Bragg reflections from a single isolated microcrystal at ambient conditions, we compare the full three-dimensional (3D) strain state before corrosion and the strain along the [111] direction throughout the corrosion process. We find that the strained surface layer of the crystal dissolves to leave a progressively less strained surface. Interestingly, the average strain closer to the centre of the crystal increases during the corrosion process. We determine the localised corrosion rate from BCDI data, revealing the preferential dissolution of facets more exposed to the acid stream, highlighting an experimental geometry effect. These results bring new perspectives to understanding the interplay between crystal strain, morphology, and corrosion; a prerequisite for the design of more corrosion-resistant materials.

摘要

腐蚀是许多行业的主要关注点,因为腐蚀性环境会引发结构和形态变化,导致材料溶解并加速材料失效。腐蚀的进展取决于纳米级形态、应力和存在的缺陷。通过实验监测这种复杂的相互作用具有挑战性。在这里,我们采用布拉格相干X射线衍射成像(BCDI)来探测暴露于盐酸(HCl)中的钴铁合金微晶的溶解情况。在环境条件下,通过测量单个孤立微晶的五次布拉格反射,我们比较了腐蚀前的完整三维(3D)应变状态以及整个腐蚀过程中沿[111]方向的应变。我们发现晶体的应变表面层溶解,使得表面应变逐渐减小。有趣的是,在腐蚀过程中,靠近晶体中心的平均应变增加。我们从BCDI数据中确定局部腐蚀速率,揭示了更暴露于酸流的晶面的优先溶解,突出了实验几何效应。这些结果为理解晶体应变、形态和腐蚀之间的相互作用带来了新的视角;这是设计更耐腐蚀材料的先决条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a383/9074767/8d0047a2bd22/d1ce01586a-f1.jpg

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