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金属的一维虫孔腐蚀。

One dimensional wormhole corrosion in metals.

机构信息

National Center for Electron Microscopy, Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, USA.

Department of Engineering Science and Mechanics and Materials Research Institute, The Pennsylvania State University, University Park, PA, USA.

出版信息

Nat Commun. 2023 Feb 22;14(1):988. doi: 10.1038/s41467-023-36588-9.

Abstract

Corrosion is a ubiquitous failure mode of materials. Often, the progression of localized corrosion is accompanied by the evolution of porosity in materials previously reported to be either three-dimensional or two-dimensional. However, using new tools and analysis techniques, we have realized that a more localized form of corrosion, which we call 1D wormhole corrosion, has previously been miscategorized in some situations. Using electron tomography, we show multiple examples of this 1D and percolating morphology. To understand the origin of this mechanism in a Ni-Cr alloy corroded by molten salt, we combined energy-filtered four-dimensional scanning transmission electron microscopy and ab initio density functional theory calculations to develop a vacancy mapping method with nanometer-resolution, identifying a remarkably high vacancy concentration in the diffusion-induced grain boundary migration zone, up to 100 times the equilibrium value at the melting point. Deciphering the origins of 1D corrosion is an important step towards designing structural materials with enhanced corrosion resistance.

摘要

腐蚀是材料的一种普遍失效模式。通常,局部腐蚀的进展伴随着先前报道为三维或二维的材料中孔隙率的演变。然而,使用新的工具和分析技术,我们已经意识到,一种更局部的腐蚀形式,我们称之为 1D 虫洞腐蚀,在某些情况下以前被错误分类。使用电子断层扫描,我们展示了这种 1D 和渗透形态的多个例子。为了了解在熔融盐中腐蚀的 Ni-Cr 合金中这种机制的起源,我们结合了能量过滤的四维扫描透射电子显微镜和从头算密度泛函理论计算,开发了一种具有纳米分辨率的空位映射方法,在扩散诱导的晶界迁移区中发现了极高的空位浓度,高达熔点时平衡值的 100 倍。破译 1D 腐蚀的起源是设计具有增强耐腐蚀性的结构材料的重要步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ba/9946947/96c35e3df24d/41467_2023_36588_Fig1_HTML.jpg

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