A Reference Hydride Ratio Method for the Resolution of Al/Fe Peak Overlapping in Atom Probe Tomography Experiments.

IF 2.9 4区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Aidar Zakirov, Yann Le Bouar, Frédéric Fossard, Williams Lefebvre
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引用次数: 0

Abstract

Precise Fe concentration measurements are essential to understand the kinetics of precipitation and evolution of mechanical properties in Al-Fe alloys. Moreover, with the increasing proportion of recycled metals, it is mandatory to rely on techniques capable of tracking impurities in Al-alloys to elucidate their effects on microstructure and properties. Atom Probe Tomography (APT) is a powerful material analysis tool capable of precise composition measurements. As it relies on time-of-flight mass spectrometry, the quality of the composition measurements is highly dependent on the proper peak identification and solving peak overlapping. The complexity of peak decomposition multiplies if molecular ions such as hydrides or oxides are present in the mass spectrum. Al-Fe is one of these systems, where three out of four peaks of Fe isotopes are overlapping with Al, AlH, and AlH2 mass intervals. To solve this complex peak overlapping case, an approach has been developed here. It is based on acquiring the Al-hydride formation ratio from APT analyses of standard materials, where no overlap with Fe peaks is observed. This simple method aims to improve the precision of Fe concentration measurements in Al-Fe system.

原子探针层析实验中分辨Al/Fe峰重叠的参考氢化物比方法。
精确的铁浓度测量对于了解Al-Fe合金的析出动力学和力学性能的演变至关重要。此外,随着回收金属比例的增加,必须依靠能够跟踪铝合金中杂质的技术来阐明它们对组织和性能的影响。原子探针层析成像(APT)是一种功能强大的材料分析工具,能够精确测量成分。由于它依赖于飞行时间质谱法,因此成分测量的质量高度依赖于正确的峰识别和峰重叠的解决。如果分子离子如氢化物或氧化物存在于质谱中,则峰分解的复杂性倍增。Al-Fe就是其中之一,其中Fe同位素的四个峰中有三个与Al, AlH和AlH2的质量间隔重叠。为了解决这种复杂的峰重叠情况,本文提出了一种方法。它是基于从标准材料的APT分析中获得的al -氢化物形成比,其中没有观察到与铁峰重叠。这种简单的方法旨在提高铝铁体系中铁浓度测量的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Microscopy and Microanalysis
Microscopy and Microanalysis 工程技术-材料科学:综合
CiteScore
1.10
自引率
10.70%
发文量
1391
审稿时长
6 months
期刊介绍: Microscopy and Microanalysis publishes original research papers in the fields of microscopy, imaging, and compositional analysis. This distinguished international forum is intended for microscopists in both biology and materials science. The journal provides significant articles that describe new and existing techniques and instrumentation, as well as the applications of these to the imaging and analysis of microstructure. Microscopy and Microanalysis also includes review articles, letters to the editor, and book reviews.
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