Analysis of microscopy techniques to measure segregation in continuous-cast steel slabs

IF 1.5 4区 工程技术 Q3 MICROSCOPY Journal of microscopy Pub Date : 2024-04-27 DOI:10.1111/jmi.13310
Araf Al Rafi, Begoña Santillana, Renfei Feng, Brian G. Thomas, André B. Phillion
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Abstract

The accurate characterisation of centreline segregation requires precise measurements of composition variations over large length scales (10 1 $^{-1}$ m ${\rm {m}}$ ) across the centreline of the cast product, while having high resolution, sufficient to quantify the significant composition variations between dendrites due to microsegregation at very small length scales (10 5 m $^{-5}{\rm {m}}$ ). This study investigates the potential of a novel microscopy technique, named Synchrotron Micro X-ray Flurorescence (SMXRF), to generate large-scale high-resolution segregation maps from a steel sample taken from a thin slab caster. Two methods, Point Analysis and Regression Analysis, are proposed for SMXRF data calibration. By comparing with the traditional Laser-Induced Breakdown Spectroscopy (LIBS), and Electron Probe Micro Analyser (EPMA) techniques, we show that SMXRF is successful in quantitative characterisation of centreline segregation. Over large areas (e.g. 12 × $\times$ 16 mm 2 ${\rm {mm}}^2$ ) and at high resolution (10–50 μ m $\mu\text{m}$ pixel size) various techniques yield comparable outcomes in terms of composition maps and solute profiles. The findings also highlight the importance of both high spatial resolution and large field of view to have a quantitative, accurate, and efficient measurement tool to investigate segregation phenomena.

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测量连铸钢板偏析的显微镜技术分析
摘要要准确描述中心线偏析的特征,需要精确测量铸件中心线上大长度尺度(10 )的成分变化,同时还要有高分辨率,足以量化由于极小长度尺度的微偏析而导致的树枝状物之间的显著成分变化(10)。本研究调查了一种名为同步辐射微 X 射线荧光(SMXRF)的新型显微镜技术的潜力,该技术可从薄板坯连铸机钢样中生成大尺度高分辨率偏析图。为 SMXRF 数据校准提出了点分析和回归分析两种方法。通过与传统的激光诱导击穿光谱(LIBS)和电子探针显微分析仪(EPMA)技术进行比较,我们发现 SMXRF 成功地对中心线偏析进行了定量表征。在大面积(如 12 16 平方英寸)和高分辨率(10-50 像素大小)条件下,各种技术在成分图和溶质剖面方面产生的结果具有可比性。研究结果还强调了高空间分辨率和大视场对研究偏析现象的定量、准确和高效测量工具的重要性。
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来源期刊
Journal of microscopy
Journal of microscopy 工程技术-显微镜技术
CiteScore
4.30
自引率
5.00%
发文量
83
审稿时长
1 months
期刊介绍: The Journal of Microscopy is the oldest journal dedicated to the science of microscopy and the only peer-reviewed publication of the Royal Microscopical Society. It publishes papers that report on the very latest developments in microscopy such as advances in microscopy techniques or novel areas of application. The Journal does not seek to publish routine applications of microscopy or specimen preparation even though the submission may otherwise have a high scientific merit. The scope covers research in the physical and biological sciences and covers imaging methods using light, electrons, X-rays and other radiations as well as atomic force and near field techniques. Interdisciplinary research is welcome. Papers pertaining to microscopy are also welcomed on optical theory, spectroscopy, novel specimen preparation and manipulation methods and image recording, processing and analysis including dynamic analysis of living specimens. Publication types include full papers, hot topic fast tracked communications and review articles. Authors considering submitting a review article should contact the editorial office first.
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