Size–strain separation in diffraction line profile analysis

衍射 同步辐射 材料科学 光学 布拉格定律 光束线 布拉格峰 同步加速器 辐射 散射 物理 梁(结构)
作者
Paolo Scardi,M. Ermrich,Andrew N. Fitch,E‐Wen Huang,R. Jardin,R. Kužel,Andreas Leineweber,Ariadna Mendoza Cuevas,Scott T. Misture,Luca Rebuffi,Christian Schimpf
出处
期刊:Journal of Applied Crystallography [Wiley]
卷期号:51 (3): 831-843 被引量:53
标识
DOI:10.1107/s1600576718005411
摘要

Separation of size and strain effects on diffraction line profiles has been studied in a round robin involving laboratory instruments and synchrotron radiation beamlines operating with different radiation, optics, detectors and experimental configurations. The studied sample, an extensively ball milled iron alloy powder, provides an ideal test case, as domain size broadening and strain broadening are of comparable size. The high energy available at some synchrotron radiation beamlines provides the best conditions for an accurate analysis of the line profiles, as the size-strain separation clearly benefits from a large number of Bragg peaks in the pattern; high counts, reliable intensity values in low-absorption conditions, smooth background and data collection at different temperatures also support the possibility to include diffuse scattering in the analysis, for the most reliable assessment of the line broadening effect. However, results of the round robin show that good quality information on domain size distribution and microstrain can also be obtained using standard laboratory equipment, even when patterns include relatively few Bragg peaks, provided that the data are of good quality in terms of high counts and low and smooth background.
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