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一种通过电子背散射衍射映射纳米尺度相的模式处理方法。

A Pattern Processing Method to Map Nanoscale Phases by EBSD.

作者信息

Brodu Etienne, Winkelmann Aimo, Seefeldt Marc

机构信息

Department of Materials Engineering, Katholieke Universiteit Leuven, Kasteelpark Arenberg 44, B-3001Heverlee, Belgium.

Academic Centre for Materials and Nanotechnology, AGH University of Science and Technology, 30 Mickiewicza, 30-059Kraków, Poland.

出版信息

Microsc Microanal. 2022 Apr 8:1-7. doi: 10.1017/S1431927622000526.

Abstract

The crystallographic analysis of nanoscale phases with dimensions well below the spatial probing volume of electron backscatter diffraction (EBSD) traditionally rely on electron microscopy in transmission (either in SEM or TEM), because EBSD patterns are invariably dominated by the matrix phase contribution and present seemingly no trace from such nanoscale phases. Yet, this study shows that such nanoscale features generate a very faint but valuable secondary diffraction signal which can be retrieved. A diffraction pattern postprocessing method is presented which focuses on the detection of such secondary signal emitted by nanoscale minority phases in overlapped patterns dominated by a dominant matrix signal. The predominant, majority phase contribution in EBSD patterns is removed by a close-neighbor pattern subtraction routine, after which both the conventional Hough indexing method as well as pattern matching methods can be used to reveal the crystallography, spatial distribution, morphology, and orientation of nanoscale minority phases initially absent from EBSD maps. Nanolamellar pearlitic steel, which has long been out of reach for EBSD, has been chosen as an application example.

摘要

传统上,对于尺寸远低于电子背散射衍射(EBSD)空间探测体积的纳米级相的晶体学分析依赖于透射电子显微镜(在扫描电子显微镜或透射电子显微镜中),因为EBSD图案总是由基体相的贡献主导,似乎没有来自此类纳米级相的任何痕迹。然而,这项研究表明,此类纳米级特征会产生一个非常微弱但有价值的二次衍射信号,该信号可以被提取出来。本文提出了一种衍射图案后处理方法,该方法专注于检测在由主导基体信号主导的重叠图案中由纳米级少数相发出的此类二次信号。通过近邻图案减法程序去除EBSD图案中占主导地位的多数相贡献,之后既可以使用传统的霍夫索引方法,也可以使用图案匹配方法来揭示EBSD图中最初不存在的纳米级少数相的晶体学、空间分布、形态和取向。长期以来EBSD无法分析的纳米层状珠光体钢已被选作应用实例。

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