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Fundamental and experimental aspects of diffraction for characterizing dislocations by electron channeling contrast imaging in scanning electron microscope

机译:衍射的基本和实验方面通过扫描电子显微镜中的电子通道对比成像表征位错

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摘要

Nowadays Field Emission Gun-Scanning Electron Microscopes provide detailed crystallographic information with high spatial and angular resolutions, and allow direct observation of crystalline defects, such as dislocations, through an attractive technique called Electron Channeling Contrast Imaging (ECCI). Dislocations play a crucial role in the properties of materials and ECCI has naturally emerged as an adapted tool for characterizing defects in bulk specimen. Nevertheless, fine control of the channeling conditions is absolutely required to get strong dislocation contrast for achieving comprehensive analysis. In this work, experiment-assisted fundamental aspects of the origin of dislocation contrast are studied. Experimentally, the potential of ECCI is explored in several dislocation configurations in Interstitial-Free steel (Fe − 1% Si) used as a model material. Full interpretations of dislocation contrast in (>g, −>g) and its evolution along the Kikuchi band are shown. Furthermore, a dislocation dipole is observed and fully characterized for the first time in an SEM.
机译:如今,场发射电子枪扫描电子显微镜提供了具有高空间和角度分辨率的详细晶体学信息,并通过一种称为电子通道对比度成像(ECCI)的有吸引力的技术,可以直接观察晶体缺陷(例如位错)。位错在材料的性质中起着至关重要的作用,ECCI自然而然地成为了表征大块试样缺陷的一种适用工具。然而,绝对需要对通道条件进行精细控制,以获得强烈的位错对比,以实现综合分析。在这项工作中,研究了位错对比起源的实验辅助基本方面。通过实验,在无间隙钢(Fe-1%Si)用作模型材料的几种位错配置中,探索了ECCI的潜力。显示了位错对比度(> g ,-> g )的完整解释及其沿菊池带的演化。此外,在SEM中首次观察到位错偶极子并进行了完全表征。

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