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Deriving Quantitative Crystallographic Information from the Wavelength-Resolved Neutron Transmission Analysis Performed in Imaging Mode

机译:从在成像模式下执行的波长分辨中子透射分析得出定量晶体学信息

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Current status of Bragg-edge/dip neutron transmission analysis/imaging methods is presented. The method can visualize real-space distributions of bulk crystallographic information in a crystalline material over a large area (~10 cm) with high spatial resolution (~100 μm). Furthermore, by using suitable spectrum analysis methods for wavelength-dependent neutron transmission data, quantitative visualization of the crystallographic information can be achieved. For example, crystallographic texture imaging, crystallite size imaging and crystalline phase imaging with texture/extinction corrections are carried out by the Rietveld-type (wide wavelength bandwidth) profile fitting analysis code, RITS (Rietveld Imaging of Transmission Spectra). By using the single Bragg-edge analysis mode of RITS, evaluations of crystal lattice plane spacing ( d -spacing) relating to macro-strain and d -spacing distribution’s FWHM (full width at half maximum) relating to micro-strain can be achieved. Macro-strain tomography is performed by a new conceptual CT (computed tomography) image reconstruction algorithm, the tensor CT method. Crystalline grains and their orientations are visualized by a fast determination method of grain orientation for Bragg-dip neutron transmission spectrum. In this paper, these imaging examples with the spectrum analysis methods and the reliabilities evaluated by optical/electron microscope and X-rayeutron diffraction, are presented. In addition, the status at compact accelerator driven pulsed neutron sources is also presented.
机译:介绍了Bragg-edge / Dip中子透射分析/成像方法的现状。该方法可以以高空间分辨率(〜100μm)在大面积(〜10 cm)上可视化晶体材料中大块晶体学信息的真实空间分布。此外,通过对波长依赖的中子传输数据使用合适的光谱分析方法,可以实现晶体学信息的定量可视化。例如,通过Rietveld型(宽波长带宽)轮廓拟合分析代码RITS(透射光谱的Rietveld成像)执行具有纹理/消光校正的晶体学纹理成像,微晶尺寸成像和晶相成像。通过使用RITS的单一Bragg-edge分析模式,可以评估与宏观应变有关的晶格平面间距(d-间距)和与微应变有关的d-间距分布的FWHM(半峰全宽)。宏观应变层析成像是通过一种新的概念性CT(计算机断层摄影)图像重建算法张量CT方法进行的。结晶晶粒及其取向通过布拉格浸渍中子透射光谱的晶粒取向的快速确定方法可视化。本文介绍了这些具有光谱分析方法的成像实例,并通过光学/电子显微镜和X射线/中子衍射评估了可靠性。此外,还介绍了紧凑型加速器驱动的脉冲中子源的状态。

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