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Diffraction contrast tomography for the study of polycrystalline stainless steel microstructures and stress corrosion cracking

机译:衍射对比层析成像技术用于研究多晶不锈钢的显微组织和应力腐蚀开裂

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摘要

X-ray diffraction contrast tomography is a non-destructive technique for the 3D characterisation of polycrystalline microstructures containing up to a few 1000 grains. The sample is illuminated with a monochromatic beam of high energy synchrotron radiation. As the sample is rotated, and as grains pass through alignments for Bragg diffraction, diffraction spots are recorded on a 2D detector placed close behind the sample. The diffraction geometry is used to assign spots to the grains from which they arise, and to determine the crystallographic orientations of grains. The spots are used as projections of the grains to reconstruct the grain shapes. The technique has been applied to several materials science investigations in stainless steels, including the 3D characterisation of grain boundary networks, and in-situ studies of intergranular stress corrosion cracking.
机译:X射线衍射对比断层扫描是一种无损技术,可用于对多达几千个晶粒的多晶微结构进行3D表征。样品用高能同步加速器辐射的单色光束照射。随着样品的旋转以及晶粒通过布拉格衍射的对准,衍射点记录在紧靠样品后面的2D检测器上。衍射几何形状用于将斑点分配给产生它们的晶粒,并确定晶粒的晶体学取向。这些斑点用作晶粒的投影以重建晶粒形状。该技术已应用于不锈钢的多种材料科学研究,包括晶界网络的3D表征以及晶间应力腐蚀开裂的原位研究。

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