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Three-Dimensional Imaging of Dislocations in a Ti–35massNb Alloy by Electron Tomography

机译:Ti-35质量%Nb合金中位错的三维电子成像

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摘要

We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti–35mass%Nb alloy by means of single-axis tilt tomography using bright-field scanning transmission electron microscopy (BF-STEM). To visualize dislocations, the hh0 systematic reflections were excited throughout tilt-series acquisition with the maximum tilt angle of 70°. Dislocations in the β grains were clearly reconstructed by the weighted back-projection algorithm. The slip planes of the dislocations were deduced by rotating the reconstructed volumes with the aid of selected area electron diffraction patterns. It was found that BF-STEM images with relatively low contrasts, taken along low-order zone axes, are capable to reproduce and preserve the quality of reconstructed image of dislocations. We also found that tilt angles as low as 40° are practically acceptable to visualize 3D configurations of dislocations, while there exists limitation in resolution due to the existence of a large missing wedge.
机译:我们已经使用明场扫描透射电子显微镜(BF-STEM)通过单轴倾斜断层扫描研究了Ti-35mass%Nb合金的β相中位错的三维(3D)构型。为了使位错可视化,在整个倾斜系列采集中均以最大70°的倾斜角激发了hh0系统反射。通过加权反投影算法可以清楚地重建β晶粒中的位错。借助选定的区域电子衍射图样,通过旋转重建的体积来推导位错的滑动面。已经发现,沿低阶区域轴拍摄的对比度相对较低的BF-STEM图像能够重现并保留位错重建图像的质量。我们还发现,低至40°的倾斜角对于可视化位错的3D构造实际上是可以接受的,而由于存在大量缺失的楔形,分辨率存在局限性。

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