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通过四维扫描进动电子衍射断层扫描和自动晶体取向映射在三维空间中重建珠光体钢尖端内的双相纳米尺度晶粒。

Reconstructing dual-phase nanometer scale grains within a pearlitic steel tip in 3D through 4D-scanning precession electron diffraction tomography and automated crystal orientation mapping.

作者信息

Harrison Patrick, Zhou Xuyang, Das Saurabh Mohan, Lhuissier Pierre, Liebscher Christian H, Herbig Michael, Ludwig Wolfgang, Rauch Edgar F

机构信息

Univ. Grenoble Alpes, CNRS, Grenoble INP, SIMaP, F-38000 Grenoble, France.

Max-Planck-Institut für Eisenforschung, Max-Planck-Strasse 1, 40237 Düsseldorf, Germany.

出版信息

Ultramicroscopy. 2022 Aug;238:113536. doi: 10.1016/j.ultramic.2022.113536. Epub 2022 Apr 27.

Abstract

The properties of polycrystalline materials are related to their microstructures and hence a complete description, including size, shape, and orientation of the grains, is necessary to understand the behavior of materials. Here, we use Scanning Precession Electron Diffraction (SPED) in the Transmission Electron Microscope (TEM) combined with a tilt series to reconstruct individual grains in 3D within a polycrystalline dual-phase cold wire-drawn pearlitic steel sample. Nanoscale ferrite grains and intragranular cementite particles were indexed using an Automated Crystallographic Orientation Mapping (ACOM) tool for each tilt dataset. The grain orientations were tracked through the tilt datasets and projections of the individual grains were reconstructed from the diffraction data using an orientation-specific Virtual Dark Field (VDF) approach for tomographic reconstruction. The algorithms used to process and reconstruct such datasets are presented. These algorithms represent an extension to the ACOM approach that may be straightforwardly applied to other multi-phase polycrystalline materials to enable 3D spatial and orientation reconstructions.

摘要

多晶材料的性能与其微观结构相关,因此,要了解材料的行为,需要对其进行完整描述,包括晶粒的尺寸、形状和取向。在这里,我们在透射电子显微镜(TEM)中使用扫描进动电子衍射(SPED)并结合倾斜系列,以在多晶双相冷拉珠光体钢样品中三维重建单个晶粒。使用自动晶体取向映射(ACOM)工具对每个倾斜数据集的纳米级铁素体晶粒和晶内渗碳体颗粒进行索引。通过倾斜数据集跟踪晶粒取向,并使用用于断层扫描重建的特定取向虚拟暗场(VDF)方法从衍射数据重建单个晶粒的投影。介绍了用于处理和重建此类数据集的算法。这些算法是对ACOM方法的扩展,可以直接应用于其他多相多晶材料,以实现三维空间和取向重建。

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