The dataset together with the corresponding Python scripts and Jupyter notebooks presented in this article are supplementary data for the work presented in Samaee et al., 2019 [1]. The data itself consists of two parts: the simulation data that was used in [1] to analyze the effect of a particular grain boundary on curved dislocations and the precession electron diffraction (PED) strain maps together with post-processed data for analyzing details of the observed dislocation vein structures. Additionally, the complete stress tensor components, which are not shown in [1], have also been included. The data sets are accompanied by Python code explaining the file formats and showing how to post-process the data.
TU Bergakademie FreibergInstitute of Mechanics and Fluid Dynamics
University of AntwerpEMAT, Department of Physics
Karlsruhe Institute of TechnologyInstitute for Applied Materials
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Sandfeld, S., Samaee, V., Idrissi, H., Groten, J., Pardoen, T., Schwaiger, R., & Schryvers, D. (2019). Datasets for the analysis of dislocations at grain boundaries and during vein formation in cyclically deformed Ni micropillars. Data in Brief, 27, 104724. https://doi.org/10.1016/j.dib.2019.104724 (Original work published 2019)