A DIC-based global refinement yields a single consistent sample-detector geometry for EBSD, enhancing orientation consistency and pseudosymmetry discrimination over Nelder-Mead and differential evolution methods.
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Recrystallization boundary migration in high-purity Al is modulated by the anisotropy of local internal stress states, with no observed shear-coupled motion.
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Global DIC-based sample-detector geometry refinement for accurate EBSD indexing
A DIC-based global refinement yields a single consistent sample-detector geometry for EBSD, enhancing orientation consistency and pseudosymmetry discrimination over Nelder-Mead and differential evolution methods.
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On stress-assisted boundary migration during recrystallization
Recrystallization boundary migration in high-purity Al is modulated by the anisotropy of local internal stress states, with no observed shear-coupled motion.