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Time-of-Flight Three Dimensional Neutron Diffraction in Transmission Mode for Mapping Crystal Grain Structures

Authors :
Cereser, Alberto
Strobl, Markus
Hall, Stephen
Steuwer, Axel
Kiyanagi, Ryoji
Tremsin, Anton
Knudsen, Erik Bergbäck
Shinohara, Takenao
Willendrup, Peter
Fanta, Alice Bastos da Silva
Iyengar, Srinivasan
Larsen, Peter Mahler
Hanashima, Takayasu
Moyoshi, Taketo
Kadletz, Peter M.
Krooß, Philip
Niendorf, Thomas
Sales, Morten
Schmahl, Wolfgang W.
Schmidt, Søren
Source :
Nature Scientific Reports 2017
Publication Year :
2017

Abstract

The physical properties of polycrystalline materials depend on their microstructure, which is the nano-to-centimeter-scale arrangement of phases and defects in their interior. Such microstructure depends on the shape, crystallographic phase and orientation, and interfacing of the grains constituting the material. This article presents a new non-destructive 3D technique to study bulk samples with sizes in the cm range with a resolution of hundred micrometers: time-of-flight three-dimensional neutron diffraction (ToF 3DND). Compared to existing analogous X-ray diffraction techniques, ToF 3DND enables studies of samples that can be both larger in size and made of heavier elements. Moreover, ToF 3DND facilitates the use of complicated sample environments. The basic ToF 3DND setup, utilizing an imaging detector with high spatial and temporal resolution, can easily be implemented at a time-of-flight neutron beamline. The technique was developed and tested with data collected at the Materials and Life Science Experimental Facility of the Japan Proton Accelerator Complex (J-PARC) for an iron sample. We successfully reconstructed the shape of 108 grains and developed an indexing procedure. The reconstruction algorithms have been validated by reconstructing two stacked Co-Ni-Ga single crystals and by comparison with a grain map obtained by post-mortem electron backscatter diffraction (EBSD).<br />Comment: Submitted

Details

Database :
arXiv
Journal :
Nature Scientific Reports 2017
Publication Type :
Report
Accession number :
edsarx.1704.06589
Document Type :
Working Paper
Full Text :
https://doi.org/10.1038/s41598-017-09717-w