Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/27148
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dc.contributor.authorBakhtiari, M-
dc.contributor.authorSadeghi, F-
dc.contributor.authorSato, H-
dc.contributor.authorUm, W-
dc.contributor.authorYim, CH-
dc.contributor.authorLee, H-S-
dc.date.accessioned2023-09-09T06:30:40Z-
dc.date.available2023-09-09T06:30:40Z-
dc.date.issued2023-08-25-
dc.identifierORCID iDs: M. Bakhtiari https://orcid.org/0000-0001-9947-6671; F. Sadeghi https://orcid.org/0000-0002-8662-4054; H. Sato https://orcid.org/0000-0002-1968-7688; W. Um https://orcid.org/0000-0002-3826-0030; H.-S. Lee https://orcid.org/0000-0002-7285-481X.-
dc.identifier.citationBakhtiari, M. et al. (2023) 'Microstructure and texture analysis of 304 austenitic stainless steel using Bragg edge transmission imaging', Journal of Applied Crystallography, 2023, 56 (5), pp. 1 - 13. doi: 10.1107/s1600576723006532.en_US
dc.identifier.issn0021-8898-
dc.identifier.urihttps://bura.brunel.ac.uk/handle/2438/27148-
dc.description.abstractBragg edge imaging using pulsed neutrons is a non-destructive technique for studying microstructure and texture of materials. It provides two-dimensional visualization of crystallographic information using a pixelated gas electron multiplier detector and a time-of-flight method. In this work, the properties of type 304 austenitic stainless steel samples were studied via Bragg edge imaging. The samples included hot-rolled, cold-rolled and heat-treated specimens, which were characterized to investigate texture, phase fraction and grain growth. The results showed that the crystallite size increased with increasing annealing temperature. The cold-rolled and annealed samples exhibited strong textures, while the hot-rolled sample showed no preferred orientation. The phase volume fraction of induced martensite in the cold-rolled sample was also obtained. Two-dimensional maps of microstructures and textures were obtained without destructive processes. The results were validated by electron backscatter diffraction and found to be consistent. This work provides valuable information for non-destructive characterization of bulk materials by performing Bragg edge imaging using the Hokkaido University compact accelerator neutron source.en_US
dc.format.mediumPrint-Electronic-
dc.language.isoen_USen_US
dc.publisherInternational Union of Crystallography (IUCr)en_US
dc.rightsCopyright © International Union of Crystallography 2023. Reproduced with permission of the International Union of Crystallography: reuse of all of the unmodified article for not-for-profit educational or research purposes is permitted (see: https://journals.iucr.org/services/copyrightpolicy.html and https://journals.iucr.org/services/authorrights.html). The article should be cited as: Bakhtiari, M., Sadeghi, F., Sato, H., Um, W., Yim, C. H. & Lee, H.-S. (2023).'Microstructure and texture analysis of 304 austenitic stainless steel using Bragg edge transmission imaging', J. Appl. Cryst. 56 (5), pp. 1 - 13. doi: 10.1107/s1600576723006532.-
dc.rights.urihttps://journals.iucr.org/services/copyrightpolicy.html-
dc.subjectneutron Bragg edge imagingen_US
dc.subjectcompact accelerator neutron sourcesen_US
dc.subjectquantitative crystallographic analysisen_US
dc.subjectmicrostructureen_US
dc.subjecttextureen_US
dc.subject304 austenitic stainless steelen_US
dc.subjectelectron backscatter diffractionen_US
dc.subjectnon-destructive characterizationen_US
dc.subjectheat treatmenten_US
dc.titleMicrostructure and texture analysis of 304 austenitic stainless steel using Bragg edge transmission imagingen_US
dc.typeArticleen_US
dc.identifier.doihttps://doi.org/10.1107/s1600576723006532-
dc.relation.isPartOfJournal of Applied Crystallography-
pubs.issue5-
pubs.publication-statusPublished online-
pubs.volume56-
dc.identifier.eissn1600-5767-
dc.rights.holderInternational Union of Crystallography-
Appears in Collections:Brunel Centre for Advanced Solidification Technology (BCAST)

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