Three-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading

Identifying atomic defects during deformation is crucial to understand material response but remains challenging in three dimensions. Here, the authors couple X-ray Bragg coherent diffraction imaging and atomistic simulations to correlate a strain field to a screw dislocation in a single copper grai...

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Autores principales: Mathew J. Cherukara, Reeju Pokharel, Timothy S. O’Leary, J. Kevin Baldwin, Evan Maxey, Wonsuk Cha, Jorg Maser, Ross J. Harder, Saryu J. Fensin, Richard L. Sandberg
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/fb69c8ebe85c47c4bbbe7accd9f070aa
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spelling oai:doaj.org-article:fb69c8ebe85c47c4bbbe7accd9f070aa2021-12-02T14:39:25ZThree-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading10.1038/s41467-018-06166-52041-1723https://doaj.org/article/fb69c8ebe85c47c4bbbe7accd9f070aa2018-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06166-5https://doaj.org/toc/2041-1723Identifying atomic defects during deformation is crucial to understand material response but remains challenging in three dimensions. Here, the authors couple X-ray Bragg coherent diffraction imaging and atomistic simulations to correlate a strain field to a screw dislocation in a single copper grain.Mathew J. CherukaraReeju PokharelTimothy S. O’LearyJ. Kevin BaldwinEvan MaxeyWonsuk ChaJorg MaserRoss J. HarderSaryu J. FensinRichard L. SandbergNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-6 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mathew J. Cherukara
Reeju Pokharel
Timothy S. O’Leary
J. Kevin Baldwin
Evan Maxey
Wonsuk Cha
Jorg Maser
Ross J. Harder
Saryu J. Fensin
Richard L. Sandberg
Three-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading
description Identifying atomic defects during deformation is crucial to understand material response but remains challenging in three dimensions. Here, the authors couple X-ray Bragg coherent diffraction imaging and atomistic simulations to correlate a strain field to a screw dislocation in a single copper grain.
format article
author Mathew J. Cherukara
Reeju Pokharel
Timothy S. O’Leary
J. Kevin Baldwin
Evan Maxey
Wonsuk Cha
Jorg Maser
Ross J. Harder
Saryu J. Fensin
Richard L. Sandberg
author_facet Mathew J. Cherukara
Reeju Pokharel
Timothy S. O’Leary
J. Kevin Baldwin
Evan Maxey
Wonsuk Cha
Jorg Maser
Ross J. Harder
Saryu J. Fensin
Richard L. Sandberg
author_sort Mathew J. Cherukara
title Three-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading
title_short Three-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading
title_full Three-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading
title_fullStr Three-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading
title_full_unstemmed Three-dimensional X-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading
title_sort three-dimensional x-ray diffraction imaging of dislocations in polycrystalline metals under tensile loading
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/fb69c8ebe85c47c4bbbe7accd9f070aa
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