Analysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopy

Monotonic and cyclic loading of polycrystals causes a complex evolution of the dislocation structure and internal stresses. These phenomena were studied in sheet samples of commercially pure (CP) Ni in heat-treated (large-grained) states. Various microscopy tools were used, namely, scanning electron...

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المؤلفون الرئيسيون: Korsunsky, A, Hofmann, F, Abbey, B, Song, X, Belnoue, J, Mocuta, C, Dolbnya, I
التنسيق: Journal article
اللغة:English
منشور في: 2012
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author Korsunsky, A
Hofmann, F
Abbey, B
Song, X
Belnoue, J
Mocuta, C
Dolbnya, I
author_facet Korsunsky, A
Hofmann, F
Abbey, B
Song, X
Belnoue, J
Mocuta, C
Dolbnya, I
author_sort Korsunsky, A
collection OXFORD
description Monotonic and cyclic loading of polycrystals causes a complex evolution of the dislocation structure and internal stresses. These phenomena were studied in sheet samples of commercially pure (CP) Ni in heat-treated (large-grained) states. Various microscopy tools were used, namely, scanning electron microscopy (SEM) with electron back-scattered diffraction (EBSD) to image the surface grain structure; Focused Ion Beam (FIB) with channelling contrast to visualise the through-thickness grain arrangement; and synchrotron scanning transmission X-ray microscopy (STXM) to obtain absorption-contrast images. In order to investigate the internal defects and lattice distortion caused by them, synchrotron X-ray diffraction was used in a variety of modes. Reciprocal space mapping (RSM) was used to quantify the amount of lattice re-orientation (rotation) due to plastic deformation. Micro-beam Laue diffraction was used to obtain 2D images containing multiple reflections that undergo "streaking" due to plastic deformation. The combination of reciprocal space mapping and Laue micro-diffraction provided improved insight into the deformation processes within individual grains during plastic deformation. The results are interpreted and discussed in conjunction with dislocation dynamics and finite element modelling of plastic deformation by crystal slip. © 2011 Elsevier Ltd. All rights reserved.
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spelling oxford-uuid:c1de49f3-3cb0-4aaf-a43c-aaf5700dc42f2022-03-27T06:04:38ZAnalysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopyJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:c1de49f3-3cb0-4aaf-a43c-aaf5700dc42fEnglishSymplectic Elements at Oxford2012Korsunsky, AHofmann, FAbbey, BSong, XBelnoue, JMocuta, CDolbnya, IMonotonic and cyclic loading of polycrystals causes a complex evolution of the dislocation structure and internal stresses. These phenomena were studied in sheet samples of commercially pure (CP) Ni in heat-treated (large-grained) states. Various microscopy tools were used, namely, scanning electron microscopy (SEM) with electron back-scattered diffraction (EBSD) to image the surface grain structure; Focused Ion Beam (FIB) with channelling contrast to visualise the through-thickness grain arrangement; and synchrotron scanning transmission X-ray microscopy (STXM) to obtain absorption-contrast images. In order to investigate the internal defects and lattice distortion caused by them, synchrotron X-ray diffraction was used in a variety of modes. Reciprocal space mapping (RSM) was used to quantify the amount of lattice re-orientation (rotation) due to plastic deformation. Micro-beam Laue diffraction was used to obtain 2D images containing multiple reflections that undergo "streaking" due to plastic deformation. The combination of reciprocal space mapping and Laue micro-diffraction provided improved insight into the deformation processes within individual grains during plastic deformation. The results are interpreted and discussed in conjunction with dislocation dynamics and finite element modelling of plastic deformation by crystal slip. © 2011 Elsevier Ltd. All rights reserved.
spellingShingle Korsunsky, A
Hofmann, F
Abbey, B
Song, X
Belnoue, J
Mocuta, C
Dolbnya, I
Analysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopy
title Analysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopy
title_full Analysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopy
title_fullStr Analysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopy
title_full_unstemmed Analysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopy
title_short Analysis of the internal structure and lattice (mis)orientation in individual grains of deformed CP nickel polycrystals by synchrotron X-ray micro-diffraction and microscopy
title_sort analysis of the internal structure and lattice mis orientation in individual grains of deformed cp nickel polycrystals by synchrotron x ray micro diffraction and microscopy
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AT hofmannf analysisoftheinternalstructureandlatticemisorientationinindividualgrainsofdeformedcpnickelpolycrystalsbysynchrotronxraymicrodiffractionandmicroscopy
AT abbeyb analysisoftheinternalstructureandlatticemisorientationinindividualgrainsofdeformedcpnickelpolycrystalsbysynchrotronxraymicrodiffractionandmicroscopy
AT songx analysisoftheinternalstructureandlatticemisorientationinindividualgrainsofdeformedcpnickelpolycrystalsbysynchrotronxraymicrodiffractionandmicroscopy
AT belnouej analysisoftheinternalstructureandlatticemisorientationinindividualgrainsofdeformedcpnickelpolycrystalsbysynchrotronxraymicrodiffractionandmicroscopy
AT mocutac analysisoftheinternalstructureandlatticemisorientationinindividualgrainsofdeformedcpnickelpolycrystalsbysynchrotronxraymicrodiffractionandmicroscopy
AT dolbnyai analysisoftheinternalstructureandlatticemisorientationinindividualgrainsofdeformedcpnickelpolycrystalsbysynchrotronxraymicrodiffractionandmicroscopy