3D mapping of residual stresses in growing grains of partially recrystallized Gum Metal

The crystallographic orientations and residual stresses within recrystallizing grains in partially recrystallized β titanium—Gum Metal—were examined non-destructively in 3D using synchrotron Differential Aperture X-ray Microscopy. Contrary to common assumptions, significant local stresses and stress...

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Main Authors: Adam Lindkvist, Wenjun Liu, Dorte Juul Jensen, Yubin Zhang
Format: Article
Language:English
Published: Taylor & Francis Group 2023-11-01
Series:Materials Research Letters
Subjects:
Online Access:https://www.tandfonline.com/doi/10.1080/21663831.2023.2267094
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author Adam Lindkvist
Wenjun Liu
Dorte Juul Jensen
Yubin Zhang
author_facet Adam Lindkvist
Wenjun Liu
Dorte Juul Jensen
Yubin Zhang
author_sort Adam Lindkvist
collection DOAJ
description The crystallographic orientations and residual stresses within recrystallizing grains in partially recrystallized β titanium—Gum Metal—were examined non-destructively in 3D using synchrotron Differential Aperture X-ray Microscopy. Contrary to common assumptions, significant local stresses and stress variations are observed within the recrystallizing grains. The results reveal that the development of these local residual stresses depends on the plastic deformation mode and material’s elastic constants, rather than grain properties such as size and orientation, or even the material’s yield stress. This work provides insights valuable for the design of advanced materials with heterogeneous microstructures.
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spelling doaj.art-d7ddf0bd37a14dd1b40833ed41ebd2e42023-10-31T12:47:39ZengTaylor & Francis GroupMaterials Research Letters2166-38312023-11-01111194294810.1080/21663831.2023.22670943D mapping of residual stresses in growing grains of partially recrystallized Gum MetalAdam Lindkvist0Wenjun Liu1Dorte Juul Jensen2Yubin Zhang3Department of Civil and Mechanical Engineering, Technical University of Denmark, Kgs. Lyngby, DenmarkAdvanced Photon Source, Argonne National Laboratory, Lemont, IL, USADepartment of Civil and Mechanical Engineering, Technical University of Denmark, Kgs. Lyngby, DenmarkDepartment of Civil and Mechanical Engineering, Technical University of Denmark, Kgs. Lyngby, DenmarkThe crystallographic orientations and residual stresses within recrystallizing grains in partially recrystallized β titanium—Gum Metal—were examined non-destructively in 3D using synchrotron Differential Aperture X-ray Microscopy. Contrary to common assumptions, significant local stresses and stress variations are observed within the recrystallizing grains. The results reveal that the development of these local residual stresses depends on the plastic deformation mode and material’s elastic constants, rather than grain properties such as size and orientation, or even the material’s yield stress. This work provides insights valuable for the design of advanced materials with heterogeneous microstructures.https://www.tandfonline.com/doi/10.1080/21663831.2023.2267094Synchrotron radiationresidual stresses3D reconstructionrecrystallizationGum metal
spellingShingle Adam Lindkvist
Wenjun Liu
Dorte Juul Jensen
Yubin Zhang
3D mapping of residual stresses in growing grains of partially recrystallized Gum Metal
Materials Research Letters
Synchrotron radiation
residual stresses
3D reconstruction
recrystallization
Gum metal
title 3D mapping of residual stresses in growing grains of partially recrystallized Gum Metal
title_full 3D mapping of residual stresses in growing grains of partially recrystallized Gum Metal
title_fullStr 3D mapping of residual stresses in growing grains of partially recrystallized Gum Metal
title_full_unstemmed 3D mapping of residual stresses in growing grains of partially recrystallized Gum Metal
title_short 3D mapping of residual stresses in growing grains of partially recrystallized Gum Metal
title_sort 3d mapping of residual stresses in growing grains of partially recrystallized gum metal
topic Synchrotron radiation
residual stresses
3D reconstruction
recrystallization
Gum metal
url https://www.tandfonline.com/doi/10.1080/21663831.2023.2267094
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