Residual strains in AA2024/AlSiCp composite linear friction welds

The present paper is devoted to the study of residual strains in AA2024/AlSiC<sub>p</sub> linear friction welds, using a novel approach based on <em>eigenstrain</em>. Synchrotron X-ray and neutron diffraction were used to measure the interplanar lattice spacing in the welds a...

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Main Authors: Jun, T, Rotundo, F, Song, X, Ceschini, L, Korsunsky, A
Format: Journal article
Sprog:English
Udgivet: Elsevier 2010
Fag:
_version_ 1826281149980213248
author Jun, T
Rotundo, F
Song, X
Ceschini, L
Korsunsky, A
author_facet Jun, T
Rotundo, F
Song, X
Ceschini, L
Korsunsky, A
author_sort Jun, T
collection OXFORD
description The present paper is devoted to the study of residual strains in AA2024/AlSiC<sub>p</sub> linear friction welds, using a novel approach based on <em>eigenstrain</em>. Synchrotron X-ray and neutron diffraction were used to measure the interplanar lattice spacing in the welds and deduce the residual elastic strains as a function of the distance from the bond line. The limited experimental datasets were combined with eigenstrain-based FE modelling in order to reconstruct the complete strain states in the entire components. The reconstructed strain distributions were validated with further experiments, indicating good agreement for both cases. It was found that the approach based on <em>eigenstrain</em> is a powerful basis for reconstructing full-field residual strain/stress distributions in engineering structures.
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spelling oxford-uuid:7da83d10-096e-4aa5-8079-33ea7a6a3d6b2022-03-26T21:05:03ZResidual strains in AA2024/AlSiCp composite linear friction weldsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:7da83d10-096e-4aa5-8079-33ea7a6a3d6bEngineering & allied sciencesEnglishOxford University Research Archive - ValetElsevier2010Jun, TRotundo, FSong, XCeschini, LKorsunsky, AThe present paper is devoted to the study of residual strains in AA2024/AlSiC<sub>p</sub> linear friction welds, using a novel approach based on <em>eigenstrain</em>. Synchrotron X-ray and neutron diffraction were used to measure the interplanar lattice spacing in the welds and deduce the residual elastic strains as a function of the distance from the bond line. The limited experimental datasets were combined with eigenstrain-based FE modelling in order to reconstruct the complete strain states in the entire components. The reconstructed strain distributions were validated with further experiments, indicating good agreement for both cases. It was found that the approach based on <em>eigenstrain</em> is a powerful basis for reconstructing full-field residual strain/stress distributions in engineering structures.
spellingShingle Engineering & allied sciences
Jun, T
Rotundo, F
Song, X
Ceschini, L
Korsunsky, A
Residual strains in AA2024/AlSiCp composite linear friction welds
title Residual strains in AA2024/AlSiCp composite linear friction welds
title_full Residual strains in AA2024/AlSiCp composite linear friction welds
title_fullStr Residual strains in AA2024/AlSiCp composite linear friction welds
title_full_unstemmed Residual strains in AA2024/AlSiCp composite linear friction welds
title_short Residual strains in AA2024/AlSiCp composite linear friction welds
title_sort residual strains in aa2024 alsicp composite linear friction welds
topic Engineering & allied sciences
work_keys_str_mv AT junt residualstrainsinaa2024alsicpcompositelinearfrictionwelds
AT rotundof residualstrainsinaa2024alsicpcompositelinearfrictionwelds
AT songx residualstrainsinaa2024alsicpcompositelinearfrictionwelds
AT ceschinil residualstrainsinaa2024alsicpcompositelinearfrictionwelds
AT korsunskya residualstrainsinaa2024alsicpcompositelinearfrictionwelds