Numerical and experimental study of residual stresses in a linear friction welded Al-SiCp composite

In the present study, the process modelling of AMCs linear friction weldment was carried out. Four major stages of the process (Part 1: Warm-Up; Part 2: Osci-Forging; Part 3: Forging; Part 4: Cool-Down) were identified and simulated consecutively to generate the temperature field and residual strain...

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Main Authors: Jun, T, Song, X, Rotundo, F, Ceschini, L, Morri, A, Threadgill, P, Korsunsky, A
Format: Journal article
Language:English
Published: Trans Tech Publications Inc. 2010
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author Jun, T
Song, X
Rotundo, F
Ceschini, L
Morri, A
Threadgill, P
Korsunsky, A
author_facet Jun, T
Song, X
Rotundo, F
Ceschini, L
Morri, A
Threadgill, P
Korsunsky, A
author_sort Jun, T
collection OXFORD
description In the present study, the process modelling of AMCs linear friction weldment was carried out. Four major stages of the process (Part 1: Warm-Up; Part 2: Osci-Forging; Part 3: Forging; Part 4: Cool-Down) were identified and simulated consecutively to generate the temperature field and residual strains distribution within the model. An eigenstrain model calibrated by the neutron diffraction results was also employed to capture the permanent deformation distribution. Good agreement between the process modelling and the experimental measurements was found. © (2010) Trans Tech Publications.
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spelling oxford-uuid:4e0cdf19-152e-433a-b468-db57f0e205412022-03-26T15:58:53ZNumerical and experimental study of residual stresses in a linear friction welded Al-SiCp compositeJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:4e0cdf19-152e-433a-b468-db57f0e20541EnglishSymplectic Elements at OxfordTrans Tech Publications Inc.2010Jun, TSong, XRotundo, FCeschini, LMorri, AThreadgill, PKorsunsky, AIn the present study, the process modelling of AMCs linear friction weldment was carried out. Four major stages of the process (Part 1: Warm-Up; Part 2: Osci-Forging; Part 3: Forging; Part 4: Cool-Down) were identified and simulated consecutively to generate the temperature field and residual strains distribution within the model. An eigenstrain model calibrated by the neutron diffraction results was also employed to capture the permanent deformation distribution. Good agreement between the process modelling and the experimental measurements was found. © (2010) Trans Tech Publications.
spellingShingle Jun, T
Song, X
Rotundo, F
Ceschini, L
Morri, A
Threadgill, P
Korsunsky, A
Numerical and experimental study of residual stresses in a linear friction welded Al-SiCp composite
title Numerical and experimental study of residual stresses in a linear friction welded Al-SiCp composite
title_full Numerical and experimental study of residual stresses in a linear friction welded Al-SiCp composite
title_fullStr Numerical and experimental study of residual stresses in a linear friction welded Al-SiCp composite
title_full_unstemmed Numerical and experimental study of residual stresses in a linear friction welded Al-SiCp composite
title_short Numerical and experimental study of residual stresses in a linear friction welded Al-SiCp composite
title_sort numerical and experimental study of residual stresses in a linear friction welded al sicp composite
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