Characterization of 2024-T351 friction stir welding joints

Characterization of macrostructure, microstructure, hardness, precipitate distribution, residual stress, and cyclic deformation behavior of 2024-T351 friction stir welded joints has been conducted. Inhomogeneous microparameters governing the nonuniform residual stresses and cyclic strength are discu...

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Main Authors: Ali, Aidy, Brown, Mike W., Rodopoulos, Chris A., Gardiner, S.
Format: Article
Language:English
English
Published: 2006
Subjects:
Online Access:http://psasir.upm.edu.my/id/eprint/18011/1/Characterization%20of%202024.pdf
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author Ali, Aidy
Brown, Mike W.
Rodopoulos, Chris A.
Gardiner, S.
author_facet Ali, Aidy
Brown, Mike W.
Rodopoulos, Chris A.
Gardiner, S.
author_sort Ali, Aidy
collection UPM
description Characterization of macrostructure, microstructure, hardness, precipitate distribution, residual stress, and cyclic deformation behavior of 2024-T351 friction stir welded joints has been conducted. Inhomogeneous microparameters governing the nonuniform residual stresses and cyclic strength are discussed. The cyclic strength of the weld microregimes is controlled by grain size and distribution of precipitates achieved during the weld process. The comprehensive information of micro- and macromechanics is used to assist in understanding the mechanism that governed the fatigue crack initiation, propagation, and life of the welded joints. © ASM International.
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spelling upm.eprints-180112015-12-09T02:47:31Z http://psasir.upm.edu.my/id/eprint/18011/ Characterization of 2024-T351 friction stir welding joints Ali, Aidy Brown, Mike W. Rodopoulos, Chris A. Gardiner, S. Characterization of macrostructure, microstructure, hardness, precipitate distribution, residual stress, and cyclic deformation behavior of 2024-T351 friction stir welded joints has been conducted. Inhomogeneous microparameters governing the nonuniform residual stresses and cyclic strength are discussed. The cyclic strength of the weld microregimes is controlled by grain size and distribution of precipitates achieved during the weld process. The comprehensive information of micro- and macromechanics is used to assist in understanding the mechanism that governed the fatigue crack initiation, propagation, and life of the welded joints. © ASM International. 2006 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/18011/1/Characterization%20of%202024.pdf Ali, Aidy and Brown, Mike W. and Rodopoulos, Chris A. and Gardiner, S. (2006) Characterization of 2024-T351 friction stir welding joints. Journal of Failure Analysis and Prevention, 6 (4). pp. 83-96. ISSN 1547-7029 http://dx.doi.org/10.1361/154770206X117559 Welded joints Deformations (Mechanics) Welding doi:10.1361/154770206X117559 English
spellingShingle Welded joints
Deformations (Mechanics)
Welding
Ali, Aidy
Brown, Mike W.
Rodopoulos, Chris A.
Gardiner, S.
Characterization of 2024-T351 friction stir welding joints
title Characterization of 2024-T351 friction stir welding joints
title_full Characterization of 2024-T351 friction stir welding joints
title_fullStr Characterization of 2024-T351 friction stir welding joints
title_full_unstemmed Characterization of 2024-T351 friction stir welding joints
title_short Characterization of 2024-T351 friction stir welding joints
title_sort characterization of 2024 t351 friction stir welding joints
topic Welded joints
Deformations (Mechanics)
Welding
url http://psasir.upm.edu.my/id/eprint/18011/1/Characterization%20of%202024.pdf
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AT rodopouloschrisa characterizationof2024t351frictionstirweldingjoints
AT gardiners characterizationof2024t351frictionstirweldingjoints