Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy
In this work the fatigue crack propagation within the friction stir welded (FSW) joint of 2024-T351 Al alloy is studied as well as fatigue lifetime of the joint using Walker and Nicholls models. The FSW joint is characterised in terms of the residual stress (using the hole drilling technique), mater...
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my.upm.eprints.156772018-07-18T05:00:20Z http://psasir.upm.edu.my/id/eprint/15677/ Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy Golestaneh, Amirreza Fahim Ali, Aidy Mohammadi, Mehdi Zadeh In this work the fatigue crack propagation within the friction stir welded (FSW) joint of 2024-T351 Al alloy is studied as well as fatigue lifetime of the joint using Walker and Nicholls models. The FSW joint is characterised in terms of the residual stress (using the hole drilling technique), material, and cyclic properties. The material surface is polished in order to avoid any surface irregularities. The crack initiation is detected applying scanning electron microscopy (SEM), however plastic replication technique is used to monitor the crack propagation. The concepts of crack closure, residual stress and stress relaxation are incorporated into both models. Finally the results are validated and compared together regarding to the experiments. Elsevier 2009-09 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/15677/1/Modelling%20the%20fatigue%20crack%20growth%20in%20friction%20stir%20welded%20joint%20of%202024.pdf Golestaneh, Amirreza Fahim and Ali, Aidy and Mohammadi, Mehdi Zadeh (2009) Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy. Materials and Design, 30 (8). pp. 2928-2937. ISSN 0264-1275; ESSN: 1873-4197 https://www.sciencedirect.com/science/article/pii/S0261306909000120#! 10.1016/j.matdes.2009.01.006 |
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In this work the fatigue crack propagation within the friction stir welded (FSW) joint of 2024-T351 Al alloy is studied as well as fatigue lifetime of the joint using Walker and Nicholls models. The FSW joint is characterised in terms of the residual stress (using the hole drilling technique), material, and cyclic properties. The material surface is polished in order to avoid any surface irregularities. The crack initiation is detected applying scanning electron microscopy (SEM), however plastic replication technique is used to monitor the crack propagation. The concepts of crack closure, residual stress and stress relaxation are incorporated into both models. Finally the results are validated and compared together regarding to the experiments. |
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Article |
author |
Golestaneh, Amirreza Fahim Ali, Aidy Mohammadi, Mehdi Zadeh |
spellingShingle |
Golestaneh, Amirreza Fahim Ali, Aidy Mohammadi, Mehdi Zadeh Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy |
author_facet |
Golestaneh, Amirreza Fahim Ali, Aidy Mohammadi, Mehdi Zadeh |
author_sort |
Golestaneh, Amirreza Fahim |
title |
Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy |
title_short |
Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy |
title_full |
Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy |
title_fullStr |
Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy |
title_full_unstemmed |
Modelling the fatigue crack growth in friction stir welded joint of 2024-T351 Al alloy |
title_sort |
modelling the fatigue crack growth in friction stir welded joint of 2024-t351 al alloy |
publisher |
Elsevier |
publishDate |
2009 |
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http://psasir.upm.edu.my/id/eprint/15677/1/Modelling%20the%20fatigue%20crack%20growth%20in%20friction%20stir%20welded%20joint%20of%202024.pdf http://psasir.upm.edu.my/id/eprint/15677/ https://www.sciencedirect.com/science/article/pii/S0261306909000120#! |
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