Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process

Abrasive water jet (AWJ) peening strengthening test of aluminum-lithium alloy (8090Al–Li) was carried out with a variety of pressure process parameters. The research was done on the roughness as well as the morphology of the treated samples. A high dislocation density formed in the area of the workp...

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Main Authors: Syed, Qutaba, Azmir, Azhari, Mebrahitom, Asmelash
Format: Conference or Workshop Item
Language:English
English
Published: 2022
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Online Access:http://umpir.ump.edu.my/id/eprint/38003/1/Effect%20Of%20Surface%20Topography%20Of%208090%20Al.pdf
http://umpir.ump.edu.my/id/eprint/38003/2/Effect%20Of%20Surface%20Topography%20Of%208090%20Al-Li%20Alloy%20During%20Abrasive%20Waterjet%20Peening%20Process.pdf
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spelling my.ump.umpir.380032023-07-12T02:03:07Z http://umpir.ump.edu.my/id/eprint/38003/ Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process Syed, Qutaba Azmir, Azhari Mebrahitom, Asmelash T Technology (General) TA Engineering (General). Civil engineering (General) TS Manufactures Abrasive water jet (AWJ) peening strengthening test of aluminum-lithium alloy (8090Al–Li) was carried out with a variety of pressure process parameters. The research was done on the roughness as well as the morphology of the treated samples. A high dislocation density formed in the area of the workpiece that was subjected to the peening process. The result was a surface that was both rough and hardened. The abrasive effect took place in the area where the collapse took place. The fact that this method was the most effective option for treating the surface of the metal was very beneficial. According to the findings, the surface roughness, grain size, micro-strain, erosive effect, and micro-hardness of the alloy were all considerably affected by various peening settings. In this instance, the rise in pressure caused the surface roughness to increase as well. In addition, the microcrystalline structure was shown to have diminished in the treated area by the abrasive peening. The research demonstrated how the effect of varying the peening pressure can reduce the amount of surface roughness on materials. In comparison to the initial sample, the roughness reached its highest values of 62 μm to 92 μm and rose by 7.87 to 27.56 %. These results indicate a significant increase. In comparison, the average surface roughness of the equivalent area increased to 30.04 μm. According to the experimental observation, the AWJ peening collapse limits that were acquired by the proposed sample surface and metallographic images were extremely complete and accurate. 2022 Conference or Workshop Item NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/38003/1/Effect%20Of%20Surface%20Topography%20Of%208090%20Al.pdf pdf en http://umpir.ump.edu.my/id/eprint/38003/2/Effect%20Of%20Surface%20Topography%20Of%208090%20Al-Li%20Alloy%20During%20Abrasive%20Waterjet%20Peening%20Process.pdf Syed, Qutaba and Azmir, Azhari and Mebrahitom, Asmelash (2022) Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process. In: 5th International Conference on Automotive Innovation & Green Energy Vehicle (AiGEV2022), 5 – 6 December 2022 , Langkawi, Kedah. . (Unpublished)
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
English
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
TS Manufactures
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
TS Manufactures
Syed, Qutaba
Azmir, Azhari
Mebrahitom, Asmelash
Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process
description Abrasive water jet (AWJ) peening strengthening test of aluminum-lithium alloy (8090Al–Li) was carried out with a variety of pressure process parameters. The research was done on the roughness as well as the morphology of the treated samples. A high dislocation density formed in the area of the workpiece that was subjected to the peening process. The result was a surface that was both rough and hardened. The abrasive effect took place in the area where the collapse took place. The fact that this method was the most effective option for treating the surface of the metal was very beneficial. According to the findings, the surface roughness, grain size, micro-strain, erosive effect, and micro-hardness of the alloy were all considerably affected by various peening settings. In this instance, the rise in pressure caused the surface roughness to increase as well. In addition, the microcrystalline structure was shown to have diminished in the treated area by the abrasive peening. The research demonstrated how the effect of varying the peening pressure can reduce the amount of surface roughness on materials. In comparison to the initial sample, the roughness reached its highest values of 62 μm to 92 μm and rose by 7.87 to 27.56 %. These results indicate a significant increase. In comparison, the average surface roughness of the equivalent area increased to 30.04 μm. According to the experimental observation, the AWJ peening collapse limits that were acquired by the proposed sample surface and metallographic images were extremely complete and accurate.
format Conference or Workshop Item
author Syed, Qutaba
Azmir, Azhari
Mebrahitom, Asmelash
author_facet Syed, Qutaba
Azmir, Azhari
Mebrahitom, Asmelash
author_sort Syed, Qutaba
title Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process
title_short Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process
title_full Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process
title_fullStr Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process
title_full_unstemmed Effect Of Surface Topography Of 8090 Al-Li Alloy During Abrasive Waterjet Peening Process
title_sort effect of surface topography of 8090 al-li alloy during abrasive waterjet peening process
publishDate 2022
url http://umpir.ump.edu.my/id/eprint/38003/1/Effect%20Of%20Surface%20Topography%20Of%208090%20Al.pdf
http://umpir.ump.edu.my/id/eprint/38003/2/Effect%20Of%20Surface%20Topography%20Of%208090%20Al-Li%20Alloy%20During%20Abrasive%20Waterjet%20Peening%20Process.pdf
http://umpir.ump.edu.my/id/eprint/38003/
_version_ 1772811350424158208
score 13.160551