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Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties

This study investigates the effect of tool pin eccentricity and welding speed on the grain structure, crystallographic texture, and mechanical properties of friction stir welded (FSWed) AA5754-H24. Three tool pin eccentricities of 0, 0.2, and 0.8 mm at different welding speeds ranging from 100 mm/mi...

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Autores principales: Ahmed, Mohamed M. Z., Essa, Ahmed R. S., Ataya, Sabbah, El-Sayed Seleman, Mohamed M., El-Aty, Ali Abd, Alzahrani, Bandar, Touileb, Kamel, Bakkar, Ashraf, Ponnore, Joffin J., Mohamed, Abdelkarim Y. A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004530/
https://www.ncbi.nlm.nih.gov/pubmed/36903146
http://dx.doi.org/10.3390/ma16052031
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author Ahmed, Mohamed M. Z.
Essa, Ahmed R. S.
Ataya, Sabbah
El-Sayed Seleman, Mohamed M.
El-Aty, Ali Abd
Alzahrani, Bandar
Touileb, Kamel
Bakkar, Ashraf
Ponnore, Joffin J.
Mohamed, Abdelkarim Y. A.
author_facet Ahmed, Mohamed M. Z.
Essa, Ahmed R. S.
Ataya, Sabbah
El-Sayed Seleman, Mohamed M.
El-Aty, Ali Abd
Alzahrani, Bandar
Touileb, Kamel
Bakkar, Ashraf
Ponnore, Joffin J.
Mohamed, Abdelkarim Y. A.
author_sort Ahmed, Mohamed M. Z.
collection PubMed
description This study investigates the effect of tool pin eccentricity and welding speed on the grain structure, crystallographic texture, and mechanical properties of friction stir welded (FSWed) AA5754-H24. Three tool pin eccentricities of 0, 0.2, and 0.8 mm at different welding speeds ranging from 100 mm/min to 500 mm/min and a constant tool rotation rate of 600 rpm were investigated. High-resolution electron backscattering diffraction (EBSD) data were acquired from each weld’s center of the nugget zone (NG) and processed to analyze the grain structure and texture. In terms of mechanical properties, both hardness and tensile properties were investigated. The grain structure in the NG of the joints produced at 100 mm/min, 600 rpm, and different tool pin eccentricities showed significant grain refining due to dynamic recrystallization with average grain sizes of 18, 15, and 18 µm at 0, 0.2, and 0.8 mm pin eccentricities, respectively. Increasing the welding speed from 100 to 500 mm/min further reduced the average grain size of the NG zone to 12.4, 10, and 11 µm at 0, 0.2, and 0.8 mm eccentricity, respectively. The simple shear texture dominates the crystallographic texture with both [Formula: see text] /B texture component with the C component at their ideal positions after rotating the data to align the shear reference frame with the FSW reference frame in both the PFs and ODF sections. The tensile properties of the welded joints were slightly lower than the base material due to the hardness reduction in the weld zone. However, the ultimate tensile strength and the yield stress for all welded joints increased by increasing the friction stir welding (FSW) speed from 100 to 500 mm/min. Welding using the pin eccentricity of 0.2 mm resulted in the highest tensile strength; at a welding speed of 500 mm/min, it reached 97% of the base material strength. The hardness profile showed the typical W shape with a reduction in the hardness of the weld zone and a slight recovery of the hardness in the NG zone.
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spelling pubmed-100045302023-03-11 Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties Ahmed, Mohamed M. Z. Essa, Ahmed R. S. Ataya, Sabbah El-Sayed Seleman, Mohamed M. El-Aty, Ali Abd Alzahrani, Bandar Touileb, Kamel Bakkar, Ashraf Ponnore, Joffin J. Mohamed, Abdelkarim Y. A. Materials (Basel) Article This study investigates the effect of tool pin eccentricity and welding speed on the grain structure, crystallographic texture, and mechanical properties of friction stir welded (FSWed) AA5754-H24. Three tool pin eccentricities of 0, 0.2, and 0.8 mm at different welding speeds ranging from 100 mm/min to 500 mm/min and a constant tool rotation rate of 600 rpm were investigated. High-resolution electron backscattering diffraction (EBSD) data were acquired from each weld’s center of the nugget zone (NG) and processed to analyze the grain structure and texture. In terms of mechanical properties, both hardness and tensile properties were investigated. The grain structure in the NG of the joints produced at 100 mm/min, 600 rpm, and different tool pin eccentricities showed significant grain refining due to dynamic recrystallization with average grain sizes of 18, 15, and 18 µm at 0, 0.2, and 0.8 mm pin eccentricities, respectively. Increasing the welding speed from 100 to 500 mm/min further reduced the average grain size of the NG zone to 12.4, 10, and 11 µm at 0, 0.2, and 0.8 mm eccentricity, respectively. The simple shear texture dominates the crystallographic texture with both [Formula: see text] /B texture component with the C component at their ideal positions after rotating the data to align the shear reference frame with the FSW reference frame in both the PFs and ODF sections. The tensile properties of the welded joints were slightly lower than the base material due to the hardness reduction in the weld zone. However, the ultimate tensile strength and the yield stress for all welded joints increased by increasing the friction stir welding (FSW) speed from 100 to 500 mm/min. Welding using the pin eccentricity of 0.2 mm resulted in the highest tensile strength; at a welding speed of 500 mm/min, it reached 97% of the base material strength. The hardness profile showed the typical W shape with a reduction in the hardness of the weld zone and a slight recovery of the hardness in the NG zone. MDPI 2023-03-01 /pmc/articles/PMC10004530/ /pubmed/36903146 http://dx.doi.org/10.3390/ma16052031 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ahmed, Mohamed M. Z.
Essa, Ahmed R. S.
Ataya, Sabbah
El-Sayed Seleman, Mohamed M.
El-Aty, Ali Abd
Alzahrani, Bandar
Touileb, Kamel
Bakkar, Ashraf
Ponnore, Joffin J.
Mohamed, Abdelkarim Y. A.
Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties
title Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties
title_full Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties
title_fullStr Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties
title_full_unstemmed Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties
title_short Friction Stir Welding of AA5754-H24: Impact of Tool Pin Eccentricity and Welding Speed on Grain Structure, Crystallographic Texture, and Mechanical Properties
title_sort friction stir welding of aa5754-h24: impact of tool pin eccentricity and welding speed on grain structure, crystallographic texture, and mechanical properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004530/
https://www.ncbi.nlm.nih.gov/pubmed/36903146
http://dx.doi.org/10.3390/ma16052031
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