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Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy

Improving the engineering properties of Al–7Si cast alloys (300 series) provides an attractive alternative to automotive and aircraft engine industries. The solubility limit of silicon (Si) in Al contributes to the precipitation of flake-shaped Si particles with sharp edges, which function as a stre...

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Autores principales: Gebril, Mohamed Abdelgawad, Omar, Mohd Zaidi, Mohamed, Intan Fadhlina, Othman, Norinsan Kamil, Elabar, Dawod Mohamed, Haider, Farag Ibrahim, Samat, Saziana, Irfan, Osama M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9919927/
https://www.ncbi.nlm.nih.gov/pubmed/36770093
http://dx.doi.org/10.3390/ma16031086
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author Gebril, Mohamed Abdelgawad
Omar, Mohd Zaidi
Mohamed, Intan Fadhlina
Othman, Norinsan Kamil
Elabar, Dawod Mohamed
Haider, Farag Ibrahim
Samat, Saziana
Irfan, Osama M.
author_facet Gebril, Mohamed Abdelgawad
Omar, Mohd Zaidi
Mohamed, Intan Fadhlina
Othman, Norinsan Kamil
Elabar, Dawod Mohamed
Haider, Farag Ibrahim
Samat, Saziana
Irfan, Osama M.
author_sort Gebril, Mohamed Abdelgawad
collection PubMed
description Improving the engineering properties of Al–7Si cast alloys (300 series) provides an attractive alternative to automotive and aircraft engine industries. The solubility limit of silicon (Si) in Al contributes to the precipitation of flake-shaped Si particles with sharp edges, which function as a stress riser and promote crack propagation during the eutectic phase while also weakening the protective layer’s durability. In this study, the impact of microstructure refinement of Al–7Si alloys by using cooling slope, thixoforming and the T6 heat treatment process on hardness and corrosion resistance behavior was investigated. Results showed that the microstructures of the as-cast alloy had a very coarse dendritic shape, whereas the dendritic transferred to the globular α-Al phase, and the Si particles were replaced into a lamellar- or acicular-like shape after the cooling slope and thixoforming process, respectively. The as-cast, cooling slope and thixoformed samples were subjected to the T6 heat treatment process, which enhanced the hardness to 79, 99 and 104 HV, respectively, due to Si particle refinement. The potentiodynamic test revealed that the corrosion rate dropped to 0.00790 and 0.00736 mmpy(−1) in the heat-treated cooling slope and thixoforming samples. This finding can be attributed to the substantially refined Si particles and reduced eutectic phase area due to the smaller cathodic to anodic area ratio.
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spelling pubmed-99199272023-02-12 Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy Gebril, Mohamed Abdelgawad Omar, Mohd Zaidi Mohamed, Intan Fadhlina Othman, Norinsan Kamil Elabar, Dawod Mohamed Haider, Farag Ibrahim Samat, Saziana Irfan, Osama M. Materials (Basel) Article Improving the engineering properties of Al–7Si cast alloys (300 series) provides an attractive alternative to automotive and aircraft engine industries. The solubility limit of silicon (Si) in Al contributes to the precipitation of flake-shaped Si particles with sharp edges, which function as a stress riser and promote crack propagation during the eutectic phase while also weakening the protective layer’s durability. In this study, the impact of microstructure refinement of Al–7Si alloys by using cooling slope, thixoforming and the T6 heat treatment process on hardness and corrosion resistance behavior was investigated. Results showed that the microstructures of the as-cast alloy had a very coarse dendritic shape, whereas the dendritic transferred to the globular α-Al phase, and the Si particles were replaced into a lamellar- or acicular-like shape after the cooling slope and thixoforming process, respectively. The as-cast, cooling slope and thixoformed samples were subjected to the T6 heat treatment process, which enhanced the hardness to 79, 99 and 104 HV, respectively, due to Si particle refinement. The potentiodynamic test revealed that the corrosion rate dropped to 0.00790 and 0.00736 mmpy(−1) in the heat-treated cooling slope and thixoforming samples. This finding can be attributed to the substantially refined Si particles and reduced eutectic phase area due to the smaller cathodic to anodic area ratio. MDPI 2023-01-27 /pmc/articles/PMC9919927/ /pubmed/36770093 http://dx.doi.org/10.3390/ma16031086 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
Gebril, Mohamed Abdelgawad
Omar, Mohd Zaidi
Mohamed, Intan Fadhlina
Othman, Norinsan Kamil
Elabar, Dawod Mohamed
Haider, Farag Ibrahim
Samat, Saziana
Irfan, Osama M.
Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy
title Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy
title_full Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy
title_fullStr Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy
title_full_unstemmed Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy
title_short Effect of Semisolid and Heat Treatment Process on Microstructural Refinement of Al–7Si Alloy
title_sort effect of semisolid and heat treatment process on microstructural refinement of al–7si alloy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9919927/
https://www.ncbi.nlm.nih.gov/pubmed/36770093
http://dx.doi.org/10.3390/ma16031086
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