Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy

The effect of various additions of bismuth and strontium on the microstructure characteristics, impact and tensile properties, as well as fracture behaviour of a secondary Al-Si-Cu-Fe-Zn under as-cast condition are systematically investigated in this study. The as-cast samples were examined using op...

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Main Authors: Farahany, Saeed, Idris, Mohd. Hasbullah, Ourdjini, Ali
Format: Article
Published: Elsevier Ltd. 2015
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Online Access:http://eprints.utm.my/id/eprint/58353/
http://dx.doi.org/10.1016/j.msea.2014.10.053
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spelling my.utm.583532021-12-16T07:04:33Z http://eprints.utm.my/id/eprint/58353/ Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy Farahany, Saeed Idris, Mohd. Hasbullah Ourdjini, Ali TJ Mechanical engineering and machinery The effect of various additions of bismuth and strontium on the microstructure characteristics, impact and tensile properties, as well as fracture behaviour of a secondary Al-Si-Cu-Fe-Zn under as-cast condition are systematically investigated in this study. The as-cast samples were examined using optical microscopy (OM), scanning electron microscopy (SEM), and transmission electron microscopy (TEM). Microstructural analyses showed the occurrence of interaction between Bi and Sr, which, significantly, led to the change of eutectic Si morphology from fibrous to flake morphology, with an increase of mean length, area, and shape factor, an alteration of crystallographic orientation, and an increase in twin density. The mechanical properties were investigated by hardness, impact, and tensile tests with various concentrations of Bi and Sr. It was found that the highest mechanical properties obtained for Sr/Bi were for a ratio of more than 0.44, while deterioration occurred at a ratio of less than 0.32. The hardness, impact toughness, ultimate tensile strength (UTS), elongation to fracture (El), and quality index (Q) of alloys decreased by 7%, 62%, 19%, 57% and 48% respectively when the Sr/Bi ratio diminished from 0.44 to 0.32. The fracture behaviour of impact samples with an Sr/Bi ratio of more than 0.44 showed clear ductile fracture, while the specimens with an Sr/Bi ratio of less than 0.32 presented brittle fracture that corresponds to impact toughness values. Furthermore, the fracture surfaces of tensile samples revealed that the dimple ductile fracture transformed to cleavage brittle mode with drop of the Sr/Bi ratio to less than 0.32 due to an increase in the length, area, and shape factor of eutectic Si. Additionally, the interaction mechanism between Bi and Sr are also discussed in this study. Elsevier Ltd. 2015 Article PeerReviewed Farahany, Saeed and Idris, Mohd. Hasbullah and Ourdjini, Ali (2015) Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy. Materials Science And Engineering A-Structural Materials Properties Microstructure And Processing, 621 . pp. 28-38. ISSN 0921-5093 http://dx.doi.org/10.1016/j.msea.2014.10.053 DOI:10.1016/j.msea.2014.10.053
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Farahany, Saeed
Idris, Mohd. Hasbullah
Ourdjini, Ali
Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy
description The effect of various additions of bismuth and strontium on the microstructure characteristics, impact and tensile properties, as well as fracture behaviour of a secondary Al-Si-Cu-Fe-Zn under as-cast condition are systematically investigated in this study. The as-cast samples were examined using optical microscopy (OM), scanning electron microscopy (SEM), and transmission electron microscopy (TEM). Microstructural analyses showed the occurrence of interaction between Bi and Sr, which, significantly, led to the change of eutectic Si morphology from fibrous to flake morphology, with an increase of mean length, area, and shape factor, an alteration of crystallographic orientation, and an increase in twin density. The mechanical properties were investigated by hardness, impact, and tensile tests with various concentrations of Bi and Sr. It was found that the highest mechanical properties obtained for Sr/Bi were for a ratio of more than 0.44, while deterioration occurred at a ratio of less than 0.32. The hardness, impact toughness, ultimate tensile strength (UTS), elongation to fracture (El), and quality index (Q) of alloys decreased by 7%, 62%, 19%, 57% and 48% respectively when the Sr/Bi ratio diminished from 0.44 to 0.32. The fracture behaviour of impact samples with an Sr/Bi ratio of more than 0.44 showed clear ductile fracture, while the specimens with an Sr/Bi ratio of less than 0.32 presented brittle fracture that corresponds to impact toughness values. Furthermore, the fracture surfaces of tensile samples revealed that the dimple ductile fracture transformed to cleavage brittle mode with drop of the Sr/Bi ratio to less than 0.32 due to an increase in the length, area, and shape factor of eutectic Si. Additionally, the interaction mechanism between Bi and Sr are also discussed in this study.
format Article
author Farahany, Saeed
Idris, Mohd. Hasbullah
Ourdjini, Ali
author_facet Farahany, Saeed
Idris, Mohd. Hasbullah
Ourdjini, Ali
author_sort Farahany, Saeed
title Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy
title_short Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy
title_full Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy
title_fullStr Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy
title_full_unstemmed Effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary Al-Si-Cu-Fe-Zn alloy
title_sort effect of bismuth and strontium interaction on the microstructure development, mechanical properties and fractography of a secondary al-si-cu-fe-zn alloy
publisher Elsevier Ltd.
publishDate 2015
url http://eprints.utm.my/id/eprint/58353/
http://dx.doi.org/10.1016/j.msea.2014.10.053
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score 13.18916