Influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application
Nowadays, low-cost particulate reinforced metal matrix composites with improve mechanical properties are highly sought in various industrial and critical engineering applications including automotive and aerospace sectors. Meanwhile, increasing consumption rate of African giant land snail...
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doaj-12c5097c8070453f848d062f39e950e92021-02-05T08:00:07ZengFaculty of Technology, Novi SadActa Periodica Technologica1450-71882406-095X2020-01-0120205116318010.2298/APT2051163K1450-71882051163KInfluence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive applicationKolawole M.Y.0Aweda J.O.1Abdulkareem S.2Bello S.A.3Ali A.4Iqbal F.5Department of Mechanical Engineering, Faaculty of Engineering and Technology, Kwara State University Malete, NigeriaDepartment of Mechanical Engineering, Faaculty of Engineering and Technology, University of Ilorin, Ilorin, NigeriaDepartment of Mechanical Engineering, Faaculty of Engineering and Technology, University of Ilorin, Ilorin, NigeriaDepartment of Materials Science and Engineering, Faaculty of Engineering and Technology, Kwara State University Malete, NigeriaInterdisciplinary Research Centre on Biomedical Materials, COMSATS University Islamabad, Lahore Campus, PakistanInterdisciplinary Research Centre on Biomedical Materials, COMSATS University Islamabad, Lahore Campus, PakistanNowadays, low-cost particulate reinforced metal matrix composites with improve mechanical properties are highly sought in various industrial and critical engineering applications including automotive and aerospace sectors. Meanwhile, increasing consumption rate of African giant land snail (Archachatina marginata) had been posing disposal challenges of its shells. Therefore, this paper tends to investigates the influence of waste snail shells particulates on the physical and mechanical properties of recycled aluminum- silicon alloy matrix. Different weight proportions i.e. (0 - 7.5) wt% of calcined snail shell particles at an interval of 1.5 wt% were successfully incorporated into Al-Si alloy matrix melted at 750 °C using stir-casting route. The microstructure, physical and mechanical properties of the resulting composites were examined and presented. Microstructural examination shows fairly uniform dispersion of snail shell particles in the aluminium alloy matrix intermingled with aluminium-silicon dendrites. Mechanical properties such as hardness, impact, compressive and tensile strengths increased with increasing addition of calcined snail shell particulate up to 6 wt% while density and elongation decreases. The total equivalent density reduction of 5.4% in composites compared to unreinforced alloy was obtained at 7.5 wt% snail shell addition. The maximum hardness, impact, compressive and tensile strengths obtained are 118±4 HV, 88 J, 552±20 MPa and 211 ± 4.8 MPa equivalent to 21, 25, 19 and 36 percent increase respectively relative to un-reinforced aluminium-silicon alloy. Hence, mechanical and physical properties of Al-Si alloy can be enhanced using calcined snail shell particulates which can widen its application in automotive industries.http://www.doiserbia.nb.rs/img/doi/1450-7188/2020/1450-71882051163K.pdfmetal marix compositelow-cost reinforcementmechanical propertiesstircastingautomotive and aluminium alloy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kolawole M.Y. Aweda J.O. Abdulkareem S. Bello S.A. Ali A. Iqbal F. |
spellingShingle |
Kolawole M.Y. Aweda J.O. Abdulkareem S. Bello S.A. Ali A. Iqbal F. Influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application Acta Periodica Technologica metal marix composite low-cost reinforcement mechanical properties stircasting automotive and aluminium alloy |
author_facet |
Kolawole M.Y. Aweda J.O. Abdulkareem S. Bello S.A. Ali A. Iqbal F. |
author_sort |
Kolawole M.Y. |
title |
Influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application |
title_short |
Influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application |
title_full |
Influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application |
title_fullStr |
Influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application |
title_full_unstemmed |
Influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application |
title_sort |
influence of calcined snail shell particulates on mechanical properties of recycled aluminium alloy for automotive application |
publisher |
Faculty of Technology, Novi Sad |
series |
Acta Periodica Technologica |
issn |
1450-7188 2406-095X |
publishDate |
2020-01-01 |
description |
Nowadays, low-cost particulate reinforced metal matrix composites with
improve mechanical properties are highly sought in various industrial and
critical engineering applications including automotive and aerospace
sectors. Meanwhile, increasing consumption rate of African giant land snail
(Archachatina marginata) had been posing disposal challenges of its shells.
Therefore, this paper tends to investigates the influence of waste snail
shells particulates on the physical and mechanical properties of recycled
aluminum- silicon alloy matrix. Different weight proportions i.e. (0 - 7.5)
wt% of calcined snail shell particles at an interval of 1.5 wt% were
successfully incorporated into Al-Si alloy matrix melted at 750 °C using
stir-casting route. The microstructure, physical and mechanical properties
of the resulting composites were examined and presented. Microstructural
examination shows fairly uniform dispersion of snail shell particles in the
aluminium alloy matrix intermingled with aluminium-silicon dendrites.
Mechanical properties such as hardness, impact, compressive and tensile
strengths increased with increasing addition of calcined snail shell
particulate up to 6 wt% while density and elongation decreases. The total
equivalent density reduction of 5.4% in composites compared to unreinforced
alloy was obtained at 7.5 wt% snail shell addition. The maximum hardness,
impact, compressive and tensile strengths obtained are 118±4 HV, 88 J,
552±20 MPa and 211 ± 4.8 MPa equivalent to 21, 25, 19 and 36 percent
increase respectively relative to un-reinforced aluminium-silicon alloy.
Hence, mechanical and physical properties of Al-Si alloy can be enhanced
using calcined snail shell particulates which can widen its application in
automotive industries. |
topic |
metal marix composite low-cost reinforcement mechanical properties stircasting automotive and aluminium alloy |
url |
http://www.doiserbia.nb.rs/img/doi/1450-7188/2020/1450-71882051163K.pdf |
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