Synthesis and characterisation of aluminium composite with graphene oxide reinforcement
Aluminium matrix composites (AMCs) find a broader spectrum of applications inconsiderable number of industries globally as AMCs possess excellent mechanical properties at lower mass density. Due to many advantages, researchers continue to find a new generation of materials that offer designers many...
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my.iium.irep.903552021-06-21T08:17:00Z http://irep.iium.edu.my/90355/ Synthesis and characterisation of aluminium composite with graphene oxide reinforcement Fuhaid, Mutlag Shafi Murali, R V Maleque, Md. Abdul Krishnan, P K Abd. Rahman, Mohamed T Technology (General) T11.95 Industrial directories T173.2 Technological change TN263 Mineral deposit. Metallic ore deposits. Prospecting TN600 Metallurgy TN799.5 Nonmetallic minerals TP200 Manufacture and use of chemicals Aluminium matrix composites (AMCs) find a broader spectrum of applications inconsiderable number of industries globally as AMCs possess excellent mechanical properties at lower mass density. Due to many advantages, researchers continue to find a new generation of materials that offer designers many benefits in converting traditional materials into commercial and industrial materials to use low cost or waste materials as reinforcing phase while producing AMCs. In this research work, Graphene Oxide (GO) is used as a reinforcing phase in the LM6 aluminium matrix, and this paper attempts to lay more emphasis on synthesis and characterization of LM6 matrix and GO particulates and LM6/GO composites as a whole. A modified stir casting process was employed to develop the above composite material. The composite test pieces were subject to physical and mechanical tests, i.e., density, hardness, tensile, and impact. Microanalysis methods such as SEM and XRD analysis were also performed on the composite specimens to analyze the feasibility and suitability of the materials for further research work (friction welding of composites) being pursued by the authors. The results and insights drawn from the comprehensive laboratory analysis demonstrated that the LM6/GO composite could be successfully used as alternative materials replacing metal and alloys. Furthermore, the composite can be easily subject to the welding process resulting in quality welded joints and assemblies. IOP Publishing 2021 Article PeerReviewed application/pdf en http://irep.iium.edu.my/90355/7/90355_Synthesis.pdf Fuhaid, Mutlag Shafi and Murali, R V and Maleque, Md. Abdul and Krishnan, P K and Abd. Rahman, Mohamed (2021) Synthesis and characterisation of aluminium composite with graphene oxide reinforcement. IOP Conference Series: Materials Science and Engineering, 1057. pp. 1-12. https://iopscience.iop.org/article/10.1088/1757-899X/1057/1/012005 doi:10.1088/1757-899X/1057/1/012005 |
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T Technology (General) T11.95 Industrial directories T173.2 Technological change TN263 Mineral deposit. Metallic ore deposits. Prospecting TN600 Metallurgy TN799.5 Nonmetallic minerals TP200 Manufacture and use of chemicals Fuhaid, Mutlag Shafi Murali, R V Maleque, Md. Abdul Krishnan, P K Abd. Rahman, Mohamed Synthesis and characterisation of aluminium composite with graphene oxide reinforcement |
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Aluminium matrix composites (AMCs) find a broader spectrum of applications inconsiderable number of industries globally as AMCs possess excellent mechanical properties at lower mass density. Due to many advantages, researchers continue to find a new generation of materials that offer designers many benefits in converting traditional materials into commercial and industrial materials to use low cost or waste materials as reinforcing phase while producing AMCs. In this research work, Graphene Oxide (GO) is used as a reinforcing phase in the LM6 aluminium matrix, and this paper attempts to lay more emphasis on synthesis and characterization of LM6 matrix and GO particulates and LM6/GO composites as a whole. A modified stir casting process was employed to develop the above composite material. The composite test pieces were subject to physical and mechanical tests, i.e., density, hardness, tensile, and impact. Microanalysis methods such as SEM and XRD analysis were also performed on the composite specimens to analyze the feasibility and suitability of the materials for further research work (friction welding of composites) being pursued by the authors. The results and insights drawn from the comprehensive laboratory analysis demonstrated that the LM6/GO composite could be successfully used as alternative materials replacing metal and alloys. Furthermore, the composite can be easily subject to the welding process resulting in quality welded joints and assemblies. |
format |
Article |
author |
Fuhaid, Mutlag Shafi Murali, R V Maleque, Md. Abdul Krishnan, P K Abd. Rahman, Mohamed |
author_facet |
Fuhaid, Mutlag Shafi Murali, R V Maleque, Md. Abdul Krishnan, P K Abd. Rahman, Mohamed |
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Fuhaid, Mutlag Shafi |
title |
Synthesis and characterisation of aluminium composite with graphene oxide reinforcement |
title_short |
Synthesis and characterisation of aluminium composite with graphene oxide reinforcement |
title_full |
Synthesis and characterisation of aluminium composite with graphene oxide reinforcement |
title_fullStr |
Synthesis and characterisation of aluminium composite with graphene oxide reinforcement |
title_full_unstemmed |
Synthesis and characterisation of aluminium composite with graphene oxide reinforcement |
title_sort |
synthesis and characterisation of aluminium composite with graphene oxide reinforcement |
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IOP Publishing |
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2021 |
url |
http://irep.iium.edu.my/90355/7/90355_Synthesis.pdf http://irep.iium.edu.my/90355/ https://iopscience.iop.org/article/10.1088/1757-899X/1057/1/012005 |
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