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Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites

This research work aims at investigating the influence of a fixed content of silicon nitride (Si(3)N(4)) and varied contents of graphene nanoplatelets (GNPs) on the physical (density, structural, morphological) and mechanical properties (microhardness, nanoindentation) of Al-Si(3)N(4)-GNPs composite...

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Autores principales: Abdelatty, Rokaya, Khan, Adnan, Yusuf, Moinuddin, Alashraf, Abdullah, Shakoor, Rana Abdul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068802/
https://www.ncbi.nlm.nih.gov/pubmed/33920317
http://dx.doi.org/10.3390/ma14081898
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author Abdelatty, Rokaya
Khan, Adnan
Yusuf, Moinuddin
Alashraf, Abdullah
Shakoor, Rana Abdul
author_facet Abdelatty, Rokaya
Khan, Adnan
Yusuf, Moinuddin
Alashraf, Abdullah
Shakoor, Rana Abdul
author_sort Abdelatty, Rokaya
collection PubMed
description This research work aims at investigating the influence of a fixed content of silicon nitride (Si(3)N(4)) and varied contents of graphene nanoplatelets (GNPs) on the physical (density, structural, morphological) and mechanical properties (microhardness, nanoindentation) of Al-Si(3)N(4)-GNPs composites. The composites were fabricated by a microwave-assisted powder metallurgy route. The Si(3)N(4) concentration was fixed at (5 wt.%) in Al-Si(3)N(4)-GNPs composites while the GNPs concentration was varied between (0 wt.%) to (1.5 wt.%) with an increment of (0.5 wt.%). The structural analysis indicates the formation of phase pure materials with high crystallinity. The microstructural analysis confirmed the presence of the Si(3)N(4) and GNPs showing enhanced agglomeration with the increasing amount of GNPs. Moreover, the surface roughness of the synthesized composites increases with an increasing amount of GNPs reaching its maximum value (RMS = 65.32 nm) at 1.5 wt.% of GNPs. The Al-Si(3)N(4)-GNPs composites exhibit improved microhardness and promising load-indentation behavior during nanoindentation when compared to pure aluminum (Al). Moreover, Al-Si(3)N(4)-GNPs composites demonstrate higher values of compressive yield strength (CYS) and ultimate compressive strength (UCS) when compared to pure Al despite showing a declining trend with an increasing amount of GNPs in the matrix. Finally, a shear mode of fracture is prevalent in Al-Si(3)N(4)-GNPs composites under compression loading.
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spelling pubmed-80688022021-04-26 Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites Abdelatty, Rokaya Khan, Adnan Yusuf, Moinuddin Alashraf, Abdullah Shakoor, Rana Abdul Materials (Basel) Article This research work aims at investigating the influence of a fixed content of silicon nitride (Si(3)N(4)) and varied contents of graphene nanoplatelets (GNPs) on the physical (density, structural, morphological) and mechanical properties (microhardness, nanoindentation) of Al-Si(3)N(4)-GNPs composites. The composites were fabricated by a microwave-assisted powder metallurgy route. The Si(3)N(4) concentration was fixed at (5 wt.%) in Al-Si(3)N(4)-GNPs composites while the GNPs concentration was varied between (0 wt.%) to (1.5 wt.%) with an increment of (0.5 wt.%). The structural analysis indicates the formation of phase pure materials with high crystallinity. The microstructural analysis confirmed the presence of the Si(3)N(4) and GNPs showing enhanced agglomeration with the increasing amount of GNPs. Moreover, the surface roughness of the synthesized composites increases with an increasing amount of GNPs reaching its maximum value (RMS = 65.32 nm) at 1.5 wt.% of GNPs. The Al-Si(3)N(4)-GNPs composites exhibit improved microhardness and promising load-indentation behavior during nanoindentation when compared to pure aluminum (Al). Moreover, Al-Si(3)N(4)-GNPs composites demonstrate higher values of compressive yield strength (CYS) and ultimate compressive strength (UCS) when compared to pure Al despite showing a declining trend with an increasing amount of GNPs in the matrix. Finally, a shear mode of fracture is prevalent in Al-Si(3)N(4)-GNPs composites under compression loading. MDPI 2021-04-10 /pmc/articles/PMC8068802/ /pubmed/33920317 http://dx.doi.org/10.3390/ma14081898 Text en © 2021 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
Abdelatty, Rokaya
Khan, Adnan
Yusuf, Moinuddin
Alashraf, Abdullah
Shakoor, Rana Abdul
Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites
title Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites
title_full Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites
title_fullStr Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites
title_full_unstemmed Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites
title_short Effect of Silicon Nitride and Graphene Nanoplatelets on the Properties of Aluminum Metal Matrix Composites
title_sort effect of silicon nitride and graphene nanoplatelets on the properties of aluminum metal matrix composites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068802/
https://www.ncbi.nlm.nih.gov/pubmed/33920317
http://dx.doi.org/10.3390/ma14081898
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