The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review

Hybrid composites are obtained by embedding multiple micro and nano reinforcements into the matrix materials. These hybrid composites are helpful to obtain the useful properties of matrix and reinforcement materials. Aluminum matrix is one the most common matrix materials due to its excellent therma...

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Main Authors: Msebawi, Muntadher Sabah, Leman, Zulkiflle, Shamsudin, Shazarel, Mohd Tahir, Suraya, Jaafar, Che Nor Aiza, Mohamed Ariff, Azmah Hanim, Zahari, Nur Ismarrubie, Rady, Mohammed H.
Format: Article
Published: MDPI AG 2021
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author Msebawi, Muntadher Sabah
Leman, Zulkiflle
Shamsudin, Shazarel
Mohd Tahir, Suraya
Jaafar, Che Nor Aiza
Mohamed Ariff, Azmah Hanim
Zahari, Nur Ismarrubie
Rady, Mohammed H.
author_facet Msebawi, Muntadher Sabah
Leman, Zulkiflle
Shamsudin, Shazarel
Mohd Tahir, Suraya
Jaafar, Che Nor Aiza
Mohamed Ariff, Azmah Hanim
Zahari, Nur Ismarrubie
Rady, Mohammed H.
author_sort Msebawi, Muntadher Sabah
collection UPM
description Hybrid composites are obtained by embedding multiple micro and nano reinforcements into the matrix materials. These hybrid composites are helpful to obtain the useful properties of matrix and reinforcement materials. Aluminum matrix is one the most common matrix materials due to its excellent thermal and electrical properties. This review covers various aspects of nanoparticle-reinforced Al hybrid composites. Solid-state recycling of Al only consumes around 5% of the energy utilized in the conventional extraction and recycling methods. This review revolves around the induction of silica and copper oxide nanoparticles into the solid-state recycled Al matrix material to form the hybrid composite. These nanoparticles enhance stiffness, toughness, and high temperature stability for Al hybrid composites. A detailed analysis was carried out for AA6061-grade Al matrix materials along with the silica and copper oxide nanoparticles. The present work focused on the effects of nano silica and nano copper oxide particle reinforcements on Al-based composite manufactured via hot extrusion process. The composite fabrication through solid-state recycling is discussed in detail. A detailed analysis for the effects of volume fraction and wt.% of CuO and SiO2 reinforcement particles was carried out by various characterization techniques. A detailed comparison in terms of mechanical performance of Al-based composites with the addition of nano silica and nano copper oxide particles is presented here to investigate the efficiency and performance of these particles.
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spelling upm.eprints-954102023-01-09T02:05:01Z http://psasir.upm.edu.my/id/eprint/95410/ The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review Msebawi, Muntadher Sabah Leman, Zulkiflle Shamsudin, Shazarel Mohd Tahir, Suraya Jaafar, Che Nor Aiza Mohamed Ariff, Azmah Hanim Zahari, Nur Ismarrubie Rady, Mohammed H. Hybrid composites are obtained by embedding multiple micro and nano reinforcements into the matrix materials. These hybrid composites are helpful to obtain the useful properties of matrix and reinforcement materials. Aluminum matrix is one the most common matrix materials due to its excellent thermal and electrical properties. This review covers various aspects of nanoparticle-reinforced Al hybrid composites. Solid-state recycling of Al only consumes around 5% of the energy utilized in the conventional extraction and recycling methods. This review revolves around the induction of silica and copper oxide nanoparticles into the solid-state recycled Al matrix material to form the hybrid composite. These nanoparticles enhance stiffness, toughness, and high temperature stability for Al hybrid composites. A detailed analysis was carried out for AA6061-grade Al matrix materials along with the silica and copper oxide nanoparticles. The present work focused on the effects of nano silica and nano copper oxide particle reinforcements on Al-based composite manufactured via hot extrusion process. The composite fabrication through solid-state recycling is discussed in detail. A detailed analysis for the effects of volume fraction and wt.% of CuO and SiO2 reinforcement particles was carried out by various characterization techniques. A detailed comparison in terms of mechanical performance of Al-based composites with the addition of nano silica and nano copper oxide particles is presented here to investigate the efficiency and performance of these particles. MDPI AG 2021-08-15 Article PeerReviewed Msebawi, Muntadher Sabah and Leman, Zulkiflle and Shamsudin, Shazarel and Mohd Tahir, Suraya and Jaafar, Che Nor Aiza and Mohamed Ariff, Azmah Hanim and Zahari, Nur Ismarrubie and Rady, Mohammed H. (2021) The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review. Coatings, 11 (8). art. no. 972. pp. 1-20. ISSN 2079-6412 https://www.mdpi.com/2079-6412/11/8/972 10.3390/coatings11080972
spellingShingle Msebawi, Muntadher Sabah
Leman, Zulkiflle
Shamsudin, Shazarel
Mohd Tahir, Suraya
Jaafar, Che Nor Aiza
Mohamed Ariff, Azmah Hanim
Zahari, Nur Ismarrubie
Rady, Mohammed H.
The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review
title The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review
title_full The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review
title_fullStr The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review
title_full_unstemmed The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review
title_short The effects of CuO and SiO2 on aluminum AA6061 hybrid nanocomposite as reinforcements: a concise review
title_sort effects of cuo and sio2 on aluminum aa6061 hybrid nanocomposite as reinforcements a concise review
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