Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties.

The addition of nanoscale additions to magnesium (Mg) based alloys can boost mechanical characteristics without noticeably decreasing ductility. Since Mg is the lightest structural material, the Mg-based nanocomposites (NCs) with improved mechanical properties are appealing materials for lightweight...

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Main Authors: Abazari, S., Shamsipur, A., Bakhsheshi-Rad, H. R., Drelich, J. W., Goldman, J., Sharif, S., Ismail, A. F., Razzaghi, M.
Format: Article
Language:English
Published: KeAi Communications Co. 2023
Subjects:
Online Access:http://eprints.utm.my/106825/1/AhmadFauziIsmail2023_MagnesiumBasedNanocompositesAReviewFromMrchanical_compressed.pdf
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author Abazari, S.
Shamsipur, A.
Bakhsheshi-Rad, H. R.
Drelich, J. W.
Goldman, J.
Sharif, S.
Ismail, A. F.
Razzaghi, M.
author_facet Abazari, S.
Shamsipur, A.
Bakhsheshi-Rad, H. R.
Drelich, J. W.
Goldman, J.
Sharif, S.
Ismail, A. F.
Razzaghi, M.
author_sort Abazari, S.
collection ePrints
description The addition of nanoscale additions to magnesium (Mg) based alloys can boost mechanical characteristics without noticeably decreasing ductility. Since Mg is the lightest structural material, the Mg-based nanocomposites (NCs) with improved mechanical properties are appealing materials for lightweight structural applications. In contrast to conventional Mg-based composites, the incorporation of nano-sized reinforcing particles noticeably boosts the strength of Mg-based nanocomposites without significantly reducing the formability. The present article reviews Mg-based metal matrix nanocomposites (MMNCs) with metallic and ceramic additions, fabricated via both solid-based (sintering and powder metallurgy) and liquid-based (disintegrated melt deposition) technologies. It also reviews strengthening models and mechanisms that have been proposed to explain the improved mechanical characteristics of Mg-based alloys and nanocomposites. Further, synergistic strengthening mechanisms in Mg matrix nanocomposites and the dominant equations for quantitatively predicting mechanical properties are provided. Furthermore, this study offers an overview of the creep and fatigue behavior of Mg-based alloys and nanocomposites using both traditional (uniaxial) and depth-sensing indentation techniques. The potential applications of magnesium-based alloys and nanocomposites are also surveyed.
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spelling utm.eprints-1068252024-07-28T06:49:16Z http://eprints.utm.my/106825/ Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties. Abazari, S. Shamsipur, A. Bakhsheshi-Rad, H. R. Drelich, J. W. Goldman, J. Sharif, S. Ismail, A. F. Razzaghi, M. TJ Mechanical engineering and machinery The addition of nanoscale additions to magnesium (Mg) based alloys can boost mechanical characteristics without noticeably decreasing ductility. Since Mg is the lightest structural material, the Mg-based nanocomposites (NCs) with improved mechanical properties are appealing materials for lightweight structural applications. In contrast to conventional Mg-based composites, the incorporation of nano-sized reinforcing particles noticeably boosts the strength of Mg-based nanocomposites without significantly reducing the formability. The present article reviews Mg-based metal matrix nanocomposites (MMNCs) with metallic and ceramic additions, fabricated via both solid-based (sintering and powder metallurgy) and liquid-based (disintegrated melt deposition) technologies. It also reviews strengthening models and mechanisms that have been proposed to explain the improved mechanical characteristics of Mg-based alloys and nanocomposites. Further, synergistic strengthening mechanisms in Mg matrix nanocomposites and the dominant equations for quantitatively predicting mechanical properties are provided. Furthermore, this study offers an overview of the creep and fatigue behavior of Mg-based alloys and nanocomposites using both traditional (uniaxial) and depth-sensing indentation techniques. The potential applications of magnesium-based alloys and nanocomposites are also surveyed. KeAi Communications Co. 2023-08 Article PeerReviewed application/pdf en http://eprints.utm.my/106825/1/AhmadFauziIsmail2023_MagnesiumBasedNanocompositesAReviewFromMrchanical_compressed.pdf Abazari, S. and Shamsipur, A. and Bakhsheshi-Rad, H. R. and Drelich, J. W. and Goldman, J. and Sharif, S. and Ismail, A. F. and Razzaghi, M. (2023) Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties. Journal of Magnesium and Alloys, 11 (8). pp. 2655-2687. ISSN 2213-9567 http://dx.doi.org/10.1016/j.jma.2023.08.005 DOI:10.1016/j.jma.2023.08.005
spellingShingle TJ Mechanical engineering and machinery
Abazari, S.
Shamsipur, A.
Bakhsheshi-Rad, H. R.
Drelich, J. W.
Goldman, J.
Sharif, S.
Ismail, A. F.
Razzaghi, M.
Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties.
title Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties.
title_full Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties.
title_fullStr Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties.
title_full_unstemmed Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties.
title_short Magnesium-based nanocomposites: A review from mechanical, creep and fatigue properties.
title_sort magnesium based nanocomposites a review from mechanical creep and fatigue properties
topic TJ Mechanical engineering and machinery
url http://eprints.utm.my/106825/1/AhmadFauziIsmail2023_MagnesiumBasedNanocompositesAReviewFromMrchanical_compressed.pdf
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AT shamsipura magnesiumbasednanocompositesareviewfrommechanicalcreepandfatigueproperties
AT bakhsheshiradhr magnesiumbasednanocompositesareviewfrommechanicalcreepandfatigueproperties
AT drelichjw magnesiumbasednanocompositesareviewfrommechanicalcreepandfatigueproperties
AT goldmanj magnesiumbasednanocompositesareviewfrommechanicalcreepandfatigueproperties
AT sharifs magnesiumbasednanocompositesareviewfrommechanicalcreepandfatigueproperties
AT ismailaf magnesiumbasednanocompositesareviewfrommechanicalcreepandfatigueproperties
AT razzaghim magnesiumbasednanocompositesareviewfrommechanicalcreepandfatigueproperties