Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review
Aluminum matrix composites (AMCs) have been extensively studied primarily due to higher strength-to-weight ratio, lower cost, and higher wear resistance properties. However, increasing demand for economical and energy-efficient materials in the automotive, aerospace and other applications is tailori...
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my.iium.irep.908352021-07-15T00:51:37Z http://irep.iium.edu.my/90835/ Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review Parveez, Bisma Maleque, Md. Abdul Jamal, Nur Ayuni T11.95 Industrial directories TA1001 Transportation engineering (General) TA401 Materials of engineering and construction TN600 Metallurgy TN799.5 Nonmetallic minerals Aluminum matrix composites (AMCs) have been extensively studied primarily due to higher strength-to-weight ratio, lower cost, and higher wear resistance properties. However, increasing demand for economical and energy-efficient materials in the automotive, aerospace and other applications is tailoring research area in the agro-based composite materials. Therefore, the aim of this systematic review work is to study the influence of agro-based reinforcements on the tribological and mechanical properties of AMC’s processed by various techniques. It was observed that the processing conditions can be designed to obtain uniform structures and better properties AMCs. The agro-waste reinforcement materials, such as rice husk ash, bamboo stem ash, coconut and shell ash can result in a reduction in the density of AMC’s without compromising mechanical properties. Moreover, the efficient utilization of the agro-waste leads to a decrease in manufacturing cost and prevents environmental pollution, hence, can be considered as a sustainable material. The state-of-the-art revealed that the agro-based reinforcements do not form brittle composites, as in the case of ceramic reinforced composites. Hence, the study concludes that the agro-based AMCs have great potential to act as a replacement for costly and environmentally hazardous ceramic reinforced-AMCs which can especially be used in various automotive applications that demand higher strength-to-weight ratio, lower cost, and higher wear resistance. Springer Nature 2021-07-13 Article PeerReviewed application/pdf en http://irep.iium.edu.my/90835/8/90835_Influence%20of%20agro-based%20reinforcements%20on%20the%20properties.pdf application/pdf en http://irep.iium.edu.my/90835/14/90835_Influence%20of%20agro-based%20reinforcements.pdf Parveez, Bisma and Maleque, Md. Abdul and Jamal, Nur Ayuni (2021) Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review. Journal of Materials Science. ISSN 0022-2461 E-ISSN 1573-4803 https://link.springer.com/article/10.1007/s10853-021-06305-2 https://doi.org/10.1007/s10853-021-06305-2 |
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T11.95 Industrial directories TA1001 Transportation engineering (General) TA401 Materials of engineering and construction TN600 Metallurgy TN799.5 Nonmetallic minerals Parveez, Bisma Maleque, Md. Abdul Jamal, Nur Ayuni Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review |
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Aluminum matrix composites (AMCs) have been extensively studied primarily due to higher strength-to-weight ratio, lower cost, and higher wear resistance properties. However, increasing demand for economical and energy-efficient materials in the automotive, aerospace and other applications is tailoring research area in the agro-based composite materials. Therefore, the aim of this systematic review work is to study the influence of agro-based reinforcements on the tribological and mechanical properties of AMC’s processed by various techniques. It was observed that the processing conditions can be designed to obtain uniform structures and better properties AMCs. The agro-waste reinforcement materials, such as rice husk ash, bamboo stem ash, coconut and shell ash can result in a reduction in the density of AMC’s without compromising mechanical properties. Moreover, the efficient utilization of the agro-waste leads to a decrease in manufacturing cost and prevents environmental pollution, hence, can be considered as a sustainable material. The state-of-the-art revealed that the agro-based reinforcements do not form brittle composites, as in the case of ceramic reinforced composites. Hence, the study concludes that the agro-based AMCs have great potential to act as a replacement for costly and environmentally hazardous ceramic reinforced-AMCs which can especially be used in various automotive applications that demand higher strength-to-weight ratio, lower cost, and higher wear resistance. |
format |
Article |
author |
Parveez, Bisma Maleque, Md. Abdul Jamal, Nur Ayuni |
author_facet |
Parveez, Bisma Maleque, Md. Abdul Jamal, Nur Ayuni |
author_sort |
Parveez, Bisma |
title |
Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review |
title_short |
Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review |
title_full |
Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review |
title_fullStr |
Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review |
title_full_unstemmed |
Influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review |
title_sort |
influence of agro-based reinforcements on the properties of aluminum matrix composites: a systematic review |
publisher |
Springer Nature |
publishDate |
2021 |
url |
http://irep.iium.edu.my/90835/8/90835_Influence%20of%20agro-based%20reinforcements%20on%20the%20properties.pdf http://irep.iium.edu.my/90835/14/90835_Influence%20of%20agro-based%20reinforcements.pdf http://irep.iium.edu.my/90835/ https://link.springer.com/article/10.1007/s10853-021-06305-2 https://doi.org/10.1007/s10853-021-06305-2 |
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