Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon Carbide

In this present study, the microstructural and mechanical behaviour of Al-Mg-Si alloy matrix composites reinforced with silicon carbide (SiC) and Corn cob ash (An agro‑waste) was investigated. This research work was aimed at assessing the suitability of developing low cost- high performance Al-Mg-Si...

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Main Authors: Oluwagbenga Babajide Fatile, Joshua Ifedayo Akinruli, Anthony Akpofure Amori
Format: Article
Language:English
Published: Taiwan Association of Engineering and Technology Innovation 2014-10-01
Series:International Journal of Engineering and Technology Innovation
Subjects:
Online Access:http://ojs.imeti.org/index.php/IJETI/article/view/147
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spelling doaj-2e5b450b77b1404881635c9787f96b0e2020-11-25T01:41:48ZengTaiwan Association of Engineering and Technology InnovationInternational Journal of Engineering and Technology Innovation2223-53292226-809X2014-10-0144Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon CarbideOluwagbenga Babajide FatileJoshua Ifedayo AkinruliAnthony Akpofure AmoriIn this present study, the microstructural and mechanical behaviour of Al-Mg-Si alloy matrix composites reinforced with silicon carbide (SiC) and Corn cob ash (An agro‑waste) was investigated. This research work was aimed at assessing the suitability of developing low cost- high performance Al-Mg-Si hybrid composite. Silicon carbide (SiC) particulates added with 0,1,2,3 and 4 wt% Corn cob ash (CCA) were utilized to prepare 10 wt% of the reinforcing phase with Al-Mg-Si alloy as matrix using two-step stir casting method. Microstructural characterization, density measurement, estimated percent porosity, tensile testing, and micro‑hardness measurement were used to characterize the composites produced. From the results obtained, CCA has great potential to serve as a complementing reinforcement for the development of low cost‑high performance aluminum hybrid composites.http://ojs.imeti.org/index.php/IJETI/article/view/147mechanical behaviourmicrostructurecorn cob ashhybrid compositestir-cast
collection DOAJ
language English
format Article
sources DOAJ
author Oluwagbenga Babajide Fatile
Joshua Ifedayo Akinruli
Anthony Akpofure Amori
spellingShingle Oluwagbenga Babajide Fatile
Joshua Ifedayo Akinruli
Anthony Akpofure Amori
Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon Carbide
International Journal of Engineering and Technology Innovation
mechanical behaviour
microstructure
corn cob ash
hybrid composite
stir-cast
author_facet Oluwagbenga Babajide Fatile
Joshua Ifedayo Akinruli
Anthony Akpofure Amori
author_sort Oluwagbenga Babajide Fatile
title Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon Carbide
title_short Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon Carbide
title_full Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon Carbide
title_fullStr Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon Carbide
title_full_unstemmed Microstructure and Mechanical Behaviour of Stir-Cast Al-Mg-Sl Alloy Matrix Hybrid Composite Reinforced with Corn Cob Ash and Silicon Carbide
title_sort microstructure and mechanical behaviour of stir-cast al-mg-sl alloy matrix hybrid composite reinforced with corn cob ash and silicon carbide
publisher Taiwan Association of Engineering and Technology Innovation
series International Journal of Engineering and Technology Innovation
issn 2223-5329
2226-809X
publishDate 2014-10-01
description In this present study, the microstructural and mechanical behaviour of Al-Mg-Si alloy matrix composites reinforced with silicon carbide (SiC) and Corn cob ash (An agro‑waste) was investigated. This research work was aimed at assessing the suitability of developing low cost- high performance Al-Mg-Si hybrid composite. Silicon carbide (SiC) particulates added with 0,1,2,3 and 4 wt% Corn cob ash (CCA) were utilized to prepare 10 wt% of the reinforcing phase with Al-Mg-Si alloy as matrix using two-step stir casting method. Microstructural characterization, density measurement, estimated percent porosity, tensile testing, and micro‑hardness measurement were used to characterize the composites produced. From the results obtained, CCA has great potential to serve as a complementing reinforcement for the development of low cost‑high performance aluminum hybrid composites.
topic mechanical behaviour
microstructure
corn cob ash
hybrid composite
stir-cast
url http://ojs.imeti.org/index.php/IJETI/article/view/147
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AT joshuaifedayoakinruli microstructureandmechanicalbehaviourofstircastalmgslalloymatrixhybridcompositereinforcedwithcorncobashandsiliconcarbide
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