Evaluation of the mechanical properties and corrosion behaviour of coconut shell ash reinforced aluminium (6063) alloy composites

DARAMOLA, Oluyemi Ojo and Adediran, A.A and FADUMIYE, Ayodele Tolu (2015) Evaluation of the mechanical properties and corrosion behaviour of coconut shell ash reinforced aluminium (6063) alloy composites. Leonardo Electronic Journal of Practices and Technologies, 27. pp. 107-119. ISSN 1583-1078

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Abstract

Aluminium 6063/Coconut shell ash (CSAp) composites having 3-12 weight percent (wt%) coconut shell ash were fabricated by double stir-casting method. The microstructure, ultimate tensile strength, hardness values, density and corrosion behaviour in 0.3M H2SO4 and 3.5wt% NaCl solution of the composites were evaluated. The density of the composites exhibit a linear and proportional decreased as the percentage of coconut shell ash increases in the aluminium alloy. It implies that composites with lower weight component can be produced by adding CSAp. The microstructural analysis showed uniform distribution of coconut shell ash particles in the aluminium alloy matrix. Significant improvement in hardness and ultimate tensile strength values was noticeable as the wt% of the coconut shell ash increased in the alloy, although this occur at the expense of ductility of the composites as the modulus of elasticity of the composites decreases as the percentage of CSAp increases. Hence, this work has established that incorporation of coconut shell particles in aluminum matrix can lead to the production of low cost aluminum composites with improved hardness and tensile strength values. Keywords Coconut shell; Composite; Matrix; Aluminium 6063; Stir casting; Corrosion; Mechanical properties

Item Type: Article
Subjects: T Technology > TJ Mechanical engineering and machinery
Divisions: Faculty of Engineering, Science and Mathematics > School of Geography
Depositing User: ELDER OGUNTAYO SUNDAY ADEBISI
Date Deposited: 25 Dec 2018 17:38
Last Modified: 17 Apr 2019 12:32
URI: https://eprints.lmu.edu.ng/id/eprint/1737

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