Enhancing the tensile strength of SiC reinforced aluminium-based functionally graded structure through the mixture design approach

Author:

Poornesh M.ORCID,Bhat ShreerangaORCID,Gijo E.V.ORCID,Bellairu Pavana KumaraORCID

Abstract

PurposeThis article aims to study the tensile properties of a functionally graded composite structure with Al–18wt%Si alloy as the matrix material and silicon carbide (SiC) particles as the reinforcing element. More specifically, the study's primary objective is to optimize the composition of the material elements using a robust statistical approach.Design/methodology/approachIn this research, the composite material is fabricated using a combination of stir casting and the centrifugal casting technique. Moreover, the test specimen required to study the tensile strength are prepared according to the ASTM (American Society for Testing and Materials) standards. Eventually, optimal composition to maximize the tensile property of the material is determined using the mixture design approach.FindingsThe investigation results imply that the addition of the SiC plays a crucial role in increasing the tensile strength of the composite. The optical microstructural images of the composite show the adequate distribution of the reinforcing particles with the matrix. The proposed regression model shows better predictability of tensile strength. In addition, the methodology aids in optimizing the mixture component values to maximize the tensile strength of the produced functionally graded composite structure.Originality/valueLittle work has been reported so far where a hypereutectic Al–Si alloy is considered the matrix material to produce the composite structure. The article attempts to make a composite structure by using a combination of stir casting and centrifugal casting. Furthermore, it employs the mixture design to optimize the composition and predict the model of the study, which is one of a kind in the field of material science.

Publisher

Emerald

Subject

Mechanical Engineering,Mechanics of Materials,Civil and Structural Engineering

Reference50 articles.

1. The effect of reinforced SiC on the mechanical properties of the fabricated hypoeutectic Al–Si alloy by centrifugal casting;Engineering Science and Technology, An International Journal,2019

2. Strengthening of Al–4.5%Cu alloy with the addition of silicon carbide and bamboo leaf ash;International Journal of Structural Integrity,2019

3. Modelling and optimisation of natural fibre reinforced polymer nanocomposite: application of mixture-design technique;Multidiscipline Modeling in Materials and Structures,2021

4. Synthesis and characterization of 7075 Al alloy–SiC composites;International Journal of Structural Integrity,2021

5. Fabrication and analysis of AA6082/Si3N4 and AA6082/SiC composites;International Journal of Structural Integrity,2020

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