Parameters of Porosity and Compressive Strength-Based Optimization on Reinforced Aluminium from the Recycled Waste Automobile Frames

Author:

Parthiban A.1,Vijayan V.2ORCID,Sathish T.3ORCID,Dinesh Kumar S.4,Ponraj Sankar L.5,Parthipan N.6,Tafesse Dawit7ORCID,Tufa Mebratu7ORCID

Affiliation:

1. Department of Mechanical Engineering, Vels Institute of Science Technology & Advanced Studies, Pallavaram, Chennai 600 117, Tamil Nadu, India

2. Department of Mechanical Engineering, K. Ramakrishnan College of Technology (Autonomous), Samayapuram, Trichy 621 112, Tamil Nadu, India

3. Department of Mechanical Engineering, Saveetha School of Engineering, SIMATS, Chennai 602 105, Tamil Nadu, India

4. Department of Mechanical Engineering, St. Peter’s Institute of Higher Education and Research, Avadi, Chennai 600 054, Tamil Nadu, India

5. Department of Civil Engineering, CMR Institute of Technology, Hyderabad, India

6. Department of Mechanical Engineering, M. Kumarasamy College of Engineering, Karur, Tamil Nadu, India

7. Department of Mechanical Engineering, Faculty of Manufacturing, Institute of Technology, Hawassa University, Hawassa, Ethiopia

Abstract

Automobile industries were ready to recycle the waste old parts as well as the damaged parts of the old vehicles as much as possible. This study mainly focused on the recycling of the waste and damaged aluminium frames of the automobile bodies. These aluminium-based frames only collected the metal matrix composite created by reinforcement of 3% silicon carbide (SiC) and 3% high carbon steel. The stir casting method is chosen to make the composites. Optimization is done by Taguchi ANOVA technique. Three input parameters such as stir speed, time of squeeze, and the temperature of the preheating were considered. The outputs such as compressive strength and porosity were experimentally measured with the combination of nine (L9) experimental trails. The measured experimental results were analyzed and optimized with the help of Taguchi technique with different plots for clear identification. The optimized parameters based on low porosity and high compressive strength were recommended for conclusion.

Funder

Hawassa University

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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