ASSESSMENT OF TRIBOLOGICAL PROPERTIES OF STIR CAST Al6063 ALLOY REINFORCED WITH OKABA COAL ASH
No Thumbnail Available
Date
2023-03-23
Journal Title
Journal ISSN
Volume Title
Publisher
SCICELL
Abstract
Composite are multi-phase materials made up of matrix and reinforcement. This paper assesses the tribological property of Al6063 alloy (AMCs) reinforced with Okaba coal ash (OCA) using the stir casting method. By using a constant speed of 1000 rpm and two different loads (250 g and 750 g) on Taber wear apparatus, the tribological properties of the produced composite are contrasted with those of an unreinforced Al6063 alloy. The results show a reduction in wear index and the highest abrasion resistance at 4 wt.% coal ash at 500 g and 1000 rpm, as well as at 0, 2, and 6 wt.% with 8.688, 5.878, and 5.813 at 500g and 8.688, 5.878, 4.125, and 5.813 at 750g, respectively. Therefore, for all composite products compared to metal, there is an increase in abrasion resistance with a decrease in wear index, but this decreases when the load is increased to 750g, showing that the higher the load, the higher the wear index, which results in a reduction in abrasion resistance. Load is taken into greater consideration when using the AMCs manufactured in engineering applications. Additionally, SEM images revealed uniform distribution of the OCA reinforcement in the matrix alloy; thereby, improving its wear resistance.
Description
Keywords
Composite material, Wear resistance, Metal Matrix Composites: Science and Applications, Tribology, Synthesis and Properties of Cemented Carbides, Effects of Cryogenic Treatment on Material Properties, Mechanical Engineering, Materials Science, Composite number, FOS: Mechanical engineering, Friction Stir Processing, Materials science, Reinforcement, Coal, Engineering, Metallurgy, Alloy, Physical Sciences, Materials Chemistry, Abrasion (mechanical), Waste management, Casting
Citation
Odusote, J. et.al. (2023). ASSESSMENT OF TRIBOLOGICAL PROPERTIES OF STIR CAST Al6063 ALLOY REINFORCED WITH OKABA COAL ASH. Acta Metallurgica Slovaca, 29(1).