Determination of wear rate and coefficient of friction of Al6262 reinforced with different weight percentage of WC/MoS2 under dry sliding condition

Hemadri, Kadapa and S, Ajith Arul Daniel and Kukanur, Vijayendra and Nagaral, Madeva (2024) Determination of wear rate and coefficient of friction of Al6262 reinforced with different weight percentage of WC/MoS2 under dry sliding condition. Research on Engineering Structures and Materials. ISSN 21489807

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Abstract

Determination of wear rate and coefficient of friction of Al6262 reinforced with different weight percentage of WC/MoS2 under dry sliding condition Dept. of Mechanical Eng., Vels Institute of Science, Technology & Advanced Studies Kadapa Hemadri Ajith Arul Daniel S Dept. of Mechanical Eng., Vels Institute of Science, Technology & Advanced Studies Vijayendra Kukanur Dept. of Mechanical Eng., H.K.E.Society’s Sir.M.Visvesvaraya College of Engineering Madeva Nagaral Aircraft Research and Design Centre, HAL

A tribological investigation was undertaken on hybrid metal matrix composites based on Aluminum alloy 6262, incorporating varying weight percentages of Tungsten Carbide (WC) and Molybdenum disulfide (MoS2) under dry sliding conditions. Specifically, Tungsten Carbide was incorporated at 3%, 6%, and 9%, while Molybdenum disulphide was introduced at 2%, 4%, and 6%. The fabrication of these hybrid composites was accomplished using the stir casting technique. The experimental design followed an L27 orthogonal array, and Taguchi optimization was employed to identify the optimal combination of input parameters. The orthogonal array, signal-to-noise ratio and analysis of variance were employed to study the optimal testing parameters on developed composites. The optimal formulation, resulting in the minimum wear rate and coefficient of friction, was determined to be 9% WC, 6% MoS2, a load of 10N, a sliding velocity of 1 m/s, and a sliding distance of 400 m. Characterization was carried out for Al6262/WC/MoS2 hybrid composite by using scanning electron microscopy (SEM).
2024 2024 10.17515/resm2024.09me1009rs http://www.jresm.org/archive/resm2024.09me1009rs.html

Item Type: Article
Subjects: Mechanical Engineering > Dynamics of Machines
Domains: Mechanical Engineering
Depositing User: Mr IR Admin
Date Deposited: 22 Aug 2025 06:23
Last Modified: 22 Aug 2025 06:23
URI: https://ir.vistas.ac.in/id/eprint/10516

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