Role of Silicon Dioxide Filler on Mechanical and Dry Sliding Wear Behaviour of Glass-Epoxy Composites

Author:

Anjum Naveed1ORCID,Ajit Prasad S. L.2,Suresha B.3

Affiliation:

1. Department of Mechanical Engineering, Vidya Vikas Institute of Engineering and Technology, Mysore 570028, India

2. Department of Mechanical Engineering, PES College of Engineering, Mandya 571401, India

3. Department of Mechanical Engineering, The National Institute of Engineering, Mysore 570008, India

Abstract

The mechanical properties and dry sliding wear behaviour of glass fabric reinforced epoxy (G-E) composite with varying weight percentage of silicon dioxide (SiO2) filler have been studied in the present work. The influence of sliding distance, velocity, and applied normal load on dry sliding wear behaviour has been considered using Taguchi's L9orthogonal array. Addition of SiO2increased the density, hardness, flexural, and impact strengths of G-E composite. Results of dry sliding wear tests showed increasing wear volume with increase in sliding distance, load, and sliding velocity for G-E and SiO2filled G-E composites. Taguchi's results indicate that the sliding distance played a significant role followed by applied load, sliding velocity, and SiO2loading. Scanning electron micrographs of the worn surfaces of composite samples at different test parameters show smooth surface, microploughing, and fine grooves under low load and velocity. However, severe damage of matrix with debonding and fiber breakage was seen at high load and velocity especially in unfilled G-E composite.

Publisher

Hindawi Limited

Subject

Surfaces, Coatings and Films,Mechanical Engineering

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