Effect of palmyra sprout fiber and biosilica on mechanical, wear, thermal and hydrophobic behavior of epoxy resin composite

Author:

Alshahrani Hassan1ORCID,Pathinettampadian Gurusamy2,Gujba Abdullahi K3,Prakash Vincent Rethnam Arun45ORCID

Affiliation:

1. Department of Mechanical Engineering, College of Engineering, Najran University, Najran, Saudi Arabia

2. Department of Mechanical Engineering, Chennai Institute of Technology, India

3. Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, Montreal, QC, Canada

4. Department of Mechanical Engineering, J.N.N Institute of Engineering, Chennai, India

5. Polymer Composite Research Lab, Metro Composites, Chennai, India

Abstract

In this study, natural fiber epoxy composites were prepared using palmyra sprout fiber and red matta rice husk ash(RHA) biosilica. This paper mainly aims to investigate the mechanical, wear resistance, thermal stability as well as water absorption behaviour of naturally obtained novel fiber with red matta biosilica in epoxy based composites. The fiber’s surface was treated by base, while the biosilica particles were treated by amino-silane. The composites were fabricated by hand lay-up process and characterized based on ASTM standards. According to the results the highest tensile and flexural strength observed for the composite is about 147 MPa and 211 MPa for 3 vol. % of biosilica with 30 vol. % of fiber. Izod impact toughness reveals the maximum impact resistance up to 5.82 J. Increment in reinforcement vol. % shows increased hardness. Wear properties represents the composite designations EPB3 retains good wear resistances for 3 vol. % of biosilica. Similarly, thermal stability improved by the addition of biosilica of 3 vol. %. Water absorption results reveal that, the addition of reinforcements marginally affects the contact angle. Such mechanically improved, wear resistible and thermally stable natural composites could be used in automotives, industrial and defense applications as well as in household appliances.

Funder

Najran University

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Polymers and Plastics,Materials Science (miscellaneous),Chemical Engineering (miscellaneous)

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