Evaluation of Thermal Adsorption and Mechanical Behaviour of Intralaminar Jute/Sisal/E-Glass Fibre-Bonded Epoxy Hybrid Composite as an Insulator

Author:

Venkatesh R.1,Raghuvaran S.2,Vivekanandan M.3,Kannan C. Ramesh4,Thirugnanasambandham T.5,Murugan Arundeep6ORCID

Affiliation:

1. Department of Design, Saveetha School of Engineering, SIMATS, Chennai, 602105 Tamil Nadu, India

2. Department of Mechanical Engineering, K. Ramakrishnan College of Engineering, Trichy, 621112 Tamil Nadu, India

3. Department of Mechanical Engineering, Kongunadu College of Engineering and Technology, Trichy, 621215 Tamil Nadu, India

4. Department of Mechanical Engineering, SRM TRP Engineering College, Trichy, 621105 Tamil Nadu, India

5. Department of Mechanical Engineering, Ponnaiyah Ramajayam Institute of Science and Technology, Thanjavur, 613203 Tamil Nadu, India

6. School of Mechanical and Industrial Engineering, Institute of Technology, Debre Markos University, Debre Markos, Ethiopia

Abstract

A thermal gravimetric analyzer analyzed the thermal adsorption properties of developed composites with the temperature range of 28°C–650°C at a 20°C/min constant heat flow rate. The epoxy hybrid composites were synthesized using natural jute/sisal fibre hybridized with the addition of synthetic E-glass fibres at 0-degree, 0/90-degree, and intralaminar orientations through the wet filament-winding process. The effects of orientations on tensile, flexural, and impact strengths of epoxy hybrid composites were studied using ASTM D3039, D790, and D6110. The evaluated results were compared, and the epoxy hybrid composite containing intralaminar orientations found better thermal stability with reduced weight loss at 650°C. Similarly, the test result for mechanical studies of the hybrid composite showed superior tensile, flexural, and impact strengths. The epoxy hybrid composite with intralaminar orientation was found to have a maximum tensile, impact, and flexural strength of 61.91 MPa, 770.61 J/m, and 83.90 MPa, respectively.

Publisher

SAGE Publications

Subject

Surfaces and Interfaces,General Chemical Engineering,General Chemistry

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