Analysis of the Hybrid of Mudar/Snake Grass Fiber-Reinforced Epoxy with Nano-Silica Filler Composite for Structural Application

Author:

Jenish I.1ORCID,Sahayaraj A. Felix2ORCID,Suresh V.3ORCID,Mani raj J.2,Appadurai M.4ORCID,Irudaya Raj E. Fantin5ORCID,Nasif Omaima6,Alfarraj Saleh7,Kumaravel Ashok Kumar8

Affiliation:

1. Department of Applied Mechanics, Seenu Atoll School, Hulhu-medhoo, Addu City Postal Code 19060, Maldives

2. Department of Mechanical Engineering, Kalaignar Karunanidhi Institute of Technology, Coimbatore 641402, Tamilnadu, India

3. Department of Biotechnology, Sharafuddin School, Hithadhoo 19020, Maldives

4. Department of Mechanical Engineering, Dr. Sivanthi Aditanar College of Engineering, Tuticorin 628215, Tamilnadu, India

5. Department of Electrical and Electronics Engineering, Dr. Sivanthi Aditanar College of Engineering, Tuticorin 628215, Tamilnadu, India

6. Department of Physiology, College of Medicine and King Khalid University Hospital, King Saud University, Medical City, PO Box-2925, Riyadh 11461, Saudi Arabia

7. Zoology Department, College of Science, King Saud University, Riyadh 11451, Saudi Arabia

8. School of Chemical Engineering & Bio-Engineering University of Ulsan, Ulsan 680749, Republic of Korea

Abstract

Natural fiber composite materials are competent materials that may replace conventional synthetic materials where the strength to weight ratio is essential. In this paper, the mechanical characteristics of composites made up of randomly oriented natural fibers (mudar fiber and snake grass fiber) with nano-silica filler are detailed for the first time. From the various literature surveys, the critical length of mudar and snake grass fiber is chosen as 40 mm and 30 mm, respectively. The test samples were prepared with a fiber content of 10%, 20%, 30%, and 40% with an equal amount of mudar and snake grass fiber. The percentage of nano-filler is maintained as constant as 3% with all the compositions. The composites showed that the highest mechanical properties were found at 30% fiber volume. The maximum tensile strength is 45 MPa, and the flexural strength is 51 MPa. The maximum impact strength is 4.5 J. Sample ID 3 provided the best results compared to other proportions. The fiber/matrix adhesion was investigated using a scanning electron microscope (SEM). These predominant mechanical properties make it easier for the implementation of the prepared composite material in structural and automotive applications.

Funder

Sharafuddin School

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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