Studies on Mechanical Properties of Kevlar/Napier Grass Fibers Reinforced with Polymer Matrix Hybrid Composite

Author:

Ganesamoorthy R.1,Meenakshi Reddy R.2ORCID,Raja T.3,Panda Pradeep Kumar4ORCID,H. Dhoria Sneha5,Nasif Omaima6,Alfarraj Saleh7,Manikandan Velu8,Jenish I.9ORCID

Affiliation:

1. Centre for Materials Research, Chennai Institute of Technology, Chennai 600059, Tamil Nadu, India

2. Department of Mechanical Engineering, G. Pulla Reddy Engineering College, Kurnool 518007, Andhra Pradesh, India

3. Department of Mechanical Engineering, Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology, 400 Feet Outer Ring Road, Avadi, Chennai 600062, India

4. Department of Chemical and Materials Engineering, Chang Gung University, Taoyuan 33302, Taiwan

5. Department of Mechanical Engineering, R.V.R & J.C College of Engineering, Guntur, Andhra Pradesh, India

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

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

8. College of Environmental & Bioresource Sciences, Jeonbuk National University, Iksan 570752, Republic of Korea

9. Department of Applied Mechanics, Seenu Atoll School, Hulhumeedhoo, Addu City 19060, Maldives

Abstract

A percentage of natural fibers is used for developing a composite, the materials are quite increasing in recent trends, and they can be a potential replacement of synthetic fibers in the reinforcement phase of hybrid composite. In this research, the combination of natural fibers and synthetic fibers can be used as reinforcement, and epoxy polymer can be used as matrix material. The fibers of Kevlar and Napier grass are reinforced with epoxy matrix to develop a new composite by using conventional hand layup fabrication process and to quantify the effect of this hybrid composite laminate, with five different sequences following. To identify the mechanical properties of this hybrid composite through tensile, flexural, compression strength, impact strength, and hardness tests, among all five samples, sample A was given the maximum mechanical strength, such that the tensile strength is 210 MPa, flexural strength is 165 MPa, the impact energy absorption is 23 J, the average is 40% over the other samples, and, at the same time, the compression strength of sample E is 19 MPa, revealing the negative influence of hybrid composite. The SEM morphology was carried out to identify the failure mode of the hybrid composites.

Funder

Seenu Atoll School, Maldives

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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