Effect of cellulosic filler loading on mechanical and thermal properties of date palm seed/vinyl ester composites.

Nagaprasad Nagaraj, Stalin Balasubramaniam, Vignesh Venkataraman, Ravichandran Manickam, Rajini Nagarajan, Ismail Sikiru Oluwarotimi

Journal: International journal of biological macromolecules 2020;147():53-66

PMID: 31887386

Abstract

There are numerous better applications of fibre reinforced polymer composites today, when compared with metals and alloys. Many studies have been conducted to further improve the inherent mechanical and thermal properties of the composite materials, especially with sustainable, environmental friendly, recyclable and biodegradable reinforcements. Consequently, in this current study, the composites were prepared by combining bio solid waste (date seed filler) and vinyl ester to enhance the properties of polymer composites. The date seed filler reinforced vinyl ester (DSF-VE) composites were prepared by using conventional compression moulding technique with varying fillers loadings from 5% to 50%. The mechanical (tensile, flexural, impact and hardness), water absorption and thermal (heat deflection temperature and thermo-gravimetric analysis) properties of the DSF-VE composites were experimentally evaluated. Scanning electron microscopic analysis was carried out to analyse the surface characteristics and fractured surface of the DSF-VE composites. It was evident from the results obtained that 30 wt% of the DSF-VE composites exhibited the highest mechanical properties: impact, tensile, hardness and flexural of 17.03 KJ/m, 40.3 MPa, 51 and 149 MPa, respectively, among the fabricated composites. Similarly, the heat deflection temperatures of DSF-VE composites increased by 58.49%, when compared with the neat, pure vinyl ester resin. The thermo-gravimetric analysis showed that the natural filler-based (DSF-VE) composites possessed thermal stability up to 400.2 °C, which was within the polymerisation process temperature. Furthermore, the DSF-VE composites have been successfully utilized for various potential applications, such as fabrication of a table fan blade, an engine guard for two-wheelers and self-motor guard for four wheelers.

Copyright © 2019 Elsevier B.V. All rights reserved.

Address: Department of Mechanical Engineering, ULTRA College of Engineering and Technology, Madurai 625 107, Tamil Nadu, India.; Department of Mechanical Engineering, Anna University, Regional Campus Madurai, Madurai 625 019, Tamil Nadu, India. Electronic address: [email protected].; Department of Mechanical Engineering, Sethu Institute of Technology, Pulloor, Kariapatti 626 115, Tamil Nadu, India.; Department of Mechanical Engineering, K. Ramakrishnan College of Engineering, Tiruchirappalli 621 112, Tamil Nadu, India.; Department of Mechanical Engineering, Kalasalingam University, Krishnankoil, Virudhunagar 626126, Tamil Nadu, India. Electronic address: [email protected].; Department of Engineering, School of Engineering and Computer Science, Centre for Engineering Research, University of Hertfordshire, Hatfield, Hertfordshire AL10 9AB, England, United Kingdom.

Link outs

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.