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Tensile, flexural, and water absorption properties of nano-silica enhanced kenaf/flax/glass fiber-reinforced epoxy hybrid biocomposites for sustainable development


Citation

Huang, Yang and Sultan, Mohamed Thariq Hameed and Shahar, Farah Syazwani and Nayak, Suhas Yeshwant (2025) Tensile, flexural, and water absorption properties of nano-silica enhanced kenaf/flax/glass fiber-reinforced epoxy hybrid biocomposites for sustainable development. Journal of Natural Fibers, 22 (1). art. no. 2554895. pp. 1-26. ISSN 1544-0478; eISSN: 1544-046X

Abstract

Fiber-reinforced composites are widely used in various industries. Hybridization improves the mechanical strength and versatility of these materials. Specifically, combining plant fibers with synthetic fibers enhances performance of biocomposites and environmental sustainability. This study fabricated five fiber-reinforced epoxy biocomposites (KKKKK, GKKKG, GKFKG, GFKFG, and GKGKG) from kenaf (K), flax (F), and glass (G) fibers using hand lay-up and vacuum bagging techniques. The epoxy matrix was mixed with nano-silica. These biocomposites were evaluated for tensile and flexural properties, water absorption, physical behavior, and specific strength. The results showed that hybrid fiber composites had significantly higher mechanical properties than pure kenaf composites. The tensile and flexural strengths of GFKFG were 103.79% and 196.32% higher than KKKKK, respectively. Additionally, hybrid biocomposites had superior moisture absorption, with GKFKG absorbing 45.59% and 48.52% less moisture in distilled water and artificial seawater, respectively, compared to KKKKK. Hybrid biocomposites also exhibited higher specific strength and thinner thickness, making them suitable for lightweight and compact structures. In conclusion, hybridizing kenaf fibers with flax and glass fibers enhances performance of biocomposites, promoting their use in marine, aerospace, and automotive applications, contributing to sustainable development.


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Additional Metadata

Item Type: Article
Subject: Materials Science (miscellaneous)
Divisions: Faculty of Engineering
DOI Number: https://doi.org/10.1080/15440478.2025.2554895
Publisher: Taylor and Francis
Keywords: Flax fiber; Kenaf fiber; Mechanical properties; Nano-silica; Sustainable materials; Water absorption
Depositing User: Ms. Zaimah Saiful Yazan
Date Deposited: 27 Jan 2026 03:58
Last Modified: 27 Jan 2026 03:58
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1080/15440478.2025.2554895
URI: http://psasir.upm.edu.my/id/eprint/122685
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