Effect of winding orientation on energy absorption and failure modes of filament wound kenaf/glass fibre reinforced epoxy hybrid composite tubes under intermediate-velocity impact (IVI) load

Supian, A.B.M. and Sapuan, S.M. and Zuhri, M.Y.M. and Zainudin, E.S. and Ya, H.H. and Hisham, H.N. (2021) Effect of winding orientation on energy absorption and failure modes of filament wound kenaf/glass fibre reinforced epoxy hybrid composite tubes under intermediate-velocity impact (IVI) load. Journal of Materials Research and Technology, 10. pp. 1-14. ISSN 22387854

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Abstract

This paper presents the results of an experimental investigation of the behaviour and strength of hybrid kenaf/glass fibre-reinforced epoxy tubes subjected to axial intermediate-velocity impact loading. The specimens under axial intermediate-velocity impact involve three filament winding orientation parameters of ±30°, ±45° and ±70° of hybrid kenaf/glass fibre-reinforced epoxy and glass fibre reinforced-epoxy. All materials and sampling were prepared at SIRIM STV Malaysia laboratory by using automated filament winding machine to obtain a proper intraply hybrid kenaf/glass composite tube fabricating procedure. Results from the study showed that the concept in fabricating intraply hybrid filament winding technique of natural/synthetic materials has performed similar physical crashworthiness of synthetic composite tube with various progressive crushing behaviours. It was also observed that the winding orientation parameter at θ = 30°, 45° and 70° of the hybrid composite tube have increased the energy absorber properties with 33, 34 and 56 respectively, compared to the GFRP. © 2020 The Authors.

Item Type: Article
Additional Information: cited By 29
Uncontrolled Keywords: Crashworthiness; Energy absorption; Failure (mechanical); Fibers; Hemp; Hybrid materials; Tubes (components), Energy absorbers; Experimental investigations; Fibre-reinforced epoxy; Glass fibre reinforced; Hybrid composites; Intermediate velocities; Orientation parameter; Synthetic composites, Filament winding
Depositing User: Mr Ahmad Suhairi UTP
Date Deposited: 10 Nov 2023 03:30
Last Modified: 10 Nov 2023 03:30
URI: https://khub.utp.edu.my/scholars/id/eprint/15876

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