Vibration analysis of hybrid-reinforced unsaturated polyester composites

Fiber-reinforced polymer composites (FRPCs) have been used extensively in the past few decades. Even today, composite materials are still rapidly improving by research around the globe. Several factors that have motivated researchers to develop FRPCs are to reduce costs, tackle environmental issu...

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Main Authors: M. Hamdan, M. H., Siregar, J. P., Sapuan, S. M., Tezara, C., M. Hafizi, Z., M. Rejab, M. R., Bachtiar, D., Jamiluddin, J.
Format: Article
Language:English
Published: Elsevier 2019
Subjects:
Online Access:http://eprints.uthm.edu.my/7098/1/C3825_d1babe4103d4d5f93aca72e168ed995a.pdf
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author M. Hamdan, M. H.
Siregar, J. P.
Sapuan, S. M.
Tezara, C.
M. Hafizi, Z.
M. Rejab, M. R.
Bachtiar, D.
Jamiluddin, J.
author_facet M. Hamdan, M. H.
Siregar, J. P.
Sapuan, S. M.
Tezara, C.
M. Hafizi, Z.
M. Rejab, M. R.
Bachtiar, D.
Jamiluddin, J.
author_sort M. Hamdan, M. H.
collection UTHM
description Fiber-reinforced polymer composites (FRPCs) have been used extensively in the past few decades. Even today, composite materials are still rapidly improving by research around the globe. Several factors that have motivated researchers to develop FRPCs are to reduce costs, tackle environmental issues, sustain composite resources, produce a databank in regard to material design, maximize potential at elevated temperatures and high humidity, and to replace the use of metallic compo�nents. The application of FRPCs is primarily expanded in the automotive, aeronautics, structural, and manufacturing industries [1]. In order to make all the inspiration, natural fibers have become the focus of research. Many advantages may be related to the utilization of natural fiber in FRPCs. Typically, natural fiber is light, highly available, recyclable, cheap, and has acceptable mechanical and physical properties and low energy requirements [2]. Therefore natural fiber is essential as a replacement or alternative to synthetic fiber as a reinforcement material in both thermoplastic and thermoset matrix polymer composites. Nevertheless, the potential of natural fiber as a reinforce�ment material is often limited by its low thermal degradation, vulnerability to moisture attack, low modulus, and poor impact properties [3�5].
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spelling uthm.eprints-70982022-06-08T02:06:06Z http://eprints.uthm.edu.my/7098/ Vibration analysis of hybrid-reinforced unsaturated polyester composites M. Hamdan, M. H. Siregar, J. P. Sapuan, S. M. Tezara, C. M. Hafizi, Z. M. Rejab, M. R. Bachtiar, D. Jamiluddin, J. TH Building construction Fiber-reinforced polymer composites (FRPCs) have been used extensively in the past few decades. Even today, composite materials are still rapidly improving by research around the globe. Several factors that have motivated researchers to develop FRPCs are to reduce costs, tackle environmental issues, sustain composite resources, produce a databank in regard to material design, maximize potential at elevated temperatures and high humidity, and to replace the use of metallic compo�nents. The application of FRPCs is primarily expanded in the automotive, aeronautics, structural, and manufacturing industries [1]. In order to make all the inspiration, natural fibers have become the focus of research. Many advantages may be related to the utilization of natural fiber in FRPCs. Typically, natural fiber is light, highly available, recyclable, cheap, and has acceptable mechanical and physical properties and low energy requirements [2]. Therefore natural fiber is essential as a replacement or alternative to synthetic fiber as a reinforcement material in both thermoplastic and thermoset matrix polymer composites. Nevertheless, the potential of natural fiber as a reinforce�ment material is often limited by its low thermal degradation, vulnerability to moisture attack, low modulus, and poor impact properties [3�5]. Elsevier 2019 Article PeerReviewed text en http://eprints.uthm.edu.my/7098/1/C3825_d1babe4103d4d5f93aca72e168ed995a.pdf M. Hamdan, M. H. and Siregar, J. P. and Sapuan, S. M. and Tezara, C. and M. Hafizi, Z. and M. Rejab, M. R. and Bachtiar, D. and Jamiluddin, J. (2019) Vibration analysis of hybrid-reinforced unsaturated polyester composites. Unsaturated Polyester Resins. pp. 489-514. https://doi.org/10.1016/B978-0-12-816129-6.00019-3
spellingShingle TH Building construction
M. Hamdan, M. H.
Siregar, J. P.
Sapuan, S. M.
Tezara, C.
M. Hafizi, Z.
M. Rejab, M. R.
Bachtiar, D.
Jamiluddin, J.
Vibration analysis of hybrid-reinforced unsaturated polyester composites
title Vibration analysis of hybrid-reinforced unsaturated polyester composites
title_full Vibration analysis of hybrid-reinforced unsaturated polyester composites
title_fullStr Vibration analysis of hybrid-reinforced unsaturated polyester composites
title_full_unstemmed Vibration analysis of hybrid-reinforced unsaturated polyester composites
title_short Vibration analysis of hybrid-reinforced unsaturated polyester composites
title_sort vibration analysis of hybrid reinforced unsaturated polyester composites
topic TH Building construction
url http://eprints.uthm.edu.my/7098/1/C3825_d1babe4103d4d5f93aca72e168ed995a.pdf
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