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Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement

The growing concern about the limitation of non-renewable resources has brought a focus on the development of environmentally sustainable and biodegradable composite materials. In this context, a trend in the development of natural fibers used as a reinforcement in composites is ever-increasing. In...

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Autores principales: Neuba, Lucas de Mendonça, Junio, Raí Felipe Pereira, Souza, Andressa Teixeira, Ribeiro, Matheus Pereira, da Silveira, Pedro Henrique Poubel Mendonça, da Silva, Thuane Teixeira, Pereira, Artur Camposo, Monteiro, Sergio Neves
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502626/
https://www.ncbi.nlm.nih.gov/pubmed/36145952
http://dx.doi.org/10.3390/polym14183807
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author Neuba, Lucas de Mendonça
Junio, Raí Felipe Pereira
Souza, Andressa Teixeira
Ribeiro, Matheus Pereira
da Silveira, Pedro Henrique Poubel Mendonça
da Silva, Thuane Teixeira
Pereira, Artur Camposo
Monteiro, Sergio Neves
author_facet Neuba, Lucas de Mendonça
Junio, Raí Felipe Pereira
Souza, Andressa Teixeira
Ribeiro, Matheus Pereira
da Silveira, Pedro Henrique Poubel Mendonça
da Silva, Thuane Teixeira
Pereira, Artur Camposo
Monteiro, Sergio Neves
author_sort Neuba, Lucas de Mendonça
collection PubMed
description The growing concern about the limitation of non-renewable resources has brought a focus on the development of environmentally sustainable and biodegradable composite materials. In this context, a trend in the development of natural fibers used as a reinforcement in composites is ever-increasing. In this work, for the first-time, fibers extracted from the seven-islands-sedge plant (Cyperus malaccensis) have been characterized by X-ray diffraction (XRD) to calculate the crystallinity index and the microfibrillar angle (MFA). Also, an evaluation of the ultimate tensile strength by diameter intervals has been investigated and statistically analyzed by both the Weibull method and the analysis of variance (ANOVA). Moreover, the maximum deformation and tensile modulus have been found from the data acquired. Pullout tests have been conducted to investigate the critical length and interfacial strength when sedge fibers, are incorporated into epoxy resin matrix. Microstructure analysis by scanning electron microscopy (SEM) was performed to observe the mechanism responsible for causing rupture of the fiber as well as the effective fiber interfacial adhesion to the epoxy matrix.
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spelling pubmed-95026262022-09-24 Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement Neuba, Lucas de Mendonça Junio, Raí Felipe Pereira Souza, Andressa Teixeira Ribeiro, Matheus Pereira da Silveira, Pedro Henrique Poubel Mendonça da Silva, Thuane Teixeira Pereira, Artur Camposo Monteiro, Sergio Neves Polymers (Basel) Article The growing concern about the limitation of non-renewable resources has brought a focus on the development of environmentally sustainable and biodegradable composite materials. In this context, a trend in the development of natural fibers used as a reinforcement in composites is ever-increasing. In this work, for the first-time, fibers extracted from the seven-islands-sedge plant (Cyperus malaccensis) have been characterized by X-ray diffraction (XRD) to calculate the crystallinity index and the microfibrillar angle (MFA). Also, an evaluation of the ultimate tensile strength by diameter intervals has been investigated and statistically analyzed by both the Weibull method and the analysis of variance (ANOVA). Moreover, the maximum deformation and tensile modulus have been found from the data acquired. Pullout tests have been conducted to investigate the critical length and interfacial strength when sedge fibers, are incorporated into epoxy resin matrix. Microstructure analysis by scanning electron microscopy (SEM) was performed to observe the mechanism responsible for causing rupture of the fiber as well as the effective fiber interfacial adhesion to the epoxy matrix. MDPI 2022-09-12 /pmc/articles/PMC9502626/ /pubmed/36145952 http://dx.doi.org/10.3390/polym14183807 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Neuba, Lucas de Mendonça
Junio, Raí Felipe Pereira
Souza, Andressa Teixeira
Ribeiro, Matheus Pereira
da Silveira, Pedro Henrique Poubel Mendonça
da Silva, Thuane Teixeira
Pereira, Artur Camposo
Monteiro, Sergio Neves
Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement
title Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement
title_full Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement
title_fullStr Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement
title_full_unstemmed Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement
title_short Mechanical Properties, Critical Length, and Interfacial Strength of Seven-Islands-Sedge Fibers (Cyperus malaccensis) for Possible Epoxy Matrix Reinforcement
title_sort mechanical properties, critical length, and interfacial strength of seven-islands-sedge fibers (cyperus malaccensis) for possible epoxy matrix reinforcement
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502626/
https://www.ncbi.nlm.nih.gov/pubmed/36145952
http://dx.doi.org/10.3390/polym14183807
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