Methodologies to Evaluate the Micromechanics Flexural Strength Properties of Natural-Fiber-Reinforced Composites: The Case of Abaca-Fiber-Reinforced Bio Polyethylene Composites

dc.contributor.author
Séculi, Faust
dc.contributor.author
Espinach Orús, Xavier
dc.contributor.author
Julián Pérez, Fernando
dc.contributor.author
Llorens Sulivera, Joan
dc.contributor.author
Mutjé Pujol, Pere
dc.contributor.author
Tarrés Farrés, Joaquim Agustí
dc.date.issued
2023-07-24
dc.identifier
http://hdl.handle.net/10256/23622
dc.description.abstract
There is growing emphasis on developing green composites as a substitute for oil-based materials. In the pursuit of studying and enhancing the mechanical properties of these composites, tensile tests are predominantly employed, often overlooking the flexural properties. This study focuses on researching the flexural properties of abaca-fiber-reinforced bio-based high-density polyethylene (BioPE) composites. Specifically, composites containing 30 wt% of abaca fiber (AF) were treated with a coupling agent based on polyethylene functionalized with maleic acid (MAPE). The test results indicate that incorporating 8 wt% of the coupling agent significantly improved the flexural strength of the composites. Thereafter, composites with AF content ranging from 20 to 50 wt% were produced and subjected to flexural testing. It was observed that flexural strength was positively correlated with AF content. A micromechanics analysis was conducted to evaluate the contributions of the phases. This analysis involved assessing the mechanical properties of both the reinforcement and matrix to facilitate the modeling of flexural strength. The findings of this study demonstrate the feasibility of replacing oil-based matrices, such as high-density polyethylene (HDPE), with fully bio-based composites that exhibit comparable flexural properties to their oil-based counterparts
dc.description.abstract
The authors wish to acknowledge the financial support of the Spanish Ministry of Science and Innovation to the projects CICEP (TED2021-1310398-C33)
dc.format
application/pdf
dc.language
eng
dc.publisher
MDPI (Multidisciplinary Digital Publishing Institute)
dc.relation
info:eu-repo/semantics/altIdentifier/doi/10.3390/polym15143137
dc.relation
info:eu-repo/semantics/altIdentifier/eissn/2073-4360
dc.rights
Attribution 4.0 International (CC BY 4.0)
dc.rights
https://creativecommons.org/licenses/by/4.0/
dc.rights
info:eu-repo/semantics/openAccess
dc.source
Polymers, 2023, vol. 15, núm. 14, p. 3137
dc.source
Articles publicats (D-OGEDP)
dc.source
Séculi, Faust Espinach Orús, Xavier ulián Pérez, Fernando Llorens Sulivera, Joan Mutjé Pujol, Pere arrés Farrés, Joaquim Agustí 2023 Methodologies to Evaluate the Micromechanics Flexural Strength Properties of Natural-Fiber-Reinforced Composites: The Case of Abaca-Fiber-Reinforced Bio Polyethylene Composites Polymers 15 14 3137
dc.subject
Fibres naturals
dc.subject
Plant fibers
dc.subject
Micromecànica
dc.subject
Micromechanics
dc.subject
Biopolímers
dc.subject
Biopolymers
dc.title
Methodologies to Evaluate the Micromechanics Flexural Strength Properties of Natural-Fiber-Reinforced Composites: The Case of Abaca-Fiber-Reinforced Bio Polyethylene Composites
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/publishedVersion
dc.type
peer-reviewed


Ficheros en el ítem

FicherosTamañoFormatoVer

No hay ficheros asociados a este ítem.

Este ítem aparece en la(s) siguiente(s) colección(ones)