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dc.contributor.authorAguado, Roberto J.
dc.contributor.authorBastida, Gabriela A.
dc.contributor.authorEspinach, Francisco X.
dc.contributor.authorLlorens Sulivera, Joan
dc.contributor.authorTarrés, Quim
dc.contributor.authorDelgado Aguilar, Marc
dc.contributor.authorMutje Pujol, Pere
dc.date.accessioned2024-09-13T17:29:30Z
dc.date.available2024-09-13T17:29:30Z
dc.date.issued2023
dc.identifier.citationAguado, R. J., Bastida, G. A., Espinach, F. X., Llorens Sulivera, J., Tarrés, Q., Delgado Aguilar, M. y Mutjé, P. (2023). Comparative Study on the Stiffness of Poly(lactic acid) Reinforced with Untreated and Bleached Hemp Fibers. Polymers, 15 (13), 2960. https://doi.org/10.3390/polym15132960es
dc.identifier.issn20734360
dc.identifier.urihttp://hdl.handle.net/20.500.12251/3300
dc.description.abstractComposite materials containing natural reinforcement fibers, generally called biocomposites, have attracted the interest of both researchers and manufacturers, but the most environmentally advantageous combinations include a bio-based matrix, as well. With this in mind, a poly(lactic acid) (PLA) matrix was reinforced with natural fibers from hemp, both untreated strands (UHSs) and soda-bleached fibers (SBHFs). The preparation of the subsequent fully bio-sourced, discontinuously reinforced composites involved kinetic mixing, intensive single-screw extrusion, milling, and injection molding. Up to a fiber content of 30 wt%, the tensile modulus increased linearly with the volume fraction of the dispersed phase. Differences between SBHFs (up to 7.6 Gpa) and UHSs (up to 6.9 Gpa) were hardly significant (p = 0.1), but SBHF-reinforced composites displayed higher strain at failure. In any case, for the same fiber load (30 wt%), the Young’s modulus of PLA/hemp biocomposites was greater than that of glass fiber (GF)-reinforced polypropylene (5.7 GPa), albeit lower than that of PLA/GF (9.8 GPa). Considering all the measurements, the contribution of each phase was analyzed by applying the Hirsch model and the Tsai-Pagano model. As a concluding remark, although the intrinsic tensile modulus of SBHFs was lower than that of GF, the efficiency of those natural fibers as reinforcement (according to the rule of mixtures) was found to be higher. © 2023 by the authors.es
dc.language.isoenges
dc.publisherMultidisciplinary Digital Publishing Institute (MDPI)es
dc.titleComparative Study on the Stiffness of Poly(lactic acid) Reinforced with Untreated and Bleached Hemp Fiberses
dc.typearticlees
dc.identifier.doi10.3390/polym15132960
dc.issue.number13es
dc.journal.titlePolymerses
dc.subject.keywordBiocompositees
dc.subject.keywordFibra de celulosaes
dc.subject.keywordFibra de vidrioes
dc.subject.keywordCáñamoes
dc.subject.keywordPolipropilenoes
dc.subject.keywordResistencia mecánicaes
dc.subject.keywordEnsayos (propiedades o materiales)es
dc.subject.keywordMódulo de elasticidad longitudinal (Young)es
dc.subject.keywordMaterial compuestoes
dc.subject.unesco3305.32 Ingeniería de Estructurases
dc.subject.unesco3312.12 Ensayo de Materialeses
dc.subject.unesco3312.09 Resistencia de Materialeses
dc.subject.unesco3312.08 Propiedades de Los Materialeses
dc.subject.unesco3313.04 Material de Construcciónes
dc.subject.unesco2211.02 Materiales Compuestoses
dc.subject.unesco3101.08 Productos Agrícolas no Alimenticioses
dc.volume.number15es
dc.item.number2960es


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