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Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties

In this paper, the production and the characterization of poly (lactic) acid (PLA)-based composites containing different amounts (from 10 wt.% to 25 wt.%) of ultra-short cellulose fibers (Arbocel 600 BE/PU) have been investigated. On the basis of a previous study, it was observed that the addition o...

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Autores principales: Aliotta, Laura, Gigante, Vito, Cinelli, Patrizia, Coltelli, Maria-Beatrice, Lazzeri, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7697637/
https://www.ncbi.nlm.nih.gov/pubmed/33202908
http://dx.doi.org/10.3390/biom10111549
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author Aliotta, Laura
Gigante, Vito
Cinelli, Patrizia
Coltelli, Maria-Beatrice
Lazzeri, Andrea
author_facet Aliotta, Laura
Gigante, Vito
Cinelli, Patrizia
Coltelli, Maria-Beatrice
Lazzeri, Andrea
author_sort Aliotta, Laura
collection PubMed
description In this paper, the production and the characterization of poly (lactic) acid (PLA)-based composites containing different amounts (from 10 wt.% to 25 wt.%) of ultra-short cellulose fibers (Arbocel 600 BE/PU) have been investigated. On the basis of a previous study, it was observed that the addition of the cellulose fibers led to an embrittlement of the composite. Consequently, in order to obtain a composite with enhanced impact resistance and elongation at break, the effect of the Einar 101 addition (a bio-based dispersing aid additive) was analyzed. The role of the adhesion between the fiber and the matrix, coupled with a better fiber dispersion, was thus evaluated. Also, the consequences on the final mechanical properties (tensile and impact test) caused by the Einar addition were investigated. Analytical models were also applied in order to obtain an evaluation of the variation of the interfacial shear stress (IFSS) (strictly correlated to the fiber-matrix adhesion) caused by the Einar introduction. Furthermore, due to the very low aspect ratio of the Arbocel fibers, a suitable Bader and Boyer model variation was adopted in order to have a better quantitative estimation of the IFSS value.
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spelling pubmed-76976372020-11-29 Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties Aliotta, Laura Gigante, Vito Cinelli, Patrizia Coltelli, Maria-Beatrice Lazzeri, Andrea Biomolecules Article In this paper, the production and the characterization of poly (lactic) acid (PLA)-based composites containing different amounts (from 10 wt.% to 25 wt.%) of ultra-short cellulose fibers (Arbocel 600 BE/PU) have been investigated. On the basis of a previous study, it was observed that the addition of the cellulose fibers led to an embrittlement of the composite. Consequently, in order to obtain a composite with enhanced impact resistance and elongation at break, the effect of the Einar 101 addition (a bio-based dispersing aid additive) was analyzed. The role of the adhesion between the fiber and the matrix, coupled with a better fiber dispersion, was thus evaluated. Also, the consequences on the final mechanical properties (tensile and impact test) caused by the Einar addition were investigated. Analytical models were also applied in order to obtain an evaluation of the variation of the interfacial shear stress (IFSS) (strictly correlated to the fiber-matrix adhesion) caused by the Einar introduction. Furthermore, due to the very low aspect ratio of the Arbocel fibers, a suitable Bader and Boyer model variation was adopted in order to have a better quantitative estimation of the IFSS value. MDPI 2020-11-13 /pmc/articles/PMC7697637/ /pubmed/33202908 http://dx.doi.org/10.3390/biom10111549 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Aliotta, Laura
Gigante, Vito
Cinelli, Patrizia
Coltelli, Maria-Beatrice
Lazzeri, Andrea
Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties
title Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties
title_full Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties
title_fullStr Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties
title_full_unstemmed Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties
title_short Effect of a Bio-Based Dispersing Aid (Einar(®) 101) on PLA-Arbocel(®) Biocomposites: Evaluation of the Interfacial Shear Stress on the Final Mechanical Properties
title_sort effect of a bio-based dispersing aid (einar(®) 101) on pla-arbocel(®) biocomposites: evaluation of the interfacial shear stress on the final mechanical properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7697637/
https://www.ncbi.nlm.nih.gov/pubmed/33202908
http://dx.doi.org/10.3390/biom10111549
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