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Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite

Prepregs are commonly fabricated with non-renewable petroleum-based materials. To reduce the impact of the manufacturing of these materials and to produce more sustainable prepregs, this research aims to manufacture poly(furfuryl alcohol)/wood veneer prepregs and their posterior molding in laminate...

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Autores principales: Acosta, Andrey Pereira, Esteves, Bruno, da Cruz, Joziel Aparecido, Aramburu, Arthur Behenck, Kairytė, Agnė, Członka, Sylwia, Ramos, Dionatan Orestes, Goularte, Matheus de Paula, Delucis, Rafael de Avila, Gatto, Darci Alberto, Amico, Sandro Campos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532720/
https://www.ncbi.nlm.nih.gov/pubmed/37763515
http://dx.doi.org/10.3390/ma16186237
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author Acosta, Andrey Pereira
Esteves, Bruno
da Cruz, Joziel Aparecido
Aramburu, Arthur Behenck
Kairytė, Agnė
Członka, Sylwia
Ramos, Dionatan Orestes
Goularte, Matheus de Paula
Delucis, Rafael de Avila
Gatto, Darci Alberto
Amico, Sandro Campos
author_facet Acosta, Andrey Pereira
Esteves, Bruno
da Cruz, Joziel Aparecido
Aramburu, Arthur Behenck
Kairytė, Agnė
Członka, Sylwia
Ramos, Dionatan Orestes
Goularte, Matheus de Paula
Delucis, Rafael de Avila
Gatto, Darci Alberto
Amico, Sandro Campos
author_sort Acosta, Andrey Pereira
collection PubMed
description Prepregs are commonly fabricated with non-renewable petroleum-based materials. To reduce the impact of the manufacturing of these materials and to produce more sustainable prepregs, this research aims to manufacture poly(furfuryl alcohol)/wood veneer prepregs and their posterior molding in laminate composites. For this purpose, the vacuum infusion process was used to impregnate the wood veneers, and compression molding was applied to manufacture three- and four-layer laminate composites. Scanning electronic microscopy was used to evaluate the impregnation. the laminate manufacturing and differential scanning calorimetry were used to predict the shelf-life of the prepregs, Fourier-transform infrared was used to evaluate the induced hydrolysis resistance, and thermogravimetric analysis was used to determine the thermal degradation of the laminates. Moreover, water uptake and flexural, compressive, and tensile properties were evaluated. The kinetic models were effective and showed a shelf life for the laminates of approximately 30 days in storage at −7 °C, which is an interesting result for laminates with lignocellulosic materials. FTIR proved the laminates’ excellent resistance to hydrolysis. The water absorption, thermal stability, and mechanical properties did not differ as the amount of wood veneer increased, but these results were up to ~40% higher compared with unidirectional wood laminates found in the literature, which is probably linked to the excellent interface observed with SEM.
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spelling pubmed-105327202023-09-28 Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite Acosta, Andrey Pereira Esteves, Bruno da Cruz, Joziel Aparecido Aramburu, Arthur Behenck Kairytė, Agnė Członka, Sylwia Ramos, Dionatan Orestes Goularte, Matheus de Paula Delucis, Rafael de Avila Gatto, Darci Alberto Amico, Sandro Campos Materials (Basel) Article Prepregs are commonly fabricated with non-renewable petroleum-based materials. To reduce the impact of the manufacturing of these materials and to produce more sustainable prepregs, this research aims to manufacture poly(furfuryl alcohol)/wood veneer prepregs and their posterior molding in laminate composites. For this purpose, the vacuum infusion process was used to impregnate the wood veneers, and compression molding was applied to manufacture three- and four-layer laminate composites. Scanning electronic microscopy was used to evaluate the impregnation. the laminate manufacturing and differential scanning calorimetry were used to predict the shelf-life of the prepregs, Fourier-transform infrared was used to evaluate the induced hydrolysis resistance, and thermogravimetric analysis was used to determine the thermal degradation of the laminates. Moreover, water uptake and flexural, compressive, and tensile properties were evaluated. The kinetic models were effective and showed a shelf life for the laminates of approximately 30 days in storage at −7 °C, which is an interesting result for laminates with lignocellulosic materials. FTIR proved the laminates’ excellent resistance to hydrolysis. The water absorption, thermal stability, and mechanical properties did not differ as the amount of wood veneer increased, but these results were up to ~40% higher compared with unidirectional wood laminates found in the literature, which is probably linked to the excellent interface observed with SEM. MDPI 2023-09-15 /pmc/articles/PMC10532720/ /pubmed/37763515 http://dx.doi.org/10.3390/ma16186237 Text en © 2023 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
Acosta, Andrey Pereira
Esteves, Bruno
da Cruz, Joziel Aparecido
Aramburu, Arthur Behenck
Kairytė, Agnė
Członka, Sylwia
Ramos, Dionatan Orestes
Goularte, Matheus de Paula
Delucis, Rafael de Avila
Gatto, Darci Alberto
Amico, Sandro Campos
Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite
title Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite
title_full Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite
title_fullStr Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite
title_full_unstemmed Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite
title_short Wood-Poly(furfuryl Alcohol) Prepreg: A Novel, Ecofriendly Laminate Composite
title_sort wood-poly(furfuryl alcohol) prepreg: a novel, ecofriendly laminate composite
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532720/
https://www.ncbi.nlm.nih.gov/pubmed/37763515
http://dx.doi.org/10.3390/ma16186237
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