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Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey

High performance polymers with bio-based modifiers are promising materials in terms of applications and environmental impact. In this work, raw acacia honey was used as a bio-modifier for epoxy resin, as a rich source of functional groups. The addition of honey resulted in the formation of highly st...

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Autores principales: Stajcic, Ivana, Veljkovic, Filip, Petrovic, Milos, Veličkovic, Suzana, Radojevic, Vesna, Vlahović, Branislav, Stajcic, Aleksandar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222091/
https://www.ncbi.nlm.nih.gov/pubmed/37242836
http://dx.doi.org/10.3390/polym15102261
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author Stajcic, Ivana
Veljkovic, Filip
Petrovic, Milos
Veličkovic, Suzana
Radojevic, Vesna
Vlahović, Branislav
Stajcic, Aleksandar
author_facet Stajcic, Ivana
Veljkovic, Filip
Petrovic, Milos
Veličkovic, Suzana
Radojevic, Vesna
Vlahović, Branislav
Stajcic, Aleksandar
author_sort Stajcic, Ivana
collection PubMed
description High performance polymers with bio-based modifiers are promising materials in terms of applications and environmental impact. In this work, raw acacia honey was used as a bio-modifier for epoxy resin, as a rich source of functional groups. The addition of honey resulted in the formation of highly stable structures that were observed in scanning electron microscopy images as separate phases at the fracture surface, which were involved in the toughening of the resin. Structural changes were investigated, revealing the formation of a new aldehyde carbonyl group. Thermal analysis confirmed the formation of products that were stable up to 600 °C, with a glass transition temperature of 228 °C. An energy-controlled impact test was performed to compare the absorbed impact energy of bio-modified epoxy containing different amounts of honey with unmodified epoxy resin. The results showed that bio-modified epoxy resin with 3 wt% of acacia honey could withstand several impacts with full recovery, while unmodified epoxy resin broke at first impact. The absorbed energy at first impact was 2.5 times higher for bio-modified epoxy resin than it was for unmodified epoxy resin. In this manner, by using simple preparation and a raw material that is abundant in nature, a novel epoxy with high thermal and impact resistance was obtained, opening a path for further research in this field.
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spelling pubmed-102220912023-05-28 Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey Stajcic, Ivana Veljkovic, Filip Petrovic, Milos Veličkovic, Suzana Radojevic, Vesna Vlahović, Branislav Stajcic, Aleksandar Polymers (Basel) Article High performance polymers with bio-based modifiers are promising materials in terms of applications and environmental impact. In this work, raw acacia honey was used as a bio-modifier for epoxy resin, as a rich source of functional groups. The addition of honey resulted in the formation of highly stable structures that were observed in scanning electron microscopy images as separate phases at the fracture surface, which were involved in the toughening of the resin. Structural changes were investigated, revealing the formation of a new aldehyde carbonyl group. Thermal analysis confirmed the formation of products that were stable up to 600 °C, with a glass transition temperature of 228 °C. An energy-controlled impact test was performed to compare the absorbed impact energy of bio-modified epoxy containing different amounts of honey with unmodified epoxy resin. The results showed that bio-modified epoxy resin with 3 wt% of acacia honey could withstand several impacts with full recovery, while unmodified epoxy resin broke at first impact. The absorbed energy at first impact was 2.5 times higher for bio-modified epoxy resin than it was for unmodified epoxy resin. In this manner, by using simple preparation and a raw material that is abundant in nature, a novel epoxy with high thermal and impact resistance was obtained, opening a path for further research in this field. MDPI 2023-05-10 /pmc/articles/PMC10222091/ /pubmed/37242836 http://dx.doi.org/10.3390/polym15102261 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
Stajcic, Ivana
Veljkovic, Filip
Petrovic, Milos
Veličkovic, Suzana
Radojevic, Vesna
Vlahović, Branislav
Stajcic, Aleksandar
Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey
title Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey
title_full Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey
title_fullStr Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey
title_full_unstemmed Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey
title_short Impact- and Thermal-Resistant Epoxy Resin Toughened with Acacia Honey
title_sort impact- and thermal-resistant epoxy resin toughened with acacia honey
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222091/
https://www.ncbi.nlm.nih.gov/pubmed/37242836
http://dx.doi.org/10.3390/polym15102261
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