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Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin

Introducing fire-retardant additives or building blocks into resins is a widely adopted method used for improving the fire retardancy of epoxy composites. However, the increase in viscosity and the presence of insoluble additives accompanied by resin modification remain challenges for resin transfer...

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Autores principales: Geng, Zhi, Yang, Shuaishuai, Zhang, Lianwang, Huang, Zhenzhen, Pan, Qichao, Li, Jidi, Weng, Jianan, Bao, Jianwen, You, Zhengwei, He, Yong, Zhu, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315867/
https://www.ncbi.nlm.nih.gov/pubmed/30558309
http://dx.doi.org/10.3390/ma11122554
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author Geng, Zhi
Yang, Shuaishuai
Zhang, Lianwang
Huang, Zhenzhen
Pan, Qichao
Li, Jidi
Weng, Jianan
Bao, Jianwen
You, Zhengwei
He, Yong
Zhu, Bo
author_facet Geng, Zhi
Yang, Shuaishuai
Zhang, Lianwang
Huang, Zhenzhen
Pan, Qichao
Li, Jidi
Weng, Jianan
Bao, Jianwen
You, Zhengwei
He, Yong
Zhu, Bo
author_sort Geng, Zhi
collection PubMed
description Introducing fire-retardant additives or building blocks into resins is a widely adopted method used for improving the fire retardancy of epoxy composites. However, the increase in viscosity and the presence of insoluble additives accompanied by resin modification remain challenges for resin transfer molding (RTM) processing. We developed a robust approach for fabricating self-extinguishing RTM composites using unmodified and flammable resins. To avoid the effects on resin fluidity and processing, we loaded the flame retardant into tackifiers instead of resins. We found that the halogen-free flame retardant, a microencapsulated red phosphorus (MRP) additive, was enriched on fabric surfaces, which endowed the composites with excellent fire retardancy. The composites showed a 79.2% increase in the limiting oxygen index, a 29.2% reduction in heat release during combustion, and could self-extinguish within two seconds after ignition. Almost no effect on the mechanical properties was observed. This approach is simple, inexpensive, and basically applicable to all resins for fabricating RTM composites. This approach adapts insoluble flame retardants to RTM processing. We envision that this approach could be extended to load other functions (radar absorbing, conductivity, etc.) into RTM composites, broadening the application of RTM processing in the field of advanced functional materials.
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spelling pubmed-63158672019-01-08 Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin Geng, Zhi Yang, Shuaishuai Zhang, Lianwang Huang, Zhenzhen Pan, Qichao Li, Jidi Weng, Jianan Bao, Jianwen You, Zhengwei He, Yong Zhu, Bo Materials (Basel) Article Introducing fire-retardant additives or building blocks into resins is a widely adopted method used for improving the fire retardancy of epoxy composites. However, the increase in viscosity and the presence of insoluble additives accompanied by resin modification remain challenges for resin transfer molding (RTM) processing. We developed a robust approach for fabricating self-extinguishing RTM composites using unmodified and flammable resins. To avoid the effects on resin fluidity and processing, we loaded the flame retardant into tackifiers instead of resins. We found that the halogen-free flame retardant, a microencapsulated red phosphorus (MRP) additive, was enriched on fabric surfaces, which endowed the composites with excellent fire retardancy. The composites showed a 79.2% increase in the limiting oxygen index, a 29.2% reduction in heat release during combustion, and could self-extinguish within two seconds after ignition. Almost no effect on the mechanical properties was observed. This approach is simple, inexpensive, and basically applicable to all resins for fabricating RTM composites. This approach adapts insoluble flame retardants to RTM processing. We envision that this approach could be extended to load other functions (radar absorbing, conductivity, etc.) into RTM composites, broadening the application of RTM processing in the field of advanced functional materials. MDPI 2018-12-15 /pmc/articles/PMC6315867/ /pubmed/30558309 http://dx.doi.org/10.3390/ma11122554 Text en © 2018 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
Geng, Zhi
Yang, Shuaishuai
Zhang, Lianwang
Huang, Zhenzhen
Pan, Qichao
Li, Jidi
Weng, Jianan
Bao, Jianwen
You, Zhengwei
He, Yong
Zhu, Bo
Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin
title Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin
title_full Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin
title_fullStr Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin
title_full_unstemmed Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin
title_short Self-Extinguishing Resin Transfer Molding Composites Using Non-Fire-Retardant Epoxy Resin
title_sort self-extinguishing resin transfer molding composites using non-fire-retardant epoxy resin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315867/
https://www.ncbi.nlm.nih.gov/pubmed/30558309
http://dx.doi.org/10.3390/ma11122554
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