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Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant

Epoxy resin (EP) composites with improved thermal resistance were fabricated. To solve the problem of low thermal resistance derived from phosphazene flame-retardant additives, we designed a system based on flame-retardant microcapsules P(H), with hexaphenoxycyclotriphosphazene as the core and polym...

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Detalles Bibliográficos
Autores principales: Qu, Lijie, Zhang, Chunling, Li, Peihong, Dai, Xueyan, Xu, Tianlu, Sui, Yanlong, Gu, Jinjia, Dou, Yanli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085426/
https://www.ncbi.nlm.nih.gov/pubmed/35547319
http://dx.doi.org/10.1039/c8ra05911j
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author Qu, Lijie
Zhang, Chunling
Li, Peihong
Dai, Xueyan
Xu, Tianlu
Sui, Yanlong
Gu, Jinjia
Dou, Yanli
author_facet Qu, Lijie
Zhang, Chunling
Li, Peihong
Dai, Xueyan
Xu, Tianlu
Sui, Yanlong
Gu, Jinjia
Dou, Yanli
author_sort Qu, Lijie
collection PubMed
description Epoxy resin (EP) composites with improved thermal resistance were fabricated. To solve the problem of low thermal resistance derived from phosphazene flame-retardant additives, we designed a system based on flame-retardant microcapsules P(H), with hexaphenoxycyclotriphosphazene as the core and polymethyl methacrylate as the shell. The core–shell structure was characterized and confirmed. The thermal resistance of the cured EP composites containing 1 wt% P(H) microcapsules was improved because of the increased glass transition temperatures. The P(2.75H)/EP composites can reach a limited oxygen index of 30.5% and V-1 rating in UL-94 tests. Heat and gas release rates were reduced during combustion tests. Residual images implied that the P(H) microcapsules may promote the formation of a flame-retardant char layer. Pyrolysis analysis demonstrated that the P(H) microcapsules can decompose in two procedures to produce flame-retardant gas components. Therefore, the flame-retardant mechanism involved the flame inhibition effect in the gas phase, and the charring effect in the condensed phase.
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spelling pubmed-90854262022-05-10 Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant Qu, Lijie Zhang, Chunling Li, Peihong Dai, Xueyan Xu, Tianlu Sui, Yanlong Gu, Jinjia Dou, Yanli RSC Adv Chemistry Epoxy resin (EP) composites with improved thermal resistance were fabricated. To solve the problem of low thermal resistance derived from phosphazene flame-retardant additives, we designed a system based on flame-retardant microcapsules P(H), with hexaphenoxycyclotriphosphazene as the core and polymethyl methacrylate as the shell. The core–shell structure was characterized and confirmed. The thermal resistance of the cured EP composites containing 1 wt% P(H) microcapsules was improved because of the increased glass transition temperatures. The P(2.75H)/EP composites can reach a limited oxygen index of 30.5% and V-1 rating in UL-94 tests. Heat and gas release rates were reduced during combustion tests. Residual images implied that the P(H) microcapsules may promote the formation of a flame-retardant char layer. Pyrolysis analysis demonstrated that the P(H) microcapsules can decompose in two procedures to produce flame-retardant gas components. Therefore, the flame-retardant mechanism involved the flame inhibition effect in the gas phase, and the charring effect in the condensed phase. The Royal Society of Chemistry 2018-08-23 /pmc/articles/PMC9085426/ /pubmed/35547319 http://dx.doi.org/10.1039/c8ra05911j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Qu, Lijie
Zhang, Chunling
Li, Peihong
Dai, Xueyan
Xu, Tianlu
Sui, Yanlong
Gu, Jinjia
Dou, Yanli
Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant
title Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant
title_full Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant
title_fullStr Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant
title_full_unstemmed Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant
title_short Improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant
title_sort improved thermal properties of epoxy resin modified with polymethyl methacrylate-microencapsulated phosphorus-nitrogen-containing flame retardant
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085426/
https://www.ncbi.nlm.nih.gov/pubmed/35547319
http://dx.doi.org/10.1039/c8ra05911j
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