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Synthesis of K-Carrageenan Flame-Retardant Microspheres and Its Application for Waterborne Epoxy Resin with Functionalized Graphene

机译:K-角叉菜胶阻燃微球的合成及其在功能化石墨烯水性环氧树脂中的应用

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摘要

In this article, the intumescent flame-retardant microsphere (KC-IFR) was prepared by inverse emulsion polymerizations, with the use of k-carrageenan (KC) as carbon source, ammonium polyphosphate (APP) as acid source, and melamine (MEL) as gas source. Meanwhile, benzoic acid functionalized graphene (BFG) was synthetized as a synergist. A “four-source flame-retardant system” (KC-IFR/BFG) was constructed with KC-IFR and BFG. KC-IFR/BFG was blended with waterborne epoxy resin (EP) to prepare flame-retardant coatings. The effects of different ratios of KC-IFR and BFG on the flame-retardant properties of EP were investigated. The results showed that the limiting oxygen index (LOI) values increased from 19.7% for the waterborne epoxy resin to 28.7% for the EP1 with 20 wt% KC-IFR. The addition of BFG further improved the LOI values of the composites. The LOI value reached 29.8% for the EP5 sample with 18 wt% KC-IFR and 2 wt% BFG and meanwhile, UL-94 test reached the V-0 level. In addition, the peak heat release (pHRR) and smoke release rate (SPR) of EP5 decreased by 63.5% and 65.4% comparing with EP0, respectively. This indicated the good flame-retardant and smoke suppression property of EP composites coating.
机译:本文以k-角叉菜胶(KC)为碳源,聚磷酸铵(APP)为酸源,三聚氰胺(MEL)为原料,通过反相乳液聚合制备了膨胀型阻燃微球(KC-IFR)。作为气源。同时,合成了苯甲酸官能化石墨烯(BFG)作为增效剂。用KC-IFR和BFG构造了“四源阻燃系统”(KC-IFR / BFG)。将KC-IFR / BFG与水性环氧树脂(EP)混合以制备阻燃涂料。研究了不同比例的KC-IFR和BFG对EP阻燃性能的影响。结果表明,极限氧指数(LOI)值从水性环氧树脂的19.7%增加到含20 wt%KC-IFR的EP1的28.7%。 BFG的添加进一步提高了复合材料的LOI值。含有18 wt%KC-IFR和2 wt%BFG的EP5样品的LOI值达到29.8%,同时UL-94测试达到V-0水平。此外,EP5的峰值放热(pHRR)和烟雾释放率(SPR)与EP0相比分别降低了63.5%和65.4%。这表明EP复合材料涂料具有良好的阻燃和抑烟性能。

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