首页> 外文期刊>ACS applied materials & interfaces >Construction of Hierarchical Natural Fabric Surface Structure Based on Two-Dimensional Boron Nitride Nanosheets and Its Application for Preparing Biobased Toughened Unsaturated Polyester Resin Composites
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Construction of Hierarchical Natural Fabric Surface Structure Based on Two-Dimensional Boron Nitride Nanosheets and Its Application for Preparing Biobased Toughened Unsaturated Polyester Resin Composites

机译:基于二维氮化硼氮化纳米片的分层天然织物表面结构的构建及其制备生物钢化不饱和聚酯树脂复合材料的应用

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摘要

It has been a big challenge to prepare the unsaturated polyester resin (UPR) composites with good fire safety, interfacial quality, and impact strength in an environmentally friendly way. In this study, to improve interfacial performance of fabric-reinforced UPR composites, nontoxic two-dimensional hexagonal boron nitride (h-BN) nanosheets were assembled on the surface of ramie fabrics, where sodium alginate acts as a green dispersant to disperse h-BN sheets during the process. Then, the biobased phosphorus-containing toughening agent (PCTA) was synthesized to simultaneously improve the impact strength and fire safety of the composite. With application of h-BN nanosheets-assembled fabric (AF) and 20 wt % of PCTA, the AF/UPR@PCTA(20) composite presented the maximum 41.2% decrease in the value of peak heat release rate and a maximum 17.8% decrease in the value of total heat release, which also reached V-0 rating in the vertical burning test. Meanwhile, the AF/UPR@PCTA20 composite showed an obvious increase in limiting oxygen index, from 24.0 to 29.5% compared with RF/UPR. The flame retardant mechanism was investigated from gas phase and condensed phase. Furthermore, compared to neat RF/UPR composite, the AF/UPR@PCTA(20) composite showed a significant 68.8% improvement in impact strength, implying an extreme toughening effect of PCTA on UPR composites. The research provides a viable green method for the development of environmentally friendly UPR composites in the future.
机译:制备不饱和聚酯树脂(UPR)复合材料,以良好的防火,界面质量和环境友好的方式制备不饱和聚酯树脂(UPR)复合材料是一项重要的挑战。在本研究中,为了改善织物增强UPR复合材料的界面性能,组装在苎麻织物的表面上的无毒二维六方硼氮化物(H-BN)纳米晶片,其中藻酸钠用作分散H-BN的绿色分散剂。在过程中的床单。然后,合成了生物化的含磷增韧剂(PCTA)以同时改善复合材料的冲击强度和防火安全。借助H-BN纳米片组装的织物(AF)和20wt%的PCTA,AF / UPR @PCTA(20)复合材料呈现最大41.2%的峰值热释放率值下降,最大17.8%降低在总热释放的值中,在垂直燃烧试验中也达到V-0等级。同时,与RF / UPR相比,AF / UPR @ PCTA20复合材料显示限制氧指数的明显增加,从24.0到29.5%。从气相和冷凝相中研究了阻燃机理。此外,与整齐的RF / UPR复合材料相比,AF / UPR @ PCTA(20)复合材料的影响力显着提高了68.8%,暗示PCTA对UPR复合材料的极端增韧效果。该研究为未来提供了一种可行的绿色方法,可在未来开发环保UPR复合材料。

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