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Thermal Degradation and Flame Retardant Mechanism of the Rigid Polyurethane Foam Including Functionalized Graphene Oxide

机译:含功能性氧化石墨烯的硬质聚氨酯泡沫的热降解和阻燃机理

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摘要

A flame retardant rigid polyurethane foam (RPUF) system containing functionalized graphene oxide (fGO), expandable graphite (EG), and dimethyl methyl phosphonate (DMMP) was prepared and investigated. The results show that the limiting oxygen index (LOI) of the flame-retardant-polyurethane-fGO (FRPU/fGO) composites reached 28.1% and UL-94 V-0 rating by adding only 0.25 g fGO. The thermal degradation of FRPU samples was studied using thermogravimetric analysis (TG) and the Fourier transform infrared (FT-IR) analysis. The activation energies (Ea) for the main stage of thermal degradation were obtained using the Kissinger equation. It was found that the fGO can considerably increase the thermal stability and decrease the flammability of RPUF. Additionally, the Ea of FRPU/fGO reached 191 kJ·mol−1, which was 61 kJ·mol−1 higher than that of the pure RPUF (130 kJ·mol−1). Moreover, scanning electron microscopy (SEM) results showed that fGO strengthened the compactness and the strength of the “vermicular” intumescent char layer improved the insulation capability of the char layer to gas and heat.
机译:制备并研究了包含功能化氧化石墨烯(fGO),可膨胀石墨(EG)和二甲基甲基膦酸酯(DMMP)的阻燃硬质聚氨酯泡沫(RPUF)系统。结果表明,仅添加0.25 g fGO,阻燃性聚氨酯-fGO(FRPU / fGO)复合材料的极限氧指数(LOI)达到28.1%,UL-94 V-0等级。使用热重分析(TG)和傅里叶变换红外(FT-IR)分析研究了FRPU样品的热降解。使用基辛格方程获得了热降解主要阶段的活化能(Ea)。已经发现,fGO可以显着提高热稳定性并降低RPUF的可燃性。此外,FRPU / fGO的Ea达到191 kJ·mol -1 ,比纯RPUF(130 kJ·mol)高61 kJ·mol -1 -1 )。此外,扫描电子显微镜(SEM)结果表明,fGO增强了致密性,“蠕形”膨胀炭层的强度提高了炭层对气体和热量的绝缘能力。

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