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Flame retardant flexible polyurethane foams based on phosphorous soybean-oil polyol and expandable graphite

机译:基于磷大豆油多元醇和可膨胀石墨的阻燃柔性聚氨酯泡沫

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摘要

A phosphorous soybean-oil-based polyol was derived via epoxidation and ring opening reaction as an alternative to petrochemical-based polyol for the synthesis of flexible polyurethane foams (FPUFs). 5-wt.% and 10-wt.% of expandable graphite (EG) were added to further improve flame retardancy. The mechanical properties (tensile strength and compression stress) of the foams were investigated. Thermogravimetric analysis (TGA) coupled with Fourier-transform infrared (FTIR) were conducted to evaluate the pyrolysis; limiting oxygen index (LOI), UL 94 and cone calorimeter were performed to analyze the fire performance of the foams; smoke density chamber was used to investigate the smoke released during burning. When 10-wt.% of EG was used, the flame retardancy of the foams was much enhanced due to the synergistic effect between phosphorus and EG. The char yield was three times higher (54-wt.%). The fire load MARHE approached 100 kWm~(-2), half of the value expected for a superposition. The combination of phosphorous polyols and EG is proposed as strategy for future flame retarded FPUFs.
机译:通过环氧化和开环反应来衍生磷大豆 - 油基多元醇,作为用于合成柔性聚氨酯泡沫(FPUF)的石化多元醇的替代品。 5重量%和10重量%。加入可膨胀石墨(例如)以进一步改善阻燃性。研究了泡沫的机械性能(拉伸强度和压缩应力)。进行热量分析(TGA)与傅里叶变换红外(FTIR)进行,以评估热解;进行限制氧气指数(LOI),UL 94和锥形量热计分析泡沫的火灾性能;烟雾密度室用于研究燃烧期间释放的烟雾。当使用的10重量%的百分比时,由于磷和例如磷之间的协同效应,泡沫的阻燃性大得多。炭产率越高三倍(54重量%)。火焰载荷玛哈接近100kWM〜(-2),一半值为叠加的值。磷多元醇的组合和例如建议作为未来阻燃FPUFS的策略。

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