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Intumescent Phosphorus and Triazole-Based Flame-Retardant Polyurethane Foams from Castor Oil

机译:蓖麻油的膨胀磷和三唑基阻燃聚氨酯泡沫

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摘要

Synthesis of a novel phosphorus and triazole-functionalized flame-retardant (FR) monomer (PTFM) using azide–alkyne “click” reaction between triprop-2-ynyl phosphate and 2-azidoethanol that can impart intumescent FR property to polyurethane foams (PUFs) has been reported. Polyurethane triazole foams (PUTFs) were prepared using the as-synthesized PTFM and a hydroxylated castor polyol with a hydroxyl value of ~310 mg KOH/g for application as reactive FR rigid foams. PTFM and the castor polyol were characterized for structural elucidation using Fourier transform infrared and 1H, 13C, and 31P NMR. PUTFs with a varying loading content of PTFM were subjected to the lab-scale flame test, cone calorimetry test, Underwriters Laboratory 94 Vertical burning test (UL 94V), and limiting oxygen index (LOI) test. A significant increase in the char yields, reduction in heat release rates, V-1 rating, and 27% of LOI were observed for PUTFs compared to PUFs and proportional to the percentage loading of PTFM. The cumulative effect of nitrogen and phosphorus in PUTFs on their intumescent behavior was evident from the thermogravimetric analysis and scanning electron microscopy micrographs, which were further supplemented by X-ray photoelectron spectroscopy studies, indicating expulsion of N2 and overall improvement in compression strength as well. Such environment-friendly reactive FRs can be good replacements to the halogenated ones.
机译:使用叠氮化物 - 炔烃“点击”反应合成新型磷和三唑官能化阻燃(FR)单体(PTFM),Theprop-2-炔基磷酸酯和2-吖啶乙醇之间的反应可以将膨胀蛋白泡沫(PUF)赋予聚氨酯泡沫(PUF)已经被报告了。使用用AS合成的PTFM和羟基化的蓖麻多元醇制备聚氨酯三唑泡沫(PUTFS),其羟值为〜310mg KOH / g的羟值为例如反应性FR刚性泡沫。 PTFM和蓖麻多元醇的特征在于使用傅里叶变换红外和1H,13C和31P NMR的结构阐明。对PTFM的不同负载含量的PUTF进行实验室规模火焰试验,锥形量热试验,承保者实验室94立式燃烧试验(UL 94V),并限制氧指数(LOI)测试。与PUFS相比,对PUTF的热释放率降低,热释放速率降低,释放速率和27%的LOI的显着增加,并与PTFM的百分比负荷成比例。从热量分析和扫描电子显微镜显微镜显而易见的,通过X射线光电子谱研究进一步补充,表明N2的排出和压缩强度的总体改善,从热重分析和扫描电子显微镜显微镜下显而易见。这种环境友好的反应性FRS可以对卤化产品进行良好的替代品。

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