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首页> 外文期刊>Journal of Applied Polymer Science >Highly flame-retardant bio-based polyurethanes using novel reactive polyols
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Highly flame-retardant bio-based polyurethanes using novel reactive polyols

机译:使用新型反应性多元醇的高阻燃生物基聚氨酯

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摘要

Poor flame retardancy of polyurethanes (PU) is a global issue as it limits their applications particularly in construction, automobile, and household appliances industries. The global challenge of high flammability of PU can be addressed by incorporating flame-retardant materials. However, additive flame-retardants are non-compatible and depreciate the properties of PU. Hence, reactive flame-retardants (RFR) based on aliphatic (Ali-1 and Ali-2) and aromatic (Ar-1 and Ar-2) structured bromine compounds were synthesized and used to prepare bio-based PU using limonene dimercaptan. The aromatic bromine containing foams showed higher close cell content (average 97 and 100%) and compressive strength (230 and 325 kPa) to that of aliphatic bromine containing foams. Similar behavior was observed for a horizontal burning test where with a low concentration of bromine (5 wt %) in the foams for Ar-1 and Ar-2 displayed a burning time of 12.5 and 11.8 s while, Ali-1 and Ali-2 displayed burning time of 25.7 and 37 s, respectively. Neat foam showed a burning time of 74 s. The percentage weight loss for neat PU foam was 26.5%, while foams containing 5 wt % bromine in Ali-1, Ali-2, Ar-1, and Ar-2 foams displayed weight loss of 11.3, 14, 7.9, and 14%, respectively. Our results suggest that flame retardant PU foams could be prepared effectively by using RFR materials. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46027.
机译:聚氨酯(PU)的阻燃性差是全球性问题,因为它限制了其尤其是建筑,汽车和家用电器行业的应用。通过掺入阻燃材料,可以解决PU的高易燃性的全球挑战。然而,添加阻燃剂是不相容的并且贬低PU的性质。因此,基于脂族(Ali-1和Ali-2)和芳族(Ar-1和Ar-2)结构化溴化合物的反应性阻燃剂(RFR)合成并使用利用柠檬烯二巯基制备生物基普。含芳族溴的泡沫显示含有脂肪族溴的泡沫的紧密细胞含量(平均97和100%)和压缩强度(230和325kPa)。对于水平燃烧试验,观察到类似的行为,其中Ar-1和Ar-2的泡沫中具有低浓度的溴(5wt%),呈现为12.5和11.8 s的燃烧时间,Ali-1和Ali-2显示出25.7和37秒的刻录时间。整洁的泡沫显示出74秒的燃烧时间。整齐PU泡沫的体重减轻率为26.5%,而含有5wt%溴的泡沫,Ali-1,Al-2,Ar-1和Ar-2泡沫中的体重减轻11.3,14,7.9和14% , 分别。我们的研究结果表明,通过使用RFR材料可以有效地制备阻燃PU泡沫。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46027。

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