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An eco-friendly way to fire retardant flexible polyurethane foam: layer-by-layer assembly of fully bio-based substances

机译:阻燃柔性聚氨酯泡沫的环保方法:完全生物基物质的逐层组装

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摘要

The objective of the present study is to develop fully renewable and environmentally benign techniques for improving the fire safety of flexible polyurethane foams (PUFs). A multilayered coating made from cationic chitosan (CS) and anionic alginate (AL) was deposited on PUFs through layer-by-layer assembly. This coating system exhibits a slight influence on the thermal stability of PUF, but significantly improves the char formation during combustion. Cone calorimetry reveals that 10 CS-AL bilayers (only 5.7% of the foams weight) lead to a 66% and 11% reduction in peak heat release rate and total heat release, respectively, compared with those of the uncoated control. The notable decreased fire hazards of PUF are attributed to the CS-AL coatings being beneficial to form an insulating protective layer on the surface of burning materials that inhibits the oxygen and heat permeation and slows down the flammable gases in the vapor phase, and thereby improves the flame resistance. This water-based, environmentally benign natural coating will stimulate further efforts in improving fire safety for a variety of polymer substrates.
机译:本研究的目的是开发完全可再生和对环境无害的技术,以改善软质聚氨酯泡沫(PUF)的防火安全性。由阳离子壳聚糖(CS)和阴离子藻酸盐(AL)制成的多层涂层通过逐层组装而沉积在PUF上。该涂料体系对PUF的热稳定性影响不大,但可显着改善燃烧过程中的焦炭形成。锥形量热法显示,与未涂层的对照组相比,10个CS-AL双层(仅占泡沫重量的5.7%)分别导致峰值放热速率和总放热降低66%和11%。 PUF的明显降低的火灾隐患可归因于CS-AL涂层有利于在燃烧材料表面形成绝缘保护层,从而抑制氧气和热量的渗透并减慢气相中的可燃气体,从而改善阻燃性。这种水基,对环境无害的天然涂料将刺激人们为改善各种聚合物基材的防火安全性做出进一步的努力。

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