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Poly (vinyl alcohol)/β-Cyclodextrin Composite Fiber with Good Flame Retardant and Super-Smoke Suppression Properties

机译:聚乙烯醇/β-环糊精复合纤维具有良好的阻燃性和超强的抑烟性能

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摘要

Fibers with good flame retardant (FR) and smoke suppression performances are highly desirable for the purpose of eliminating fire hazard. This study developed a novel FR fiber by wet-spinning poly (vinyl alcohol)/β-cyclodextrin (PVA/βCD) composite fiber and crosslinking it with hexamethylene diisocyanate (HDI). βCDs showed good compatibility with PVA matrix, and the resulting PVA/CD/HDI fibers showed mechanical strength at the same level as natural cotton fiber. The PVA/CD/HDI fibers also showed excellent flame retardance (the LOI value of PVA/CD/HDI could reach 41.7%, and their peak of heat release (PHRR) could be reduced by up to 77.7% by neat PVA), and super-smoke suppression (the value of total smoke production (TSP) was only 28.6% compared to PVA). These dramatic reductions of fire hazard were ascribed to the char formation of βCD and crosslinking structure of PVA/CD/HDI, which formed a compact char layer during combustion, thus preventing heat transmission and smoke release.
机译:为了消除火灾隐患,非常需要具有良好阻燃性(FR)和抑烟性能的纤维。这项研究通过湿纺聚乙烯醇/β-环糊精(PVA /βCD)复合纤维并与六亚甲基二异氰酸酯(HDI)交联开发了一种新型的阻燃纤维。 βCD与PVA基质具有良好的相容性,所得的PVA / CD / HDI纤维的机械强度与天然棉纤维相同。 PVA / CD / HDI纤维还显示出优异的阻燃性(纯PVA可使PVA / CD / HDI的LOI值达到41.7%,并且其放热峰(PHRR)最多可降低77.7%),并且抑制超级烟雾(总烟雾量(TSP)仅为PVA的28.6%)。火灾危险性的显着降低归因于βCD的焦炭形成和PVA / CD / HDI的交联结构,在燃烧过程中形成了致密的焦炭层,从而防止了热量的传递和烟雾的释放。

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