Kang Mingjia, Chen Silu, Yang Rongjie, Li Dinghua, Zhang Wenchao
National Engineering Research Center of Flame Retardant Materials, School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, China.
Polymers (Basel). 2022 Nov 18;14(22):4994. doi: 10.3390/polym14224994.
An eco-friendly clay-based synergistic flame-retardant coating was established on cotton fabrics via facile layer-by-layer assembly derived from polyethyleneimine (PEI), attapulgite clay (ATP), and phytic acid (PA). The fabricated flame-retardant (FR) cotton fabrics demonstrated improved thermal stability. Compared to untreated cotton fabrics, the limiting oxygen index of Cotton-8TL was improved to 27.0%. The peak heat release rates of the prepared FR cotton fabrics were lower than that of the pristine cotton fabrics, showing a maximum reduction of 41%. The deposition coating system improved the amount of char residue effectively. The intumescent flame-retardant mechanism was proposed through the analysis of char residue and the suppression properties of volatile gases. Furthermore, compared with those of the untreated cotton fabrics, the tensile strength and elongation at break of the FR cotton fabrics in the warp direction were improved by 20% and 47% remarkably, respectively. A feasible surface modification strategy was provided for the flame-retardant treatment of cotton fabrics with the improvement of mechanical properties.
通过由聚乙烯亚胺(PEI)、凹凸棒土(ATP)和植酸(PA)进行简便的逐层组装,在棉织物上制备了一种环保型粘土基协同阻燃涂层。所制备的阻燃(FR)棉织物表现出更高的热稳定性。与未处理的棉织物相比,Cotton - 8TL的极限氧指数提高到了27.0%。所制备的FR棉织物的峰值热释放速率低于原始棉织物,最大降低了41%。沉积涂层体系有效地提高了残炭量。通过对残炭和挥发性气体抑制性能的分析,提出了膨胀型阻燃机理。此外,与未处理的棉织物相比,FR棉织物在经向的拉伸强度和断裂伸长率分别显著提高了20%和47%。为棉织物的阻燃处理提供了一种可行的表面改性策略,同时提高了其机械性能。