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原位聚合磷/氮阻燃涂层对涤棉混纺织物的耐久性提升。

In-situ polymerization of phosphorus/nitrogen flame-retardant coating for polyester/cotton blend fabrics with superior durability.

机构信息

Key Laboratory of Flame Retardancy Finishing of Textile Materials (CNTAC), National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, 199 Renai Road, Suzhou 215123, China.

Key Laboratory of Flame Retardancy Finishing of Textile Materials (CNTAC), National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, 199 Renai Road, Suzhou 215123, China.

出版信息

Int J Biol Macromol. 2024 Oct;277(Pt 3):134458. doi: 10.1016/j.ijbiomac.2024.134458. Epub 2024 Aug 5.

Abstract

The durable flame-retardant functional coating of polyester/cotton (T/C) blend fabrics is both interesting and challenging. In this study, a novel in-situ polymerization strategy for phosphorus/nitrogen-based flame-retardant on T/C blend samples was developed through the polycondensation of tetramethylolphosphonium sulfate, dicyandiamide, and anionic cyclic phosphate ester. The chemical structure of the polycondensation compounds, as well as the surface morphology, combustion behavior, flame-retardant capacity, washing durability and flame-retardant mechanism of the coated T/C blend fabrics, were investigated. The coated T/C blend fabrics demonstrated excellent self-extinguishing performance, with the damaged length decreasing to as low as 8.0 cm and the LOI reaching 28 %. Moreover, the peak heat release rate of the coated T/C blend fabrics decreased by 39.7 %. The superior flame retardancy can be attributed to the enhanced dehydration and carbonization by phosphate groups in the condensed phase, as well as the quenching effect and diluting effect in the gas phase. Additionally, the coated T/C blend fabrics exhibited remarkable washing durability and still achieved self-extinguishing after 65 washing cycles, and the in-situ deposition of insoluble three-dimensional polycondensation compounds onto the T/C blend fabrics was beneficial. The flame-retardant coating had a minor impact on the whiteness, tensile strength and breathability of the T/C blend fabrics.

摘要

涤棉(T/C)混纺织物耐久性阻燃功能涂层既有趣又具有挑战性。本研究通过四甲基硫酸鏻、双氰胺和阴离子环状磷酸酯的缩聚反应,开发了一种用于 T/C 混纺样品的磷/氮基阻燃剂的原位聚合策略。研究了缩聚化合物的化学结构以及涂层 T/C 混纺织物的表面形态、燃烧行为、阻燃性能、耐洗性和阻燃机理。涂层 T/C 混纺织物表现出优异的自熄性能,损坏长度降低至 8.0cm 以下,LOI 达到 28%。此外,涂层 T/C 混纺织物的峰值热释放率降低了 39.7%。优异的阻燃性能可归因于凝聚相中磷酸基团的增强脱水碳化作用,以及气相中的猝灭作用和稀释作用。此外,涂层 T/C 混纺织物具有优异的耐洗性,经过 65 次洗涤循环后仍能自熄,并且不溶性三维缩聚化合物原位沉积在 T/C 混纺织物上是有益的。阻燃涂层对 T/C 混纺织物的白度、拉伸强度和透气性影响较小。

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