首页> 外文期刊>Polymer Degradation and Stability >Construction of nano-multilayer coatings on copolyester fabrics using UV-grafting mediated layer-by-layer self-assembly for improved anti-droplet and flame retardent performance
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Construction of nano-multilayer coatings on copolyester fabrics using UV-grafting mediated layer-by-layer self-assembly for improved anti-droplet and flame retardent performance

机译:使用紫外线介导的逐层自组装构建共聚酯织物对共聚酯织物的纳米多层涂层,以改善抗液滴和阻燃性能

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摘要

Aiming to realize anti-dripping and improve fire retardancy of polyester fabrics, novel hybrid multilayer nano-coatings composed of γ-amino propyltriethoxysilane (KH-550), bio-based betadex sulfobutyl ether sodium (SBE-β-CD) and [(6-Oxido-6H-dibenz-[c,e]oxaphosphorin-6-yl)methyl] butanedioic acid (DDP), were successfully constructed through layer-by-layer self assembly (LBL) method. Polyacrylic acid (PAA) layer were firstly deposited onto polyester fabrics via UV-grafting, facilitating the following electrostatic adhesion for bi-layer electrolytes. The LBL assembly electrolytes as well as coating thickness were investigated in order to have a better optimization of the nano-coatings with the desired flame resistance properties. The morphological analysis, thermal stability, flame retardant properties of multilayer modified polyester were carried out by scanning electron microscopy (SEM) equipped with an energy dispersive spectrometer (EDS), thermogravimetry analysis (TGA), limiting oxygen index (LOI), UL-94 test, and cone calorimeter test (CCT), respectively. After the functional multilayer coated, the ignition time was delayed. Moreover, total heat release and peak heat release rate were reduced but char residues increased. Of particular significant is the melt dripping phenomena disappearance in optimum condition of (K/S)_6+(K/D)_3 hybrid LBL coatings with LOI value of 36% and V-0 rating in UL-94 test. The analysis of SEM, fourier transform infrared spectrometer (FITR) and X-ray photoelectron spectroscopy (XPS) results of the residual char indicated a compact exterior layer but multicellular structures for interior layer with thermodynamically stability SiO_2, which was served as a barricade shield to protect the underlaying polymer matrix during the combustion process. This suggested that both condensed-phase and gas-phase flame-retardancy made contributions to the flame retardant mechanism. The synergistic effect of hybrid LBL multilayer surface could impart polyester fabrics with high fire retardancy and non-dripping performance.
机译:旨在实现抗滴水和改善聚酯织物的阻燃性,新型杂交多层纳米涂层由γ-氨基丙基三乙氧基硅烷(KH-550),基于生物的β磺丁基醚钠(SBE-β-CD)和[(6 - 通过层 - 自组装(LBL)方法成功构建 - 氧化氢-6H-二苯脲 - [C,E]氧磷素-6-Y1)甲基]丁二酸(DDP)。将聚丙烯酸(PAA)层首先通过UV接枝沉积在聚酯织物上,促进了对双层电解质的以下静电粘合。研究了LBL组装电解质以及涂层厚度,以便能够更好地优化具有所需的阻燃性能的纳米涂层。通过扫描电子显微镜(SEM),通过配备有能量分散光谱仪(EDS),热重率分析(TGA),限制氧指数(LOI),UL-94,通过扫描电子显微镜(SEM)来进行多层改性聚酯的形态分析试验和锥形量热计测试(CCT)。在功能性多层涂覆后,点火时间延迟。此外,还降低了总热释放和峰值热释放速率,但炭残余量增加。特别重要的是熔体滴水现象在最佳条件下消失(k / s)_6 +(k / d)_3杂交Lbl涂层,Loi值为UL-94试验中的oy值为36%和V-0等级。傅立叶变换红外光谱仪(FITR)和X射线光电子谱(X射线光电子光谱(XPS)的分析表明了一种紧凑的外层,但具有热力学稳定性SiO_2的内层的多细胞结构,其用作路障屏蔽在燃烧过程中保护底层聚合物基质。这表明凝聚相和气相阻燃性对阻燃机制作出贡献。杂交LBL多层表面的协同效应可以赋予高阻燃性和非滴落性能的聚酯织物。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2021年第1期|109405.1-109405.12|共12页
  • 作者单位

    Materials Design & Engineering Department Beijing Institute of Fashion Technology Beijing 100029 China Beijing Key Laboratory of Clothing Materials R&D and Assessment Beijing Engineering Research Center of Textile Nanofiber Beijing Institute of Fashion Technology Beijing 100029 China;

    Materials Design & Engineering Department Beijing Institute of Fashion Technology Beijing 100029 China Beijing Key Laboratory of Clothing Materials R&D and Assessment Beijing Engineering Research Center of Textile Nanofiber Beijing Institute of Fashion Technology Beijing 100029 China;

    Materials Design & Engineering Department Beijing Institute of Fashion Technology Beijing 100029 China;

    Materials Design & Engineering Department Beijing Institute of Fashion Technology Beijing 100029 China;

    Materials Design & Engineering Department Beijing Institute of Fashion Technology Beijing 100029 China Beijing Key Laboratory of Clothing Materials R&D and Assessment Beijing Engineering Research Center of Textile Nanofiber Beijing Institute of Fashion Technology Beijing 100029 China;

    Madrid Institute for Advanced Studies of Materials Madrid 28906 Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flame retardant; Anti-dripping; Layer-by-layer self assembly; UV-grafting; Polyester fabrics;

    机译:不易燃的;反滴;逐层自组装;紫外线嫁接;涤纶织物;

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