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Surface-Engineered Fire Protective Coatings for Fabrics through Sol-Gel and Layer-by-Layer Methods: An Overview

机译:通过溶胶-凝胶法和逐层方法对织物进行表面工程设计的防火涂料:概述

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摘要

Fabric flammability is a surface-confined phenomenon: in fact, the fabric surface represents the most critical region, through which the mass and heat transfers, responsible for fueling the flame, are controlled and exchanged with the surroundings. More specifically, the heat the fabric surface is exposed to is transferred to the bulk, from which volatile products of thermal degradation diffuse toward the surface and the gas phase, hence feeding the flame. As a consequence, the chemical and physical characteristics of the fabric surface considerably affect the ignition and combustion processes, as the surface influences the flux of combustible volatile products toward the gas phase. In this context, it is possible to significantly modify (and improve) the fire performance of textile materials by “simply” tailoring their surface: currently, one of the most effective approaches exploits the deposition of tailored coatings able to slow down the heat and mass transfer phenomena occurring during the fire stages. This paper reviews the current state of the art related to the design of inorganic, hybrid, or organic flame-retardant coatings suitable for the fire protection of different fabric substrates (particularly referring to cotton, polyester, and their blends). More specifically, the use of sol-gel and layer-by-layer (LbL) methods is thoroughly discussed; then, some recent examples of flame retardant coatings are presented, showing their potential advances and their current limitations.
机译:织物的可燃性是一种受表面限制的现象:实际上,织物的表面是最关键的区域,通过该区域可以控制负责燃烧火焰的质量和热量传递,并与周围环境进行交换。更具体地,织物表面所暴露的热量被传递至主体,热降解的挥发性产物从该主体向表面和气相扩散,从而供给火焰。结果,织物表面的化学和物理特性极大地影响着火和燃烧过程,因为表面影响着可燃挥发性产物向气相的通量。在这种情况下,可以通过“简单地”定制其表面来显着改变(并改善)纺织材料的防火性能:目前,最有效的方法之一是利用定制涂层的沉积来降低热量和质量。在火灾阶段发生的转移现象。本文回顾了与无机,杂化或有机阻燃涂料设计有关的最新技术,这些涂料适用于不同织物基材(特别是指棉,聚酯及其混合物)的防火。更具体地说,对溶胶-凝胶和逐层(LbL)方法的使用进行了全面的讨论。然后,介绍了一些阻燃涂料的最新实例,显示了它们的潜在进展和当前的局限性。

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