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黏土作为聚氨酯泡沫塑料可燃性的抑制剂

Clays as Inhibitors of Polyurethane Foams' Flammability.

作者信息

Hejna Aleksander

机构信息

Department of Polymer Technology, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdańsk, Poland.

出版信息

Materials (Basel). 2021 Aug 25;14(17):4826. doi: 10.3390/ma14174826.

Abstract

Polyurethanes are a very important group of polymers with an extensive range of applications in different branches of industry. In the form of foams, they are mainly used in bedding, furniture, building, construction, and automotive sectors. Due to human safety reasons, these applications require an appropriate level of flame retardance, often required by various law regulations. Nevertheless, without the proper modifications, polyurethane foams are easily ignitable, highly flammable, and generate an enormous amount of smoke during combustion. Therefore, proper modifications or additives should be introduced to reduce their flammability. Except for the most popular phosphorus-, halogen-, or nitrogen-containing flame retardants, promising results were noted for the application of clays. Due to their small particle size and flake-like shape, they induce a "labyrinth effect" inside the foam, resulting in the delay of decomposition onset, reduction of smoke generation, and inhibition of heat, gas, and mass transfer. Moreover, clays can be easily modified with different organic compounds or used along with conventional flame retardants. Such an approach may often result in the synergy effect, which provides the exceptional reduction of foams' flammability. This paper summarizes the literature reports related to the applications of clays in the reduction of polyurethane foams' flammability, either by their incorporation as a nanofiller or by preparation of coatings.

摘要

聚氨酯是一类非常重要的聚合物,在不同工业领域有着广泛的应用。以泡沫形式存在时,它们主要用于床上用品、家具、建筑、施工和汽车行业。出于人类安全原因,这些应用需要达到适当的阻燃水平,这通常是各种法律法规所要求的。然而,未经适当改性的聚氨酯泡沫很容易点燃,高度易燃,并且在燃烧过程中会产生大量烟雾。因此,应引入适当的改性方法或添加剂以降低其可燃性。除了最常用的含磷、卤素或氮的阻燃剂外,粘土的应用也取得了有前景的成果。由于其粒径小且呈片状,它们在泡沫内部引发“迷宫效应”,导致分解起始延迟、烟雾生成减少以及热、气体和质量传递受到抑制。此外,粘土可以很容易地用不同有机化合物改性,或与传统阻燃剂一起使用。这种方法通常会产生协同效应,从而显著降低泡沫的可燃性。本文总结了有关粘土在降低聚氨酯泡沫可燃性方面的应用的文献报道,包括将其作为纳米填料掺入或制备涂层的应用。

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