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防火聚合物复合材料:纳米填料的阻燃效果

Fire-Safe Polymer Composites: Flame-Retardant Effect of Nanofillers.

作者信息

Kim Yukyung, Lee Sanghyuck, Yoon Hyeonseok

机构信息

R&D Laboratory: Korea Fire Institute, 331 Jisam-ro, Giheung-gu, Yongin-si, Gyeonggi-do 17088, Korea.

Department of Polymer Engineering, Graduate School, Chonnam National University, 77 Yongbong-ro, Buk-gu, Gwangju 61186, Korea.

出版信息

Polymers (Basel). 2021 Feb 12;13(4):540. doi: 10.3390/polym13040540.

Abstract

Currently, polymers are competing with metals and ceramics to realize various material characteristics, including mechanical and electrical properties. However, most polymers consist of organic matter, making them vulnerable to flames and high-temperature conditions. In addition, the combustion of polymers consisting of different types of organic matter results in various gaseous hazards. Therefore, to minimize the fire damage, there has been a significant demand for developing polymers that are fire resistant or flame retardant. From this viewpoint, it is crucial to design and synthesize thermally stable polymers that are less likely to decompose into combustible gaseous species under high-temperature conditions. Flame retardants can also be introduced to further reinforce the fire performance of polymers. In this review, the combustion process of organic matter, types of flame retardants, and common flammability testing methods are reviewed. Furthermore, the latest research trends in the use of versatile nanofillers to enhance the fire performance of polymeric materials are discussed with an emphasis on their underlying action, advantages, and disadvantages.

摘要

目前,聚合物正在与金属和陶瓷竞争,以实现包括机械和电气性能在内的各种材料特性。然而,大多数聚合物由有机物组成,这使得它们易受火焰和高温条件的影响。此外,由不同类型有机物组成的聚合物燃烧会产生各种气体危害。因此,为了将火灾损失降至最低,对开发耐火或阻燃聚合物的需求显著增加。从这个角度来看,设计和合成在高温条件下不太可能分解成可燃气体物质的热稳定聚合物至关重要。也可以引入阻燃剂来进一步增强聚合物的防火性能。在这篇综述中,对有机物的燃烧过程、阻燃剂类型和常见的可燃性测试方法进行了综述。此外,还讨论了使用多功能纳米填料提高聚合物材料防火性能的最新研究趋势,重点介绍了它们的潜在作用、优点和缺点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0368/7918670/dbb156ec0059/polymers-13-00540-g001.jpg

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