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基于刚性异氰酸酯的聚酰亚胺泡沫材料通过可膨胀石墨与含磷多元醇之间的协同作用实现了优异的使用安全性。

Fabrication of Rigid Isocyanate-Based Polyimide Foam Achieved Excellent Use Safety via Synergy between Expandable Graphite and Phosphorus-Containing Polyol.

作者信息

Zhang Junhe, Liu Yingze, Fu Xin, Wang Ting, Sun Gaohui, Zhang Xu, Han Shihui

机构信息

College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin 150001, China.

Wuhan Second Ship Design and Research Institute, Wuhan 430064, China.

出版信息

Polymers (Basel). 2023 Mar 10;15(6):1381. doi: 10.3390/polym15061381.

Abstract

For the advantages of low cost, excellent thermal insulation, and sound absorption properties, the rigid isocyanate-based polyimide foam (RPIF) presents great application prospects as a building insulation material. However, its inflammability and the accompanying toxic fumes create huge safety hazard. In this paper, reactive phosphate-containing polyol (PPCP) is synthesized and employed with expandable graphite (EG) to obtain RPIF with excellent use safety. EG can be considered as an ideal partner for PPCP to weaken the drawbacks in toxic fume release. Limiting oxygen index (LOI), cone calorimeter test (CCT), and toxic gas results show that the combination of PPCP and EG can synergistically enhance flame retardancy and the use safety of RPIF owing to the unique structure of a dense char layer possessing a flame barrier and toxic gas adsorption effects. When EG and PPCP are simultaneously applied to the RPIF system, the higher EG dosage will bring higher positive synergistic effects in the use safety of RPIF. The most preferred ratio of EG and PPCP is 2:1 (RPIF-10-5) in this study; RPIF-10-5 shows the highest LOI, low CCT results and specific optical density of smoke, and low HCN concentration. This design and the findings are of great significance to improving the application of RPIF.

摘要

由于具有低成本、优异的隔热和吸音性能等优点,硬质异氰酸酯基聚酰亚胺泡沫(RPIF)作为一种建筑保温材料具有广阔的应用前景。然而,其易燃性以及伴随产生的有毒烟雾带来了巨大的安全隐患。本文合成了含反应性磷多元醇(PPCP),并将其与可膨胀石墨(EG)一起用于制备具有优异使用安全性的RPIF。EG可被视为PPCP的理想搭档,以减轻有毒烟雾释放方面的缺点。极限氧指数(LOI)、锥形量热仪测试(CCT)和有毒气体测试结果表明,由于具有火焰阻隔和有毒气体吸附作用的致密炭层的独特结构,PPCP和EG的组合可以协同提高RPIF的阻燃性和使用安全性。当EG和PPCP同时应用于RPIF体系时,较高的EG用量将在RPIF的使用安全性方面带来更高的正协同效应。本研究中EG和PPCP的最优选比例为2:1(RPIF-10-5);RPIF-10-5显示出最高的LOI、较低的CCT结果和烟雾比光密度,以及较低的HCN浓度。这种设计和研究结果对于改善RPIF的应用具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a100/10052713/94262973416b/polymers-15-01381-sch001.jpg

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