In Situ Fabricating Rigid Polyurethane Foams With Lightweight yet High‐Strength, Passive Flame‐Retardant, and Active Fire‐Fighting Properties

材料科学 聚氨酯 复合材料 复合数 阻燃剂 原位 抗弯强度 多孔性 发泡剂 三羟甲基丙烷 抗压强度 壳体(结构) 微流控 3D打印 夹层结构复合材料 防火性能 机械强度 防火 多孔介质
作者
Dandan Hu,Bin Zhang,Zhipeng Zhang,Fangsheng Huang,Guoliang Zhang,Guangzhao Zhang,Chunfeng Ma
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:36 (39)
标识
DOI:10.1002/adfm.74651
摘要

ABSTRACT In situ fabricating polyurethane foams (PUFs) have gained increasing attention as lightweight, efficient filling materials for emergency repair and construction. However, they usually exhibit the drawbacks of low mechanical properties and poor fire safety owing to their inherently porous structure. In this study, we developed novel fire‐extinguishing microcapsules (FMs) using microfluidic technology, employing poly(ethoxylated trimethylolpropane triacrylate) as the shell material to encapsulate perfluorohexanone. The FMs, serving as rigid functional additives, together with polyurethane containing a rigid‐structured phosphorus flame retardant (DM), were used to in situ fabricate unique foam composites (FM30/DPF7.5). This strategy simultaneously achieves lightweight yet high‐strength, passive flame‐retardant, and active fire‐fighting capabilities. The FM30/DPF7.5 composite exhibited outstanding compressive and flexural strengths at an expansion ratio of ≈4, showing increases of 153.2% and 294.5%, respectively, compared with pure PUFs. Moreover, FM30/DPF7.5 integrated both passive and active fire protection owing to the synergistic effects of FMs and DM. The composite could extinguish flames in a small enclosed space within 8 s. For a large space, it effectively prevented flame propagation after releasing perfluorohexanone, achieving a UL‐94 V‐0 rating. This study presents a novel approach to in situ fabricating rigid PUFs with excellent mechanical strength and outstanding fire resistance.
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