Flame‐retardant rigid polyurethane foam with a phosphorus‐nitrogen single intumescent flame retardant

阻燃剂 膨胀的 材料科学 聚氨酯 炭化 热重分析 氮气 复合材料 极限氧指数 锥形量热计 傅里叶变换红外光谱 三聚氰胺 热解 烧焦 化学工程 有机化学 化学 工程类
作者
Chao Wang,Yi‐Cheng Wu,Yingchun Li,Qian Shao,Xingru Yan,Han Cui,Zhe Wang,Zhen Liu,Zhanhu Guo
出处
期刊:Polymers for Advanced Technologies [Wiley]
卷期号:29 (1): 668-676 被引量:232
标识
DOI:10.1002/pat.4105
摘要

A phosphorous‐nitrogen intumescent flame‐retardant, 2,2‐diethyl‐1,3‐propanediol phosphoryl melamine (DPPM), was synthesized and characterized by Fourier transform infrared spectroscopy and nuclear magnetic resonance. Flame‐retardant rigid polyurethane foams (RPUFs) with DPPM (DPPM‐RPUF) as fire‐retardant additive were prepared. Scanning electron microscope (SEM) and mechanical performance testing showed that DPPM exhibited a favorable compatibility with RPUF and negligibly negative influence on the mechanical properties of RPUF. The flame retardancy of DPPM on RPUF was investigated by the limiting oxygen index (LOI), vertical burning test and cone calorimeter. The LOI of DPPM‐RPUF could reach 29.5%, and a UL‐94 V‐0 rating was achieved, when the content of DPPM was 25 php. Furthermore, the DPPM‐RPUF exhibited an outstanding water resistance that it could still obtain a V‐0 rating after water soaking. Thermogravimetric analysis showed that the residual weight of RPUF was relatively low, while the charring ability of DPPM‐RPUF was improved greatly. Real‐time Fourier transform infrared spectroscopy was employed to study the thermo‐oxidative degradation reactions of DPPM‐RPUF. The results revealed that the flame‐retardancy mechanism of DPPM in RPUF was based on the surface charred layer acting as a physical barrier, which slowed down the decomposition of RPUF and prevented the heat and mass transfer between the gas and the condensed phases.
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