Quanyong Wang,Weihao Li,Lei Zhang,Jialiang Zhang,Wenjie Xiong,Yuchao Wu,Bin Song,Yuliang Mai
出处
期刊:Polymer Science Series B [Springer Nature] 日期:2020-04-03卷期号:62 (3): 306-318被引量:11
标识
DOI:10.1134/s1560090420030173
摘要
Nano-silica was modified with triazine derivative and characterized using FTIR and TGA techniques. Then the hybrid nano-silica was blended with polypropylene and intumescent flame retardant to prepare a novel intumescent flame-retardant polypropylene. Nitrogen and phosphorus elemental mapping micrographs and SEM micrographs elucidated that the hybrid nano-silica could facilitate intumescent flame retardant to disperse more uniformly in polypropylene. TGA results showed that hybrid nano-silica could improve the thermal stability of polypropylene. With 18% intumescent flame retardant and 2% hybrid nano-silica, the novel intumescent flame-retardant polypropylene got a limiting oxygen index of 29.7% and passed the vertical burning (UL-94) V-0 rating. Cone calorimeter test showed that the peak heat release rate and total heat release clearly decreased.