Quanyong WangWeihao LiLei ZhangJialiang ZhangWenjie XiongYuchao WuBin SongYuliang Mai
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.
Cheng ZhangChunmei TanMeng ZhangRuijie GuoJ.P. TianJie ZhangHuifang WangBaolong NiuHong Yan
Merve KahramanNilgün KızılcanMehmet Ali Oral
Weiyi XingLei SongHongdian LuYuan HuShun Zhou