阻燃剂
聚丙烯
炭化
极限抗拉强度
材料科学
烧焦
烟雾
化学工程
硅烷
锥形量热计
可燃性
复合材料
核化学
高分子化学
化学
燃烧
有机化学
工程类
作者
Naien Zhang,Jie Zhang,Hong Yan,Xiaorong Guo,Qiang Sun,Ruijie Guo
标识
DOI:10.1016/j.jhazmat.2019.04.016
摘要
To overcome the flammability and severe dripping of polypropylene (PP), a novel organic-inorganic hybrid [email protected] (microencapsulated APP by a hyperbranched polyester (HBPE) via silane coupling agent (KH-550)) was obtained and used as a high-efficient flame retardant and smoke suppressant. Herein, HBPE acted as the charring agent for APP. 20 wt% of [email protected] imparted PP excellent flame retardancy, V-0 rating (UL-94 test) and 82.6% decrease in the peak of heat release rate (PHRR). However, PP with 25 wt% of mechanically mixed APP and HBPE achieved V-1 rating (UL-94 test) and 77.3% decrease in PHRR. That is because the direct contact and sufficient interaction between APP and HBPE gives full play to their synergy. Besides, [email protected] accelerated the formation of cross-linked POC/SiOSi/SiOC/SiOP/POΦ structures, leading to a strong and compact char layer with a result of dramatic reduction in heat release rate and smoke production. Furthermore, [email protected] was highly water-resistant and has good compatibility with PP matrix. In particular, the flame-retarded PP had similar tensile strength to pure PP and enhanced impact strength.
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