阻燃剂
材料科学
复合数
可燃性
蒙脱石
复合材料
环氧树脂
烧焦
燃烧
聚合物
聚氨酯
氢氧化物
碳纤维
防火
锥形量热计
极限氧指数
色散(光学)
碳纳米管
耐久性
纳米复合材料
化学工程
热固性聚合物
固化(化学)
作者
Qianqian Wang,Yixiao Jia,Lin Shi,Chao Gan,Yan Sun,Debin Kong,Zhichang Xiao,Qi Yang
标识
DOI:10.1021/acsanm.5c05130
摘要
Epoxy resins (EPs) are widely employed on aircrafts as load-bearing structural materials, adhesives, and sealants due to their lightweight properties and corrosion resistance. However, owing to the inherent flammability of polymer materials, EPs are typically used after appropriate flame-retardant treatments. In this work, a triple in situ composite flame retardant of layered double hydroxide (LDH), carbon nanotubes (CNTs), and montmorillonite (MMT) is achieved via a one-pot strategy. The designed LDH–CNTs-MMT facilitates uniform dispersion of flame-retardant components within the polymer matrix, effectively mitigates the mechanical performance deterioration of the EP substrate typically induced by inorganic flame retardants, and improves the flame retardancy of EP/LDH–CNTs-MMT to a V-1 level in the UL-94 test and a limited oxygen index (LOI) of 31.0%. Notably, in combustion tests, the total heat and smoke releases of EP/LDH–CNTs-MMT are, respectively, reduced by 35.12% and 37.58% compared to those of untreated EP, which is critical for aircraft fire safety. Collaborative analyses of the char residue from EP/LDH–CNTs-MMT elucidate a synergistic flame-retardant mechanism enabled by the triple in situ composited components. This work will provide insights into the design of composite flame retardants for EP, thereby expanding its practical application on airplanes.
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