环氧树脂
材料科学
纳米复合材料
复合材料
固化(化学)
涂层
热导率
抗弯强度
作者
Richeng Lian,Mingyu Ou,Zexuan Zhao,Qingyao Gao,Xinliang Liu,Lei Liu,Xilei Chen,Chuanmei Jiao
标识
DOI:10.1016/j.porgcoat.2023.107750
摘要
In recent years, developing high-performance epoxy nanocomposite coatings with excellent fire safety, thermal conductivity, and mechanical performance has become a thorny challenge. Here, the multifunctional nanohybrid ([email protected]) was facilely fabricated by an electrostatic self-assembly strategy, and epoxy nanocomposite coatings based on [email protected] (EP/[email protected]) were prepared. It has been found that [email protected] nanohybrids exhibit excellent dispersion and interfacial compatibility in the epoxy matrix. Notably, the 2.0 wt% [email protected] endows the epoxy nanocomposite coating with high fire safety, with a 43.76 % reduction in peak heat release rate and a 65.99 % reduction in smoke factor compared to virgin epoxy resin (EP), respectively. Meanwhile, the thermal conductivity (increased by 21.56 %) of EP/[email protected] is enhanced. Furthermore, the flexural and impact strengths of EP/[email protected] are improved by 10.24 % and 44.73 %, respectively. Interestingly, [email protected] acts as a co-curing agent to facilitate the curing reaction of epoxy nanocoatings. This work provides a feasible strategy for designing multifunctional [email protected] epoxy nanocomposite coatings.
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