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首页> 外文期刊>Journal of thermal analysis and calorimetry >Difunctional effects of [Bmim][DBP] on curing process and flame retardancy of epoxy resin
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Difunctional effects of [Bmim][DBP] on curing process and flame retardancy of epoxy resin

机译:[BMIM]β[DBP]对环氧树脂固化过程和阻燃性的双官能效应

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摘要

To optimize the curing process and improve the flame retardancy of epoxy resin, 1-butyl-3-methylimidazolium dibutyl phosphate ([Bmim][DBP]) was used as a functional additive. In this study, [Bmim][DBP] was firstly blended into epoxy resin through a curing process. Then, the effect of [Bmim][DBP] on curing process was investigated using differential scanning calorimetry. The flame retardancy of modified epoxy resin was classified using the limit oxygen index and vertical burning test. The thermal decomposition behavior was investigated through a thermogravimetry. Finally, the Fourier transform infrared spectrometer and scanning electron microscopy were used to characterize the microstructures. Results revealed that [Bmim][DBP] has the potential for use as a flame-retardant hardener of epoxy resin. Moreover, the curing process of epoxy resin was found to be optimized when diethylenetriamine cooperated with [Bmim][DBP]. Similarly, the flame retardancy of epoxy resin was further improved when ammonium polyphosphate cooperated with [Bmim][DBP]. Furthermore, the thermal decomposition behavior of epoxy resin was relatively advanced by adding [Bmim][DBP]. In conclusion, [Bmim][DBP] could be used as a difunctional additive to optimize the curing process and flame retardancy simultaneously. Particularly, an optimal concentration of [Bmim][DBP] was proposed to be 1.5-2.0mass%.
机译:为了优化固化过程和提高环氧树脂的阻燃性,1-丁基-3-甲基咪唑的磷酸二丁酯([BMIM] [DBP])被用作一个功能性添加剂。在这项研究中,[BMIM] [DBP]是首先通过一个固化工艺混入环氧树脂。然后,效果[BMIM] [DBP]上固化过程,使用差示扫描量热分析。改性环氧树脂的阻燃性是使用极限氧指数和垂直燃烧试验分类。热分解行为通过热重分析。最后,傅立叶变换红外光谱仪和扫描电子显微镜来表征微结构。结果表明,[BMIM] [DBP]具有用作环氧树脂的阻燃固化剂的潜力。此外,发现环氧树脂的固化过程时与二亚乙基三[BMIM] [DBP]合作进行优化。类似地,当多磷酸铵与[BMIM] [DBP]合作环氧树脂的阻燃性进一步提高。此外,环氧树脂的热分解行为通过加入[BMIM] [DBP]被相对提前。总之,[BMIM] [DBP]可以用作双官能添加剂同时优化固化过程和阻燃性。具体地,[BMIM]提出[DBP]的最佳浓度为1.5-2.0mass%。

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