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New Biosourced Flame Retardant Agents Based on Gallic and Ellagic Acids for Epoxy Resins

机译:基于没食子酸和鞣花酸的新型生物来源的环氧树脂阻燃剂

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摘要

The aim of this work was an investigation of the ability of gallic (GA) and ellagic (EA) acids, which are phenolic compounds encountered in various plants, to act as flame retardants (FRs) for epoxy resins. In order to improve their fireproofing properties, GA and EA were treated with boric acid (to obtain gallic acid derivatives (GAD) and ellagic acid derivatives (EAD)) to introduce borate ester moieties. Thermogravimetric analysis (TGA) highlighted the good charring ability of GA and EA, which was enhanced by boration. The grafting of borate groups was also shown to increase the thermal stability of GA and EA that goes up respectively from 269 to 528 °C and from 496 to 628 °C. The phenolic-based components were then incorporated into an epoxy resin formulated from diglycidyl ether of bisphenol A (DGEBA) and isophorone diamine (IPDA) (72, 18, and 10 wt.% of DGEBA, IPDA, and GA or EA, respectively). According to differential scanning calorimetry (DSC), the glass transition temperature (T ) of the thermosets was decreased. Its values ranged from 137 up to 108 °C after adding the phenolic-based components. A cone calorimeter was used to evaluate the burning behavior of the formulated thermosets. A significant reduction of the peak of heat release rate (pHRR) for combustion was detected. Indeed, with 10 wt.% of GA and EA, pHRR was reduced by 12 and 44%, respectively, compared to that for neat epoxy resin. GAD and EAD also induced the decrease of pHRR values by 65 and 33%, respectively. In addition, a barrier effect was observed for the resin containing GAD. These results show the important influence of the biobased phenolic compounds and their boron derivatives on the fire behavior of a partially biobased epoxy resin.
机译:这项工作的目的是研究没食子酸(GA)和鞣花酸(EA)(在各种工厂中遇到的酚类化合物)作为环氧树脂的阻燃剂(FR)的能力。为了提高其防火性能,将GA和EA用硼酸处理(以获得没食子酸衍生物(GAD)和鞣花酸衍生物(EAD))以引入硼酸酯部分。热重分析(TGA)强调了GA和EA具有良好的炭化能力,硼酸化增强了炭化能力。还显示出硼酸酯基团的接枝增加了GA和EA的热稳定性,其分别从269℃升高至528℃,并且从496℃升高至628℃。然后将基于酚的组分掺入由双酚A(DGEBA)的二缩水甘油醚和异佛尔酮二胺(IPDA)(分别为DGEBA,IPDA和GA或EA的72、18和10 wt%)配制的环氧树脂中。根据差示扫描量热法(DSC),降低了热固性材料的玻璃化转变温度(T)。添加酚基成分后,其值的范围为137至108°C。锥形量热仪用于评估配制的热固性材料的燃烧行为。检测到燃烧的放热速率(pHRR)峰值显着降低。实际上,与纯环氧树脂相比,使用10%(重量)的GA和EA,pHRR分别降低了12%和44%。 GAD和EAD也分别导致pHRR值降低65%和33%。另外,对于含GAD的树脂观察到了屏障作用。这些结果表明生物基酚类化合物及其硼衍生物对部分生物基环氧树脂的燃烧行为具有重要影响。

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