首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal behavior and flammability of epoxy/glass fiber composites containing clay and decabromodiphenyl oxide
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Thermal behavior and flammability of epoxy/glass fiber composites containing clay and decabromodiphenyl oxide

机译:含粘土和十溴二苯醚的环氧/玻璃纤维复合材料的热性能和可燃性

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摘要

Epoxy/glass fiber hybrid composites with organo-montmorillonite (OMMT) and decabromodiphenyl oxide (DBDPO) flame retardants were prepared by vacuum-assisted resin infusion technique. The effects of OMMT and DBDPO on the flammability properties of epoxy/glass fiber hybrid composites were evaluated through UL-94 vertical flammability test and limiting oxygen index (LOI). Thermal decomposition was studied by means of thermogravimetric analyzer (TG). Field emission scanning electron microscopy (FESEM) was used to study the char morphology of the epoxy hybrid composites after being subjected to UL-94 vertical flammability test. Epoxy/glass fiber/OMMT hybrid composites with DBDPO loading of 40 wt% showed V-1 rating, whereas an increase to 50 wt% loading showed V-0 rating. The LOI values increased from 22.7 to 39.9 % as the loading of DBDPO increased. The obtained TG results showed that the thermal stability of epoxy hybrid composites decreased as the DBDPO loading increased. DBDPO decomposed at a lower temperature to form bromine radicals, which reacted with the combustible gases to form hydrogen bromide to inhibit the flame spread in the gas phase. The condensed phase activity was shown in FESEM, in which a layer of compact and continuous char was formed in epoxy/glass fiber/OMMT/DBDPO hybrid composites.
机译:采用真空辅助树脂灌注技术制备了有机蒙脱土(OMMT)和十溴二苯醚(DBDPO)阻燃剂的环氧/玻璃纤维杂化复合材料。通过UL-94垂直可燃性测试和极限氧指数(LOI)评估了OMMT和DBDPO对环氧/玻璃纤维杂化复合材料可燃性的影响。借助于热重分析仪(TG)研究热分解。场发射扫描电子显微镜(FESEM)用于研究环氧杂化复合材料经过UL-94垂直可燃性测试后的炭化形态。 DBDPO负载量为40 wt%的环氧树脂/玻璃纤维/ OMMT杂化复合材料显示V-1级,而增加到50 wt%负载显示V-0级。随着DBDPO负载的增加,LOI值从22.7%增加到39.9%。 TG结果表明,随着DBDPO用量的增加,环氧杂化复合材料的热稳定性降低。 DBDPO在较低的温度下分解形成溴自由基,该溴自由基与可燃气体反应生成溴化氢,从而抑制了火焰在气相中的扩散。 FESEM显示了凝结相的活性,其中在环氧/玻璃纤维/ OMMT / DBDPO杂化复合材料中形成了一层致密且连续的炭层。

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