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Mechanistic Study of the Flame Retardancy of Epoxy Resin With a Novel Phosphorus and Silicon-Containing Flame Retardant

机译:环氧树脂与新型磷和含硅阻燃剂阻燃性的机械研究

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摘要

An epoxy resin (EP) composite with a novel phosphorus and siliconcontaining flame retardant (9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide-polyvinylsilicone-polyphenylaminosilicone, DOPO-V-PA) was prepared in this study. From the cone calorimeter measurements, it was confirmed that the EP/DOPO-V-PA (FREP) composite had relatively better flame retardancy than pure EP. The activation energy was calculated with the Kissinger and Ozawa–Flynn–Wall methods. The results showed that the activation energies of pure EP had slightly higher values than the FREP composite in the early and middle degradation stage (conversion - 90% spaces), which indicated that the earlier degradation of the DOPO-V-PA at low temperature accelerated the degradation of the EP matrix. However, the activation energy values of the FREP were higher than those of pure EP in the final stage, which are attributed to the thermal stabilization effect of the DOPO-VPA through the promoting of EP char formation.
机译:本研究制备了一种新型含磷含硅阻燃剂(9,10-二氢-9-氧杂-10-磷菲-10-氧化物-聚硅氧烷-聚苯氨基硅氧烷,DOPO-V-PA)与环氧树脂(EP)的复合材料。通过锥形量热计测量,证实EP/DOPO-V-PA(FREP)复合材料比纯EP具有相对更好的阻燃性。活化能是用Kissinger和Ozawa-Flynn-Wall方法计算的。结果表明,纯EP在降解早期和中期(转化率-90%空间)的活化能略高于FREP复合材料,这表明DOPO-V-PA在低温下的早期降解加速了EP基体的降解。然而,在最后阶段,FREP的活化能值高于纯EP,这归因于DOPO-VPA通过促进EP成炭而产生的热稳定效应。

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