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Intrinsically flame retardant epoxy resin — Fire performance and background — Part I

机译:本质上阻燃的环氧树脂—防火性能和背景—第一部分

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The flame retardant effect of newly synthesized phosphorus-containing reactive amine, which can be used both as crosslinking agent in epoxy resins and as a flame retardant, was investigated. The effect of montmorillonite and sepiolite additives on the fire induced degradation was compared to pristine epoxy resin. The effect of combining the organophosphorous amine with clay minerals was also studied. It could be concluded that the synthesized phosphorus-containing amine, TEDAP can substitute the traditional epoxy resin curing agents providing additionally excellent flame retardancy: the epoxy resins flame retarded this way reach 960℃ GWFI value, 33 LOI value and V-0 UL-94 rating — compared to the 550 ℃ GWFI value, 21 LOI value and "no rate" UL-94 classification of the reference epoxy resin. The peak of heat release was reduced to 1/10 compared to non-flame retarded resin, furthermore a shift in time was observed, which increases the time to escape in case of fire. The flame retardant performance can be further improved by incorporating clay additives: the LOI and the HRR results showed that the optimum of flame retardant effect of clay additives is around 1 mass% filler level in AH-16—TEDAP system. Applying a complex method for mechanical and structural characterization of the intumescent char it was determined that the flame retarded system forms significantly more and stronger char of better uniformity with smaller average bubble size. Incorporation of clay additives (owing to their bubble nucleating activity) results in further decrease in average bubble diameter.
机译:研究了新合成的含磷活性胺的阻燃效果,该胺既可以用作环氧树脂中的交联剂,又可以用作阻燃剂。将蒙脱石和海泡石添加剂对火引起的降解的影响与原始环氧树脂进行了比较。还研究了有机磷胺与粘土矿物结合的效果。可以得出结论,合成的含磷胺TEDAP可以替代传统的环氧树脂固化剂,从而提供额外的出色阻燃性:以这种方式阻燃的环氧树脂达到960℃GWFI值,33 LOI值和V-0 UL-94额定值—相对于550℃GWFI值,21 LOI值和“无速率”参考环氧树脂的UL-94分类。与非阻燃树脂相比,放热的峰值降低到1/10,此外还观察到时间的变化,这增加了发生火灾时的逃生时间。通过掺入粘土添加剂可以进一步提高阻燃性能:LOI和HRR结果表明,在AH-16-TEDAP体系中,粘土添加剂的最佳阻燃效果约为1质量%的填料含量。应用一种复杂的方法对膨胀型炭进行机械和结构表征,可以确定,阻燃体系形成的炭明显更多,强度更高,均匀性更好,平均气泡尺寸更小。掺入粘土添加剂(由于其气泡成核活性)导致平均气泡直径进一步减小。

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