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Improving flame retardancy of linear low-density polyethyleneylon 6 blends via controlling localization of clay and intumescent flame- retardant

机译:通过控制粘土和膨胀型阻燃剂的位置来提高线性低密度聚乙烯/尼龙6共混物的阻燃性

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摘要

Four processing methods were employed to control the localization of intumescent flame-retardant (IFR) and clay in linear low-density polyethyleneylon 6 (LLDPE/PA6) blends and the effect of IFR and clay localization in blends on flame retardancy was investigated. The results obtained from the LOI and UL-94 tests showed that the flame retardancy in the blends with clay localization in the LLDPE phase was better than that of the blends with clay localization in the PA6 phase. Cone calorimeter test results demonstrated that IFR localization in the PA6 phase caused lower peak heat release rate (PHHR) than in the LLDPE phase. The combined effect resulted in the best flame retardancy exhibited in the blends with localization of IFR in the PA6 phase and clay in the LLDPE phase in comparison with the blends with other localization of IFR and clay. Scanning electron microscopy showed that clay localization in the LLDPE phase and IFR localization in the PA6 phase promoted the formation of an integrated and highly expansive char layer. It is believed the results of the study provide the references for optimizing the flame retardancy of polymer blends. (C) 2018 Elsevier Ltd. All rights reserved.
机译:采用四种加工方法来控制线性低密度聚乙烯/尼龙6(LLDPE / PA6)共混物中膨胀型阻燃剂(IFR)和粘土的定位,并研究了IFR和共混物中粘土的定位对阻燃性的影响。从LOI和UL-94测试获得的结果表明,在LLDPE相中具有粘土局限性的共混物的阻燃性比在PA6相中具有粘土局限性的共混物的阻燃性更好。锥形量热仪测试结果表明,IFR在PA6相中的定位引起的峰值放热率(PHHR)比LLDPE相更低。与具有IFR和粘土的其他局部混合的共混物相比,组合效果导致在PA6相中IFR的局部存在和在LLDPE相中的粘土的共混物中表现出最佳的阻燃性。扫描电子显微镜显示,LLDPE相中的粘土局部化和PA6相中的IFR局部化促进了集成且高度膨胀的炭层的形成。相信研究结果为优化聚合物共混物的阻燃性提供了参考。 (C)2018 Elsevier Ltd.保留所有权利。

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