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Preparation of microcellular poly(lactic acid) composites foams with improved flame retardancy

机译:微孔聚(乳酸)复合材料的制备具有改善的阻燃性的泡沫

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摘要

In this study, flame-retardant poly(lactic acid) foams with satisfactory cell structures were prepared by microcellular foaming technology using phosphorus-containing flame retardant and graphene as the charring agent. The introduction of 5-30wt% flame retardant increased the limited oxygen index value of poly(lactic acid) from 19.0 to 26.5-37.8% and simultaneously increased the foam expansion of poly(lactic acid) foams from 4.4 to 5.8-17.5. In addition, all the prepared poly(lactic acid)/flame-retardant composites passed the UL-94 V-0 rating. The addition of 0.5wt% graphene increased the limited oxygen index value of poly(lactic acid)/flame-retardant composite with flame-retardant content of 15wt% from 27.9 to 29.2%, and more graphene additions improved the antidripping behavior of poly(lactic acid) composites. The possible mechanisms of the effects of the resultant cellular structure on the flame-retardant properties of poly(lactic acid) composites were also discussed.
机译:本研究以含磷阻燃剂和石墨烯为炭化剂,采用微孔发泡技术制备了具有良好孔结构的阻燃聚乳酸泡沫。5-30wt%阻燃剂的引入将聚乳酸的极限氧指数从19.0增加到26.5-37.8%,同时将聚乳酸泡沫的泡沫膨胀率从4.4增加到5.8-17.5。此外,所有制备的聚乳酸/阻燃复合材料均通过UL-94 V-0评级。石墨烯含量为0.5wt%时,阻燃剂含量为15wt%的聚乳酸/阻燃复合材料的极限氧指数从27.9%提高到29.2%,石墨烯含量越多,复合材料的抗撕裂性能越好。还讨论了合成的胞状结构对聚乳酸复合材料阻燃性能影响的可能机制。

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