> Melamine salt of pentaerythritol phosphate kaolin (MPPK) was synthesized by the reaction of pentaerythritol phosphate with kaolin (K) and melam'/> Manufacturing, thermal stability, and flammability properties of polypropylene containing new single molecule intumescent flame retardant
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Manufacturing, thermal stability, and flammability properties of polypropylene containing new single molecule intumescent flame retardant

机译:含有新型单分子膨胀阻燃剂的聚丙烯的制造,热稳定性和可燃性特性

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> Melamine salt of pentaerythritol phosphate kaolin (MPPK) was synthesized by the reaction of pentaerythritol phosphate with kaolin (K) and melamine. The structure of MPPK was confirmed by EDXS, 1 H NMR, FTIR, and XRD. MPPK was blended with polypropylene (PP) at different loading levels. Thermogravimetric analysis (TGA) results showed that MPPK improved the thermal stability of PP at high temperatures in all PP composites. Vertical burning rate test manifested that PP composites can achieve V0 at 20% and 25% MPPK loading levels. Cone calorimeter data exhibited that addition of 25% MPPK to PP reduced peak of heat release rate (pHRR) and total heat release (THR) by 86% and 76% and increased the char residue after test to 67%. The results of PP/25% MPPK composite were compared with the data obtained from PP containing 25% K and 25% of traditional intumescent flame retardant composed of melamine phosphate (MP), pentaerythritol (PE), and K. The outcomes indicated that MPPK was more efficient in flame retardancy than the other systems. The digital photographs and SEM images for char residue demonstrated that MPPK succeeded in forming cellular and coherent char layer on the PP surface. The main advantage of adding 25% MPPK to PP was its ability to preserve nearly the inner half of the sample without burning after cone calorimeter test.
机译: > 通过季戊四醇磷酸盐与高岭土(k)和三聚氰胺的反应合成季戊四醇磷酸磷酸盐高岭土(MPPK)的三聚氰胺盐。 MPPK的结构由EDXS确认, 1 H NMR,FTIR和XRD。在不同的负载水平下,将MPPK与聚丙烯(PP)混合。热重分析(TGA)结果表明,MPPK在所有PP复合材料中的高温下PP的热稳定性提高了PP。垂直燃烧速率测试表现出PP复合材料可以以20%和25%的MPPK装载水平达到V0。锥形量热仪数据表明,向PP加入25%的热量释放速率(PHRR)的峰值(PHRR)和总热释放(THR)的86%和76%,并在试验后将炭残余量增加至67%。将PP / 25%MPPK复合物的结果与由含有25%K和25%的传统膨胀阻燃剂获得的数据组成,由三聚氰胺磷酸酯(MP),季戊四醇(PE)和K.结果表明了MPPK在阻燃性比其他系统更有效。用于CHAR残留物的数字照片和SEM图像显示MPPK成功地在PP表面上形成蜂窝和相干炭层。将25%MPPK添加到PP的主要优点是其能够在锥形量热检测器测试后在不燃烧的情况下保持样品的几乎内半部分。

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