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首页> 外文期刊>Journal of thermal analysis and calorimetry >Synergistic effects of mono-component intumescent flame retardant grafted with carbon black on flame retardancy and smoke suppression properties of epoxy resins
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Synergistic effects of mono-component intumescent flame retardant grafted with carbon black on flame retardancy and smoke suppression properties of epoxy resins

机译:单组分膨胀阻燃剂与炭黑嫁接碳黑色的协同作用对环氧树脂的阻燃性和烟雾抑制性能

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摘要

A mono-component intumescent flame retardant named pentaerythritol phosphate melamine salt (PPMS) was grafted on the surface of carbon black (CB) to obtain PPMS-grafted CB (PPMS-CB). The obtained PPMS-CB was well characterized and then incorporated into epoxy resins (EPs) to investigate flame retardancy and smoke suppression properties. Thermo-gravimetric analysis indicates that the synergism between PPMS and CB could improve the char-forming ability of EP composites. Limiting oxygen index (LOI) and UL94 vertical burning tests reveal that EP composite with 15 mass% PPMS-CB achieves a LOI value of 26.2% and passes the UL94 V-1 rating, while the same addition of PPMS only achieves a UL94 V-2 rating and LOI value of 22.7%. Cone calorimeter and smoke density tests show that the incorporation of PPMS-CB obviously decreases the heat release and smoke production of EPs, for example, 66.9% reduction in peak heat release rate, 54.3% reduction in peak smoke production rate and 36.5% reduction in smoke density rating, are observed in the case of EP composite with 15 mass% PPMS-CB. The excellent performance of EP/PPMS-CB composites can be ascribed to the formation of more cross-linking structures containing N and P in the condensed phase, thus producing a more compact and continuous char that acts as a thermally stable barrier against the heat and mass transfer. Overall, the chemical combination of PPMS and CB provides a new approach to develop highly efficient mono-component intumescent flame retardant and corresponding super flame-retarded polymer materials.
机译:将一个单组分膨胀醇磷酸三聚氰胺盐(PPMS)的单组分膨胀醇阻燃剂接枝在炭黑(CB)表面上,得到PPMS接枝CB(PPMS-CB)。所获得的PPMS-CB具有很好的表征,然后将其掺入环氧树脂(EPS)中以研究阻燃性和烟雾抑制性能。热重分析表明PPMS和CB之间的协同作用可以改善EP复合材料的炭形成能力。限制氧气指数(LOI)和UL94垂直燃烧试验显示,具有15质量%PPMS-CB的EP复合材料达到了26.2%的LOI值,并通过了UL94 V-1等级,而同样的PPMS仅实现UL94 V- 2评级和LOI值为22.7%。锥形量热表和烟雾密度测试表明,PPMS-CB的掺入明显降低了EPS的热释放和烟雾产生,例如,峰值热释放率降低66.9%,降低峰值烟雾生产率降低54.3%,减少36.5%在具有15质量%PPMS-CB的EP复合材料的情况下观察到烟雾密度等级。 EP / PPMS-CB复合材料的优异性能可以归因于在冷凝相中形成含有N和P的更多交联结构,从而产生更紧凑和连续的炭,其起到热稳定的热稳定屏障和抵抗热稳定的屏障传质。总体而言,PPMS和CB的化学组合提供了一种新方法,用于开发高效的单组分膨胀阻燃剂和相应的超燃烧聚合物材料。

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