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首页> 外文期刊>ACS Omega >Synergistic Effects of Flame Retardants on the Flammability and Foamability of PS Foams Prepared by Supercritical Carbon Dioxide Foaming
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Synergistic Effects of Flame Retardants on the Flammability and Foamability of PS Foams Prepared by Supercritical Carbon Dioxide Foaming

机译:阻燃剂对超临界二氧化碳发泡聚苯乙烯泡沫的可燃性和发泡性的协同作用

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摘要

Halogen-free flame-retardant polystyrene (PS) foams prepared by supercritical carbon dioxide (SC-CO2) foaming have been achieved. The flame-retardants include expandable graphite (EG) and melamine phosphate (MP), and their influence on the foamability, decomposition behavior, fire performance, and mechanical properties of PS foams were investigated. It has been shown that flame retardants can generate inert gases and catalyze the char formation from PS, and the formed thick char layer with a notable barrier property can greatly decrease the heat release of PS foams. The addition of triphenyl phosphate (TPP) or hexaphenoxycyclotriphosphazene (HPCTP), which acts as a flame-retardant plasticizer, can obviously improve the foamability and fire performance of the foams. TPP or HPCTP can generate active phosphorous species and phenoxyl radicals to enhance the gas phase flame-retardant effect; therefore, the flame-retarded PS foams (with 25 wt % MP/EG) achieve HF1 and V-0 ratings, with limiting oxygen index (LOI) values of 30.1 or 29.6%, respectively. The numerical assessment of synergistic effects of TPP and HPCTP on further enhancing flame retardancy of PS foams has been provided by the microcalorimeter (MCC) test. Further X-ray photoelectron spectroscopy (XPS) investigation on char residues of PS foams demonstrates the formation of the P–O–C and other stable structures.
机译:已经实现了通过超临界二氧化碳(SC-CO2)发泡制备的无卤阻燃聚苯乙烯(PS)泡沫。阻燃剂包括可膨胀石墨(EG)和三聚氰胺磷酸盐(MP),并研究了它们对PS泡沫的发泡性,分解行为,防火性能和机械性能的影响。已经表明,阻燃剂可以产生惰性气体并催化由PS形成的炭,并且所形成的具有显着阻隔性能的厚炭层可以大大降低PS泡沫的散热。加入磷酸三苯酯(TPP)或六苯氧基环三磷腈(HPCTP)作为阻燃增塑剂,可以明显改善泡沫的起泡性和防火性能。 TPP或HPCTP可以产生活性磷和苯氧基自由基,增强气相阻燃效果。因此,阻燃的PS泡沫(MP / EG含量为25 wt%)达到HF1和V-0等级,极限氧指数(LOI)值分别为30.1或29.6%。通过微热量计(MCC)测试,可以提供TPP和HPCTP协同作用进一步增强PS泡沫阻燃性的数值评估。进一步的PS泡沫炭残留物的X射线光电子能谱(XPS)研究表明,形成了P–OC–C和其他稳定结构。

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