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Flame Retardancy of Sorbitol Based Bioepoxy via Combined Solid and Gas Phase Action

机译:基于固相和气相联合作用的山梨醇基生物环氧的阻燃性

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摘要

Flame-retarded bioepoxy resins were prepared with the application of commercially available sorbitol polyglycidyl ether (SPE). The additive-type flame retardancy of the cycloaliphatic amine-cured SPE was investigated. Three-percent phosphorus (P)-containing samples were prepared with the application of the liquid resorcinol bis(diphenyl phosphate) (RDP), the solid ammonium polyphosphate (APP), and by combining them. Synergistic effect was found between the inorganic APP and the organophosphorus RDP, when applied in combination: formulations applying RDP or APP alone showed increased limiting oxygen index (LOI) values, however, their UL-94 standard ratings remained HB. When the same amount of P originated from the two additives, V-0, self-extinguishing rating and LOI value of 34% (v/v) was reached. By the combined approach the heat release rate of SPE could be lowered by approximately 60%. The assumed balanced solid and gas phase mechanism was confirmed by thermogravimetric analysis, Fourier transform infrared spectrometry (FTIR) analysis (of the gases formed during laser pyrolysis), attenuated total reflection-infrared spectrometry (ATR-IR) analysis (of the charred residues), as well as by mechanical testing (of the char obtained after combustion).
机译:使用市售的山梨糖醇聚缩水甘油醚(SPE)制备阻燃的生物环氧树脂。研究了脂环族胺固化SPE的加合型阻燃性。通过使用液体间苯二酚双(磷酸二苯酯)(RDP),固体多磷酸铵(APP)并混合将其制备成含磷量为3%的样品。组合使用时,在无机APP和有机磷RDP之间发现了协同作用:单独使用RDP或APP的配方显示极限氧指数(LOI)值增加,但是其UL-94标准等级仍为HB。当来自两种添加剂V-0的P含量相同时,可达到自熄性,LOI值为34%(v / v)。通过组合方法,固相萃取的放热率可以降低约60%。通过热重分析,傅立叶变换红外光谱(FTIR)分析(激光热解过程中形成的气体),衰减全反射红外光谱(ATR-IR)分析(烧焦的残留物)确认了假定的固相和气相平衡机理。 ,以及通过机械测试(燃烧后获得的炭)。

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