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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Flame retardancy mechanisms of bisphenol A bis(diphenyl phosphate) in combination with zinc borate in bisphenol A polycarbonate/acrylonitrile-butadiene-styrene blends
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Flame retardancy mechanisms of bisphenol A bis(diphenyl phosphate) in combination with zinc borate in bisphenol A polycarbonate/acrylonitrile-butadiene-styrene blends

机译:双酚A聚碳酸酯/丙烯腈-丁二烯-苯乙烯共混物中双酚A双(磷酸二苯酯)与硼酸锌结合的阻燃机理

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摘要

Bisphenol A polycarbonate/acrylonitrile-butadiene-styrene (PC/ABS) with and without bisphenol A bis(diphenyl phosphate) (BDP) and 5 wt.% zinc borate (Znb) were investigated. The pyrolysis was studied by thermogravimetry (TG), TG-FTIR and NMR, the fire behaviour with a cone calorimeter applying different heat fluxes, LOI and UL 94. Fire residues were examined with NMR. BDP affects the decomposition of PC/ABS and acts as a flame retardant in the gas and condensed phases. The addition of Znb results in an additional hydrolysis of PC. The fire behaviour is similar to PC/ABS, aside from a slightly increased LOI and a reduced peak heat release rate, both caused by borates improving the barrier properties of the char. In PC/ABS+BDP+Znb, the addition of Znb yields a borate network and amorphous phosphates. Znb also reacts with BDP to form alpha-zinc phosphate and borophosphates that suppress the original flame retardancy mechanisms of BDP. The inorganic-organic residue formed provides more effective flame retardancy, in particular at low irradiation in the cone calorimeter, and a clear synergy in LOI, whereas for more developed fires BDP+Znb become less effective than BDP in PC/ABS with respect to the total heat evolved.
机译:研究了具有和不具有双酚A双(二苯基磷酸酯)(BDP)和5重量%硼酸锌(Znb)的双酚A聚碳酸酯/丙烯腈-丁二烯-苯乙烯(PC / ABS)。通过热重分析(TG),TG-FTIR和NMR研究了热解,使用了具有不同热通量的锥形量热仪,LOI和UL 94来研究燃烧行为。通过NMR检查了燃烧残留物。 BDP影响PC / ABS的分解,并在气相和冷凝相中起阻燃剂的作用。 Znb的添加导致PC的额外水解。防火性能类似于PC / ABS,除了略微提高的LOI和降低的峰值放热速率,这两者都是由于硼酸盐改善了炭的阻隔性能而引起的。在PC / ABS + BDP + Znb中,添加Znb会产生硼酸盐网络和无定形磷酸盐。 Znb还与BDP反应形成α-磷酸锌和硼磷酸盐,从而抑制了BDP的原始阻燃机理。形成的无机有机残留物提供了更有效的阻燃性,特别是在锥形量热仪中的低辐射下,以及LOI上具有明显的协同作用,而对于更发达的火灾,BDP + Znb在PC / ABS方面的效力不如BDP。总热量散发出去。

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