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Synergistic Use of Talc in Halogen-Free Flame Retarded Polycarbonate/Acrylonitrile-Butadiene-Styrene Blends

机译:滑石在无卤阻燃聚碳酸酯/丙烯腈 - 丁二烯 - 苯乙烯混合物中的协同用途

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Pyrolysis, flammability, fire behavior, melt viscosity, and gas diffusion of bisphenol A polycarbonate/acrylonitrilebutadiene- styrene (PC/ABS) were investigated, with bisphenol A bis(diphenyl phosphate) (BDP), with 10 wt.% talc and with BDP in combination with 5, 10 and 20 wt.% talc, respectively. Compared to PC/ABS, PC/ABS + BDP results in an increased decomposition temperature of PC, a higher char yield, a significantly increased LOI, a V-0 classification in UL 94, a reduced peak heat release rate (pHRR), and a reduced total heat release (THR) in the cone calorimeter. This efficient flame retardancy is due to mechanisms in both the gas and condensed phases. PC/ABS + 10 wt.% talc shows a decrease in the PC decomposition temperature. The fire behavior is improved in part compared to PC/ABS, with an increased LOI and reduced pHRR. PC/ABS + BDP + 10 wt.% talc shows a strong synergism in LOI, a V-0 classification, and a decrease in pHRR, whereas THR is slightly increased compared to PC/ABS + BDP. Talc decreases the gas diffusion and enhances the flow limit for low shear rates, both of which influence the pyrolysis and flammability results. Further, talc improves the protection properties of the fire residues. Nevertheless it also partly suppresses flame inhibition and the charring effect of BDP. The synergism between BDP and talc in LOI is obtained even for low talc loadings in PC/ABS + BDP + talc, whereas for higher loadings saturation is observed.
机译:研究了双酚A丙烯醇/丙烯腈丁二烯 - 苯乙烯(PC / ABS)的热解,易燃性,火灾行为,熔体粘度和气体扩散,双酚A双(磷酸二苯基)(BDP)(BDP),10重量%滑石和BDP结合5,10和20重量%的滑石。与PC / ABS相比,PC / ABS + BDP导致PC的分解温度增加,较高的炭产率,LOI显着增加,UL 94中的V-0分类,降低峰热释放率(PHRR),以及锥形量热计中的总热释放(Thr)减少。这种有效的阻燃性是由于气体和凝聚相的机制。 PC / ABS + 10重量%。%滑石显示PC分解温度的降低。与PC / ABS相比,火灾行为有所改善,LOI增加和减少的PHRR。 PC / ABS + BDP + 10重量%。%滑石在LOI中显示出强烈的协同作用,V-0分类和PHRR的减少,而与PC / ABS + BDP相比,Thr略微增加。滑石降低气体扩散并增强低剪切速率的流量限制,这两者都影响热解和可燃性结果。此外,滑石可提高防火残留物的保护性能。然而,它还部分地抑制了BDP的火焰抑制和炭化效应。即使在PC / ABS + BDP +滑石中的低滑石负载,也可以获得LOI中BDP和滑石之间的协同作用,而对于更高的负载饱和度,则观察到饱和度。

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