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Synergistic flame retardant effect of poly(ether sulfones) and polysiloxane on polycarbonate

机译:聚醚砜和聚硅氧烷对聚碳酸酯的协同阻燃作用

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摘要

Flame retardance of bisphenol A polycarbonate (PC) was improved by the co-addition of poly (ether sulfones) (PES) and polysiloxane/acrylate copolymer (PSiA) while retaining a high rigidity and toughness. A UL 94 V-0 rating for 1.6-mm thick samples of PC/PES/PSiA blend with 10.0 wt % PES and 0.5 wt % PSiA (PC/10PES/0.5PSiA) was obtained. Its average heat release rate (av-HRR) in a cone calorimeter measurement was decreased by 19% on the basis of PC/PES blend with 10.0 wt % PES. Scanning electron microscopy (SEM) morphologies of impact-fractured surfaces revealed that the incorporation of 0.5 wt % PSiA decreased the dimensions of PES dispersed phase and provoked the uniform distribution of PES in PC matrix. Thermogravimetric-Fourier transform infrared spectroscopy analysis results revealed that PSiA dominantly promoted the degradation of PC and the degraded products were combined with PES to form a superior flame-retarded carbon layer. A higher sulfur and silicon content on the residue surface after vertical burning tests detected by SEM/energy dispersive spectrometer signified their accumulation during combustion.
机译:通过共聚聚醚醚酮(PES)和聚硅氧烷/丙烯酸酯共聚物(PSiA),可提高双酚A聚碳酸酯(PC)的阻燃性,同时保持较高的刚性和韧性。获得具有10.0 wt%PES和0.5 wt%PSiA(PC / 10PES / 0.5PSiA)的PC / PES / PSiA共混物的1.6毫米厚样品的UL 94 V-0等级。在PC / PES与10.0 wt%PES混合的基础上,其在锥形量热仪测量中的平均放热率(av-HRR)降低了19%。冲击断裂表面的扫描电子显微镜(SEM)形态表明,掺入0.5 wt%的PSiA降低了PES分散相的尺寸,并促进了PES在PC基质中的均匀分布。热重-傅立叶变换红外光谱分析结果表明,PSaA显着促进了PC的降解,降解产物与PES结合形成了一层优异的阻燃碳层。 SEM /能量分散光谱仪检测到垂直燃烧试验后,残留物表面的硫和硅含量较高,表明它们在燃烧过程中积累。

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