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首页> 外文期刊>Macromolecular Research >Flame Retardation Performances of Novel Aryl Cyclic Phosphorus Flame Retardants When Applied to Highly Flammable Polymers
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Flame Retardation Performances of Novel Aryl Cyclic Phosphorus Flame Retardants When Applied to Highly Flammable Polymers

机译:新型芳基环磷阻燃剂在高易燃聚合物中的阻燃性能

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A series of novel aryl cyclic phosphorus flame retardants (FR) has been synthesized in order to investigate their flame retarding performances for acrylonitrile-butadiene-styrene copolymer (ABS). They were synthesized in an attempt to obtain UL-94 V-0 rating when added to ABS as a single component FR. The fire behaviors and thermal stabilities of these compounds were investigated by micro calorimeter, thermogravimetric analysis (TGA), and Fourier transform infrared spectroscopy (FTIR). V-0 ratings are achieved at 20-30 wt% loadings of FR. FTIR results reveal that a part of the combusted phosphorus compound generates phosphorus volatiles, which are radical capturing species and actively quench the flame. The rest of the phosphorus compounds which are not volatile contribute to the formation of the residual char, which acts as a barrier layer protecting the intact portion of the ABS/FR mixture from further combustion. The evidence of interaction between FR and ABS can be obtained by observing the difference in the thermal behaviors of experimental determined and the calculated TGA thermograms. The presence of FR enhances the thermal stability significantly as well as decreases the peak heat release rate (PHRR) and total heat release (THR). This suggests that there is a considerable amount of contribution from the condensed phase action of FR although the gas phase action is dominant.
机译:为了研究其对丙烯腈-丁二烯-苯乙烯共聚物(ABS)的阻燃性能,已经合成了一系列新型的芳基环磷阻燃剂(FR)。当将它们作为单组分FR加入ABS时,试图合成它们以获得UL-94 V-0等级。通过微热量计,热重分析(TGA)和傅里叶变换红外光谱(FTIR)研究了这些化合物的燃烧行为和热稳定性。 V-0额定值是在FR负载量为20-30 wt%时达到的。 FTIR结果表明,燃烧的磷化合物的一部分会产生磷挥发物,这些挥发物是自由基捕获物质,可以有效地熄灭火焰。其余的非挥发性磷化合物有助于形成残留的炭,将其用作保护ABS / FR混合物完整部分免受进一步燃烧的阻挡层。 FR和ABS之间相互作用的证据可以通过观察实验确定的热行为和计算的TGA热分析图的热行为差异来获得。 FR的存在显着提高了热稳定性,并降低了峰值放热速率(PHRR)和总放热(THR)。这表明尽管气相作用占主导,但FR的冷凝相作用有相当大的贡献。

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