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Expanded polystyrene foams containing ammonium polyphosphate and nano-zirconia with improved flame retardancy and mechanical properties

机译:包含多磷酸铵和纳米氧化锆的发泡聚苯乙烯泡沫,具有改善的阻燃性和机械性能

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摘要

Expanded polystyrene (EPS) foams were flame retarded using ammonium polyphosphate (APP) and nano-zirconia (nano-ZrO2) by means of phenolic resin as a binder. It is found that the incorporation of a small amount (5 phr) of nano-ZrO2 into the APP flame-retarded EPS foams leads to 19% increase in flexural strength and 38% increase in compressive strength. Flame-retardant properties of the flame-retarded EPS foams were investigated by limiting oxygen index (LOI), UL-94 and cone calorimetry test (CCT). The LOI of the APP flame-retarded EPS foams in presence of nano-ZrO2 is above 31%, and the UL 94 V-0 rating can be reached. The CCT test results indicate that the APP flame-retarded EPS foams containing nano-ZrO2 have lower peak heat release rate, average effective heat of combustion and average specific extinction area. Moreover, thermal decomposition of the flame-retarded EPS foams was investigated by thermogravimetric analysis (TGA) and the TGA results illustrated clearly that the addition of nano-ZrO2 into the APP flame-retarded EPS foams leads to an increase in the residual char yield. The reason for the increase is possibly because ZrO2 may react during combustion process with pyrophosphoric acid produced from the thermal decomposition of APP to form zirconium pyrophosphate (ZrP2O7) confirmed by XRD studies of the char, which is helpful to improve the formation of the char. The XPS results showed that the ratio of oxidized carbons in the char increases with the presence of nano-ZrO2.
机译:使用聚磷酸铵(APP)和纳米氧化锆(nano-ZrO2)通过酚醛树脂作为粘合剂对膨胀聚苯乙烯(EPS)泡沫进行阻燃处理。发现将少量(5phr)的纳米ZrO 2掺入APP阻燃的EPS泡沫中导致抗弯强度增加了19%,抗压强度增加了38%。通过极限氧指数(LOI),UL-94和锥形量热试验(CCT)研究了阻燃EPS泡沫的阻燃性能。在存在纳米ZrO2的情况下,APP阻燃EPS泡沫的LOI高于31%,可以达到UL 94 V-0等级。 CCT测试结果表明,含有纳米ZrO2的APP阻燃EPS泡沫具有较低的峰值放热速率,平均有效燃烧热和平均比消光面积。此外,通过热重分析(TGA)研究了阻燃EPS泡沫的热分解,TGA结果清楚地表明,将纳米ZrO2添加到APP阻燃EPS泡沫中会导致残炭产率的增加。增加的原因可能是因为在燃烧过程中ZrO2可能与APP的热分解产生的焦磷酸反应生成焦磷酸锆(ZrP2O7),焦炭的XRD研究证实了焦磷酸锆,这有助于改善焦炭的形成。 XPS结果表明,炭中氧化碳的比例随纳米ZrO2的存在而增加。

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