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首页> 外文期刊>Journal of thermal analysis and calorimetry >Flame retardant and thermal degradation properties of flame retardant thermoplastic polyurethane based on HGM@[EOOEMIm][BF4]
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Flame retardant and thermal degradation properties of flame retardant thermoplastic polyurethane based on HGM@[EOOEMIm][BF4]

机译:基于HGM的阻燃热塑性聚氨酯的阻燃和热降解性能[EOOEMIM] [BF4]

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摘要

This article mainly studies the flame retardant and thermal degradation properties of thermoplastic polyurethane (TPU) composites based on HGM@[EOOEMIm][BF4], prepared by modifying hollow glass microsphere (HGM) with ionic liquid [EOOEMIm][BF4]. The physical and chemical characteristic of HGM@[EOOEMIm][BF4] was tested by X-ray photoelectron spectroscopy and scanning electron microscope-energy-dispersive spectrometer, respectively. And then the flame retardant and thermal degradation characteristics of all TPU composites were tested using smoke density test (SDT), cone calorimeter test (CCT) and thermogravimetric/fourier transform infrared spectroscopy, etc. The SDT results showed that HGM@[EOOEMIm][BF4] can significantly decrease the amount of smoke production. The CCT revealed that HGM@[EOOEMIm][BF4] can greatly enhance the flame retardant of TPU. The peak heat release rate value decreased from 1224.0 kW m(-2) (TPU0) to 498.5 kW m(-2) (TPU/HB2). The TG test showed that HGM@[EOOEMIm][BF4] can improve the thermal stability of TPU composites and promote the char formation in the combustion process of TPU. All results confirmed that HGM@[EOOEMIm][BF4] can make a great influence on the combustion and degradation of TPU.
机译:本文主要研究了阻燃剂和热塑性聚氨酯(TPU)的热降解性能的复合物基于HGM @ [EOOEMIm] [BF4],通过修改空心玻璃微珠(HGM)用离子液体[EOOEMIm] [BF4]制备。 HGM的物理和化学特性@ [EOOEMIm] [BF4]通过X射线分别测试光电子能谱和扫描电子显微镜 - 能量色散光谱仪,。然后将阻燃剂和所有TPU复合材料的热降解特性使用烟气密度试验(SDT),锥形量热计试验(CCT)和热重/傅立叶变换红外光谱法,等。SDT结果表明,测试HGM @ [EOOEMIm] [ BF 4]可以显著降低产烟量。中建透露,HGM @ [EOOEMIm] [BF 4]可以大大提高TPU的阻燃剂。峰值放热率值从1224.0千瓦米(-2)(TPU0)至498.5千瓦米(-2)(TPU / HB2)降低。所述TG测试表明,HGM @ [EOOEMIm] [BF4]可以提高TPU复合材料的热稳定性和促进在TPU的燃烧过程中的炭的形成。所有的结果证实,HGM @ [EOOEMIm] [BF 4]可以使TPU的燃烧和降解有很大的影响。

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