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首页> 外文期刊>Journal of Applied Polymer Science >Effect of quasi-nanometer zirconium carbide on the physical characterization of zirconium carbide/polyurethane composite films irradiated under ultraviolet light
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Effect of quasi-nanometer zirconium carbide on the physical characterization of zirconium carbide/polyurethane composite films irradiated under ultraviolet light

机译:准纳米碳化锆对紫外光下碳化锆/聚氨酯复合薄膜物理表征的影响

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摘要

We used quasi-manometer zirconium carbide (ZrC) and a polyurethane (PU) resin under roller pressure to form a composite film and found that the tensile strength at break, elongation at break, and modulus gradually decreased with increasing ultraviolet (UV)-irradiation time for films of both PU and the PU/ZrC composite. However, this phenomenon was significantly higher for the PU film than for the ZrC/PU composite film. The construction of the PU film changed after UV irradiation, but that of the PU/ ZrC composite film was almost unchanged. The degradation of PU molecules occurred in the absence of ZrC particles after irradiation with UV light but almost did not occur in the presence of ZrC particles. This was confirmed with Fourier transform infrared spectroscopy and gel permeation chromatography analyses. It was suggested that polymer radicals which formed through the photooxidation of UV irradiation and free radicals which formed through the photoreduction of nanometer ZrC/UV irradiation interacted to form a dead polymer to stop the degradation; simultaneously, the chemical bonding between polymer molecules could be re-formed from free radicals created by photooxidation and photoreduction and thus reduce the mobility of PU molecules, thereby raising the glass-transition and melting temperatures of the soft segment. (c) 2006 Wiley Periodicals, Inc.
机译:我们使用准压力计碳化锆(ZrC)和聚氨酯(PU)树脂在辊压下形成复合膜,发现随着紫外线(UV)辐射的增加,断裂拉伸强度,断裂伸长率和模量逐渐降低PU和PU / ZrC复合膜的时间。但是,PU膜的这种现象明显高于ZrC / PU复合膜。在紫外线照射后,PU膜的结构发生了变化,但PU / ZrC复合膜的结构几乎没有变化。在用紫外线照射后,在不存在ZrC颗粒的情况下,PU分子发生降解,但在存在ZrC颗粒的情况下,几乎没有发生PU分子的降解。傅立叶变换红外光谱和凝胶渗透色谱分析证实了这一点。建议通过紫外线辐照的光氧化形成的聚合物自由基和通过纳米ZrC /紫外线辐照的光还原形成的自由基相互作用形成死聚合物以阻止降解。同时,聚合物分子之间的化学键可以由光氧化和光还原产生的自由基重新形成,从而降低了PU分子的迁移率,从而提高了软链段的玻璃化转变温度和熔融温度。 (c)2006年Wiley Periodicals,Inc.

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