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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >UV intensity, temperature and dark-curing effects in cationic photo-polymerization of a cycloaliphatic epoxy resin
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UV intensity, temperature and dark-curing effects in cationic photo-polymerization of a cycloaliphatic epoxy resin

机译:脂环族环氧树脂阳离子光聚合中的紫外线强度,温度和暗固化效应

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摘要

A difunctional cycloaliphatic epoxy monomer was cationically photo-polymerized in the presence of a diaryliodonium salt photoinitiator and an isopropyl thioxanthone photosensitizer at different temperatures and UV intensities. The photo-polymerization kinetics and structure formation were analysed using photo-DSC, IR spectroscopy and photo-rheology. An autocatalytic relation was used to model the conversion state with Arrhenius and power-law relationships for temperature and light intensity dependence. Conversion was found to depend on sample thickness, following the Beer-Lambert law. Photo-rheology measurements showed that the system vitrified before gelation at ambient temperature, and after gelation at high temperature under intense UV illumination. Time temperature transformation and time intensity transformation diagrams were built. Moreover, isothermal dark-curing enabled significant conversion increases up to the occurrence of vitrification, while thermal post-curing above T _g led to conversion as high as 71%. Thermo-mechanical measurements enabled to quantify T _g and the effects of the increase in conversion provided by thermal post-curing.
机译:在不同温度和紫外线强度下,在二芳基碘鎓盐光引发剂和异丙基噻吨酮光敏剂的存在下,将双官能环脂族环氧单体进行阳离子光聚合。使用光DSC,红外光谱和光流变学分析了光聚合动力学和结构形成。使用自动催化关系对温度和光强度依赖性的Arrhenius和幂律关系建模转换状态。遵循比尔-朗伯定律,发现转换取决于样品厚度。光流变学测量表明,该体系在环境温度下胶凝之前和在强紫外线照射下在高温胶凝之后玻璃化。建立了时间温度变换和时间强度变换图。而且,等温暗固化使显着的转化率增加直至发生玻璃化,而高于T_g的热后固化导致转化率高达71%。热机械测量能够量化T_g以及由热后固化提供的转化率增加的影响。

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