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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Elaboration of epoxy/silica composites by cationic photopolymerization: Kinetic study, optical and mechanical characterization
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Elaboration of epoxy/silica composites by cationic photopolymerization: Kinetic study, optical and mechanical characterization

机译:用阳离子光聚合法制定环氧/二氧化硅复合材料:动力学研究,光学和力学表征

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摘要

Thick epoxy composite materials (>1 mm) have been elaborated by a room temperature process involving photopolymerization through a cationic pathway. Two epoxy resins (glycidyl ether and cycloaliphatic) were chosen as model organic matrix whereas microspherical silica particles (until 50 wt-%) were used as reinforcement. The monitoring of the photopolymerization kinetics by FTIR spectroscopy has first shown the existence of a conversion gradient in the material thickness, which resulted either from light absorption by the matrix and/or from light scattering induced by the presence of filler. More especially, the light scattering was found to be all the more important as the refractive index gap between filler and matrix was high. However, this conversion heterogeneity has then been able to be compensated by ageing involving a postpolymerization reaction at room temperature. The analysis of the mechanical properties of the obtained materials has confirmed that it was possible to obtain thick photocomposite materials homogeneously crosslinked. This homogeneity was even enhanced by using a radiation in the 300-440 nm wavelength range.
机译:通过涉及光聚合通过阳离子途径的室温工艺阐述了厚的环氧复合材料(> 1mm)。选择两个环氧树脂(缩水甘油醚和环脂族)作为模型有机基质,而微球基二氧化硅颗粒(直至50重量%)用作增强。通过FTIR光谱对光聚合动力学的监测首先示出了在材料厚度中存在转化梯度,这导致基质的光吸收和/或通过填料存在诱导的光散射。更特别地,发现光散射完全是填料和基质之间的折射率间隙高的情况更重要。然而,这种转化异质性然后通过涉及室温下的晚期反应的老化来补偿。所得材料的力学性能的分析证实,可以获得均匀地交联的厚的光电复合材料。通过使用300-440nm波长范围内的辐射甚至增强了这种均匀性。

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