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Highly reactive photothermal initiating system based on sulfonium salts for the photoinduced thermal frontal cationic polymerization of epoxides: a way to create carbon-fiber reinforced polymers

机译:基于锍盐的高反应性光热引发系统,用于氧化环氧化铅的光致热额阳离子聚合:一种产生碳纤维增强聚合物的方法

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A new combination of sulfonium salts has been investigated to cure opaque and thick carbon composite materials through photoinduced thermal frontal polymerization reaction. The photopolymerization occurs at the surface of the cycloaliphatic epoxide through the excitation of a triarylsulfonium salt and releases enough heat to decompose an alkyl-based sulfonium salt acting as a latent thermal initiator. Thus, a thermal front propagates into the medium leading to the polymerization of the whole sample. Thermal properties and optimal parameters are investigated to obtain frontal polymerization in the depth of the material. Front velocities were as high as 12.9 cm min ~(?1) and were found to increase with an increasing concentration of thermal sulfonium salt. The effect of an addition of carbon filler is investigated with a concentration of up to 50 wt%, which allows the formation of a composite material with a high content of carbon without the need for thermal post curing.
机译:已经研究了新的锍盐的新组合,通过光致热额相聚合反应来固化不透明和厚的碳复合材料。通过三芳基锍盐的激发在脂环族环氧化物的表面上发生光聚合,并释放足够的热量以分解作为潜热引发剂的烷基基锍盐。因此,热前沿传播到导致整个样品的聚合的培养基中。研究了热性能和最佳参数,得到了材料深度的前聚合。前速度高达12.9cm min〜(?1),并发现随着热锍盐的增加而增加。研究添加碳填料的效果,其浓度高达50wt%,其允许形成具有高含量碳的复合材料,而无需热后固化。

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