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Characterization and prediction of monomer-based dose rate effects in electron-beam polymerization

机译:电子束聚合中单体基剂量率效应的表征及预测

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Properties of some materials produced by electron-beam (EB) induced polymerization appear dependent upon the rate at which the initiating dose was delivered. However, the magnitude of these dose rate effects (DREs) can vary greatly with different monomer formulations, suggesting DREs are dependent on chemical structure. The relationship among dose, dose rate, conversion, and the glass transition temperature (T-g) of the cured material was explored for an acrylate monomer series. A strong correlation was determined between the DRE magnitude and monomer size, and this correlation may be attributed to chain transfer. Using the Tg shift caused by changes in dose, a preliminary predictive relationship was developed to estimate the magnitude of the T-g DRE, enabling scale-up of process variables for polymers prone to dose rate effects.
机译:通过电子束(EB)产生的诱导聚合产生的一些材料的性质看起来依赖于递送的引发剂量的速率。 然而,这些剂量率效应(DRES)的大小可以随着不同的单体制剂而变化,表明DRE取决于化学结构。 为丙烯酸酯单体系列探索了剂量,剂量率,转化率和固化材料的玻璃化转变温度(T-G)之间的关系。 在DRE幅度和单体尺寸之间确定了强的相关性,并且这种相关性可能归因于链转移。 使用由剂量的变化引起的Tg偏移,开发了初步预测关系以估计T-G RE的大小,从而能够为易于速率效应的聚合物的过程变量进行扩大。

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