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Influence of Filler Content and Filler Size on the Curing Kinetics of an Epoxy Resin

机译:填料含量和填料尺寸对环氧树脂固化动力学的影响

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摘要

In this research, the influences of filler content and filler particle size on the flow-hardening behavior were investigated by a measuring mixer. In order to more reliably assess the observed rheological behavior, isothermal differential scanning calorimetry (DSC) measurements were employed to study the curing kinetics of the compounds. The measured data can be fitted well with Kamal-Sourour’s model modified by the diffusion correlation according to Chern and Poehlein. After that, the influence of filler content and size on the kinetic parameters are presented discussed. The results show that the ultimate glass transition temperature is significantly lower for pure epoxy resin (EP) than for compounds filled with surface-treated glass beads, which have an essential effect on the diffusion-controlled reaction at different curing temperatures. For the surface-treated glass beads used in this study, the reaction speed in the early curing stage is accelerated by increasing filler content or decreasing of filler size. In the later curing stage, the reaction speeds of compounds with higher filler content or smaller fillers reduce more quickly. The study of reaction kinetics indicates that the activation energy , , the reaction order , and are affected differently by varying filler content and size.
机译:在这项研究中,用计量混合器研究了填料含量和填料粒度对流动硬化行为的影响。为了更可靠地评估观察到的流变行为,采用等温差示扫描量热法(DSC)测量来研究化合物的固化动力学。根据Chern和Poehlein,通过扩散相关性修改后的Kamal-Sourour模型可以很好地拟合测量数据。之后,讨论了填料含量和尺寸对动力学参数的影响。结果表明,纯环氧树脂(EP)的最终玻璃化转变温度明显低于填充有经表面处理的玻璃珠的化合物,这对不同固化温度下的扩散控制反应具有至关重要的作用。对于本研究中使用的经过表面处理的玻璃珠,可通过增加填料含量或减小填料尺寸来加快早期固化阶段的反应速度。在后期固化阶段,填料含量较高或较小的化合物的反应速度降低得更快。对反应动力学的研究表明,活化能,反应顺序和受到填料含量和尺寸变化的不同影响。

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