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Cure kinetics and rheology modelling of boehmite (AlOOH) nanoparticle modified epoxy resin systems

机译:勃姆石(ALOOH)纳米粒子改性环氧树脂系统的固化动力学和流变型造型

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Nanoparticles can effectively increase the resin matrix properties, which is especially attractive for fabrication of high-performance fiber composites by liquid composite molding (LCM) processes. However, the cure kinetics and rheological behavior of the matrix, which are the most critical aspects in LCM processes, could be affected by the introduction of nanoparticles, depending on the surface functionalization and concentration. In this paper, the cure kinetics and rheology of a boehmite nanoparticle modified epoxy matrix is characterized and modelled. The influence of boehmite nanoparticles on cure and rheological behaviors is analyzed. By optimization of the regression method combined with model parameter analysis, a good correlation between the model parameters and nanoparticle concentration is determined. Finally, a generalized model is put forward to describe and predict the cure kinetics and rheology depending on time, temperature, and concentration of nanoparticles.
机译:纳米颗粒可以有效地增加树脂基质性质,这对于通过液体复合成型(LCM)工艺制造高性能纤维复合材料特别有吸引力。 然而,基质的固化动力学和流变行为是LCM过程中最关键的方面,可能受到纳米颗粒的引入的影响,这取决于表面官能化和浓度。 本文的特征和模拟了勃姆石纳米粒子改性环氧基质的固化动力学和流变学。 分析了勃姆石纳米粒子对固化和流变行为的影响。 通过对模型参数分析结合的回归方法的优化,确定了模型参数和纳米颗粒浓度之间的良好相关性。 最后,提出了一种广义模型,以根据纳米颗粒的时间,温度和浓度来描述和预测固化动力学和流变学。

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