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A phenomenological modification of rheological models for concentrated two-phase systems: application to a thermoplastic/thermoset blend

机译:浓缩两相系统流变模型的现象学改进:在热塑性/热固性混合物中的应用

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This paper considers an improvement of the emulsion models to take into account concentrated emulsions with no coalescence but with significant interaction between particles. For this purpose, a term proportional to the volume fraction of material in excess to the percolation threshold is added to the dynamic modulus. Its usefulness was tested to model the viscoelastic behavior in oscillatory shear flow of concentrated and diluted blends of a thermoplastic polystyrene with an epoxy-amine thermoset. These blends experience phase separation upon polymerization and the volume fraction of separated phase varies continuously with time. At low volume fraction of dispersed phase, the behavior could be described with a simple emulsion model that takes into account the plastisizing, dilution, and phase separation mechanisms. However, for concentration in excess to the percolation threshold, the modification can cope with a larger increase in the modulus related to the mechanical percolation of the dispersed particles.
机译:本文考虑了乳液模型的改进,以考虑到没有聚结但颗粒间相互作用明显的浓缩乳液。为此,将与材料的体积分数成比例的项(超过渗滤阈值)添加到动态模量中。测试了其有用性,以模拟热塑性聚苯乙烯与环氧胺热固性树脂的浓缩和稀释共混物在振荡剪切流中的粘弹性行为。这些共混物在聚合时经历相分离,并且分离相的体积分数随时间连续变化。在分散相的体积分数较低时,可以通过考虑增塑,稀释和相分离机理的简单乳液模型来描述其行为。然而,对于超过渗透阈值的浓度,改性可以应对与分散颗粒的机械渗透有关的模量的较大增加。

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