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Comparison of the roles of two shrinkage-control led low-profile additives in water aging of polyester resin-glass fiber composites

机译:两种控制收缩率的低调添加剂在聚酯树脂-玻璃纤维复合材料水老化中的作用比较

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A model previously formulated or water sorption in polyester resin-glass fiber composites has been applied to the kinetic analysis of experimental data for two composites containing a hydrolysable (polyvinyl acetate-PVAc) and a non-hydrolyzable (polystyrene-PS) shrinkage-controlling low-profile additive (LPA) respectively. It was found that the equilibrium water uptake in the composites and their unreinforced matrix is not drastically affected by the type of LPA. The kinetics of water sorption in the composites, however, were substantially different. The PVAc composite displayed a two-stage sorption process, the first stage being attributed to diffusion combined with hydrolysis, and the second to matrix swelling and plasticizing. A maximum in the kinetic curve was observed, and was due to changes in water solubility inside the matrix during sorption. In contrast, the PS composite displayed the typical kinetics of materials with slowly increasing hydrophilicity. [References: 15]
机译:先前在聚酯树脂-玻璃纤维复合材料中制定的模型或吸水模型已用于动力学分析两种含可水解(聚醋酸乙烯酯-PVAc)和不可水解(聚苯乙烯-PS)收缩率低的复合材料的实验数据轮廓添加剂(LPA)。已发现,复合材料及其未增强基质的平衡吸水率不受LPA类型的影响很大。然而,复合材料中水的吸附动力学是完全不同的。 PVAc复合材料表现出两阶段的吸附过程,第一阶段归因于扩散与水解相结合,第二阶段归因于基质膨胀和增塑。观察到动力学曲线的最大值,这是由于在吸附过程中基质内部的水溶性变化。相反,PS复合材料显示出具有缓慢增加的亲水性的材料的典型动力学。 [参考:15]

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