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Aging in Water and in an Alkaline Medium of Unsaturated Polyester and Epoxy Resins: Experimental Study and Modeling

机译:在水中和不饱和聚酯和环氧树脂的碱性培养基中的衰老:实验研究和建模

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摘要

The change in stiffness with temperature in the presence of different media has been discussed for a long time because the ability to predict this behavior becomes fundamental to the design of new materials and their applications. That is why, in this work, the application of a mathematical model, which is able to predict the elastic properties of two polymers, is presented. The study takes into account the relationship between the viscoelastic and absorption properties of these materials in alkaline solution (Ca (OH)(2), pH 12.5) and in distilled water (H2O, pH 7) as the immersion media. Diffusion coefficient values were higher when the resins were immersed in water than in the alkaline solution. In addition, the effect of the alkaline medium was higher for the unsaturated polyester resin (UPR). The highest decrease in modulus at the glassy state of the polymer network was observed for the UPR immersed in the alkaline medium. The greatest reduction of the T-g value due to network plasticizing was found for the epoxy resin (ER) in the alkaline medium. Therefore, the ER exhibited a more stable behavior after aging at moderate temperature than the UPR.
机译:已经讨论了不同介质存在的温度的变化很长一段时间,因为预测这种行为的能力成为新材料和应用的设计的基础。这就是为什么在这项工作中,呈现了能够预测两种聚合物的弹性性质的数学模型的应用。该研究考虑了碱性溶液(2)(2),pH 12.5)和蒸馏水(H2O,pH7)中这些材料的粘弹性和吸收性能与浸渍水(H2O,pH7)的关系。当树脂浸入水中时,扩散系数值高于碱性溶液。另外,对于不饱和聚酯树脂(UPR),碱性介质的效果较高。对于浸入碱性介质的UPR,观察到聚合物网络的玻璃状状态下的模量的最高降低。在碱性介质中的环氧树脂(ER)发现由于网络塑化引起的T-G值的最大减少。因此,在温度高于UPR时老化后,ER在衰老后表现出更稳定的行为。

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