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Glass Transition Behavior of Wet Polymers

机译:湿聚合物的玻璃过渡行为

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摘要

We have performed a systematical investigation on the glass transition behavior of amorphous polymers with different solvent concentrations. Acrylate-based amorphous polymers are synthesized and treated by isopropyl alcohol to obtain specimens with a homogenous solvent distribution. The small strain dynamic mechanical tests are then performed to obtain the glass transition behaviors. The results show that the wet polymers even with a solvent concentration of more than 60 wt.% still exhibit a glass transition behavior, with the glass transition region shifting to lower temperatures with increasing solvent concentrations. A master curve of modulus as a function of frequency can be constructed for all the polymer–solvent systems via the time–temperature superposition principle. The relaxation time and the breadth of the relaxation spectrum are then obtained through fitting the master curve using a fractional Zener model. The results indicate that the breadth of the relaxation spectrum has been greatly expanded in the presence of solvents, which has been rarely reported in the literature. Thus, this work can potentially advance the fundamental understanding of the effects of solvent on the glass transition behaviors of amorphous polymers.
机译:我们对不同溶剂浓度的无定形聚合物的玻璃化转变行为进行了系统研究。通过异丙醇合成并处理基于丙烯酸酯的无定形聚合物,得到具有均匀溶剂分布的标本。然后进行小应变动态机械测试以获得玻璃化转变行为。结果表明,湿聚合物的溶剂浓度大于60重量%。%仍然表现出玻璃化转变行为,玻璃化转变区域随着溶剂浓度的增加而转化为较低的温度。通过时间温度叠加原理,可以为所有聚合物溶剂系统构造成模量的模量曲线。然后通过使用分数齐纳模型装配主曲线来获得弛豫时间和弛豫频谱的宽度。结果表明,在溶剂存在下,弛豫光谱的宽度大大扩展,这在文献中很少报道。因此,这项工作可能潜在地推进对溶剂对非晶聚合物玻璃过渡行为的影响。

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