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Phenomenological theory of structural relaxation based on a thermorheologically complex relaxation time distribution

机译:基于热流变复杂弛豫时间分布的结构弛豫现象学理论

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The aim of this work is to explore the consequences on the kinetics of structural relaxation of considering a glass-forming system to consist of a series of small but macroscopic relaxing regions that evolve independently from each other towards equilibrium in the glassy state. The result of this assumption is a thermorheologically complex model. In this approach each relaxing zone has been assumed to follow the Scherer-Hodge model for structural relaxation (with the small modification of taking a linear dependence of configurational heat capacity with temperature). The model thus developed contains four fitting parameters. A least-squares search routine has been used to find the set of model parameters that fit simultaneously four DSC thermograms in PVAc after different thermal histories. The computersimulated curves are compared with those obtained with Scherer-Hodge model and the model proposed by Gomez and Monleon. The evolution of the relaxation times during cooling or heating scans and also during isothermal annealing below the glass transition has been analysed. It has been shown that the relaxation times distribution narrows in the glassy state with respect to equilibrium. Isothermal annealing causes this distribution to broaden during the process to finally attain in equilibrium the shape defined at temperatures above T-g.
机译:这项工作的目的是探讨考虑玻璃形成系统由一系列小的但宏观的弛豫区域组成的结构弛豫动力学的后果,该一系列小但宏观的弛豫区域相互独立地朝着玻璃态发展,达到平衡。该假设的结果是一个热流变复杂模型。在这种方法中,假定每个松弛区都遵循Scherer-Hodge模型进行结构松弛(对结构热容随温度的线性依赖性进行了小的修改)。这样开发的模型包含四个拟合参数。最小二乘搜索例程已被用来查找模型参数集,这些模型参数在不同的热历史后同时适合PVAc中的四个DSC温度记录图。将计算机模拟曲线与通过Scherer-Hodge模型以及Gomez和Monleon提出的模型获得的曲线进行比较。已经分析了在冷却或加热扫描期间以及在玻璃化转变温度以下的等温退火期间弛豫时间的演变。已经表明,相对于平衡,弛豫时间分布在玻璃态下变窄。等温退火导致此过程中的分布变宽,最终最终达到在高于T-g的温度下定义的形状。

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