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Prediction of solvent-diffusion coefficient in polymer by a modified free-volume theory

机译:修正自由体积理论预测聚合物中的溶剂扩散系数

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Several versions of free-volume theory have been proposed to correlate or predict the solvent diffusion coefficient of a polymer/solvent system. The quantity of free volume is usually determined by the Williams-Landel-Ferry (WLF) equation from viscosity data of the pure component in these theories. Free volume has been extensively discussed in different equation-of-state models for a polymer. Among these models, the Simha-Someynsky (SS) hole model is the best one to describe the crystalline polymer, because it describes it very approximately close to the real structure of a crystalline polymer. In this article, we calculated the fractions of the hole free volume for several different polymers at the glass transition temperature and found that they are very close to a constant 0.025 by the SS equation of state. It is quite consistent with the value that is determined from the WLF equation. Therefore, the free volume of a crystalline polymer below the glass transition temperature (T-g) is available from the SS equation. When above the T-g, it is assumed that the volume added in thermal expansion is the only contribution of the hole free volume. Thus, a new predictive free-volume theory was proposed. The free volume of a polymer in the new predictive equation can be estimated by the SS equation of state and the thermal expansion coefficient of a polymer instead of by the viscosity of a polymer. The new predictive theory is applied to calculate the solvent self-diffusion coefficient and the solvent mutual-diffusion coefficient at different temperatures and over most of the concentration range. The results show that the predicted values are in good agreement with the experimental data in most cases. (C) 2000 John Wiley & Sons, Inc. [References: 42]
机译:已经提出了几种形式的自由体积理论来关联或预测聚合物/溶剂系统的溶剂扩散系数。自由体积的数量通常由Williams-Landel-Ferry(WLF)方程根据这些理论中纯组分的粘度数据确定。自由体积已在聚合物的不同状态方程模型中进行了广泛讨论。在这些模型中,Simha-Someynsky(SS)孔模型是描述晶体聚合物的最佳模型,因为它描述的晶体聚合物非常接近晶体聚合物的真实结构。在本文中,我们计算了几种不同聚合物在玻璃化转变温度下的无孔体积分数,并通过SS状态方程非常接近常数0.025。它与从WLF公式确定的值非常一致。因此,可从SS方程获得低于玻璃化转变温度(T-g)的结晶聚合物的自由体积。当高于T-g时,假定在热膨胀中增加的体积是无孔体积的唯一贡献。因此,提出了一种新的预测自由体积理论。新的预测方程式中聚合物的自由体积可以通过状态方程和聚合物的热膨胀系数估算,而不是通过聚合物的粘度估算。该新的预测理论被用于计算在不同温度和大部分浓度范围内的溶剂自扩散系数和溶剂互扩散系数。结果表明,在大多数情况下,预测值与实验数据吻合良好。 (C)2000 John Wiley&Sons,Inc. [参考:42]

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