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Quantitative analysis of crystallization and skin formation during isothermal solvent removal from semicrystalline polymers

机译:从半结晶聚合物中去除等温溶剂过程中结晶和表皮形成的定量分析

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摘要

A mathematical model was developed to predict the isothermal drying kinetics of semicrystalline polymer films. The model considers the mechanism of semicrystalline polymer drying that was proposed by us based on experimental studies. Experimental studies have indicated an increase in the degree of crystallinity of semicrystalline poly(vinyl alcohol) (PVA) during drying, which slows down the rate of diffusion of the solvent remaining in the polymer film. The model considers the crystallization kinetics and the changes in the polymer degree of crystallinity produced in semicrystalline polymers during solvent removal. The model also takes into account rubbery-glassy transition and skin formation during solvent removal and its effect on the drying kinetics. Model predictions include polymer film thickness, skin thickness, rate of solvent removal and degree of crystallinity of the polymer as functions of time. These predictions were compared with experimental results for drying of PVA films and good agreement was observed between the model predictions and the experimental data.
机译:建立了数学模型来预测半结晶聚合物薄膜的等温干燥动力学。该模型考虑了我们根据实验研究提出的半结晶聚合物干燥机理。实验研究表明,干燥过程中半结晶聚乙烯醇(PVA)的结晶度增加,这减慢了残留在聚合物膜中的溶剂的扩散速度。该模型考虑了结晶动力学和溶剂去除过程中半结晶聚合物产生的聚合物结晶度的变化。该模型还考虑了去除溶剂过程中的橡胶状玻璃化转变和表皮形成及其对干燥动力学的影响。模型预测包括作为时间函数的聚合物膜厚度,表皮厚度,溶剂去除速率和聚合物的结晶度。将这些预测值与干燥PVA膜的实验结果进行比较,并且在模型预测值与实验数据之间观察到了很好的一致性。

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