The Effect of Surface Conditions on Diffusion and Permeability of Acetone through uPVC

D. Vesely, M. Zhu, F. Jian
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引用次数: 1

Abstract

Understanding diffusion and permeability processes in organic materials is important for applications to structural components, protective coatings or packaging. In this work some basic behaviour of solvent diffusion into and through a polymer are studied using acetone and un-plasticized polyvinyl chloride at room temperature as model materials. Special cell for gravimetric measurements is used to provide data on diffusion and permeability rates through samples of different thicknesses. It is shown that the rates of mass transport are slowing down with thickness for diffusion and also for permeability, as expected. However permeability mass transport is slower than mass delivered to the outer surface by diffusion. This is explained and experimentally verified by insufficient saturation of the surface layer, as the solvent evaporates before a full saturation is reached. When the outer surface layer is pre-saturated with solvent, permeability will increase several times. When evaporation is restricted (e.g. closed cavity) the liquid solvent will accumulate, filling up the cavity. Concentration profiles, measured by infrared microscopy, confirm this observation. It is suggested that the experimental data can be explained by using chemical potential and chemical reaction kinetics.
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表面条件对丙酮在uPVC中的扩散和渗透性的影响
了解有机材料中的扩散和渗透过程对于结构部件,保护涂层或包装的应用非常重要。本文以丙酮和未增塑型聚氯乙烯为模型材料,研究了常温下溶剂在聚合物中扩散的一些基本行为。采用特殊的重量测量单元,提供不同厚度样品的扩散率和渗透率数据。结果表明,正如预期的那样,质量输运速率随扩散和渗透率的厚度而减慢。然而,渗透性的质量传递比通过扩散传递到外表面的质量要慢。由于溶剂在达到完全饱和之前就蒸发了,因此表面层的饱和不足可以解释和实验验证这一点。当外表层被溶剂预饱和时,渗透率会增加数倍。当蒸发受到限制(如封闭腔)时,液体溶剂将积聚,填满腔。红外显微镜测量的浓度曲线证实了这一观察结果。实验数据可以用化学势和化学反应动力学来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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