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首页> 外文期刊>American Journal of Materials Science and Technology >Enhanced Mathematical Modeling of DOP Plasticizer Migration from PVC into Liquid (Methanol)
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Enhanced Mathematical Modeling of DOP Plasticizer Migration from PVC into Liquid (Methanol)

机译:DOP增塑剂从PVC迁移到液体(甲醇)中的增强数学模型

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摘要

Polyvinyl chloride, commonly abbreviated PVC is a rather hard and rigid material. In order to extend its use it requires additives during the manufacturing process which are referred to as plasticizers, among them the Dioctyl Phthalate (DOP). This latter has a tendency to escape from the PVC matrix specially when in contact with liquids. In order to analyse this phenomenon we use the classical equations of mass diffusion (Fick’s second law). However this method leads to results which are not always in good agreement with experimental ones, especially when the concentration of plasticisers is high. This situation requires the elaboration of an enhanced mathematical model that can deal with this particular type of forced diffusion characterized by the contact with a liquid and particular boundary conditions. The validation of the proposed model was obtained by comparing the theoretical results obtained with the model and those obtained by experiments.
机译:聚氯乙烯,通常缩写为PVC,是一种相当坚硬的材料。为了扩展其用途,在制造过程中需要添加剂,这些添加剂被称为增塑剂,其中包括邻苯二甲酸二辛酯(DOP)。后者特别是当与液体接触时具有从PVC基质中逸出的趋势。为了分析这种现象,我们使用质量扩散的经典方程式(菲克第二定律)。然而,这种方法导致的结果并不总是与实验结果总是很好地吻合,尤其是当增塑剂的浓度很高时。这种情况需要详细说明一个增强的数学模型,该模型可以处理这种特定类型的强制扩散,其特征是与液体接触以及特定的边界条件。通过比较与模型获得的理论结果和实验获得的理论结果,对所提出模型进行了验证。

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