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Interdiffusion at Interfaces of Polymers with Dissimilar Physical Properties

机译:物理性质不同的聚合物界面处的相互扩散

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The interface between two different polymers is characterized theoretically by using a model. This model is based on the assumption that the monomeric friction coefficients of the two polymers are identical but a strong function of the matrix composition. This model predicts that the concentration profiles are highly asymmetric with substantial swelling of the slower-diffusing component by the faster component. To predict the behavior of interdiffusion, three quantities are used: distance of interface Z*(t) due to the swelling, interfacial width W(t) which is most sensitive to the detailed composition profiling, and mass transport M(t) due to interdiffusion. It is found that the more dissimilar polymer pairs, the faster the movement of the interface, the quicker its interfacial width saturates to a limiting value and the slower its mass transport. These results are in qualitative agreement with some experiments.
机译:理论上,通过使用模型来表征两种不同聚合物之间的界面。该模型基于以下假设:两种聚合物的单体摩擦系数相同,但对基质组成的作用很大。该模型预测浓度分布高度不对称,较慢扩散的组分被较快的组分大量膨胀。为了预测相互扩散的行为,使用了三个量:由于溶胀引起的界面距离Z *(t),对详细的成分分析最敏感的界面宽度W(t)和由于扩散引起的质量传递M(t)。相互扩散。发现聚合物对越不相似,界面的运动越快,其界面宽度饱和到极限值的速度越快,其质量传递越慢。这些结果与一些实验定性一致。

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