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EDGE EFFECTS ON THE DETERMINATION OF FICKIAN MASS DIFFUSIVITY OF POLYMERS

机译:聚合物的Fickian弥散度测定的边缘效应

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摘要

Models based on one-dimensional solution of Fickian diffusion equation are commonly used to characterize diffusion coefficients of polymers. These methods are known to have errors due to edge effects, which are believed to be compensated by correction factors. In order to better understand these errors and performance of various correction factors, non-dimensional solution of diffusion equation in a three-dimensional rectangular domain is used to simulate artificial mass diffusion data. The simulated data is then utilized to analyze the errors associated with commonly used methods of diffusivity determination for a variety of geometries with aspect ratios ranging from 1 to 100. The diffusivity values are shown to be highly dependent on the approach used in determining the initial slope of the percent mass gain versus root square time curve. The previously proposed correction factors failed to yield accurate diffusion coefficients and are found to have up to 70% error. A simple, yet accurate method for determination of mass diffusivity of isotropic materials based on the solution of Fickian equation in three-dimensional domain is proposed. The applicability of the method is demonstrated with experimental data and good agreement is observed.
机译:通常使用基于Fickian扩散方程的一维解的模型来表征聚合物的扩散系数。已知这些方法由于边缘效应而具有误差,据信这些误差可以通过校正因子来补偿。为了更好地理解这些误差和各种校正因子的性能,使用三维矩形域中扩散方程的无量纲解来模拟人工质量扩散数据。然后将模拟数据用于分析与宽高比范围为1到100的各种几何形状的常用扩散率确定方法相关的误差。扩散率值高度依赖于确定初始斜率的方法质量增加百分比与均方根时间曲线的关系。先前提出的校正因子无法产生准确的扩散系数,并且发现误差高达70%。提出了一种基于三维域菲克方程解的简单而精确的各向同性材料质量扩散率测定方法。实验数据证明了该方法的适用性,并取得了良好的一致性。

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