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首页> 外文期刊>Journal of Applied Polymer Science >Analysis of Butyl Acrylate Diffusion in a Glassy Polystyrene Matrix to Predict Gradient Structure
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Analysis of Butyl Acrylate Diffusion in a Glassy Polystyrene Matrix to Predict Gradient Structure

机译:丙烯酸丁酯在玻璃状聚苯乙烯基质中的扩散分析以预测梯度结构

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摘要

To be able to control composition structure in gradient polymers prepared by sequential polymerization, diffusion phenomena has to be considered, particularly for the first 100% weight increment in a glassy polymer matrix. With that purpose, an analytical model to predict diffusion in that region has been developed for amorphous polymers. The inclusion of a relaxation time to estimate surface concentration changes during sorption led to diffi.ision coefficients one order of magnitude higher than Fickian coefficients. However, adding a volume increment term to account for polymer swelling, diffusion coefficients went up to 48 times the Fickian values. Experimentally, butyl acrylate with a small amount of photosensitizer was diffused into a slightly crosslinked polystyrene slab matrix at different temperatures in the glassy region. After fixing the gradient composition by photopolymerization, chemical structures throughout the slab were determined by FTIR. The proposed model was confronted with experi-mental sorption showing a close fit at the different temperatures in the region of interest.
机译:为了能够控制通过顺序聚合制备的梯度聚合物的组成结构,必须考虑扩散现象,尤其是对于玻璃状聚合物基质中最初的100%重量增加。为此目的,已经开发出用于预测在该区域中扩散的分析模型用于无定形聚合物。包括松弛时间以估计吸附过程中表面浓度的变化,导致扩散系数比Fickian系数高一个数量级。但是,加上体积增加项以说明聚合物溶胀,扩散系数高达Fickian值的48倍。实验上,将具有少量光敏剂的丙烯酸丁酯在不同温度下分散到玻璃状区域中的轻微交联的聚苯乙烯平板基质中。通过光聚合固定梯度成分后,通过FTIR确定整个平板的化学结构。所提出的模型面临实验吸附,在目标区域的不同温度下显示出非常合适的拟合。

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