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Experimental methods for tracking physical aging of thin glassy polymer films by gas permeation

机译:通过气体渗透跟踪玻璃态聚合物薄膜的物理老化的实验方法

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This paper describes methodologies that have been developed for studying the physical aging of free-standing thin polymer films and its effect on gas permeability. Both solution casting and spin coating methods were used to obtain thin polysulfone films having thicknesses in the range of 400-1000 nm. Ellipsometry has been employed to determine the thicknesses of these thin films. A thin wire frame was used to hold the thin free-standing films while heating above T-g to relax molecular orientation and to erase the ambiguous thermal history resulting from solution casting. The film underwent a significant thickness change during heating above Tg as the polymer chains relaxed. By using the method of this study, the reproducibility of gas permeability change during physical aging was demonstrated as well as the thermoreversibility of physical aging. Comparison of the results obtained by using different methods to support the thin film during heating illustrated the preference for the free-standing scheme developed in this study. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文介绍了为研究独立式聚合物薄膜的物理老化及其对气体渗透性的影响而开发的方法。溶液流延和旋涂方法均用于获得厚度在400-1000nm范围内的聚砜薄膜。椭圆偏振法已被用来确定这些薄膜的厚度。使用细线框固定薄的自支撑薄膜,同时加热到T-g以上以放松分子取向并消除溶液浇铸导致的模棱两可的热历史。随着聚合物链的松弛,在高于Tg的加热过程中,薄膜发生了明显的厚度变化。通过使用本研究的方法,证明了物理老化过程中气体渗透率变化的可再现性以及物理老化过程的热可逆性。通过使用不同的方法在加热过程中支撑薄膜获得的结果的比较说明了本研究开发的独立式方案的偏爱。 (C)2004 Elsevier B.V.保留所有权利。

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