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A Coupled Thermodynamic Model for Transport Properties of Thin Films during Physical Aging

机译:物理老化过程中薄膜传输特性的热力学耦合模型

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摘要

A coupled diffusion model based on continuum thermodynamics is developed to quantitatively describe the transport properties of glassy thin films during physical aging. The coupled field equations are then embodied and applied to simulate the transport behaviors of O2 and CO2 within aging polymeric membranes to validate the model and demonstrate the coupling phenomenon, respectively. It is found that due to the introduction of the concentration gradient, the proposed direct calculating method on permeability can produce relatively better consistency with the experimental results for various film thicknesses. In addition, by assuming that the free volume induced by lattice contraction is renewed upon CO2 exposure, the experimental permeability of O2 within Matrimid® thin film after short-time exposure to CO2 is well reproduced in this work. Remarkably, with the help of the validated straightforward permeability calculation method and free volume recovery mechanism, the permeability behavior of CO2 is also well elucidated, with the results implying that the transport process of CO2 and the variation of free volume are strongly coupled.
机译:建立了基于连续热力学的耦合扩散模型,以定量描述物理老化过程中玻璃状薄膜的传输特性。然后体现耦合场方程,并将其应用于模拟老化的聚合物膜中O2和CO2的传输行为,以验证模型并分别证明耦合现象。结果发现,由于引入了浓度梯度,所提出的渗透率直接计算方法与各种膜厚的实验结果具有较好的一致性。另外,通过假设晶格收缩引起的自由体积在暴露于CO2后得以更新,在短时间内暴露于CO2之后,Matrimid ®薄膜中O2的实验渗透性得以很好地再现。值得注意的是,借助已验证的简单的渗透率计算方法和自由体积恢复机制,也很好地阐明了CO2的渗透行为,其结果暗示了CO2的传输过程和自由体积的变化是紧密耦合的。

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