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Multi-scales association modeling of membrane water resistance indexes

机译:膜耐水性指标的多尺度关联建模

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In order to quantify and predict the water resistance of membrane, a multi-scales association model was built up based on the Fick’s second law. Two water resistance indexes, balance time and seepage velocity, were put forward and calculated by the model for measuring the property of membrane water resistance. The association model linked macro-scale factors and micro-scale parameters together. The influence of macro-scale factors, environmental temperature and membrane thickness, and micro-scale parameters, water molecules diffusivity, membrane saturated water absorption rate and water escape concentration, were discussed. The properties of water resistances for two groups including 10 waterborne acrylate membranes samples were measured for validating the indexes calculated by the model. The well consistency between the results of calculations and experiments proved that the method of multi-scales association modeling for quantifying and predicting the membrane water resistance was feasible.
机译:为了量化和预测膜的耐水性,基于菲克第二定律建立了多尺度关联模型。提出了平衡时间和渗流速度两个防水指标,并通过该模型进行了计算,以测量膜的防水性能。关联模型将宏观因素和微观参数联系在一起。讨论了宏观因素,环境温度和膜厚度以及微观参数,水分子扩散率,膜饱和吸水率和水逸出浓度的影响。测量包括10个水性丙烯酸酯膜样品的两组的耐水性,以验证由该模型计算的指标。计算结果与实验结果吻合良好,证明了采用多尺度关联建模方法定量预测膜的耐水性是可行的。

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