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A model for the drying process during film formation in waterborne acrylic coatings

机译:水性丙烯酸涂料成膜过程中的干燥过程模型

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Establishing drying mechanisms during film formation in waterborne acrylic coatings is a technologically important problem, however complex, and still poorly understood. A model for the prediction of evaporation kinetics is proposed in this paper, where films are supposed to dry normally with respect to the film surface, and a drying front separates a top dry region from a bottom wet region. The model accounts for the competition between water evaporation and particle diffusion that determines the degree of vertical homogeneity, but also for the competition between water evaporation and particle deformation that ultimately establishes the rate-determining step in film formation processes. The model was validated by performing gravimetric water-loss experiments on latexes of acrylic polymers of various composition, various particle size and stabilizing systems, under different environmental temperatures and humidity, and various initial film thicknesses in order to evaluate the effect of the different factors that can in principle influence the film formation process. [References: 9]
机译:在水性丙烯酸涂料的成膜过程中建立干燥机理是一个技术上重要的问题,但是仍然很复杂,但仍知之甚少。本文提出了一种预测蒸发动力学的模型,该模型假定薄膜相对于薄膜表面正常干燥,并且干燥前沿将顶部干燥区域与底部潮湿区域分隔开。该模型考虑了水蒸发和颗粒扩散之间的竞争,该竞争决定了垂直均匀性的程度,但也考虑了水蒸发和颗粒变形之间的竞争,这最终确定了成膜过程中的速率确定步骤。通过在不同的环境温度和湿度以及不同的初始膜厚度下对各种组成,各种粒径和稳定体系的丙烯酸聚合物胶乳进行重量失水实验来验证该模型,以评估不同因素的影响。原则上可以影响成膜过程。 [参考:9]

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