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An Investigation into the Mechanical and Transport Properties of Aqueous Latex Films: A New Hypothesis for the Film-Forming Mechanism of Aqueous Dispersion System

机译:水乳胶膜的力学和输运性质研究:水分散体系成膜机理的新假设

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摘要

The effects of plasticizer, physical aging, and film-forming temperature on the mechanical and transport properties of films formed from aqueous dispersions of ethylcellulose latex were investigated. The water vapor permeability of latex films was found to decrease with diethyl phthalate to a minimum value and then to increase with diethyl phthalate at higher concentrations. Because of the decrease in free volume and the further coalescence of particles of latex polymer films in the physical aging range, the creep compliance of latex films decreased with physical aging time. Within 60 to 100°C, the film-forming temperature was found to have no effect on the mechanical and transport properties of Aquacoat films. However, since many pinholes formed in the latex films when the film-forming temperature was above 100°C, the water vapor permeability of latex films was higher than that of latex films formed between 60 and 100°C. The formation of films from aqueous latex dispersions is suggested to proceed gradually from the top to the bottom of the latex dispersion in this study.
机译:增塑剂,物理老化,和成膜温度对从乙基纤维素胶乳的水分散体形成的膜的机械和运输性能的影响进行了研究。胶乳膜的水蒸汽透过率发现与邻苯二甲酸二乙酯减小到最小值,然后与在较高浓度邻苯二甲酸二乙酯增加。因为在自由体积的减少和胶乳聚合物膜的颗粒在物理老化范围的进一步的聚结的乳胶膜的蠕变柔物理老化时间减少。在60〜100℃,成膜温度被发现具有上的Aquacoat膜的机械性质和输运性质没有影响。然而,由于形成在乳胶膜许多针孔时成膜温度为100℃以上,胶乳膜的水蒸汽渗透率为比60℃和100℃之间,形成乳胶膜的高。从水性胶乳分散体的薄膜的形成是建议从顶部到本研究中的胶乳分散体的底部逐渐进行。

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