首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Spontaneous Displacement of High Viscosity Micrometer Size Oil Droplets from a Curved Solid in Aqueous Solutions
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Spontaneous Displacement of High Viscosity Micrometer Size Oil Droplets from a Curved Solid in Aqueous Solutions

机译:高粘度微米尺寸油滴的自发位移在水溶液中弯曲固体的油滴

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摘要

Spontaneous displacement of high viscosity (similar to 10(3) Pa.s) micrometer size oil droplets from a curved solid in aqueous solutions was investigated. For high viscosity oils, the dynamic droplet shape was found to deviate significantly from a spherical cap shape due to the considerable viscous force in the oil phase. The displacement dynamics of high viscosity droplets were analyzed using molecular kinetic and hydrodynamic models. The molecular kinetic model was found to describe the dynamic displacement well for the droplets of small departure from the spherical cap shape, while the hydrodynamic model is more applicable to the droplets of higher three-phase contact line displacement velocities and hence larger deviation of the droplets from the spherical cap shape.
机译:研究了高粘度的自发位移(类似于10(3)PA.S)米尺大小从水溶液中的弯曲固体中的油滴。 对于高粘度油,发现动态液滴形状由于油相中具有相当大的粘性力而从球形帽形状偏离。 使用分子动力学和流体动力学模型分析高粘度液滴的位移动力学。 发现分子动力学模型描述了对球形帽形状的小偏离液滴的动态位移阱,而流体动力学模型更适用于较高三相接触线位移速度的液滴,因此更大的液滴偏差 来自球形帽形状。

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