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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Wetting dynamics on lyophilic solid surfaces patterned by lyophobic islands
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Wetting dynamics on lyophilic solid surfaces patterned by lyophobic islands

机译:疏液岛构图的亲液固体表面的润湿动力学

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A theory for wetting of structured solid surfaces is developed, based on the delta-comb periodic potential. It possesses two matching parameters: the effective line tension and the friction coefficient on the three-phase contact line at the surface. The theory is validated on the dynamics of spreading of liquid zinc droplets on morphologically patterned zinkophilic iron surface by means of square patterns of zinkophobic aluminum oxide. It is found out that the effective line tension is negative and has essential contribution to the dynamics of spreading. Thus, the theoretical analysis shows that the presence of lyophobic patterns situated on lyophilic surface makes the latter completely wettable, i.e. no equilibrium contact angle on such surface exists making the droplet spread completely in form of thin liquid layer on the patterned surface.
机译:基于Δ梳周期性电势,开发了用于润湿结构化固体表面的理论。它具有两个匹配参数:有效线张力和表面三相接触线上的摩擦系数。该理论在液态锌小滴在形态图案化的亲金铁表面上的扩散动力学上得到了验证,该形貌是通过疏锌氧化铝的方形图案来实现的。发现有效的线张力是负的,并且对扩展的动力学起重要作用。因此,理论分析表明,位于亲液表面上的疏液图案的存在使得后者完全可润湿,即,在这种表面上不存在平衡接触角,从而使液滴以薄液层的形式完全散布在形成图案的表面上。

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