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Experimental evidence of the role of viscosity in the molecular kinetic theory of dynamic wetting

机译:粘度在动态润湿分子动力学理论中作用的实验证据

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We report an experimental study of the dynamics of spontaneous spreading of aqueous glycerol drops on glass. For a range of glycerol concentrations, we follow the evolution of the radius and contact angle over several decades of time and investigate the influence of solution viscosity. The application of the molecular kinetic theory to the resulting data allows us to extract the coefficient of contact-line friction ζ, the molecular jump frequency κ~0, and the jump length λ for each solution. Our results show that the modified theory, which explicitly accounts for the effect of viscosity, can successfully be applied to droplet spreading. The viscosity affects the jump frequency but not the jump length. In combining these data, we confirm that the contact-line friction of the solution/air interface against the glass is proportional to the viscosity and exponentially dependent on the work of adhesion.
机译:我们报告了甘油水溶液在玻璃上自发扩散动力学的实验研究。对于一定范围的甘油浓度,我们跟踪半径和接触角在数十年间的演变,并研究溶液粘度的影响。分子动力学理论对所得数据的应用使我们能够提取每种溶液的接触线摩擦系数ζ,分子跳跃频率κ〜0和跳跃长度λ。我们的结果表明,修改后的理论可以明确地说明粘度的影响,可以成功地应用于液滴扩散。粘度会影响跳跃频率,但不会影响跳跃长度。综合这些数据,我们可以确定溶液/空气界面对玻璃的接触线摩擦力与粘度成正比,并且与粘合功呈指数关系。

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