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液滴的自发铺展:固体连续性和前进接触角的作用。

Spontaneous Spreading of a Droplet: The Role of Solid Continuity and Advancing Contact Angle.

机构信息

Department of Mechanical Engineering , Stevens Institute of Technology , Hoboken , New Jersey 07030 , United States.

Department of Materials Science and Engineering , Michigan Technological University , Houghton , Michigan 49931 , United States.

出版信息

Langmuir. 2018 May 1;34(17):4945-4951. doi: 10.1021/acs.langmuir.8b00522. Epub 2018 Apr 17.

Abstract

Spontaneous spreading of a droplet on a solid surface is poorly understood from a macroscopic level down to a molecular level. Here, we investigate the effect of surface topography and wettability on spontaneous spreading of a water droplet. Spreading force is measured for a suspended droplet that minimizes interference of kinetic energy in the spontaneous spreading during its contact with solid surfaces of discontinuous (pillar) and continuous (pore) patterns with various shapes and dimensions. Results show that a droplet cannot spread spontaneously on pillared surfaces regardless of their shapes or dimensions because of the solid discontinuity. On the contrary, a droplet on pored surfaces can undergo spontaneous spreading whose force increases with a decrease in the advancing contact angle. Theoretical models based on both the system free energy and capillary force along the contact line validate the direct and universal dependency of the spontaneous spreading force on the advancing contact angle.

摘要

从宏观层面到分子层面,液滴在固体表面的自发铺展都很难理解。在这里,我们研究了表面形貌和润湿性对液滴自发铺展的影响。我们测量了悬浮液滴的铺展力,该液滴在与具有各种形状和尺寸的不连续(柱)和连续(孔)图案的固体表面接触时,最小化了动力学能量对自发铺展的干扰。结果表明,由于固体不连续性,液滴无法在柱状表面上自发铺展。相反,液滴在多孔表面上可以进行自发铺展,其力随前进接触角的减小而增加。基于系统自由能和沿接触线的毛细作用力的理论模型验证了自发铺展力与前进接触角的直接和普遍依赖性。

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