How drops start sliding over solid surfaces

  • Gao, Nan; 
  • Geyer, Florian; 
  • Pilat, Dominik W.; 
  • Wooh, Sanghyuk; 
  • Vollmer, Doris; 
  • 외 2명
Citations

WEB OF SCIENCE

354
Citations

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360

초록

It has been known for more than 200 years that the maximum static friction force between two solid surfaces is usually greater than the kinetic friction force-the force that is required to maintain the relative motion of the surfaces once the static force has been overcome. But the forces that impede the lateral motion of a drop of liquid on a solid surface are not as well characterized, and there is a lack of understanding about liquid-solid friction in general. Here, we report that the lateral adhesion force between a liquid drop and a solid can also be divided into a static and a kinetic regime. This striking analogy with solid-solid friction is a generic phenomenon that holds for liquids of different polarities and surface tensions on smooth, rough and structured surfaces.

키워드

LIQUID-DROPS; SILICONE NANOFILAMENTS; CONTACT ANGLES; WATER DROP; FORCE; RETENTION; FRICTION; MOTION; SCALE; PLATE
제목
How drops start sliding over solid surfaces
저자
Gao, Nan; Geyer, Florian; Pilat, Dominik W.; Wooh, Sanghyuk; Vollmer, Doris; Butt, Hans-Juergen; Berger, Ruediger
DOI
10.1038/NPHYS4305
발행일
2018-02
유형
Article
저널명
Nature Physics
권
14
호
2
페이지
191 ~ 196