Glen McHale, Sara Janahi, Hernán Barrio‐Zhang, Yaofeng Wang, Jinju Chen, Gary G. Wells, Rodrigo Ledesma‐Aguilar
Kinetic frictional forces resisting droplet motion often appear to be separate from surface wettability and adhesive forces. Here we show that such friction arises from a simple combination of the contact angle hysteresis and adhesive force. We show theoretically, and confirm using tilt angle experiments of droplets on liquidlike surfaces, the dependence of the coefficient of droplet-on-solid kinetic friction on system parameters. We also show that a molecular kinetic-type model can describe the observed nonlinear velocity-force relationship. Our findings provide a fundamental understanding of the relationship between droplet-on-solid friction, and wettability and liquid adhesion.