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Impact forces of water drops falling on superhydrophobic surfaces

ORAL

Abstract

A falling liquid drop, after impact on a rigid substrate, deforms and spreads, owing to the normal reaction force. Subsequently, if the substrate is non-wetting, the drop retracts and then jumps off. As we show here, not only is the impact itself associated with a distinct peak in the temporal evolution of the normal force, but also the jump-off, which was hitherto unknown. We characterize both peaks and elucidate how they relate to the different stages of the drop impact process. The time at which the second peak appears coincides with the formation of a Worthington jet, emerging through flow-focusing. Even low-velocity impacts can lead to a surprisingly high second peak in the normal force, even larger than the first one, namely when the Worthington jet becomes singular due to the collapse of an air cavity in the drop.

Publication: -

Presenters

  • Detlef Lohse

    University of Twente

Authors

  • Detlef Lohse

    University of Twente

  • Bin Zhang

    Tsinghua University

  • Vatsal Sanjay

    Univ of Twente, Univ. of Twente

  • Songlin Shi

    Tsinghua University, Tsinghua Univ.

  • Yinggang Zhao

    Tsinghua University, Tsinghua Univ

  • Xi-Qiao Feng

    Tsinghua University, Tsinghua Univ.

  • Cunjing Lv

    Tsinghua University, Tsinghua Univ.