Noblin X, Buguin A, Brochard-Wyart F
Physico-Chimie Curie, UMR 168 Institut Curie / CNRS, 11 rue Pierre et Marie Curie, 75231 Cedex 05 Paris, France.
Eur Phys J E Soft Matter. 2004 Aug;14(4):395-404. doi: 10.1140/epje/i2004-10021-5.
We study the effects of vertical vibrations on non-wetting large water sessile drops flattened by gravity. The solid substrate is characterized by a finite contact angle hysteresis (10-15 degrees). By varying the frequency and the amplitude of the vertical displacement, we observe two types of oscillations. At low amplitude, the contact line remains pinned and the drop presents eigen modes at different resonance frequencies. At higher amplitude, the contact line moves: it remains circular but its radius oscillates at the excitation frequency. The transition between these two regimes arises when the variations of contact angle exceed the contact angle hysteresis. We interpret different features of these oscillations, such as the decrease of the resonance frequencies at larger vibration amplitudes. The hysteresis acts as "solid" friction on the contour oscillations, and gives rise to a stick-slip regime at intermediate amplitude.
我们研究了垂直振动对因重力而变扁的不润湿大型水基静止液滴的影响。固体基底的特征在于有限的接触角滞后(10 - 15度)。通过改变垂直位移的频率和幅度,我们观察到两种类型的振荡。在低幅度时,接触线保持固定,液滴呈现出不同共振频率下的本征模式。在较高幅度时,接触线移动:它保持圆形但其半径以激励频率振荡。当接触角的变化超过接触角滞后时,这两种状态之间会发生转变。我们解释了这些振荡的不同特征,例如在较大振动幅度下共振频率的降低。滞后对轮廓振荡起到“固体”摩擦的作用,并在中等幅度下产生粘滑状态。