Chen Longquan, Bonaccurso Elmar, Deng Peigang, Zhang Haibo
State Key Laboratory of Traction Power, Applied Mechanics and Structure Safety Key Laboratory of Sichuan Province, School of Mechanics and Engineering, Southwest Jiaotong University, Chengdu 610031, People's Republic of China.
Airbus Group Innovations, 81663 Munich, Germany.
Phys Rev E. 2016 Dec;94(6-1):063117. doi: 10.1103/PhysRevE.94.063117. Epub 2016 Dec 28.
In this work, we experimentally investigate the impact of water droplets onto soft viscoelastic surfaces with a wide range of impact velocities. Several impact phenomena, which depend on the dynamic interaction between the droplets and viscoelastic surfaces, have been identified and analyzed. At low We, complete rebound is observed when the impact velocity is between a lower and an upper threshold, beyond which droplets are deposited on the surface after impact. At intermediate We, entrapment of an air bubble inside the impinging droplets is found on soft surfaces, while a bubble entrapment on the surface is observed on rigid surfaces. At high We, partial rebound is only identified on the most rigid surface at We≳92. Rebounding droplets behave similarly to elastic drops rebounding on superhydrophobic surfaces and the impact process is independent of surface viscoelasticity. Further, surface viscoelasticity does not influence drop spreading after impact-as the surfaces behave like rigid surfaces-but it does affect drop recoiling. Also, the postimpact drop oscillation on soft viscoelastic surfaces is influenced by dynamic wettability of these surfaces. Comparing sessile drop oscillation with a damped harmonic oscillator allows us to conclude that surface viscoelasticity affects the damping coefficient and liquid surface tension sets the spring constant of the system.
在这项工作中,我们通过实验研究了在广泛的冲击速度下,水滴对柔软粘弹性表面的影响。已识别并分析了几种取决于水滴与粘弹性表面之间动态相互作用的冲击现象。在低韦伯数下,当冲击速度介于下限和上限阈值之间时,观察到完全反弹,超过该阈值后,水滴在冲击后会沉积在表面上。在中等韦伯数下,在柔软表面上发现撞击水滴内部会截留气泡,而在刚性表面上则观察到表面截留气泡。在高韦伯数下,仅在韦伯数≳92的最刚性表面上识别出部分反弹。反弹的水滴表现类似于在超疏水表面上反弹的弹性水滴,并且冲击过程与表面粘弹性无关。此外,表面粘弹性在冲击后不影响液滴铺展——因为表面表现得像刚性表面——但它确实会影响液滴回弹。而且,柔软粘弹性表面上的冲击后液滴振荡受这些表面的动态润湿性影响。将静置液滴振荡与阻尼谐振子进行比较使我们能够得出结论,表面粘弹性影响阻尼系数,而液体表面张力设定了系统的弹簧常数。