Experimental study on the dynamics of droplet impacting on solid surface

被引:19
|
作者
Li, Jiangfeng [1 ]
Zhao, Chen [1 ]
Wang, Chengyao [1 ]
机构
[1] Shanghai Univ Elect Power, Coll Energy & Mech Engn, Shanghai 200090, Peoples R China
关键词
Droplet impact; Hydrophobic surface; Maximum spreading; Low surface energy droplet; Energy model; DIFFERENT WETTABLE SURFACES; MAXIMUM SPREADING FACTOR; LIQUID DROPLETS;
D O I
10.1007/s10404-023-02680-1
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
An experimental visualization is undertaken to investigate the impact dynamic behaviors of water, absolute ethanol, and low surface energy droplets with different viscosities impacting on hydrophobic surfaces. Droplets' impacting behaviors, including spreading, rebounding, and oscillation retraction, are observed and quantitatively characterized by transient spreading factor and maximum spreading diameter. Effects of droplet impact velocity, surface wettability, and droplet viscosity on the impact dynamics are explored and analyzed. As the droplet impact velocity increases, the droplet kinetic energy increases, resulting in an increase in the spreading factor and spreading velocity simultaneously. Hydrophobic surfaces are not easy to be wetted by water droplets due to their low surface energy, leading to the partial rebound of water droplets when impacting on the hydrophobic surfaces. However, this phenomenon does not occur when low surface energy droplets, such as absolute ethanol and simethicone, impact on hydrophobic surfaces at the same velocity. The increasing droplet viscosity enhances the viscous dissipation, slowing down the impact process and inhibiting the droplet spreading, oscillation, and retraction behaviors. Based on the energy conservation method, a universal model for the maximum spreading factor of low surface energy droplets with different viscosities impacting on hydrophobic surface was established. According to the experimental results, a new spreading time model t(m) = 2D(0)/U-0 was proposed to enhance applicability of the model for low surface energy droplets with high viscosity, reducing the calculation error to less than 10%.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Experimental study on the dynamics of droplet impacting on solid surface
    Jiangfeng Li
    Chen Zhao
    Chengyao Wang
    Microfluidics and Nanofluidics, 2023, 27
  • [2] Experimental study of spread characteristics of droplet impacting solid surface
    Bi Fei-Fei
    Guo Ya-Li
    Shen Sheng-Qiang
    Chen Jue-Xian
    Li Yi-Qiao
    ACTA PHYSICA SINICA, 2012, 61 (18)
  • [3] Experimental study on the droplet dynamics after impacting an inclined superhydrophobic surface
    Wang, Kaimin
    Liu, Jiawei
    Yang, Xiaowei
    Mu, Lin
    Liu, Xiaohua
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2023, 675
  • [4] Experimental Study on the Dynamics of a Moving Droplet Impacting a Sessile Droplet
    Chen, D.
    Ming, L.
    Wang, T.
    Qiu, M.
    Lin, Z.
    JOURNAL OF APPLIED FLUID MECHANICS, 2024, 17 (02) : 310 - 321
  • [5] Experimental study on the dynamics of a liquid nitrogen droplet impacting a surface under Leidenfrost conditions
    Miao, Qingshuo
    Liu, Xiufang
    Chen, Jiajun
    Li, Yanan
    Zhong, Fuhao
    Zheng, Mian
    Hou, Yu
    CRYOGENICS, 2024, 142
  • [6] Experimental investigation on the dynamics of a single water droplet impacting wood surface
    Zhao, Yanli
    Kuang, Shibing
    Zhang, Xiaoliang
    Xu, Mingjun
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2024, 151
  • [7] Study on spreading of liquid droplet impacting on a solid dry surface
    Song Yunchao
    Wang Chunhai
    Ning Zhi
    MECHANICAL, MATERIALS AND MANUFACTURING ENGINEERING, PTS 1-3, 2011, 66-68 : 888 - 893
  • [8] Experimental study of a droplet impacting on a burning fuel liquid surface
    Xu, MingJun
    Wang, ChangJian
    Lu, ShouXiang
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2016, 74 : 347 - 353
  • [9] Experimental Study on a Water Droplet Impacting on the Heated Glycerol Surface
    S. Jin
    W. Zhang
    Z. Guo
    Y. Yuan
    Z. Shi
    J. Yan
    Fluid Dynamics, 2023, 58 : 1502 - 1516
  • [10] Experimental Study on a Water Droplet Impacting on the Heated Glycerol Surface
    Jin, S.
    Zhang, W.
    Guo, Z.
    Yuan, Y.
    Shi, Z.
    Yan, J.
    FLUID DYNAMICS, 2023, 58 (08) : 1502 - 1516