Effect of Contact Angle Hysteresis on Droplet Dynamic Behaviors for Hybrid Surface

被引:0
|
作者
机构
[1] Ma, Xue-Hu
[2] Du, Bin-Gang
[3] Hu, Shao-Bo
[4] Chen, Yan-Song
[5] Lan, Zhong
[6] Hao, Ting-Ting
来源
| 2017年 / Science Press卷 / 38期
关键词
Surface properties - Contact angle - Sodium hydroxide - Heat transfer - Drops - Hydrophobicity - Hysteresis - Nanostructures - Scanning electron microscopy - Condensation - Etching;
D O I
暂无
中图分类号
学科分类号
摘要
Superhydrophobic-hydrophobic hybrid surface with different Contact Angle Hysteresis (CAH) in superhydrophobic region are prepared by controlling the etching time of NaOH and (NH4)2S2O8 mixed solution. Departure droplet diameters, sweeping period and drop size distribution of different surfaces are researched through experiments in this paper. Environmental Scanning electron microscopy(ESEM) results show that micro-nano structures of superhydrophobic surface become finer with the increase of etching time, which lead to the increase of CAH of the superhydrophobic surface. Two kinds of droplets drainage behaviors are observed in the condensation experiment: droplets suction horizontally and trans-regional droplets shedding. Superhydrophobic surface with larger CAH is more capable to aggregate the droplets on hydrophobic region thus enhance the renewal of condensation surface and heat transfer performance. Departure droplet diameters of trans-regional droplets decrease with the increase of CAH of the superhydrophobic region and the sweeping period has the same tendency. Compared with completely hydrophobic surface, droplets radius on hydrophobic region of hybrid surface are smaller, which are mainly distributed in 0-50 μm range. © 2017, Science Press. All right reserved.
引用
收藏
相关论文
共 50 条
  • [21] Dynamic contact angle hysteresis in liquid bridges
    Shi, Zhang
    Zhang, Yi
    Liu, Mingchao
    Hanaor, Dorian A. H.
    Gan, Yixiang
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2018, 555 : 365 - 371
  • [22] Numerical Study on the Effect of Dynamic Contact Angle on Air Entrapment and Spreading of a Hollow Droplet Impacting on a Surface
    Virendra Patel
    Anshul Yadav
    Seshadev Sahoo
    Dhirendranath Thatoi
    Microgravity Science and Technology, 34
  • [23] Numerical Study on the Effect of Dynamic Contact Angle on Air Entrapment and Spreading of a Hollow Droplet Impacting on a Surface
    Patel, Virendra
    Yadav, Anshul
    Sahoo, Seshadev
    Thatoi, Dhirendranath
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2022, 34 (03)
  • [24] Contact angle hysteresis and hysteresis tension on rough solid surface
    Wang, XD
    Peng, XF
    Wang, BX
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2004, 12 (05) : 615 - 621
  • [25] ON THE EFFECT OF THE CONTACT ANGLE HYSTERESIS FOR SMALL DROPLETS ON A WETTABILITY GRADIENT SURFACE
    Reis, Felipe M. Mancio
    Lavieille, Pascal
    Blanco, Stephane
    Miscevic, Marc
    INTERFACIAL PHENOMENA AND HEAT TRANSFER, 2016, 4 (01) : 81 - 91
  • [26] Contact Angle Hysteresis and Hysteresis Tension on Rough Solid Surface
    王晓东
    彭晓峰
    王补宣
    ChineseJournalofChemicalEngineering, 2004, (05) : 23 - 29
  • [27] Numerical studies of the influence of the dynamic contact angle on a droplet impacting on a dry surface
    Yokoi, Kensuke
    Vadillo, Damien
    Hinch, John
    Hutchings, Ian
    PHYSICS OF FLUIDS, 2009, 21 (07)
  • [28] Droplet impingement on a solid surface: Parametrization and asymmetry of dynamic contact angle model
    Sinha, Utkarsh
    Mynam, Mahesh
    Nadimpalli, Nagaravi Kumar Varma
    Runkana, Venkataramana
    PHYSICS OF FLUIDS, 2023, 35 (06)
  • [29] Dynamic Contact Angle of Modified Biopolymer Droplet on Urea Surface: Temperature Effects
    Samsudin, Yon Norasyikin
    KuShaari, KuZilati
    Man, Zakaria
    Sufian, Suriati
    ADVANCED MATERIALS ENGINEERING AND TECHNOLOGY II, 2014, 594-595 : 566 - 570
  • [30] Contact angle hysteresis and motion behaviors of a water nano-droplet on suspended graphene under temperature gradient
    Foroutan, Masumeh
    Fatemi, S. Mahmood
    Esmaeilian, Farshad
    Naeini, Vahid Fadaei
    Baniassadi, Majid
    PHYSICS OF FLUIDS, 2018, 30 (05)