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A comparative study of droplet impact dynamics on a dual-scaled superhydrophobic surface and lotus leaf

机译:双尺度超疏水表面与荷叶上液滴碰撞动力学的比较研究

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摘要

The impact dynamics of water droplets on an artificial dual-scaled superhydrophobic surface was studied and compared with that of a lotus leaf with impact velocity V up to 3 m/s. The lower critical impact velocity for the bouncing of droplets was about 0.08 m/s on both surfaces. At relatively low impact velocities, regular rebound of droplets and air bubble trapping and flow jetting on both surfaces were observed as V was increased. For intermediate V, partial pinning and rebound of droplets were found on the artificial dual-scaled surface due to the penetration of the droplets into the micro- and nano-scale roughness. On the lotus leaf, however, the droplets bounced off with intensive vibrations instead of being partially pinned on the surface because of the irregular distribution of microbumps on the leaf. As the impact velocity was sufficiently high, droplet splashing occurred on both surfaces. The contact time and restitution coefficient of the impinging droplets were also measured and discussed.
机译:研究了水滴在人造双尺度超疏水表面上的冲击动力学,并将其与荷叶的冲击速度V高达3 m / s进行了比较。液滴弹跳在两个表面上的较低临界冲击速度均为约0.08 m / s。在相对较低的冲击速度下,随着V的增加,观察到液滴的定期回弹以及气泡在两个表面上的捕集和流动喷射。对于中间V,由于液滴渗透到微米级和纳米级粗糙度中,在人造双标度表面上发现了液滴的部分钉扎和回弹。但是,在荷叶上,由于微凸点在叶上的不规则分布,液滴在剧烈振动下反弹而不是部分固定在表面上。当冲击速度足够高时,在两个表面上都发生液滴飞溅。还测量并讨论了撞击液滴的接触时间和恢复系数。

著录项

  • 来源
    《Applied Surface Science》 |2011年第21期|p.8857-8863|共7页
  • 作者单位

    Department of Mechanical Engineering, Hong Kong University of Science and Technology, dear Water Bay, Kowloon, Hong Kong,Center of Smart Interfaces, Technical University Darmstadt, 64289 Darmstadt, Germany;

    Department of Electronic and Computer Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong;

    Department of Electronic and Information Engineering, Hong Kong Polytechnic University, Hung Horn, Kowloon, Hong Kong;

    Department of Mechanical Engineering, Hong Kong University of Science and Technology, dear Water Bay, Kowloon, Hong Kong;

    Department of Mechanical Engineering, Hong Kong University of Science and Technology, dear Water Bay, Kowloon, Hong Kong;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    droplet impact; superhydrophobic surface; dual-scale; rebound; contact time; air trapping;

    机译:液滴冲击;超疏水表面;双尺度;回弹;接触时间;空气滞留;
  • 入库时间 2022-08-18 03:07:07

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