超疏水表面上液滴碰撞的分融判据
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作者单位:

西南科技大学 制造过程测试技术教育部重点实验室,绵阳 621010

作者简介:

李珂(2000—),女,硕士研究生,主要从事液滴碰撞动力学方向的研究,(E-mail)992806990@qq.com。

通讯作者:

袁卫锋(1970—),男,教授,博士生导师,主要从事小能量采集、复合材料、计算力学和集群算法等方向的研究,(E-mail)yuanweifeng@swust.edu.cn。

中图分类号:

O313.4

基金项目:

国家自然科学基金资助项目(12072300)。


Coalescence or bounce criterion for droplet collision on a superhydrophobic surface
Author:
Affiliation:

Key Laboratory of Testing Technology for Manufacturing Process, Ministry of Education, Southwest University of Science and Technology, Mianyang, Sichuan 621010, P. R. China

Fund Project:

Supported by National Natural Science Foundation of China (12072300).

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    摘要:

    探究液滴速度对二元同尺寸液滴在超疏水表面上正面碰撞的行为变化,以纯水滴为研究对象,用高速摄影机观察液滴的碰撞过程,并建立碰撞后融合或弹开临界条件的理论模型,能够预测液滴碰撞后融合与弹开的临界速度。研究结果表明,随着液滴速度的提高,液滴碰撞后合并的可能性增大;液滴尺寸越大,液滴碰撞后融合或弹开的临界速度越低;液滴碰撞变形过程中内部压强增大超过表面张力承受极限,液滴就会发生融合。所建立的理论方法与实验结果吻合的较好。提出的理论模型可用于预测液滴在一定速度下的行为变化,达到控制液滴碰撞行为的目的,可应用于液滴操控、液滴传感、微反应器等领域。

    Abstract:

    This study investigates the influence of droplet velocity on the collision behavior of equal-sized binary water droplets impacting head-on on a superhydrophobic surface. Using a high-speed camera, the dynamic process of droplet collision process was recorded, and a theoretical model was developed to describe the critical conditions governing post-collision coalescence or bouncing. The model accurately predicts the critical velocity that determines whether droplets coalesce or rebound after collision. Experimental results show that as droplet velocity increases, the probability of coalescence also increases, while larger droplet diameters correspond to lower critical velocities for the coalescence-bouncing transition. During the deformation stage of collision, internal pressure within the droplets may exceed the surface tension threshold, resulting in coalescence. The proposed theoretical model demonstrates strong agreement with experimental observations and can effectively predict droplet behavior at various velocities. This provides a theoretical basis for controlling droplet collision dynamics, with potential applications in droplet manipulation, sensing, and microreactor technologies.

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李珂,王积硕,袁卫锋.超疏水表面上液滴碰撞的分融判据[J].重庆大学学报,2025,48(12):49-59.

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  • 收稿日期:2024-07-01
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  • 在线发布日期: 2026-01-12
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