Department of Mechanical Engineering, The University of Hong Kong, Hong Kong, 999077, Hong Kong.
Department of Mechanics and Aerospace Engineering, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, China.
Small. 2022 Jun;18(22):e2200277. doi: 10.1002/smll.202200277. Epub 2022 Mar 20.
Droplet impact is a ubiquitous phenomenon in nature, daily life, and industrial processes. It is thus crucial to tune the impact outcomes for various applications. As a special outcome of droplet impact, the bouncing of droplets keeps the form of the droplets after the impact and minimizes the energy loss during the impact, being beneficial in many applications. A unified understanding of droplet bouncing is in high demand for effective development of new techniques to serve applications. This review shows the fundamentals, regulations, and applications of millimeter-sized droplet bouncing on solid surfaces and same/miscible liquids (liquid pool and another droplet). Regulation methods and current applications are summarized, and potential directions are proposed.
液滴撞击是自然界、日常生活和工业过程中普遍存在的现象。因此,调整各种应用的撞击结果至关重要。作为液滴撞击的一种特殊结果,液滴的反弹在撞击后保持了液滴的形状,并使撞击过程中的能量损失最小化,这在许多应用中是有益的。为了有效地开发新技术以满足应用需求,人们迫切需要对液滴反弹的统一理解。本文综述了毫米级液滴在固体表面和同种/可混溶液体(液池和另一个液滴)上反弹的基本原理、规律和应用。总结了调控方法和当前的应用,并提出了潜在的发展方向。