Zhao Shengteng, Ma Zhichao, Song Mingkai, Tan Libo, Zhao Hongwei, Ren Luquan
School of Mechanical and Aerospace Engineering, Jilin University, Changchun, 130025, China.
Key Laboratory of Bionic Engineering Ministry of Education, Jilin University, Changchun, 130025, China.
Nat Commun. 2023 Oct 18;14(1):6572. doi: 10.1038/s41467-023-42375-3.
Clarifying the consecutive droplet rebound mechanisms can provide scientific inspirations to regulate dynamic wettability of superhydrophobic surface, which facilitates the practical applications on efficient heat control and active anti-icing. Generally, droplet rebound behaviors are directly affected by surface structure and Weber number. Here, we report a novel "golden section" design criterion to regulate the droplet rebound number determined by the structure spacing, subverting conventional knowledge. Especially, the droplet can continuously rebound for 17 times on the metal-based surface, exhibiting an amazing phenomenon of "droplet trampoline". The droplet rebound number has been experimentally revealed to be closely related to Weber number. We propose novel quantitative formulas to predict droplet rebound number and clarify the coupling effect of the structure spacing and the Weber number on the rebound mechanisms, which can be utilized to establish the regulation criteria of rebound numbers and develop novel metal-based superhydrophobic materials.
阐明连续的液滴反弹机制可为调控超疏水表面的动态润湿性提供科学启示,这有利于高效热控和主动防冰的实际应用。一般来说,液滴反弹行为直接受表面结构和韦伯数的影响。在此,我们报告了一种新颖的“黄金分割”设计准则,以调控由结构间距决定的液滴反弹次数,颠覆了传统认知。特别是,液滴能在金属基表面连续反弹17次,展现出惊人的“液滴蹦床”现象。实验表明,液滴反弹次数与韦伯数密切相关。我们提出了新颖的定量公式来预测液滴反弹次数,并阐明结构间距和韦伯数对反弹机制的耦合作用,这可用于建立反弹次数的调控准则并开发新型金属基超疏水材料。