Liu Cong, Lu Chenguang, Yuan Zichao, Lv Cunjing, Liu Yahua
Key Laboratory for Precision and Non-Traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian, 116024, P. R. China.
Department of Engineering Mechanics and Center for Nano and Micro Mechanics, AML, Tsinghua University, Beijing, 100084, P. R. China.
Nat Commun. 2022 Jun 6;13(1):3141. doi: 10.1038/s41467-022-30837-z.
Guided drop transport is of great importance in various water and thermal management technologies. Unidirectional drop transport on a hot surface has been widely developed, but a bidirectional reversal is still challenging. Here, we report a steerable transport of drop impinging on heated concentric microgroove arrays, on which the directionality of drop transport is dictated by the drop boiling modes. In the transition boiling state, the driving force originated from the Laplace pressure difference rendered by the microgrooves, which enables the drop rebounding towards the center of curvature. While in the film boiling state, a net force towards the opposite side is generated between the grooves and the penetrated liquid, that drives the drop far away from the center of curvature. Our experimental and theoretical results uncover that the lateral displacement is controlled by both the Weber number and off-center distance. These findings strengthen our fundamental understanding of drop impact dynamics at high temperatures and are essential for effective cooling of hot-spot cores and drop sieving.
在各种水和热管理技术中,引导液滴传输非常重要。热表面上的单向液滴传输已得到广泛发展,但双向反转仍然具有挑战性。在此,我们报告了撞击加热同心微槽阵列的液滴的可控传输,其上液滴传输的方向性由液滴沸腾模式决定。在过渡沸腾状态下,驱动力源自微槽产生的拉普拉斯压差,这使得液滴向曲率中心反弹。而在膜沸腾状态下,微槽与渗透液体之间会产生一个朝向相反方向的净力,该力驱使液滴远离曲率中心。我们的实验和理论结果表明,横向位移受韦伯数和偏心距控制。这些发现加深了我们对高温下液滴撞击动力学的基本理解,对于热点核心的有效冷却和液滴筛分至关重要。