Yi Nan, Huang Bin, Dong Lining, Quan Xiaojun, Hong Fangjun, Tao Peng, Song Chengyi, Shang Wen, Deng Tao
State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240 (P.R. China).
Sci Rep. 2014 Mar 7;4:4303. doi: 10.1038/srep04303.
This report investigates the impact of droplet temperature on the head-on collision of binary droplets on a superhydrophobic surface. Understanding droplet collision is critical to many fundamental processes and industrial applications. There are many factors, including collision speed, collision angle, and droplet composition, that influence the outcome of the collision between binary droplets. This work provides the first experimental study of the influence of droplet temperature on the collision of binary droplets. As the droplet temperature increases, the possibility increases for the two droplets to coalesce after collision. The findings in this study can be extended to collision of droplets under other conditions where control of the droplet temperature is feasible. Such findings will also be beneficial to applications that involve droplet collision, such as in ink-jet printing, steam turbines, engine ignition, and spraying cooling.
本报告研究了液滴温度对超疏水表面上二元液滴正面碰撞的影响。理解液滴碰撞对于许多基础过程和工业应用至关重要。有许多因素,包括碰撞速度、碰撞角度和液滴成分,会影响二元液滴之间碰撞的结果。这项工作首次对液滴温度对二元液滴碰撞的影响进行了实验研究。随着液滴温度升高,两个液滴碰撞后合并的可能性增加。本研究中的发现可以扩展到在其他可控制液滴温度的条件下的液滴碰撞。这些发现对于涉及液滴碰撞的应用也将是有益的,例如在喷墨打印、蒸汽轮机、发动机点火和喷雾冷却中。