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朝着全面理解表面活性剂添加对改变水滴冲击动力学影响迈出的进一步步伐。

Further Step toward a Comprehensive Understanding of the Effect of Surfactant Additions on Altering the Impact Dynamics of Water Droplets.

作者信息

Esmaeili Amir R, Mir Noshin, Mohammadi Reza

机构信息

Department of Mechanical and Nuclear Engineering, Virginia Commonwealth University, Richmond, Virginia 23284, United States.

出版信息

Langmuir. 2021 Jan 19;37(2):841-851. doi: 10.1021/acs.langmuir.0c03192. Epub 2021 Jan 4.

Abstract

The addition of surfactants to pure water for specific applications has made controlling the impact dynamics of surfactant-laden droplets a complex phenomenon. This work investigates the influence of the molecular weight (MW), concentration, and ionic nature of the surfactants as well as the substrate surface characteristics on the impact dynamics of surfactant-laden droplets using a high-speed camera at 10 000 frames per second. Sodium dodecyl sulfate, hexadecyltrimethylammonium bromide, and -decanoyl--methylglucamine were used as anionic, cationic, and nonionic surfactants, respectively. We used hydrophilic glass slides, hydrophobic polytetrafluoroethylene, and superhydrophobic alkyl ketene dimer (AKD) as substrates. The results show that the efficiency of the surfactant addition in increasing the maximum spreading diameter is significantly influenced by the molecular weight and ionic nature of the solutions as well as the nonwettability of the substrate. Among all of the surfaces examined, the concentration and ionic nature of the solutions were found to be more dominant parameters in determining the energy dissipation in the retraction phase of the droplet impact on the superhydrophobic AKD surfaces. As the concentration decreases or positive charges are present in the solution, it is more likely to observe a similar retraction dynamic to pure water when the droplet hits the superhydrophobic AKD having negatively charged surface sites. Finally, in terms of the impact outcomes of the surfactant-laden droplets on the superhydrophobic AKD, it is shown that the influence of the surfactant addition is more noticeable at lower Weber numbers, where the droplet tries to rebound by overcoming the energy loss that occurred in the spreading.

摘要

在特定应用中向纯水中添加表面活性剂,使得控制含表面活性剂液滴的冲击动力学成为一个复杂的现象。本研究使用每秒10000帧的高速摄像机,研究了表面活性剂的分子量(MW)、浓度、离子性质以及基底表面特性对含表面活性剂液滴冲击动力学的影响。分别使用十二烷基硫酸钠、十六烷基三甲基溴化铵和N-癸酰基-N-甲基葡糖胺作为阴离子、阳离子和非离子表面活性剂。我们使用亲水性载玻片、疏水性聚四氟乙烯和超疏水性烷基烯酮二聚体(AKD)作为基底。结果表明,添加表面活性剂增加最大铺展直径的效率受到溶液的分子量、离子性质以及基底的非润湿性的显著影响。在所有测试表面中,发现溶液的浓度和离子性质是决定液滴冲击超疏水AKD表面回缩阶段能量耗散的更主要参数。当溶液浓度降低或溶液中存在正电荷时,当液滴撞击具有带负电表面位点的超疏水AKD时,更有可能观察到与纯水相似的回缩动力学。最后,就含表面活性剂液滴对超疏水AKD的冲击结果而言,结果表明,在较低的韦伯数下,表面活性剂添加的影响更为明显,此时液滴试图通过克服铺展过程中发生的能量损失而反弹。

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