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首页> 外文期刊>Applied Surface Science >Dynamic characteristics of droplet impingement on carbon nanotube array surfaces with varying wettabilities
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Dynamic characteristics of droplet impingement on carbon nanotube array surfaces with varying wettabilities

机译:不同破坏性碳纳米管阵列表面液滴冲击的动态特性

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This work experimentally investigated the water droplet impingement behaviors on carbon nanotube (CNT) array surfaces characterized by different wettabilities from hydrophilicity to superhydrophobicity. By varying the impact velocity, six typical dynamic behaviors of droplet impact were identified and a related droplet regime map was developed under different wettabilities. To further investigate the evolution behavior of droplet impact, the dynamic contact angle (DCA) and spreading factor were measured and analyzed. The damped oscillations of DCA were observed for wettable and mildly hydrophobic CNT array surfaces, while the approximate impact inertia independence was verified for high hydrophobicity or even superhydrophobicity. The contact line velocity in the vicinity of triple phase interface was found to be highly related to the DCA variation at the initial stage of spreading. The discrepancy of DCA on different wettable surfaces reduced significantly with the increase of Weber number. The reduction in post-impact CAs and resultant wettability enhancement after droplet impingement was mainly attributed to self-assembly structures caused by the capillary action during the spreading phase.
机译:这项工作实验研究了碳纳米管(CNT)阵列表面上的水滴冲击行为,其特征在于不同的Wittability,来自亲水性与超流性。通过改变冲击速度,识别出六种典型的液滴冲击动态行为,并在不同的Wottabilities下开发了相关的液滴政权图。为了进一步研究液滴冲击的进化行为,测量并分析了动态接触角(DCA)和扩散因子。观察到DCA的阻尼振荡,用于润湿和轻度疏水的CNT阵列表面,而验证了高疏水性甚至超疏水性的​​近似冲击惯性独立性。发现三相界面附近的接触线速度与散射初始阶段的DCA变化高度相关。随着韦伯号的增加,不同可湿性表面上的DCA的差异显着减少。在液滴冲击后,液面冲击后的CAS和所得到的润湿性增强的减少主要归因于涂抹阶段期间毛细管作用引起的自组装结构。

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