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MOLECULAR-SCALE REAGENT TRANSPORT-INDUCED MODIFICATION OF LOW WEBER NUMBER DROPLET IMPACT DYNAMICS

机译:低韦伯数液滴冲击动力学的分子级反应物运输诱导修饰

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Effect of surfactant molecular mass transport on the normal impact and spreading of a droplet of its aqueous solution on dry horizontal substrates is investigated for a range of Weber numbers (We = 20 - 100). The impact dynamics, spreading and recoil behavior are captured using a high-speed digital video camera at 4000 frames per second. Digital image-processing software was used to determine the drop spread and height of the liquid film on the surface from each frame. Experiments were performed with water and with two different aqueous solutions of Sodium Dodecyl Sulphate (SDS), one at its half critical micelle concentration (CMC) and another at twice CMC, on a hydrophilic surface (glass) and a hydrophobic surface (Teflon). It is seen that surfactant concentration, its dynamic surface tension behavior, and surface wettability govern the transient impact-spreading-recoil phenomena. A droplet of SDS solution exhibits higher maximum spread and weaker surface oscillations compared to a pure water drop colliding with the same velocity. On a hydrophobic (Teflon) surface, the drop rebound is inhibited by the presence of the surfactant. These effects are more pronounced at surfactant concentration of twice CMC compared to that at half CMC.
机译:对于一定范围的韦伯数(We = 20-100),研究了表面活性剂分子量传输对其水溶液的液滴在水平面上正常冲击和散布的影响。使用高速数字摄像机以每秒4000帧的速度捕获冲击动力学,传播和后坐行为。使用数字图像处理软件确定每帧表面上的液滴分布和液膜高度。在亲水性表面(玻璃)和疏水性表面(聚四氟乙烯)上,用水和十二烷基硫酸钠(SDS)的两种不同水溶液进行实验,一种水溶液处于半临界胶束浓度(CMC),另一种处于两倍CMC。可以看出,表面活性剂的浓度,其动态表面张力行为和表面润湿性决定了瞬态冲击扩散-反冲现象。与以相同速度碰撞的纯水滴相比,一滴SDS溶液表现出更高的最大扩散和更弱的表面振荡。在疏水性(铁氟龙)表面上,表面活性剂抑制了滴反弹。与两倍于CMC的表面活性剂浓度相比,在两倍于CMC的表面活性剂浓度下,这些影响更为明显。

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