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Dynamic contact angle and three-phase contact line of water drop on copper surface

机译:铜表面上的动态接触角和三相接触线

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Nowadays there is a lack of experimental data describing the physical process of drop spreading on a solid metal surface for developing wetting and spreading theory. The experimental data obtained by using the high speed video-recording will allow to identify unknown previously spreading modes as well as the change of the dynamic contact angle and the three-phase contact line. The purpose of the work is to determine the effect of the drop growth rate and the copper substrate surface roughness on the dynamic contact angle and the three-phase contact line speed at distilled water drop spreading. Shadow and Schlieren methods are used to obtain experimental data. Three drop spreading modes on the rough surfaces were identified. Time dependences of the dynamic contact angle and contact line speed were obtained. Experimental results can be used for assessing the validity of the developed mathematical models of wetting and spreading processes in the field of micro- and nano-electronics, ink jet printing, thin-film coatings, spray cooling, and optoelectronics.
机译:如今,缺乏描述用于开发润湿和扩散理论的固体金属表面上的下降的物理过程的实验数据。通过使用高速视频记录获得的实验数据将允许识别未知的先前扩散模式以及动态接触角和三相接触线的变化。该工作的目的是确定降液速率和铜基板表面粗糙度对动态接触角的影响和蒸馏水下降的三相接触线速度。 Shadow和Schlieren方法用于获得实验数据。鉴定了粗糙表面上的三种滴落模式。获得动态接触角和接触线速度的时间依赖性。实验结果可用于评估微型和纳米电子,喷墨印刷,薄膜涂层,喷雾冷却和光电子领域的润湿和传播过程的发育数学模型的有效性。

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