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Wetting films: A technique for probing the microscopic meniscus using white light interferometry

机译:湿膜:使用白光干涉法探测微观弯月面的技术

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摘要

The affinity between a liquid and a solid is characterised by the contact angle. Traditional contact angle measurement techniques such as the sessile drop and Wilhelmy plate methods provide macroscopic information about the solid-liquid-vapour contact line. Our knowledge of the microscopic details is incomplete due to experimental limitations. In order to examine a liquid meniscus on a microscopic scale we adapted the white light interferometry used in the Surface Force Apparatus. With this approach we extract film thickness with nanometre resolution and its variation over tens of micrometres along the solid surface. We describe here the technique and its application to the spreading of an aqueous 0.1 M KCl droplet on a freshly cleaved sheet of mica. The film profile was also followed throughout the spreading and subsequent evaporation of an ethanol droplet. Microscopic details obtainable with this technique can provide a check for theoretical descriptions of wetting. They could offer a unique insight into the early stages of coating, liquid creeping and surface reactivity. Such details are relevant to corrosive films creeping on pipes in process plants, evaporation from heat exchangers, and the application and drying of paints and adhesives.
机译:液体和固体之间的亲和力以接触角为特征。传统的接触角测量技术(如无滴法和Wilhelmy平板法)提供了有关固液蒸气接触线的宏观信息。由于实验的局限性,我们对微观细节的了解不完整。为了在微观尺度上检查液体弯月面,我们采用了表面力设备中使用的白光干涉测量法。通过这种方法,我们可以提取具有纳米分辨率的薄膜厚度,以及沿着固体表面数十微米的变化。我们在这里描述了该技术及其在新鲜裂解的云母片上0.1M KCl水溶液的散布过程中的应用。在整个乙醇液滴的散布和随后的蒸发过程中,还跟踪薄膜的轮廓。用这种技术可获得的微观细节可以检验润湿的理论描述。他们可以提供有关涂层,液体蠕变和表面反应性早期阶段的独特见解。这些细节与在加工厂的管道上蠕动的腐蚀膜,热交换器的蒸发以及油漆和粘合剂的施加和干燥有关。

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