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High-precision drop shape analysis on inclining flat surfaces: Introduction and comparison of this special method with commercial contact angle analysis

机译:倾斜平面上的高精度液滴形状分析:此特殊方法的介绍和商业接触角分析的比较

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Drop shape analysis is one of the most important and frequently used methods to characterise surfaces in the scientific and industrial communities. An especially large number of studies, which use contact angle measurements to analyse surfaces, are characterised by incorrect or misdirected conclusions such as the determination of surface energies from poorly performed contact angle determinations. In particular, the characterisation of surfaces, which leads to correlations between the contact angle and other effects, must be critically validated for some publications. A large number of works exist concerning the theoretical and thermodynamic aspects of two- and tri-phase boundaries. The linkage between theory and experiment is generally performed by an axisymmetric drop shape analysis, that is, simulations of the theoretical drop profiles by numerical integration onto a number of points of the drop meniscus (approximately 20). These methods work very well for axisymmetric profiles such as those obtained by pendant drop measurements, but in the case of a sessile drop onto real surfaces, additional unknown and misunderstood effects on the dependence of the surface must be considered. We present a special experimental and practical investigation as another way to transition from experiment to theory. This procedure was developed to be especially sensitive to small variations in the dependence of the dynamic contact angle on the surface; as a result, this procedure will allow the properties of the surface to be monitored with a higher precession and sensitivity. In this context, water drops onto a 111 silicon wafer are dynamically measured by video recording and by inclining the surface, which results in a sequence of non-axisymmetric drops. The drop profiles are analysed by commercial software and by the developed and presented high-precision drop shape analysis. In addition to the enhanced sensitivity for contact angle determination, this analysis technique, in combination with innovative fit algorithms and data presentations, can result in enhanced reproducibility and comparability of the contact angle measurements in terms of the material characterisation in a comprehensible way.
机译:液滴形状分析是表征科学和工业界表面的最重要且最常用的方法之一。大量使用接触角测量来分析表面的研究,其特征是结论不正确或方向错误,例如根据接触角确定不良而确定表面能。特别是,对于某些出版物,必须严格验证导致接触角与其他作用之间相关的表面特征。关于两相和三相边界的理论和热力学方面,存在大量工作。理论与实验之间的联系通常是通过轴对称液滴形状分析来完成的,也就是说,通过对液滴弯液面的多个点(大约20个点)进行数值积分来模拟理论液滴轮廓。这些方法对于轴对称轮廓(例如通过垂降测量获得的轮廓)非常有效,但是在固定落在真实表面上的情况下,必须考虑对表面依赖性的其他未知和误解的影响。我们提出了一项特殊的实验和实践研究,作为从实验过渡到理论的另一种方法。开发该程序是为了对表面上动态接触角的依赖性的微小变化特别敏感。结果,该程序将允许以较高的进动和灵敏度来监视表面的特性。在这种情况下,通过视频记录和倾斜表面来动态地测量111硅晶片上的水滴,这将导致一系列非轴对称的水滴。墨滴轮廓通过商业软件以及已开发并提供的高精度墨滴形状分析进行分析。除了提高了确定接触角的灵敏度外,这种分析技术与创新的拟合算法和数据表示相结合,还可以以一种可理解的方式提高接触角测量的可重复性和可比性。

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