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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Simultaneous measurement of contact angle and surface tension using axisymmetric drop-shape analysis-no apex (ADSA-NA)
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Simultaneous measurement of contact angle and surface tension using axisymmetric drop-shape analysis-no apex (ADSA-NA)

机译:使用轴对称液滴形状分析-无顶点(ADSA-NA)同时测量接触角和表面张力

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摘要

Axisymmetric drop-shape analysis-no apex (ADSA-NA) is a recent drop-shape method that allows the simultaneous measurement of contact angles and surface tensions of drop configurations without an apex (i.e., a sessile drop with a capillary protruding into the drop). Although ADSA-NA significantly enhanced the accuracy of contact angle and surface tension measurements compared to that of original ADSA using a drop with an apex, it is still not as accurate as a surface tension measurement using a pendant drop suspended from a holder. In this article, the computational and experimental aspects of ADSA-NA were scrutinized to improve the accuracy of the simultaneous measurement of surface tensions and contact angles. It was found that the results are relatively insensitive to different optimization methods and edge detectors. The precision of contact angle measurement was enhanced by improving the location of the contact points of the liquid meniscus with the solid substrate to subpixel resolution. To optimize the experimental design, the capillary was replaced with an inverted sharp-edged pedestal, or holder, to control the drop height and to ensure the axisymmetry of the drops. It was shown that the drop height is the most important experimental parameter affecting the accuracy of the surface tension measurement, and larger drop heights yield lower surface tension errors. It is suggested that a minimum nondimensional drop height (drop height divided by capillary length) of 1.7 is required to reach an error of less than 0.2 mJ/m2 for the measured surface tension. As an example, the surface tension of water was measured to be 72.46 ± 0.04 at 24 °C by ADSA-NA, compared to 72.39 ± 0.01 mJ/m2 obtained with pendant drop experiments.
机译:轴对称无尖端液滴形状分析(ADSA-NA)是一种最新的液滴形状方法,可同时测量液滴结构的接触角和表面张力而无尖端(即无固定液滴,毛细管突出到液滴中)。尽管与使用带有顶点的液滴的原始ADSA相比,ADSA-NA显着提高了接触角和表面张力的测量精度,但仍不如使用悬挂在支架上的悬垂液滴进行表面张力测量的精度高。在本文中,仔细研究了ADSA-NA的计算和实验方面,以提高同时测量表面张力和接触角的准确性。发现结果对不同的优化方法和边缘检测器相对不敏感。通过改善液体弯月面与固体基板的接触点的位置至亚像素分辨率,可以提高接触角测量的精度。为了优化实验设计,将毛细管替换为倒置的尖角基座或支架,以控制液滴的高度并确保液滴的轴对称性。结果表明,跌落高度是影响表面张力测量精度的最重要的实验参数,而跌落高度越大,产生的表面张力误差越小。建议测得的表面张力的最小无量纲液滴高度(液滴高度除以毛细管长度)为1.7,以达到小于0.2 mJ / m2的误差。例如,通过ADSA-NA在24°C下测得的水的表面张力为72.46±0.04,而通过悬垂试验获得的水的表面张力为72.39±0.01 mJ / m2。

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