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A high-accuracy polynomial fitting approach to determine contact angles

机译:确定接触角的高精度多项式拟合方法

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An automated polynomial fitting (APF) scheme is presented for high-accuracy contact angle measurements. The APF method acquires highly magnified (e.g. 35 x) images of a drop and extracts the drop profile using image processing techniques. Then a polynomial is fitted to the experimentally observed drop profile and the contact angle is calculated using the slope of the polynomial at the contact point. Different edge detection techniques were examined and it was found that the Laplacian of Gaussian edge detection method performs well for the highly magnified images. A thorough statistical analysis was carried out to determine the optimum parameters for the curve fitting e.g., the order of the polynomial and the number of pixels used in the fitting procedure. A comparison of the APF method with Axisymmetric Drop Shape Analysis (ADSA) indicates good agreement between the two methods. The APF method is applicable to a variety of situations, e.g., liquid lens systems, non-axisymmetric drops, and electrically charged drops, where application of traditional contact angle measurement methods may not be accurate enough. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 32]
机译:提出了一种用于精确接触角测量的自动多项式拟合(APF)方案。 APF方法获取液滴的高度放大(例如35 x)图像,并使用图像处理技术提取液滴轮廓。然后,将多项式拟合到实验观察到的液滴轮廓,并使用多项式在接触点处的斜率来计算接触角。研究了不同的边缘检测技术,发现高斯边缘检测的拉普拉斯算子对于高放大率图像表现良好。进行了彻底的统计分析,以确定曲线拟合的最佳参数,例如多项式的阶数和拟合过程中使用的像素数。 APF方法与轴对称液滴形状分析(ADSA)的比较表明,这两种方法之间具有良好的一致性。 APF方法适用于多种情况,例如液体透镜系统,非轴对称液滴和带电液滴,在这些情况下,传统接触角测量方法的应用可能不够精确。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:32]

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