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Research on variation of static contact angle in incomplete wetting system and modeling method

机译:不完全润湿系统中静态接触角变化的研究及建模方法

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摘要

The solid-liquid contact angle which reflects the wettability of solid-liquid system is determined by the physical nature of solid-liquid medium and environmental factors. Through experiments we discovered that the value of contact angle in capillary is generally greater than 0 degrees and multivalued. In addition, the experiments show that as the tube diameter increases, the equivalent height of liquid meniscus increases; as the liquid column height increases, the equivalent height of liquid meniscus decreases. In order to build the solid-liquid static contact angle model of incomplete wetting system, we established the equivalent height function with the capillary diameter as the independent variable. Furthermore, the contact angle model was constructed based on the Jurin formula. The experiments indicated that the model was coincident with the experimental data, what is more, the forecast errors of the contact angle were less than 3%. The model had higher prediction precision compared with that of Jurin or Rayleigh formula. Meanwhile, the reasonability of the modeling method and the practicability of the model are also verified by the paper. (C) 2016 Elsevier B.V. All rights reserved.
机译:反映固液体系润湿性的固液接触角取决于固液介质的物理性质和环境因素。通过实验我们发现,毛细管中的接触角值通常大于0度并且是多值的。另外,实验表明,随着管子直径的增加,液体弯月面的当量高度也增加了。随着液柱高度的增加,弯液面的当量高度减小。为了建立不完全润湿系统的固液静态接触角模型,我们建立了以毛细管直径为自变量的等效高度函数。此外,基于Jurin公式构造了接触角模型。实验表明,该模型与实验数据吻合,而且接触角的预测误差小于3%。与Jurin或Rayleigh公式相比,该模型具有更高的预测精度。同时,本文还验证了建模方法的合理性和模型的实用性。 (C)2016 Elsevier B.V.保留所有权利。

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