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首页> 外文期刊>European journal of physics: A journal of the European Physical Society >A 'conveyor belt' model for the dynamic contact angle
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A 'conveyor belt' model for the dynamic contact angle

机译:动态接触角的“传送带”模型

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摘要

The familiar Young contact angle measurement of a liquid at equilibrium on a solid is a fundamental aspect of capillary phenomena. But in the real world it is not so easy to observe it. This is due to the roughness and/or heterogeneity of real surfaces, which typically are not perfectly planar and chemically homogeneous. What can be easily detected, and in a repeatable way, are advancing and receding contact angles. In this paper, we discuss a simple model which accounts for the onset of advancing and receding contact angles measured by the Wilhelmy microbalance, one of the most powerful techniques for contact angle measurements. The model also explains the experimental observation that advancing and receding contact angles become closer to each other when the system is gently 'shaken', by supplying mechanical energy in an appropriate way. The model may be pedagogically useful in introducing students and teachers to aspects of capillary phenomena which are not usually discussed in basic physics courses.
机译:熟悉的平衡状态下液体对杨氏接触角的测量是毛细现象的基本方面。但是在现实世界中,观察它并不容易。这是由于真实表面的粗糙度和/或异质性所致,它们通常不是完全平坦的并且在化学上是均匀的。前进和后退的接触角很容易检测到,并且是可重复的。在本文中,我们讨论了一个简单的模型,该模型说明了由Wilhelmy微量天平测量的前进和后退接触角的发生,这是最强大的接触角测量技术之一。该模型还解释了实验观察,即通过适当地提供机械能,当系统逐渐“晃动”时,前进和后退接触角会变得更接近。该模型在教学上对向学生和老师介绍毛细现象的方面可能是有用的,毛细现象在基础物理课程中通常不会讨论。

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