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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Measurement of interactions between solid particles, liquid droplets, and/or gas bubbles in a liquid using an integrated thin film drainage apparatus
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Measurement of interactions between solid particles, liquid droplets, and/or gas bubbles in a liquid using an integrated thin film drainage apparatus

机译:使用集成的薄膜排水设备测量固体颗粒,液滴和/或液体中气泡之间的相互作用

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摘要

A novel device was designed to measure drainage dynamics of thin liquid films confined between a solid particle, an immiscible liquid droplet, and/or gas bubble. Equipped with a bimorph force sensor, a computer-interfaced video capture, and a data acquisition system, the newly designed integrated thin film drainage apparatus (ITFDA) allows for the direct and simultaneous measurements of force barrier, true film drainage time, and bubble/droplet deformation under a well-controlled external force, receding and advancing contact angles, capillary force, and adhesion (detachment) force between an air bubble or oil droplet and a solid, a liquid, or an air bubble in an immiscible liquid. Using the diaphragm of a high-frequency speaker as the drive mechanism for the air bubble or oil droplet attached to a capillary tube, this newly designed device is capable of measuring forces over a wide range of hydrodynamic conditions, including bubble approach and retract velocities up to 50 mm/s and displacement range up to 1 mm. The results showed that the ITFDA was capable of measuring hydrodynamic resistance, film drainage time, and other important physical parameters between air bubbles and solid particles in aqueous solutions. As an example of illustrating the versatility, the ITFDA was also applied to other important systems such as interactions between air bubble and oil droplet, two air bubbles, and two oil droplets in an aqueous solution.
机译:设计了一种新颖的装置来测量限制在固体颗粒,不混溶的液滴和/或气泡之间的液体薄膜的排水动力学。新设计的集成薄膜排水装置(ITFDA)配备了双压电晶片力传感器,计算机接口的视频捕获和数据采集系统,可以直接和同时测量力障,真实的排水时间和气泡/液滴在良好控制的外力,后退和前进的接触角,毛细作用力以及不混溶的液体中的气泡或油滴与固体,液体或气泡之间的粘附(分离)力作用下变形。这种新设计的设备使用高频扬声器的振动膜作为附着在毛细管上的气泡或油滴的驱动机构,能够测量各种流体力学条件下的力,包括气泡接近和向上收缩的速度至50 mm / s,位移范围最大1 mm。结果表明,ITFDA能够测量水溶液中的气泡和固体颗粒之间的流体动力阻力,膜排水时间和其他重要的物理参数。作为说明多功能性的示例,ITFDA还被应用于其他重要系统,例如气泡与油滴之间的相互作用,水溶液中的两个气泡和两个油滴之间的相互作用。

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