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THE EFFECT OF SURFACE WETTABILITY ON VISCOUS FILM DEPOSITION

机译:表面润湿性对胶膜沉积的影响

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The viscous deposition of a liquid film on the inside of a capillary has been experimentally investigated with a focus on the relationship between the film thickness and surface wettability. With distilled water as a working fluid tests were run in a 622 microns diameter glass tube with contact angles of 30° and 105°, respectively. In the first set of experiments the tube was uncoated while in the second set a fluoropolymer coating was applied to increase the contact angle. A film thickness dependence with the contact angle θ (surface wettability) as well as the Capillary number in the form h_R~ Ca~(2/3)/cosθ is inferred from scaling arguments. For partial wetting it may explain the existence of a thicker film for nonzero contact angle. It was further found that the non-wetting case of 105° contact angle deviates significantly from the existing theories, the film thickness presenting a weak dependence with the Capillary number. This deviation as well as the apparent non-uniqueness of the solution is thought to be caused by the film instability (rupture) observed during the tests.The thickness of the deposited film as a function of the Capillary number was estimated from the liquid mass exiting the capillary and the gas-liquid interface (meniscus) velocity, and compared to Bretherton's data and a correlation proposed by Quere. The film thickness measurements as well as the meniscus velocity were determined with the aid of a Photron high speed camera with 10000 frames per second sampling capability coupled with a Nikon TE-2000 inverted microscope and a Precisa electronic balance.
机译:已经通过实验研究了液膜在毛细管内部的粘性沉积,着眼于膜厚度和表面润湿性之间的关系。使用蒸馏水作为工作流体,在直径622微米的玻璃管中分别进行了30°和105°的接触角测试。在第一组实验中,未涂覆管子,而在第二组实验中,涂覆了含氟聚合物涂层以增加接触角。由比例参数推导了薄膜厚度与接触角θ(表面润湿性)以及毛细管数的关系,其形式为h_R〜Ca〜(2/3)/cosθ。对于部分润湿,可以解释为存在非零接触角的较厚膜。进一步发现,接触角为105°的非润湿情况与现有理论有很大差异,膜厚度对毛细管数的依赖性较弱。该偏差以及溶液的表观不均匀性被认为是由在测试期间观察到的膜不稳定性(破裂)引起的。 从毛细管流出的液体质量和气液界面(弯月面)速度估算沉积膜的厚度与毛细管数的关系,并将其与布雷瑟顿的数据和Quere提出的相关性进行比较。借助具有每秒10000帧采样能力的Photron高速相机,尼康TE-2000倒置显微镜和Precisa电子天平,确定了薄膜厚度的测量值以及弯月面的速度。

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