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EFFECTS OF WETTABILITY ON CAPILLARY FLOW OF NON-NEWTONIAN FLUID IN MICROCHANNELS

机译:润湿性对非牛顿流体在微通道中毛细流动的影响

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In this study, capillary filling of diluted bitumen was evaluated using glass etched microchannel. Glass microchannel was treated using TrichIoro(1H,1H,2H,2H-perfluorooctyl) silane that makes the microchannel lyophobic (not favorable for neither hydrophilic nor hydrophobic liquids). Water contact angle, as a degree of hydrophilicity, was changed from 15° for untreated microchannel to 115° for treated microchannel. Measured Capillary filling speed of bitumen in hexane (10% to 60%) was experimentally monitored using white light microscope and compared with Washburn theoretical model. For all samples, a linear relation between square of propagation distance and time was found. However, a deviation between experimental and theoretical values of penetration as a function of time was recorded. Experimental results indicated slower velocity compared to theoretical prediction due to simplifications of the Washburn model. Advancing dynamic contact angle of capillary-driven flow was measured and compared with static contact angle using MATLAB®. It was found that dynamic contact angle was increasing during the penetration in microchannel and application of a constant contact angle leads to higher deviation between experimental and theoretical results.
机译:在该研究中,使用玻璃蚀刻的微通道评估稀释沥青的毛细血管填充。使用Trichioro(1H,1H,2H,2H-PerfluoroOcoCtorg)硅烷处理玻璃微型通道,该硅烷使得微通道疏液(不良,既不是亲水性也不是疏水性液体)。随着亲水性的水接触角从15°改变为未处理的微通道至115°,用于处理的微通道。使用白光显微镜通过白光显微镜进行实验监测己烷中沥青中沥青的毛细血管填充速度,并与keyburn理论模型进行比较。对于所有样本,发现了传播距离和时间平方之间的线性关系。然而,记录了作为时间函数的实验和渗透的理论值之间的偏差。实验结果表明,由于盥洗铀模型的简化而与理论预测相比较慢的速度。测量毛细管驱动流动的推进动态接触角,并使用MATLAB®与静态接触角进行比较。结果发现,在微通道的渗透过程中,动态接触角在微通道的渗透期间增加,并且恒定接触角的施加导致实验和理论结果之间的偏差更高。

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