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壳聚糖/聚乙烯醇基喷涂溶液在不同润湿性香蕉皮上液滴铺展的流体力学

Fluid Mechanics of Droplet Spreading of Chitosan/PVA-Based Spray Coating Solution on Banana Peels with Different Wettability.

作者信息

Wardhono Endarto Yudo, Kanani Nufus, Pinem Mekro Permana, Sukamto Dwinanto, Meliana Yenny, Saleh Khashayar, Guénin Erwann

机构信息

Chemical Engineering, University of Sultan Ageng Tirtayasa, Cilegon 42435, Indonesia.

Mechanical Engineering, University of Sultan Ageng Tirtayasa, Cilegon 42435, Indonesia.

出版信息

Polymers (Basel). 2023 Oct 31;15(21):4277. doi: 10.3390/polym15214277.

Abstract

The spreading behavior of a coating solution is an important factor in determining the effectiveness of spraying applications. It determines how evenly the droplets spread on the substrate surface and how quickly they form a uniform film. Fluid mechanics principles govern it, including surface tension, viscosity, and the interaction between the liquid and the solid surface. In our previous work, chitosan (CS) film properties were successfully modified by blending with polyvinyl alcohol (PVA). It was shown that the mechanical strength of the composite film was significantly improved compared to the virgin CS. Here we propose to study the spreading behavior of CS/PVA solution on fresh bananas. The events upon droplet impact were captured using a high-speed camera, allowing the identification of outcomes as a function of velocity at different surface wettabilities (wetting and non-wetting) on the banana peels. The mathematical model to predict the maximum spreading factor, β, was governed by scaling law analysis using fitting experimental data to identify patterns, trends, and relationships between β and the independent variables, Weber (We) numbers, and Reynolds (Re) numbers. The results indicate that liquid viscosity and surface properties affect the droplet's impact and spreading behavior. The Ohnesorge (Oh) numbers significantly influenced the spreading dynamics, while the banana's surface wettability minimally influenced spreading. The prediction model reasonably agrees with all the data in the literature since the R = 0.958 is a powerful goodness-of-fit indicator for predicting the spreading factor. It scaled with βmax=a+0.04We.Re1/3, where the "a" constants depend on Oh numbers.

摘要

涂料溶液的铺展行为是决定喷涂应用效果的一个重要因素。它决定了液滴在基材表面的铺展均匀程度以及形成均匀薄膜的速度。流体力学原理支配着这一过程,包括表面张力、粘度以及液体与固体表面之间的相互作用。在我们之前的工作中,通过与聚乙烯醇(PVA)共混成功地改变了壳聚糖(CS)薄膜的性能。结果表明,与纯CS相比,复合薄膜的机械强度有显著提高。在此,我们提议研究CS/PVA溶液在新鲜香蕉上的铺展行为。使用高速摄像机捕捉液滴撞击时的情况,从而确定在香蕉皮不同表面润湿性(湿润和非湿润)下,作为速度函数的结果。预测最大铺展因子β的数学模型由标度律分析支配,通过拟合实验数据来识别β与自变量韦伯(We)数和雷诺(Re)数之间的模式、趋势和关系。结果表明,液体粘度和表面性质会影响液滴的撞击和铺展行为。奥内佐格(Oh)数对铺展动力学有显著影响,而香蕉的表面润湿性对铺展的影响最小。预测模型与文献中的所有数据合理吻合,因为R = 0.958是预测铺展因子的一个强大的拟合优度指标。它与βmax=a + 0.04We.Re1/3成比例,其中“a”常数取决于Oh数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfa5/10648227/452b84752871/polymers-15-04277-g001.jpg

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