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Convective Patterns in Solution-Casted Films from Acylated Hyaluronan

机译:来自丙烯酸透明质酸的溶液血膜膜中的对流模式

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摘要

The evaporation of thin solution layers is an important process taking place in fields such as distillation, coating, or thin film manufacturing. Under suitable conditions, evaporation can induce convective flow by creating gradients in surface tension (Bénard-Marangoni instability) or density. These phenomena have been studied by many authors, but detailed and illustrative visualizations of real experiments are surprisingly scarce compared to simulation results and drawn schemes. Therefore, detailed and representative visualizations of regular Bénard-Marangoni convective cell patterns are provided in solution-casted films from acylated hyaluronan. The visualizations agree with predictions made in the literature, thus providing important experimental validation. Most importantly, structures resulting from both horizontal and vertical convective flow are clearly visible. In a subsequent parametric study, the effects of selected parameters on the size of the convective cells are elucidated. The results suggest that the cell size increases with increasing solution layer height and increasing polymer concentration, while no statistically significant effect is observed for the degree of hyaluronan substitution.
机译:薄溶液层的蒸发是在诸如蒸馏,涂层或薄膜制造之类的领域进行的重要过程。在合适的条件下,蒸发可以通过在表面张力(Bénard-marangoni不稳定性)或密度中产生梯度来引起对流流动。许多作者研究了这些现象,但与模拟结果和拉伸方案相比,实验的详细和说明性可视化令人惊讶的稀缺。因此,常规Bénard-marangoni对流细胞模式的详细和代表性可视化在溶液荧光素酸的溶液中提供。可视化同意文献中的预测,从而提供重要的实验验证。最重要的是,水平和垂直对流流程引起的结构清晰可见。在随后的参数研究中,所选参数对对流细胞尺寸的影响被阐明。结果表明,通过增加溶液层高度和增加的聚合物浓度,细胞尺寸随着透析液替代的程度观察到没有统计学显着的效果。

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