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首页> 外文期刊>The European physical journal, E. Soft matter >Effect of including a gas layer on the gel formation process during the drying of a polymer solution
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Effect of including a gas layer on the gel formation process during the drying of a polymer solution

机译:在聚合物溶液干燥过程中包括气体层在凝胶形成过程中的影响

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In this paper, we study the influence of the upper gas layer on the drying and gelation of a polymer solution. The gel is formed due to the evaporation of the binary solution into (inert) air. A one-dimensional model is proposed, where the evaporation flux is more realistically described than in previous studies. The approach is based on general thermodynamic principles. A composition-dependent diffusion coefficient is used in the liquid phase and the local equilibrium hypothesis is introduced at the interface to describe the evaporation process. The results show that the high thickness of the gas layer reduces evaporation, thus leading to longer drying times. Our model is also compared with more phenomenological descriptions of evaporation, for which the mass flux through the interface is described by the introduction of a Peclet number. A global agreement is found for appropriate values of the Peclet numbers and our model can thus be considered as a tool allowing to link the value of the empirical Peclet number to the physics of the gas phase. Finally, in contrast with other models, our approach emphasizes the possibility of very fast gelation at the interface, which could prevent all Marangoni convection during the drying process.
机译:本文研究了上层气体对聚合物溶液干燥和凝胶化的影响。凝胶是由于二元溶液蒸发到(惰性)空气中而形成的。提出了一个一维模型,其中蒸发通量的描述比以往的研究更为真实。该方法基于一般热力学原理。液相采用组分相关的扩散系数,在界面处引入局部平衡假设来描述蒸发过程。结果表明,高厚度的气体层减少了蒸发,从而导致更长的干燥时间。我们的模型还与蒸发的更多唯象描述进行了比较,其中通过界面的质量通量通过引入Peclet数来描述。对于Peclet数的适当值,我们找到了一个全局一致性,因此我们的模型可以被视为一个工具,允许将经验Peclet数的值与气相的物理联系起来。最后,与其他模型相比,我们的方法强调了界面快速凝胶化的可能性,这可以防止干燥过程中的所有Marangoni对流。

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