首页> 外文期刊>Journal of Chemical Engineering of Japan >Full Finite Element Analyses for Leveling of a Polymer/Solvent Film Accompanying with Drying Shrinkage
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Full Finite Element Analyses for Leveling of a Polymer/Solvent Film Accompanying with Drying Shrinkage

机译:聚合物/溶剂膜流平以及干燥收缩的完整有限元分析

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References(12) Cited-By(4) A mathematical model for the leveling process of a polymer/solvent film coated on a flat substrate was constructed by employing a two-dimensional finite element analysis, in which the film thinning due to solvent evaporation was taken into account in addition to the spatial and temporal variations of the physical properties. Then, the effects of the solvent evaporation rate, the wavelength, and amplitude of disturbances on the leveling behavior were numerically investigated. As a result, the critical value of the Biot number, beyond which the coated film with irregular surface geometry is frozen due to the completion of solvent evaporation before the film surface becomes uniform by leveling, decreased with increasing wavelength of disturbances. Also, the leveling time at which the film becomes flat by leveling increases rapidly with the Biot number, and then the shortest drying time could be found as the time at which the leveling time coincides with the time of complete solvent evaporation.
机译:参考文献(12)引用了(4)通过二维有限元分析,构建了涂覆在平面基板上的聚合物/溶剂膜的流平过程的数学模型,其中溶剂蒸发引起的膜变薄为除了考虑物理特性的时空变化之外。然后,数值研究了溶剂蒸发速率,波长和扰动幅度对流平行为的影响。结果,随着扰动波长的增加,由于溶剂蒸发的完成,在膜表面通过流平变得均匀之前,具有毕奥特数的临界值降低,超过该临界值,具有不规则表面几何形状的涂膜被冻结。而且,通过流平而使膜变平的流平时间随着毕奥数而迅速增加,然后可以发现最短的干燥时间是流平时间与完全溶剂蒸发的时间一致的时间。

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