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Modeling the effects of surfactants on coating leveling.

机译:模拟表面活性剂对涂料流平的影响。

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摘要

Many industrial processes involve the coating of a substrate with layers of paint. Although surfactants are only a small part in a coating system, they play a key role in the application process and greatly influence coating quality. Previous studies of surface-tension gradient driven flow only approximated the relation between surface tension and surfactant concentration using empirical expressions. In the present study, a molecular model for surface tension was integrated with a coating leveling model to predict coating film quality and provide better physical insight into surfactant behaviour during the coating leveling process. The surface-tension model treats surfactants at the molecular level based on a well-established molecular-thermodynamic theory, which considers hydrophobic interactions, hydrocarbon-chain packing, interfacial effects, and steric interactions between heads. The model was applied to model commercial surfactants, Igepal CO-630 and CO-720, and the predicted surface tension agreed well with experimental data.; The coating leveling model accounts for surface-tension gradient as one of the driving forces. This model is based on a simplification of the Navier-Stokes equation using the classical lubrication theory for a drying paint layer, which consists of a non-volatile resin, a small amount of surfactant, and water as solvent. A one-dimensional numerical code was developed to predict the transient coating thickness, and the effects of temperature-induced surface-tension gradient, viscosity, and solvent evaporation rate on the drying paint film on a horizontal substrate were studied using this integrated model. For a uneven temperature distribution, higher evaporation rate and higher viscosity decrease defect formation. However, surfactant concentration has little effect on defect shape and magnitude, especially when the concentration exceeds the CMC.
机译:许多工业过程涉及用油漆层涂覆基材。尽管表面活性剂在涂料体系中只占很小的一部分,但它们在施涂过程中起着关键作用,并极大地影响涂料质量。先前对表面张力梯度驱动流的研究仅使用经验表达式来近似表面张力与表面活性剂浓度之间的关系。在本研究中,将表面张力的分子模型与涂料流平模型集成在一起,以预测涂膜质量并在涂料流平过程中更好地了解表面活性剂的行为。表面张力模型基于公认的分子热力学理论在分子水平上处理表面活性剂,该理论考虑了疏水相互作用,烃链堆积,界面效应和头部之间的空间相互作用。该模型被用于模拟商业表面活性剂Igepal CO-630和CO-720,并且预测的表面张力与实验数据吻合良好。涂料流平模型将表面张力梯度视为驱动力之一。该模型基于使用经典润滑理论的干燥涂料层的Navier-Stokes方程的简化,该涂料由非挥发性树脂,少量表面活性剂和水作为溶剂。开发了一个一维数字代码来预测过渡涂层的厚度,并使用该集成模型研究了温度引起的表面张力梯度,粘度和溶剂蒸发速率对水平基材上干燥漆膜的影响。对于不均匀的温度分布,较高的蒸发速率和较高的粘度会减少缺陷的形成。但是,表面活性剂的浓度对缺陷的形状和大小几乎没有影响,尤其是当浓度超过CMC时。

著录项

  • 作者

    Liu, Yue.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Engineering Chemical.
  • 学位 M.A.Sc.
  • 年度 2005
  • 页码 65 p.
  • 总页数 65
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化工过程(物理过程及物理化学过程);
  • 关键词

  • 入库时间 2022-08-17 11:42:13

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