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首页> 外文期刊>AIChE Journal >Analytical Models for Predicting Penetration Depth During Slot Die Coating onto Porous Media
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Analytical Models for Predicting Penetration Depth During Slot Die Coating onto Porous Media

机译:多孔介质上缝模涂布过程中渗透深度的预测模型

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摘要

A series of analytical models have been developed to predict the penetration depth during slot die coating on porous media. Analytical models for both Newtonian and non-Newtonian fluids were derived based on Lubrication Theory, Darcy's law, and a modified Blake-Kozeny equation. Using these models, the penetration depth can be quickly solved and the effects of material properties and processing conditions on penetration depth can be easily investigated. Experiments of coating Newtonian glycerin and non-Newtonian blackstrap molasses onto Toray series carbon paper were conducted to validate developed models. The overall relative error between the predicted and measured penetration depth was found to be typically lower than 20%, which demonstrates the relative accuracy of developed models. Furthermore, based on a parametric study, it was found that the effect of capillary pressure on penetration depth is less than 10% when the ratio of coating bead pressure and capillary pressure is larger than 10.
机译:已经开发了一系列分析模型来预测在多孔介质上的缝口模头涂布过程中的渗透深度。牛顿流体和非牛顿流体的分析模型都是基于润滑理论,达西定律和修正的布雷克-科泽尼方程式得出的。使用这些模型,可以快速解决渗透深度,并且可以轻松研究材料性能和加工条件对渗透深度的影响。进行了在Toray系列复写纸上涂覆牛顿甘油和非牛顿黑带糖蜜的实验,以验证开发的模型。发现预测的和测量的穿透深度之间的总体相对误差通常低于20%,这证明了已开发模型的相对准确性。此外,基于参数研究,发现当涂层压条压力和毛细管压力之比大于10时,毛细管压力对渗透深度的影响小于10%。

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