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Numerical and experimental study of the filling stage of roll-to-roll UV embossing process with micro features

机译:卷对卷微压印UV压花工艺填充阶段的数值和实验研究

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摘要

Roll-to-roll (R2R) UV embossing is a promising low cost and high throughput process that leverages on rapid photo-curing to achieve high embossing speeds for manufacturing large area functional films. There are many potential commercial applications of this process such as flexible displays and functional optical films. However, productivity improvement was hindered by the low web speed at which the system can run without losing the feature fidelity. The current work aims to study the filling-stage of the R2R UV embossing process for s via numerical simulation and experimental validation, in order to better understand the process and identify the limiting factor for productivity improvement. Coupled Eulerian-Lagrangian algorithm was employed in the simulation to consider both deformation of the solid backing film and flow of the liquid UV resin. Their interaction is deemed to influence the mold filling distance. Model predicts that for the web speed of 3 and 30 m/min, the mold filling distance increases fractionally from 2.4 to 2.8 mm, indicating that the filling stage plays a minor role in the feature fidelity control if air entrapment is not considered. Experiments with the micro feature embosser further validate the simulation in a way that to point out it is the air entrapment which causes the incomplete filling. Some basic design rules of the micro features are also provided.
机译:卷对卷(R2R)UV压印是一种有前途的低成本和高产量工艺,它依靠快速的光固化来实现高压印速度,以制造大面积功能性薄膜。该方法有许多潜在的商业应用,例如柔性显示器和功能性光学膜。但是,生产率的提高由于系统运行速度低而无法降低功能保真度而受到阻碍。当前的工作旨在通过数值模拟和实验验证来研究R2R UV压花工艺的填充阶段,以便更好地了解该过程并确定提高生产率的限制因素。在模拟中采用耦合的Eulerian-Lagrangian算法来考虑固体背膜的变形和液态UV树脂的流动。它们之间的相互作用被认为会影响模具的填充距离。模型预测,对于3和30 m / min的腹板速度,模具填充距离从2.4 mm逐渐增加到2.8 mm,这表明如果不考虑夹带空气,则填充阶段在特征保真度控制中的作用较小。用微特征压花机进行的实验进一步验证了模拟,从而指出了导致不完全填充的空气滞留。还提供了微特征的一些基本设计规则。

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