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CFD-based numerical modeling to predict the dimensions of printed droplets in electrohydrodynamic inkjet printing

机译:基于CFD的数值模型,以预测电流动力喷墨印刷印刷液滴的尺寸

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摘要

Electrohydrodynamic (EHD) inkjet printing is a type of potential non-contact micro/nanoscale manufacturing technology. The printed droplet dimension plays an important role in EHD inkjet printing due to its significant influence on printing quality and the resolution of patterns. The complexity of the mechanism and the limited process optimization techniques present a challenge in obtaining the desired printing resolution, eventually becoming an expensive and time consuming endeavor. Recent developments in computational fluid dynamics (CFD) bring an effective alternative to alleviate the aforementioned challenges. In this study, a CFD model is proposed to investigate the mechanism of the cone-jet printing process in EHD inkjet printing. The complete cone-jet printing process is successfully simulated with four phases: Taylor cone formation, cone-jet generation, jet break and droplet expansion. A further analysis predicts the jetting diameter and printed droplet diameter with different operating parameters and substrates. The simulation has a satisfactory agreement with experiments in predicting the printing behavior and printing quality (jetting diameter, printed droplet diameter). Such advancement in modeling can be utilized to guide the quick determination of operation parameters for the desired printing resolution when given a new ink.
机译:电液动力学(EHD)喷墨印刷是一种潜在的非接触式微/纳米尺度制造技术。由于其对印刷质量的显着影响和图案的分辨率,印刷液滴维度在EHD喷墨印刷中起着重要作用。机构和有限的过程优化技术的复杂性在获得所需的打印分辨率方面存在挑战,最终成为昂贵且耗时的努力。最近计算流体动力学(CFD)的发展带来了一种有效的替代方案来缓解上述挑战。在该研究中,提出了一种CFD模型来研究EHD喷墨印刷中锥形喷射印刷过程的机制。完整的锥形喷射印刷过程用四个阶段成功模拟:泰勒锥形形成,锥形喷射,喷射断裂和液滴膨胀。进一步的分析预测喷射直径和印刷液滴直径,具有不同的操作参数和基材。该模拟与预测印刷行为和印刷质量(喷射直径,印刷液滴)进行了令人满意的同意。在给定新墨水时,可以利用建模的这种进步来指导所需的打印分辨率的操作参数的快速确定。

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