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An Analytical Model of Electric Field Distribution for Single Nozzle/Plane in Electrohydrodynamic Jet Printing

机译:电流动力喷射印刷单喷嘴/平面电场分布的分析模型

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Printhead with multiple nozzles plays an important role in electrohydrodynamic jet(E-jet) printing, that decides printing efficiency and output quality. It is challenge and necessary to achieve the rated working voltage by calculating space electric field distribution when designing a E-jet printhead with multiple nozzles. In this paper, an analytical model of electric field distribution is proposed for single nozzle/plane configuration. To validate the feasibility and accuracy, computation results by the model are compared with the electric field distributions by numerical simulation. It shows that the proposed model agrees well with the numerical simulation and have smaller deviation than Coelho and Debeau's model. Furthermore, it can be utilized to calculate the electric field distribution, onset voltage and interference degree under multiple nozzle/plane condition using superposition principle. The proposed model paves a way to design a E-jet printhead with multiple nozzles.
机译:具有多个喷嘴的打印头在电液动力学喷射(电子喷射)印刷中起着重要作用,这决定印刷效率和输出质量。在设计具有多个喷嘴的电子喷射打印头时,通过计算空间电场分布,实现额定工作电压是挑战和必要的。本文提出了一种用于单喷嘴/平面配置的电场分布的分析模型。为了验证可行性和准确性,通过数值模拟将模型的计算结果与电场分布进行比较。它表明,所提出的模型与数值模拟吻合良好,并且具有比Coelho和Debeau的模型更小的偏差。此外,使用叠加原理,可以利用它来计算多个喷嘴/平面条件下的电场分布,开始电压和干扰程度。所提出的模型铺设了一种用多个喷嘴设计电子喷射打印头。

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