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首页> 外文期刊>Journal of Mechanical Science and Technology >Cross-talk effect in electrostatic based capillary array nozzles
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Cross-talk effect in electrostatic based capillary array nozzles

机译:基于静电的毛细管阵列喷嘴中的串扰效应

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Electrohydrodynamic printing is a promising technique for printed electronics application. Most researchers working in this field are using a single nozzle configuration. However, for large area printing a multi-nozzle setup will be required for time and cost effective process. In this paper the influence of electric field and flow-rate on jetting angle on multi-nozzle array has been investigated experimentally. A three nozzle setup has been used in a linear array by using glass capillary as a nozzle with independent voltage applied on each nozzle and independent ink supply. The experiments are performed by changing the nozzle to nozzle gap and the effect on the jetting angle has been investigated. It has been observed that by increasing the applied voltage the jetting angle also increases at fixed flow-rate. In case of increasing the flow-rate, the jetting angle first increases with increase in flow-rate, but as the flow-rate increases at certain level the jetting angle decreases; moreover, at a high flow-rate the cone-jet length starts increasing. Numerical simulation has been performed to have a better understanding of the electric-field with respect to jetting angles. The influence of one nozzle on another nozzle is also investigated by operating the nozzle independently by using different operating cases. The cross-talk effect is also minimized by reducing the nozzle diameter. At 250 μm nozzle diameter the cross-talk effect was negligible for 5 mm nozzle-to-nozzle gap. This study will help in better understanding of the interaction between different nozzles in multi-nozzle cases and better design of the multi-nozzle system by minimizing the effects of adjacent nozzles for multi-nozzle electrohydrodynamic printing system.
机译:电流体动力印刷是用于印刷电子应用的有前途的技术。在该领域工作的大多数研究人员正在使用单个喷嘴配置。但是,对于大面积打印,将需要多喷嘴设置,以节省时间和成本。本文通过实验研究了电场和流速对多喷嘴阵列喷射角度的影响。通过使用玻璃毛细管作为喷嘴,在每个喷嘴上施加独立电压并独立供应墨水,在线性阵列中使用了三个喷嘴设置。通过改变喷嘴与喷嘴的间隙来进行实验,并研究了对喷射角度的影响。已经观察到,通过增加施加的电压,喷射角在固定的流速下也增加。在增加流量的情况下,射流角首先随流量的增加而增加,但是当流量在一定水平上增加时,射流角减小;此外,在高流速下,圆锥射流的长度开始增加。进行了数值模拟,以更好地了解相对于喷射角的电场。通过使用不同的操作案例独立地操作喷嘴,还可以研究一个喷嘴对另一喷嘴的影响。通过减小喷嘴直径也可以最大程度地减小串扰效应。在250μm的喷嘴直径下,对于5 mm的喷嘴到喷嘴间隙,串扰效应可以忽略不计。这项研究将通过最大程度地减少相邻喷嘴对多喷嘴电动液力打印系统的影响,有助于更好地了解多喷嘴情况下不同喷嘴之间的相互作用,并更好地设计多喷嘴系统。

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