Suppr超能文献

使用卫星液滴进行打印。

Printing with Satellite Droplets.

作者信息

Zhang Yanzhen, Li Dege, Liu Yonghong, Wittstock Gunther

机构信息

Carl von Ossietzky University of Oldenburg, School of Mathematics and Science, Center of Interface Sciences, Institute of Chemistry, D-26111, Oldenburg, Germany.

China University of Petroleum, College of Mechanical and Electronic Engineering, Qingdao, 266580, China.

出版信息

Small. 2018 Sep;14(39):e1802583. doi: 10.1002/smll.201802583. Epub 2018 Sep 3.

Abstract

Despite their specific methodologies, all current noncontact printing techniques such as inkjet printing (IJP), involve the break-up of a liquid meniscus during the separation of the ink droplet from the bulk ink reservoir. Often, the break-up of a liquid meniscus results in the formation of one or more satellite droplet whose volumes are several orders of magnitude smaller than the primary droplet. Many attempts are directed to suppress or control the formation of satellite droplets because they blur the printing result. For the first time, a simple mechanism by which a single satellite droplet is exclusively formed and directed to the substrate by a gas stream while the primary droplet remains attached to a metal rod used for controlling the formation and break-up of the meniscus is reported. High printing resolution is demonstrated by satellite droplets printing (SDP) without the need for small orifices which are prone to clogging. Furthermore, the droplet generation from a large orifice enables SDP to handle viscous inks which has remained challenging for traditional IJP.

摘要

尽管目前所有的非接触式打印技术,如喷墨打印(IJP),都有其特定的方法,但在墨滴从墨槽分离的过程中,都涉及到液体弯月面的破裂。通常,液体弯月面的破裂会导致形成一个或多个卫星墨滴,其体积比主墨滴小几个数量级。许多尝试都旨在抑制或控制卫星墨滴的形成,因为它们会使打印结果模糊不清。首次报道了一种简单的机制,通过该机制,单个卫星墨滴被气流专门形成并导向基板,而主墨滴仍附着在用于控制弯月面形成和破裂的金属棒上。卫星墨滴打印(SDP)展示了高打印分辨率,无需容易堵塞的小孔。此外,从大孔产生墨滴使SDP能够处理粘性墨水,这对传统IJP来说一直具有挑战性。

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