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Drop-on-demand (DOD) inkjet dynamics of printing viscoelastic conductive ink

机译:Drop-on-demand (DOD)喷墨印刷的动力学粘弹性导电墨水

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摘要

Emerging applications of drop-on-demand (DOD) inkjet printing, such as printed electronics and bioprinting, are leading to an ever-increasing development of diverse functional inks with complex chemical and rheological properties, especially viscoelastic polymers. Forming droplets with desirable velocity and volume as well as excellent reliability is of great importance for successful printing. In this study, the dynamics and performance of droplet formation during DOD inkjet printing of viscoelastic ink were investigated by employing the piezoelectric inkjet technology to print a conductive polymer ink under various excitation waveform parameters. Four distinct droplet formation regimes were identified, namely, no droplet formation, a single droplet, one satellite droplet, and multiple satellite droplets. A process dynamics-related dimensionless number (Wj) was proposed to construct an operating phase diagram on droplet formation and quantify the transition of droplet formation regimes. The effects of bipolar waveform parameters on droplet formation were systematically examined in terms of Wj, droplet velocity, and droplet diameter. Moreover, the printing of conductive microlines and micropatterns was precisely controlled under well-formed droplets. This study could support fully understanding the droplet formation dynamics during DOD inkjet printing of viscoelastic inks to guide generating desirable droplets of functional ink and improve the performance and function of inkjet-printed devices.
机译:新兴的应用drop-on-demand (DOD)喷墨打印,如电子和打印生物打印,导致日益增加发展多元化功能的油墨复杂的化学和流变特性,尤其是粘弹性聚合物。液滴与理想的速度和体积以及优秀的可靠性具有十分重要的为成功的印刷的重要性。研究中,液滴的动力和性能在国防部喷墨打印的形成粘弹性墨水被雇佣了压电喷墨打印技术导电聚合物油墨在不同励磁波形参数。形成机制,即没有一个液滴,液滴的形成卫星液滴和多个卫星液滴。无量纲数(Wj)提出了构建一个操作相图滴液滴的形成和量化的转变形成制度。波形参数对液滴的形成系统地研究了Wj而言,滴速度和液滴直径。印刷导电microlines和微型图象是精确控制格式良好的水滴。充分理解液滴的形成在国防部喷墨打印的动力学粘弹性油墨产生理想的指导水滴的功能性墨水和改善具有的性能和功能设备。

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