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Effect of Print Parameters on Print Consistency of Aerosol Jet Printed Electronics

机译:印刷参数对气溶胶喷射印刷电子产品的印刷稠度的影响

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Recent advancements in the field of additive manufacturing have given rise to a nanomaterial ink based technology known as Aerosol-jet printing (AJP) which enables fabrication of micro scaled printed and flexible electronics. Development of test protocols, refinement of inks and print process parameters have been demonstrated within the research community largely depending on the empirical observations; however if AJP is to be utilized at a large industry scale level for fabrication and manufacturing then it is of utmost importance that the print consistency be studied as a function of not only the optimized print parameters but also as a function of the print-time over a period of 8-10 hours which is a fair representation of a standard work shift. Due to the novelty of the AJP technology no information exists which addresses the issues, if there are any, related with the print consistency of AJP. Goal of this study is to establish a basic understanding which may or may not result in process limitations and also provide guidelines for an improved process window and print parameter optimization if need be. In this research study, a 90nm particle sized silver based ink and a 70nm particle sized ink have been utilized to study the print consistency of a state-of-the-art Aerosol jet printer, Optomec 300. The print process parameters were optimized by varying the sheath rate, mass flow rate, nozzle size and chiller temperature. Using these parameters the numbers of passes were optimized as a function of least amount of line resistance. With all parameters optimized the Aerosol jet printer was allowed to print continuously for a duration of 10 hours. Printing process efficiency has been gauged a function of process capability index (Cpk) and process capability ratio (Cp). Later the printed samples were studied offline using optical Profilometry to analyze the consistency within the line width and line height. SEM analysis has also been conducted to verify if or if not the overall profile of the printed samples stays constant over the 10 hour period.
机译:添加剂制造领域的最新进步已经引起称为气溶胶喷射印刷(AJP)的纳米材料油墨技术,其能够制造微缩放的印刷和柔性电子器件。在大部分取决于经验观察,在研究群落中已经证明了测试方案的开发,墨水和印刷过程参数的细化;然而,如果将AJP用于制造和制造的大型行业规模水平,那么它至关重要的是,作为不仅是优化的打印参数而且作为打印时间的函数来研究打印一致性是最重要的8-10小时的时间是标准工作转变的公平代表。由于AJP技术的新颖性,如果有任何与AJP的打印一致性有关,则存在满足问题的信息。本研究的目标是建立一个基本的理解,其可能或可能不会导致过程限制,并且还提供改进的过程窗口和打印参数优化的准则。在该研究中,已经利用了90nm粒度的银基油墨和70nm粒度的墨水来研究最先进的气溶胶喷射打印机,Optomec 300的印刷一致性。通过变化优化了打印工艺参数鞘率,质量流量,喷嘴尺寸和冷却温度。使用这些参数作为最小线电阻的函数优化了通过的数量。通过所有参数优化,允许气溶胶喷射打印机连续打印10小时。打印过程效率已经衡量了过程能力指标的函数(C pk )和过程能力比(c p )。后面使用光学轮廓测定来研究印刷样品,分析线宽和线高度内的一致性。还进行了SEM分析以验证或如果不是在10小时内的印刷样品的整体轮廓保持恒定。

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