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采用StarJet技术实现无凸起且均匀的金属线喷射印刷。

Bulge-Free and Homogeneous Metal Line Jet Printing with StarJet Technology.

作者信息

Straubinger Dániel, Koltay Peter, Zengerle Roland, Kartmann Sabrina, Shu Zhe

机构信息

Hahn-Schickard, Georges-Koehler-Allee 103, D-79110 Freiburg, Germany.

Actome GmbH, Georges-Köhler-Allee 103, D-79110 Freiburg, Germany.

出版信息

Micromachines (Basel). 2024 May 31;15(6):743. doi: 10.3390/mi15060743.

Abstract

The technology to jet print metal lines with precise shape fidelity on diverse substrates is gaining higher interest across multiple research fields. It finds applications in additively manufactured flexible electronics, environmentally friendly and sustainable electronics, sensor devices for medical applications, and fabricating electrodes for solar cells. This paper provides an experimental investigation to deepen insights into the non-contact printing of solder lines using StarJet technology, eliminating the need for surface activation, substrate heating, curing, or post-processing. Moreover, it employs bulk metal instead of conventional inks or pastes, leading to cost-effective production and enhanced conductivity. The effect of molten metal temperature, substrate temperature, standoff distance, and printing velocity was investigated on polymer foils (i.e., PET sheets). Robust printing parameters were derived to print uniform, bulge-free, bulk metal lines suitable for additive manufacturing applications. The applicability of the derived parameters was extended to 3D-printed PLA, TPU, PA-GF, and PETG substrates having a much higher surface roughness. Additionally, a high aspect ratio of approx. 16:1 wall structure has been demonstrated by printing multiple metal lines on top of each other. While challenges persist, this study contributes to advancing additively manufactured electronic devices, highlighting the capabilities of StarJet metal jet-printing technology.

摘要

在各种基板上喷射打印出具有精确形状保真度的金属线路的技术,正在多个研究领域中引起越来越高的关注。它在增材制造的柔性电子产品、环境友好型和可持续电子产品、医疗应用的传感器设备以及制造太阳能电池电极等方面都有应用。本文进行了一项实验研究,以更深入地了解使用StarJet技术进行焊料线路的非接触式打印,无需表面活化、基板加热、固化或后处理。此外,它使用块状金属而非传统油墨或浆料,从而实现了具有成本效益的生产并提高了导电性。研究了熔融金属温度、基板温度、喷头与基板间距和打印速度对聚合物箔(即PET片材)的影响。得出了稳健的打印参数,以打印出适用于增材制造应用的均匀、无凸起的块状金属线路。所推导参数的适用性扩展到了具有更高表面粗糙度的3D打印PLA、TPU、PA-GF和PETG基板。此外,通过将多条金属线路相互堆叠打印,展示了约16:1的高纵横比壁结构。尽管挑战依然存在,但本研究有助于推动增材制造电子设备的发展,突出了StarJet金属喷射打印技术的能力。

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