Vaithilingam Jayasheelan, Saleh Ehab, Wildman Ricky D, Hague Richard J M, Tuck Christopher J
Centre for Additive Manufacturing, Faculty of Engineering, University of Nottingham, Nottingham, NG7 2RD, UK.
Sci Rep. 2018 Jun 13;8(1):9030. doi: 10.1038/s41598-018-27311-6.
Three dimensional inkjet printing of multiple materials for electronics applications are challenging due to the limited material availability, inconsistencies in layer thickness between dissimilar materials and the need to expose the printed tracks of metal nanoparticles to temperature above 100 °C for sintering. It is envisaged that instead of printing a dielectric and a conductive material on the same plane, by printing conductive tracks on an angled dielectric surface, the required number of silver layers and consequently, the exposure of the polymer to high temperature and the build time of the component can be significantly reduced. Conductive tracks printed with a fixed print height (FH) showed significantly better resolution for all angles than the fixed slope (FS) sample where the print height varied to maintain the slope length. The electrical resistance of the tracks remained under 10Ω up to 60° for FH; whereas for the FS samples, the resistance remained under 10Ω for samples up to 45°. Thus by fixing the print height to 4 mm, precise tracks with low resistance can be printed at substrate angles up to 60°. By adopting this approach, the build height "Z" can be quickly attained with less exposure of the polymer to high temperature.
用于电子应用的多种材料的三维喷墨打印具有挑战性,这是因为材料可用性有限、不同材料之间的层厚不一致,以及需要将金属纳米颗粒的印刷线路暴露在100°C以上的温度下进行烧结。设想通过在倾斜的介电表面上印刷导电线路,而不是在同一平面上印刷介电材料和导电材料,可以显著减少所需的银层数,从而减少聚合物暴露于高温的时间和组件的构建时间。与固定斜率(FS)样品相比,以固定打印高度(FH)打印的导电线路在所有角度下均显示出明显更好的分辨率,在FS样品中,打印高度会变化以保持斜率长度。对于FH,线路的电阻在高达60°的角度下保持在10Ω以下;而对于FS样品,在高达45°的样品中电阻保持在10Ω以下。因此,通过将打印高度固定为4毫米,可以在高达60°的基板角度下打印出具有低电阻的精确线路。通过采用这种方法,可以在聚合物较少暴露于高温的情况下快速达到构建高度“Z”。