DOE OSTI · 1601270
Understanding and mitigating process drift in aerosol jet printing
Abstract
Aerosol jet printing offers a versatile, high-resolution prototyping capability for flexible and hybrid electronics. Despite its rapid growth in recent years, persistent problems such as process drift hinder the adoption of this technology in production environments. Here we explore underlying causes of process drift during aerosol jet printing and introduce an engineered solution to improve deposition stability. In this work it is shown that the ink level within the cartridge is a critical factor in determining atomization efficiency, such that the reduction in ink volume resulting from printing itself can induce significant and systematic process drift. By integrating a custom 3D-printed cartridge with an ink recirculation system, ink composition and level within the cartridge are better maintained. This strategy allows extended duration printing with improved stability, as evidenced by 30 h of printing over 5 production runs. This provides an important tool for extending the duration and improving reliability for aerosol jet printing, a key factor for integration in practical manufacturing operations.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Tafoya, Rebecca R., Secor, Ethan B.. 2020-02-12. Understanding and mitigating process drift in aerosol jet printing. https://doi.org/10.1088/2058-8585%2Fab6e74
Cite the original work for its findings. Save a collection to share your selection of sources.