Abstract
The paper demonstrates the interest in using temperature compensation to stabilize drop-on-demand inkjet printing process. The influence of inkjet printing parameters on the droplet velocity and ejection stability is particularly discussed. Based on experimental results a relation between the printing parameters and kinetic property of drops is drawn. Adjusting the amplitude pulse applied to the dispenser head, the drop velocity is stable over a 15°C variation, where as it increases by 5 m/s without compensation and the print quality is so optimized.
Keywords: Droplets characteristics, drop-on-demand inkjet printing, temperature compensation
Micro and Nanosystems
Title: Experimental Temperature Compensation on Drop-On-Demand Inkjet Printing
Volume: 2 Issue: 2
Author(s): Ludivine Fadel Taris, Stephanie Poirier, Sylvie Vinsonneau, Fabien Mesnilgrente and Pierre Temple-Boyer
Affiliation:
Keywords: Droplets characteristics, drop-on-demand inkjet printing, temperature compensation
Abstract: The paper demonstrates the interest in using temperature compensation to stabilize drop-on-demand inkjet printing process. The influence of inkjet printing parameters on the droplet velocity and ejection stability is particularly discussed. Based on experimental results a relation between the printing parameters and kinetic property of drops is drawn. Adjusting the amplitude pulse applied to the dispenser head, the drop velocity is stable over a 15°C variation, where as it increases by 5 m/s without compensation and the print quality is so optimized.
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Cite this article as:
Fadel Taris Ludivine, Poirier Stephanie, Vinsonneau Sylvie, Mesnilgrente Fabien and Temple-Boyer Pierre, Experimental Temperature Compensation on Drop-On-Demand Inkjet Printing, Micro and Nanosystems 2010; 2 (2) . https://dx.doi.org/10.2174/1876402911002020137
DOI https://dx.doi.org/10.2174/1876402911002020137 |
Print ISSN 1876-4029 |
Publisher Name Bentham Science Publisher |
Online ISSN 1876-4037 |
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