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Dynamics of wetting explored with inkjet printing

Publication ,  Journal Article
Völkel, S; Huang, K
Published in: EPJ Web of Conferences
June 30, 2017

An inkjet printer head, which is capable of depositing liquid droplets with a resolution of 22 picoliters and high repeatability, is employed to investigate the wetting dynamics of drops printed on a horizontal plane as well as on a granular monolayer. For a sessile drop on a horizontal plane, we characterize the contact angle hysteresis, drop volume and contact line dynamics from side view images. We show that the evaporation rate scales with the dimension of the contact line instead of the surface area of the drop. We demonstrate that the system evolves into a closed cycle upon repeating the depositing-evaporating process, owing to the high repeatability of the printing facility. Finally, we extend the investigation to a granular monolayer in order to explore the interplay between liquid deposition and granular particles.

Duke Scholars

Published In

EPJ Web of Conferences

DOI

EISSN

2100-014X

ISSN

2101-6275

Publication Date

June 30, 2017

Volume

140
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Völkel, S., & Huang, K. (2017). Dynamics of wetting explored with inkjet printing. EPJ Web of Conferences, 140. https://doi.org/10.1051/epjconf/201714009035
Völkel, S., and K. Huang. “Dynamics of wetting explored with inkjet printing.” EPJ Web of Conferences 140 (June 30, 2017). https://doi.org/10.1051/epjconf/201714009035.
Völkel S, Huang K. Dynamics of wetting explored with inkjet printing. EPJ Web of Conferences. 2017 Jun 30;140.
Völkel, S., and K. Huang. “Dynamics of wetting explored with inkjet printing.” EPJ Web of Conferences, vol. 140, June 2017. Scopus, doi:10.1051/epjconf/201714009035.
Völkel S, Huang K. Dynamics of wetting explored with inkjet printing. EPJ Web of Conferences. 2017 Jun 30;140.
Journal cover image

Published In

EPJ Web of Conferences

DOI

EISSN

2100-014X

ISSN

2101-6275

Publication Date

June 30, 2017

Volume

140