Experimental and theoretical study of wave propagation phenomena in drop-on-demand ink jet devices
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- Type
- article
- Published
- 1984-05-01
- Cited by
- 305
- References
- 6
- OpenAlex
- https://openalex.org/W2041499488
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16455900
Keywords
Nozzle, Drop (telecommunication), Inkwell, Mechanics, On demand
References
Cited by
- Inkjet metrology II: resolved effects of ejection frequency, fluidic pressure, and droplet number on reproducible drop-on-demand dispensing.
- Hydro-Acoustics of Piezoelectrically Driven Ink-Jet Print Heads
- Model-based Feedforward Control for Inkjet Printheads
- Meniscus motion and drop formation in inkjet printing
- A numerical model of drop-on demand droplet formation from a vibrating nozzle and a rigid nozzle
- A study of the characteristics of oscillatory surface instabilities leading to droplet formation
- Development of Bridge Circuit for Measuring Pressure Wave in Inkjet Head
- Engineering Lipid Vesicles for Cellular Reconstitution
- The MEMS Handbook
- Fuel Cell Electronics Packaging
- Jet Instability and Droplet Formation for Bioprinting Applications
- Functional printing : from the study of printed layers to the prototyping of flexible devices
- Formulation of oral dosage forms by three dimensional printing
- Droplet Bouncing Behavior in the Direct Solder Bumping Process
- MIXING SOLUTIONS IN INKJET FORMED VESICLES
- Positive pressure drop-on-demand printhead for Three-Dimensional Printing
- Ink‐Jet Printing and Sintering of PZT
- Oscillatory Incompressible Fluid Flow in a Tapered Tube With a Free Surface in an Inkjet Print Head
- Hydrodynamic responses of a piezoelectric driven MEMS inkjet print-head
- Performance improvement of a drop-on-demand inkjet printhead using an optimization-based feedforward control method
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