As drop-on-demand (DOD) applications continue to gain ground in desktop inkjet-printing, 3D printing, fluid mixing, and other areas the demand for higher frequency operations are beginning to push against the current physical boundaries in DOD technology. The current research is exploring the possibility of controlling drop volume and velocity at high frequency ranges where meniscus vibrations can occur between drop formations and affect drop formation characteristics. A periodic voltage is applied to a piezoelectric disk in order to generate pressure fluctuations in a single nozzle droplet generator, causing the fluid meniscus at the nozzle to vibrate. A single stronger pulse is then superimposed over the periodic waveform at different pha...
International audienceDrop-on-Demand (DOD) technology enables to control the ejection of drops, from...
The analysis of oscillatory fluid flow in a piezoelectric drop-on-demand cylindrical inkjet print he...
A computer-aided analysis system has been developed in this study to simulate the formation, ejectio...
Graduation date: 2012As drop-on-demand (DOD) applications continue to gain ground in desktop inkjet-...
This article presents a design and development of a drop-on-demand (DOD) droplets generator. This ge...
Waveform optimization is a key to success for piezo drop on demand printing systems. The industry es...
Inkjet technology is a very precise and highly flexible technique, which produces microscale drops w...
In drop-on-demand (DOD) inkjet printing microdroplets are ejected from the nozzle as a result of the...
Drops are constantlyand spontaneouslyproduced in nature, but varied industrial fields (such as biote...
This thesis is concerned with the use of an electric field in the extraction of liquid drops from a ...
Experimental and numerical analysis of the drop-on-demand inkjet was conducted to determine the jett...
The volume and velocity of droplets ejected from a piezoelectric droplet generator, as used in ink-j...
Graduation date: 2008For piezoelectric stack (PZT) driven droplet generator, the driving waveform\ud...
Piezo drop-on-demand (DOD) inkjet is a non-contact and direct forming technique for pattern fabric...
Formation of incompressible Newtonian liquid drops of density ρ, viscosity μ, and surface tension σ ...
International audienceDrop-on-Demand (DOD) technology enables to control the ejection of drops, from...
The analysis of oscillatory fluid flow in a piezoelectric drop-on-demand cylindrical inkjet print he...
A computer-aided analysis system has been developed in this study to simulate the formation, ejectio...
Graduation date: 2012As drop-on-demand (DOD) applications continue to gain ground in desktop inkjet-...
This article presents a design and development of a drop-on-demand (DOD) droplets generator. This ge...
Waveform optimization is a key to success for piezo drop on demand printing systems. The industry es...
Inkjet technology is a very precise and highly flexible technique, which produces microscale drops w...
In drop-on-demand (DOD) inkjet printing microdroplets are ejected from the nozzle as a result of the...
Drops are constantlyand spontaneouslyproduced in nature, but varied industrial fields (such as biote...
This thesis is concerned with the use of an electric field in the extraction of liquid drops from a ...
Experimental and numerical analysis of the drop-on-demand inkjet was conducted to determine the jett...
The volume and velocity of droplets ejected from a piezoelectric droplet generator, as used in ink-j...
Graduation date: 2008For piezoelectric stack (PZT) driven droplet generator, the driving waveform\ud...
Piezo drop-on-demand (DOD) inkjet is a non-contact and direct forming technique for pattern fabric...
Formation of incompressible Newtonian liquid drops of density ρ, viscosity μ, and surface tension σ ...
International audienceDrop-on-Demand (DOD) technology enables to control the ejection of drops, from...
The analysis of oscillatory fluid flow in a piezoelectric drop-on-demand cylindrical inkjet print he...
A computer-aided analysis system has been developed in this study to simulate the formation, ejectio...