Inkjet printing deposits droplets with a well-controlled narrow size distribution. This paper aims at improving experimental and numerical methods for the optimization of drop formation. We introduce a method to extract the one-dimensional velocity profile inside a single droplet during drop formation. We use a novel experimental approach to capture two detailed images of the very same droplet with a small time delay. The one-dimensional velocity within the droplet is resolved by accurately determining the volume distribution of the droplet. We compare the obtained velocity profiles to a numerical simulation based on the slender jet approximation of the Navier-Stokes equation and we find very good agreement
The operation of a piezo inkjet printhead involves a chain of processes in many physical domains at ...
Inkjet printing is a method for directly patterning and fabricating patterns without the need for ma...
Computational fluid dynamics study of droplet formation in a piezo inkjet printhead, with phase Dopp...
Inkjet printing deposits droplets with a well-controlled narrow size distribution. This paper aims a...
Inkjet technology is a very precise and highly flexible technique, which produces microscale drops w...
This study involves the use of the CFD code, FLUENT, to predict the formation of droplets in a piezo...
Droplets with a well-controlled and narrow size distribution are required in many industrial and med...
The analysis of oscillatory fluid flow in a piezoelectric drop-on-demand cylindrical inkjet print he...
The formation and evolution of micron-sized droplets of a Newtonian liquid generated on demand in an...
Piezo drop-on-demand (DOD) inkjet is a non-contact and direct forming technique for pattern fabric...
Piezo drop-on-demand (DOD) inkjet printers are used in an increasing number of applications for thei...
In drop-on-demand (DOD) inkjet printing microdroplets are ejected from the nozzle as a result of the...
A computer-aided analysis system has been developed in this study to simulate the formation, ejectio...
Experimental and numerical analysis of the drop-on-demand inkjet was conducted to determine the jett...
Waveform optimization is a key to success for piezo drop on demand printing systems. The industry es...
The operation of a piezo inkjet printhead involves a chain of processes in many physical domains at ...
Inkjet printing is a method for directly patterning and fabricating patterns without the need for ma...
Computational fluid dynamics study of droplet formation in a piezo inkjet printhead, with phase Dopp...
Inkjet printing deposits droplets with a well-controlled narrow size distribution. This paper aims a...
Inkjet technology is a very precise and highly flexible technique, which produces microscale drops w...
This study involves the use of the CFD code, FLUENT, to predict the formation of droplets in a piezo...
Droplets with a well-controlled and narrow size distribution are required in many industrial and med...
The analysis of oscillatory fluid flow in a piezoelectric drop-on-demand cylindrical inkjet print he...
The formation and evolution of micron-sized droplets of a Newtonian liquid generated on demand in an...
Piezo drop-on-demand (DOD) inkjet is a non-contact and direct forming technique for pattern fabric...
Piezo drop-on-demand (DOD) inkjet printers are used in an increasing number of applications for thei...
In drop-on-demand (DOD) inkjet printing microdroplets are ejected from the nozzle as a result of the...
A computer-aided analysis system has been developed in this study to simulate the formation, ejectio...
Experimental and numerical analysis of the drop-on-demand inkjet was conducted to determine the jett...
Waveform optimization is a key to success for piezo drop on demand printing systems. The industry es...
The operation of a piezo inkjet printhead involves a chain of processes in many physical domains at ...
Inkjet printing is a method for directly patterning and fabricating patterns without the need for ma...
Computational fluid dynamics study of droplet formation in a piezo inkjet printhead, with phase Dopp...