Abstract
An experimental setup to study the dynamics of droplet jetting from a commercially available print-head is described. A MicroFab print-head with an 80 μm diameter transparent nozzle was set to print droplets at a speed of 5 m/s at a frequency of 7 kHz. A Particle Image Velocimetry (PIV) scheme consisting of an optical microscope coupled to an ultra-high speed camera is utilized to capture the motion of particles suspended in a model transparent ink. This experimental arrangement images the flow at the centre of a glass cylindrical nozzle and above the fluid meniscus at a speed of half a million frames per second. Velocity fields are obtained from an approximately 200 μm thickness layer of fluid at the inside of the nozzle. Experimental results are compared with Lagrangian finite-element numerical simulations under identical fluid and jetting conditions with good agreement. The advantages, challenges and current limitations of this approach are discussed. ©2011 Society for Imaging Science and Technology.
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CITATION STYLE
Castrejón-Pita, J. R., Hoath, S. D., Castrejón-Pita, A. A., Morrison, N. F., Hsiao, W. K., & Hutchings, I. M. (2011). Ultra-high speed particle image velocimetry on drop-on-demand jetting. In International Conference on Digital Printing Technologies (pp. 93–96). Society for Imaging Science and Technology. https://doi.org/10.2352/issn.2169-4451.2011.27.1.art00024_1
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