Selective evaporation at the nozzle exit leads to changes in the resonance behavior and an evaporative equilibrium in the piezoacoustic ink channel
ORAL
Abstract
In piezo acoustic drop-on-demand inkjet printing a single droplet is produced for each piezo driving pulse. The inks used in most applications are multicomponent, leading to selective evaporation at the nozzle exit during idling periods of the printhead. Here, we study the change in the water-glycerol composition in the nozzle due to the evaporation at the nozzle exit by measuring the ring-down signal of the acoustics in the ink channel. We find excellent agreement between the experiments and the analytical model, showing that the changes in the acoustic resonance frequency of the ink channel are a result of changes in both density and viscosity of the fluid within the nozzle of the printhead. Using this measurement method we observe that the evaporation process reaches an equilibrium situation with respect to the waiting time, where the evaporating water at the nozzle exit is diffusively replenished by water from the ink channel reservoir, as we demonstrate through direct numerical simulations.
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Publication: This work is part of a planned paper.
Presenters
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Maaike Rump
Univ of Twente
Authors
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Maaike Rump
Univ of Twente
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Uddalok Sen
Univ of Twente
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Christian Diddens
Univ of Twente, Physics of Fluids, University of Twente
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Roger Jeurissen
ACFD Consultancy
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Hans Reinten
Canon Production Printing B.V.
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Detlef Lohse
Univ of Twente, University of Twente, Max Planck Center Twente for Complex Fluid Dynamics and J.M. Burgers Centre for Fluid Mechanics, University of Twente
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Michel Versluis
Univ of Twente
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Tim Segers
Univ of Twente