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February 12, 2026Physics of Fluids0 citations

Jet instability and atomization of electrified liquid under the vibration control

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XLXiangyu LuoZTZhaoxuan TangJHJin Huang

Key Points

  • This study aims to improve the process of electrostatic atomization by controlling jet stability through vibration.
  • Utilized a ceramic actuator for imposing vibrations on the jet
  • Analyzed jet stability and transition thresholds with varying vibration amplitudes and frequencies
  • Compared droplet sizes before and after applying vibration control
  • Vibrations led to a decrease in stable jet segment length with increased amplitude and frequency
  • Achieved over 30% reduction in droplet size compared to conventional electrostatic atomization
  • Improved stability and morphology of the jet under controlled vibration conditions

Abstract

Electrostatic atomization is renowned for its ability to generate fine droplets, yet its practical application is often hindered by complex electrohydrodynamic instabilities and unpredictable jet morphologies. To address these limitations, this study introduces an active control strategy employing a ceramic actuator to impose controlled vibrations on the jet. The findings indicate that such vibrations significantly alter the transition thresholds and stability of different jet modes. Specifically, in the whipping mode, the length of the stable jet segment decreases progressively with increasing vibration amplitude and frequency. Moreover, this approach achieves a notable reduction in droplet size, over 30% smaller than in conventional electrostatic atomization. These results provide valuable insights for optimizing jet morphology and enhancing atomization efficiency.

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Cite This Study

Luo et al. (2026) studied this question.

synapsesocial.com/papers/698d6ebb5be6419ac0d54726https://doi.org/10.1063/5.0313687
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