Physics of Electrostatic Projection Revealed by High-Speed Video Imaging
Arash Sayyah, Mohammad Mirzadeh, Yi Jiang, Warren V. Gleason, William, C. Rice, Martin Z. Bazant

TL;DR
This study uses high-speed video imaging to analyze the electrostatic projection of alumina particles, revealing the influence of humidity and electric field on charge transfer and projection efficiency, and comparing it with classical theories.
Contribution
It provides a comprehensive experimental analysis of electrostatic projection, highlighting the critical role of humidity and charge dynamics, which was previously not fully understood.
Findings
Projection efficiency increases with humidity levels above 50%.
Higher humidity reduces charging time and enhances projection.
Particles exhibit excessive charge at low humidity, indicating triboelectric effects.
Abstract
Processes based on electrostatic projection are used extensively in industry, e.g. for mineral separations, electrophotography or manufacturing of coated abrasives, such as sandpaper. Despite decades of engineering practice, there are still unanswered questions. In this paper, we present a comprehensive experimental study of projection process of more than 1500 individual spherical alumina particles with a nominal size of 500 m, captured by high-speed video imaging and digital image analysis. Based on flight trajectories of approximately 1100 projected particles, we determined the acquired charge and dynamics as a function of relative humidity (RH) and electric field intensity and compared the results with classical theories. For RH levels of 50\% and above, more than 85\% of disposed particles were projected, even when the electric field intensity was at its minimum level. This…
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Taxonomy
TopicsElectron and X-Ray Spectroscopy Techniques
