研究目的
To investigate the electrostatic projection process of spherical alumina particles under varying relative humidity (RH) and electric field intensity conditions, using high-speed video imaging and digital image analysis, to understand the acquired charge and dynamics of particles and compare the results with classical theories.
研究成果
The study revealed that RH levels significantly influence the electrostatic projection process, with higher RH levels facilitating charge transfer and increasing projection rates. The electric field intensity primarily affects the particle charge rather than the charging time. The findings suggest that thin water films at high RH levels enhance charge transfer, while triboelectric effects may explain excessive charges at low RH levels.
研究不足
The study focused on isolated spherical particles and did not account for the complex interactions in industrial-scale processes where particles may collide or form agglomerates. The effects of particle shape and surface properties were not fully explored.
1:Experimental Design and Method Selection:
The study involved placing spherical alumina particles on a lower electrode within an environmentally controlled test chamber and applying a high-voltage electric field to induce particle projection. High-speed video imaging captured the projection process for analysis.
2:Sample Selection and Data Sources:
Over 1500 spherical alumina particles with a nominal size of 500 μm were used. Particle sizes were determined via digital image analysis comparing them to a reference particle.
3:List of Experimental Equipment and Materials:
Equipment included a high-voltage power supply, an environmentally controlled test chamber with RH and temperature controllers, a high-resolution camera, a high-speed video camera, and motion-analysis software. Materials included alumina particles and a reference particle.
4:Experimental Procedures and Operational Workflow:
Particles were distributed on the lower electrode, and the RH level was set. The electric field was applied, and particle projection was recorded. The process was repeated for different RH levels and applied voltages.
5:Data Analysis Methods:
Flight trajectories of particles were analyzed to determine acquired charge and dynamics. The data were compared with theoretical predictions.
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